Enrollment and waitlist data for current and upcoming courses refresh every 10 minutes; all other information as of 6:00 AM.
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
1:30 pm |
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Subject: Actuarial Science (ACSC)
CRN: 20691
In Person | Lecture
St Paul: In Person
This course introduces students to the subjects of insurance--theory and practice--and corporate risk management. In addressing these subjects, students will receive exposure to risk theory, insurance pricing, contract analysis, insurance company operations, reinsurance, regulation and the concepts and principles of business risk management. Offered fall semester. Prerequisite: Sophomore standing
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:15 am |
8:15 am |
8:15 am |
||||
Subject: Actuarial Science (ACSC)
CRN: 20692
In Person | Lecture
St Paul: In Person
A survey of topics in the mathematical analysis of financial transactions which involve payments made over time. Specific areas of concentration will include the time value of money, the analysis of annuities, amortization and sinking funds, and the pricing and rates of return on investments. Both continuous time and discrete time problems will be considered. Offered spring semester. Prerequisite: a grade of C- or above in MATH 114
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:55 am |
9:55 am |
|||||
Subject: Actuarial Science (ACSC)
CRN: 20693
In Person | Lecture
St Paul: In Person
This course provides a thorough introduction to the area of short-term actuarial mathematics utilized in the Property&Casualty field as well as some areas in the Life&Health field. Topics include severity, frequency and aggregate loss models, risk measures, construction and selection of parametric models, pricing and reserving for short-term insurance coverages. Prerequisites: A grade of C- or better in both of STAT 313 and STAT 314, or a grade of C- or better in STAT 303. Enrollment via consent by the instructor is also an option.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:35 am |
9:35 am |
9:35 am |
||||
Subject: Actuarial Science (ACSC)
CRN: 20694
In Person | Lecture
St Paul: In Person
Extension of the analysis of ACSC 451 to multiple life functions and multiple decrement theory. Topics will include: multiple life functions and multiple decrement models, valuation of pensions, insurance models including expenses, non-forfeiture benefits and dividends. Offered spring semester. Prerequisite: a grade of C- or above in ACSC 451
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:00 am |
8:00 am |
|||||
Subject: Biology (BIOL)
CRN: 20736
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Natural Science
Instructor: TBD
Emphasizing biology as a creative, investigative process and its relevance in today's world, this course provides an overview of cell biology, genetics, physiology, and human impact on the environment. Two laboratory hours per week. Not open to biology majors, pre-professional students, or students who have completed BIOL 105 or BIOL 106.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
| + asynchronous coursework | ||||||
Subject: Biology (BIOL)
CRN: 20737
Online: Asynchronous | Lab
Online
Core Requirements Met:
[Core] Natural Science
Instructor: TBD
Emphasizing biology as a creative, investigative process and its relevance in today's world, this course provides an overview of cell biology, genetics, physiology, and human impact on the environment. Two laboratory hours per week. Not open to biology majors, pre-professional students, or students who have completed BIOL 105 or BIOL 106.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
| + asynchronous coursework | ||||||
Subject: Biology (BIOL)
CRN: 20738
Online: Asynchronous | Lab
Online
Core Requirements Met:
[Core] Natural Science
Instructor: TBD
Emphasizing biology as a creative, investigative process and its relevance in today's world, this course provides an overview of cell biology, genetics, physiology, and human impact on the environment. Two laboratory hours per week. Not open to biology majors, pre-professional students, or students who have completed BIOL 105 or BIOL 106.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
| + asynchronous coursework | ||||||
Subject: Biology (BIOL)
CRN: 20739
Online: Asynchronous | Lecture
Online
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
School of Ed Transfer Course
An introduction to cells, genetics, development and the human body, and the impact of humans on the environment. Laboratories will emphasize investigative scientific problem solving and creative thinking. Three laboratory hours per week. Not open to students who have completed BIOL 101 or BIOL 106.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
| + asynchronous coursework | ||||||
Subject: Biology (BIOL)
CRN: 20740
Online: Asynchronous | Lab
Online
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
School of Ed Transfer Course
An introduction to cells, genetics, development and the human body, and the impact of humans on the environment. Laboratories will emphasize investigative scientific problem solving and creative thinking. Three laboratory hours per week. Not open to students who have completed BIOL 101 or BIOL 106.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
| + asynchronous coursework | ||||||
Subject: Biology (BIOL)
CRN: 20741
Online: Asynchronous | Lab
Online
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
School of Ed Transfer Course
An introduction to cells, genetics, development and the human body, and the impact of humans on the environment. Laboratories will emphasize investigative scientific problem solving and creative thinking. Three laboratory hours per week. Not open to students who have completed BIOL 101 or BIOL 106.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:35 am |
9:35 am |
9:35 am |
||||
Subject: Biology (BIOL)
CRN: 20742
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Natural Science
This course lays a foundation on which to build both concepts and skills in biology. We explore genetics, evolution, and ecology, demonstrating within each of these disciplines the importance of diversity in supporting life. Topics include: Mendelian genetics, molecular genetics, selection theory and the process of evolution, speciation, and population, community, and global ecology. Emphasis on applications of these topics to current issues related to human health and sustainability. Laboratory work (3 hours per week) consists of authentic research projects that require creating hypotheses, designing experiments, analyzing and interpreting data, and making new contributions to science.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
10:55 am |
10:55 am |
10:55 am |
||||
Subject: Biology (BIOL)
CRN: 20743
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Natural Science
This course lays a foundation on which to build both concepts and skills in biology. We explore genetics, evolution, and ecology, demonstrating within each of these disciplines the importance of diversity in supporting life. Topics include: Mendelian genetics, molecular genetics, selection theory and the process of evolution, speciation, and population, community, and global ecology. Emphasis on applications of these topics to current issues related to human health and sustainability. Laboratory work (3 hours per week) consists of authentic research projects that require creating hypotheses, designing experiments, analyzing and interpreting data, and making new contributions to science.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
||||||
Subject: Biology (BIOL)
CRN: 20746
In Person | Lab
St Paul: Owens Science Hall 264
Core Requirements Met:
[Core] Natural Science
This course lays a foundation on which to build both concepts and skills in biology. We explore genetics, evolution, and ecology, demonstrating within each of these disciplines the importance of diversity in supporting life. Topics include: Mendelian genetics, molecular genetics, selection theory and the process of evolution, speciation, and population, community, and global ecology. Emphasis on applications of these topics to current issues related to human health and sustainability. Laboratory work (3 hours per week) consists of authentic research projects that require creating hypotheses, designing experiments, analyzing and interpreting data, and making new contributions to science.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:30 am |
||||||
Subject: Biology (BIOL)
CRN: 20748
In Person | Lab
St Paul: Owens Science Hall 264
Core Requirements Met:
[Core] Natural Science
Instructor: TBD
This course lays a foundation on which to build both concepts and skills in biology. We explore genetics, evolution, and ecology, demonstrating within each of these disciplines the importance of diversity in supporting life. Topics include: Mendelian genetics, molecular genetics, selection theory and the process of evolution, speciation, and population, community, and global ecology. Emphasis on applications of these topics to current issues related to human health and sustainability. Laboratory work (3 hours per week) consists of authentic research projects that require creating hypotheses, designing experiments, analyzing and interpreting data, and making new contributions to science.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
Subject: Biology (BIOL)
CRN: 20749
In Person | Lab
St Paul: Owens Science Hall 264
Core Requirements Met:
[Core] Natural Science
Instructor: TBD
This course lays a foundation on which to build both concepts and skills in biology. We explore genetics, evolution, and ecology, demonstrating within each of these disciplines the importance of diversity in supporting life. Topics include: Mendelian genetics, molecular genetics, selection theory and the process of evolution, speciation, and population, community, and global ecology. Emphasis on applications of these topics to current issues related to human health and sustainability. Laboratory work (3 hours per week) consists of authentic research projects that require creating hypotheses, designing experiments, analyzing and interpreting data, and making new contributions to science.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
||||||
Subject: Biology (BIOL)
CRN: 20751
In Person | Lab
St Paul: Owens Science Hall 264
Core Requirements Met:
[Core] Natural Science
This course lays a foundation on which to build both concepts and skills in biology. We explore genetics, evolution, and ecology, demonstrating within each of these disciplines the importance of diversity in supporting life. Topics include: Mendelian genetics, molecular genetics, selection theory and the process of evolution, speciation, and population, community, and global ecology. Emphasis on applications of these topics to current issues related to human health and sustainability. Laboratory work (3 hours per week) consists of authentic research projects that require creating hypotheses, designing experiments, analyzing and interpreting data, and making new contributions to science.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:55 am |
9:55 am |
|||||
Subject: Biology (BIOL)
CRN: 20754
In Person | Lecture
St Paul: In Person
Instructor: TBD
The purpose of this course is to introduce the structure and function of cells, and how structure and function drives organismal physiology and diversity. By the end of this course, through lecture and laboratory exercises, students should have an understanding of the basic components of cells, how cells and organisms transfer genetic information to future generations, how communication is integral to cellular and organismal function, and how cells and organisms generate and process energy to drive physiological functions. In addition, students will continue to improve skills for scientific inquiry through activities designed to increase familiarity with the scientific literature and science terminology, improve skills to design and critically analyze experiments, foster ability to work with a scientific team, and provide opportunities to improve scientific writing. Any one topic covered in this course has enough material for a course of its own. However, this course will give basic overview of a series of selected topics that are meant to introduce students to the vast field of cellular and organismal biology and the use of biological science in life. Prerequisite: c- or above in BIOL 207 or a C- in any BIOL 100 level course.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
1:30 pm |
|||||
Subject: Biology (BIOL)
CRN: 20755
In Person | Lecture
St Paul: In Person
The purpose of this course is to introduce the structure and function of cells, and how structure and function drives organismal physiology and diversity. By the end of this course, through lecture and laboratory exercises, students should have an understanding of the basic components of cells, how cells and organisms transfer genetic information to future generations, how communication is integral to cellular and organismal function, and how cells and organisms generate and process energy to drive physiological functions. In addition, students will continue to improve skills for scientific inquiry through activities designed to increase familiarity with the scientific literature and science terminology, improve skills to design and critically analyze experiments, foster ability to work with a scientific team, and provide opportunities to improve scientific writing. Any one topic covered in this course has enough material for a course of its own. However, this course will give basic overview of a series of selected topics that are meant to introduce students to the vast field of cellular and organismal biology and the use of biological science in life. Prerequisite: c- or above in BIOL 207 or a C- in any BIOL 100 level course.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
10:55 am |
10:55 am |
10:55 am |
||||
Subject: Biology (BIOL)
CRN: 20756
In Person | Lecture
St Paul: In Person
The purpose of this course is to introduce the structure and function of cells, and how structure and function drives organismal physiology and diversity. By the end of this course, through lecture and laboratory exercises, students should have an understanding of the basic components of cells, how cells and organisms transfer genetic information to future generations, how communication is integral to cellular and organismal function, and how cells and organisms generate and process energy to drive physiological functions. In addition, students will continue to improve skills for scientific inquiry through activities designed to increase familiarity with the scientific literature and science terminology, improve skills to design and critically analyze experiments, foster ability to work with a scientific team, and provide opportunities to improve scientific writing. Any one topic covered in this course has enough material for a course of its own. However, this course will give basic overview of a series of selected topics that are meant to introduce students to the vast field of cellular and organismal biology and the use of biological science in life. Prerequisite: c- or above in BIOL 207 or a C- in any BIOL 100 level course.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:00 am |
8:00 am |
|||||
Subject: Biology (BIOL)
CRN: 20757
In Person | Lecture
St Paul: In Person
Instructor: TBD
The purpose of this course is to introduce the structure and function of cells, and how structure and function drives organismal physiology and diversity. By the end of this course, through lecture and laboratory exercises, students should have an understanding of the basic components of cells, how cells and organisms transfer genetic information to future generations, how communication is integral to cellular and organismal function, and how cells and organisms generate and process energy to drive physiological functions. In addition, students will continue to improve skills for scientific inquiry through activities designed to increase familiarity with the scientific literature and science terminology, improve skills to design and critically analyze experiments, foster ability to work with a scientific team, and provide opportunities to improve scientific writing. Any one topic covered in this course has enough material for a course of its own. However, this course will give basic overview of a series of selected topics that are meant to introduce students to the vast field of cellular and organismal biology and the use of biological science in life. Prerequisite: c- or above in BIOL 207 or a C- in any BIOL 100 level course.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:35 am |
9:35 am |
9:35 am |
||||
Subject: Biology (BIOL)
CRN: 20758
In Person | Lecture
St Paul: In Person
The purpose of this course is to introduce the structure and function of cells, and how structure and function drives organismal physiology and diversity. By the end of this course, through lecture and laboratory exercises, students should have an understanding of the basic components of cells, how cells and organisms transfer genetic information to future generations, how communication is integral to cellular and organismal function, and how cells and organisms generate and process energy to drive physiological functions. In addition, students will continue to improve skills for scientific inquiry through activities designed to increase familiarity with the scientific literature and science terminology, improve skills to design and critically analyze experiments, foster ability to work with a scientific team, and provide opportunities to improve scientific writing. Any one topic covered in this course has enough material for a course of its own. However, this course will give basic overview of a series of selected topics that are meant to introduce students to the vast field of cellular and organismal biology and the use of biological science in life. Prerequisite: c- or above in BIOL 207 or a C- in any BIOL 100 level course.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
||||||
Subject: Biology (BIOL)
CRN: 20759
Blended Online & In-Person | Lab
St Paul: Owens Science Hall 378
The purpose of this course is to introduce the structure and function of cells, and how structure and function drives organismal physiology and diversity. By the end of this course, through lecture and laboratory exercises, students should have an understanding of the basic components of cells, how cells and organisms transfer genetic information to future generations, how communication is integral to cellular and organismal function, and how cells and organisms generate and process energy to drive physiological functions. In addition, students will continue to improve skills for scientific inquiry through activities designed to increase familiarity with the scientific literature and science terminology, improve skills to design and critically analyze experiments, foster ability to work with a scientific team, and provide opportunities to improve scientific writing. Any one topic covered in this course has enough material for a course of its own. However, this course will give basic overview of a series of selected topics that are meant to introduce students to the vast field of cellular and organismal biology and the use of biological science in life. Prerequisite: c- or above in BIOL 207 or a C- in any BIOL 100 level course.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
6:00 pm |
||||||
Subject: Biology (BIOL)
CRN: 20760
Blended Online & In-Person | Lab
St Paul: Owens Science Hall 378
Instructor: TBD
The purpose of this course is to introduce the structure and function of cells, and how structure and function drives organismal physiology and diversity. By the end of this course, through lecture and laboratory exercises, students should have an understanding of the basic components of cells, how cells and organisms transfer genetic information to future generations, how communication is integral to cellular and organismal function, and how cells and organisms generate and process energy to drive physiological functions. In addition, students will continue to improve skills for scientific inquiry through activities designed to increase familiarity with the scientific literature and science terminology, improve skills to design and critically analyze experiments, foster ability to work with a scientific team, and provide opportunities to improve scientific writing. Any one topic covered in this course has enough material for a course of its own. However, this course will give basic overview of a series of selected topics that are meant to introduce students to the vast field of cellular and organismal biology and the use of biological science in life. Prerequisite: c- or above in BIOL 207 or a C- in any BIOL 100 level course.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:00 am |
||||||
Subject: Biology (BIOL)
CRN: 20761
Blended Online & In-Person | Lab
St Paul: Owens Science Hall 378
The purpose of this course is to introduce the structure and function of cells, and how structure and function drives organismal physiology and diversity. By the end of this course, through lecture and laboratory exercises, students should have an understanding of the basic components of cells, how cells and organisms transfer genetic information to future generations, how communication is integral to cellular and organismal function, and how cells and organisms generate and process energy to drive physiological functions. In addition, students will continue to improve skills for scientific inquiry through activities designed to increase familiarity with the scientific literature and science terminology, improve skills to design and critically analyze experiments, foster ability to work with a scientific team, and provide opportunities to improve scientific writing. Any one topic covered in this course has enough material for a course of its own. However, this course will give basic overview of a series of selected topics that are meant to introduce students to the vast field of cellular and organismal biology and the use of biological science in life. Prerequisite: c- or above in BIOL 207 or a C- in any BIOL 100 level course.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
Subject: Biology (BIOL)
CRN: 20762
Blended Online & In-Person | Lab
St Paul: Owens Science Hall 378
The purpose of this course is to introduce the structure and function of cells, and how structure and function drives organismal physiology and diversity. By the end of this course, through lecture and laboratory exercises, students should have an understanding of the basic components of cells, how cells and organisms transfer genetic information to future generations, how communication is integral to cellular and organismal function, and how cells and organisms generate and process energy to drive physiological functions. In addition, students will continue to improve skills for scientific inquiry through activities designed to increase familiarity with the scientific literature and science terminology, improve skills to design and critically analyze experiments, foster ability to work with a scientific team, and provide opportunities to improve scientific writing. Any one topic covered in this course has enough material for a course of its own. However, this course will give basic overview of a series of selected topics that are meant to introduce students to the vast field of cellular and organismal biology and the use of biological science in life. Prerequisite: c- or above in BIOL 207 or a C- in any BIOL 100 level course.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
6:00 pm |
||||||
Subject: Biology (BIOL)
CRN: 20763
Blended Online & In-Person | Lab
St Paul: Owens Science Hall 378
Instructor: TBD
The purpose of this course is to introduce the structure and function of cells, and how structure and function drives organismal physiology and diversity. By the end of this course, through lecture and laboratory exercises, students should have an understanding of the basic components of cells, how cells and organisms transfer genetic information to future generations, how communication is integral to cellular and organismal function, and how cells and organisms generate and process energy to drive physiological functions. In addition, students will continue to improve skills for scientific inquiry through activities designed to increase familiarity with the scientific literature and science terminology, improve skills to design and critically analyze experiments, foster ability to work with a scientific team, and provide opportunities to improve scientific writing. Any one topic covered in this course has enough material for a course of its own. However, this course will give basic overview of a series of selected topics that are meant to introduce students to the vast field of cellular and organismal biology and the use of biological science in life. Prerequisite: c- or above in BIOL 207 or a C- in any BIOL 100 level course.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
||||||
Subject: Biology (BIOL)
CRN: 20764
Blended Online & In-Person | Lab
St Paul: Owens Science Hall 378
The purpose of this course is to introduce the structure and function of cells, and how structure and function drives organismal physiology and diversity. By the end of this course, through lecture and laboratory exercises, students should have an understanding of the basic components of cells, how cells and organisms transfer genetic information to future generations, how communication is integral to cellular and organismal function, and how cells and organisms generate and process energy to drive physiological functions. In addition, students will continue to improve skills for scientific inquiry through activities designed to increase familiarity with the scientific literature and science terminology, improve skills to design and critically analyze experiments, foster ability to work with a scientific team, and provide opportunities to improve scientific writing. Any one topic covered in this course has enough material for a course of its own. However, this course will give basic overview of a series of selected topics that are meant to introduce students to the vast field of cellular and organismal biology and the use of biological science in life. Prerequisite: c- or above in BIOL 207 or a C- in any BIOL 100 level course.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
6:00 pm |
||||||
Subject: Biology (BIOL)
CRN: 20765
Blended Online & In-Person | Lab
St Paul: Owens Science Hall 378
Instructor: TBD
The purpose of this course is to introduce the structure and function of cells, and how structure and function drives organismal physiology and diversity. By the end of this course, through lecture and laboratory exercises, students should have an understanding of the basic components of cells, how cells and organisms transfer genetic information to future generations, how communication is integral to cellular and organismal function, and how cells and organisms generate and process energy to drive physiological functions. In addition, students will continue to improve skills for scientific inquiry through activities designed to increase familiarity with the scientific literature and science terminology, improve skills to design and critically analyze experiments, foster ability to work with a scientific team, and provide opportunities to improve scientific writing. Any one topic covered in this course has enough material for a course of its own. However, this course will give basic overview of a series of selected topics that are meant to introduce students to the vast field of cellular and organismal biology and the use of biological science in life. Prerequisite: c- or above in BIOL 207 or a C- in any BIOL 100 level course.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:00 am |
||||||
Subject: Biology (BIOL)
CRN: 20766
Blended Online & In-Person | Lab
St Paul: Owens Science Hall 378
Instructor: TBD
The purpose of this course is to introduce the structure and function of cells, and how structure and function drives organismal physiology and diversity. By the end of this course, through lecture and laboratory exercises, students should have an understanding of the basic components of cells, how cells and organisms transfer genetic information to future generations, how communication is integral to cellular and organismal function, and how cells and organisms generate and process energy to drive physiological functions. In addition, students will continue to improve skills for scientific inquiry through activities designed to increase familiarity with the scientific literature and science terminology, improve skills to design and critically analyze experiments, foster ability to work with a scientific team, and provide opportunities to improve scientific writing. Any one topic covered in this course has enough material for a course of its own. However, this course will give basic overview of a series of selected topics that are meant to introduce students to the vast field of cellular and organismal biology and the use of biological science in life. Prerequisite: c- or above in BIOL 207 or a C- in any BIOL 100 level course.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:00 pm |
||||||
Subject: Biology (BIOL)
CRN: 20767
Blended Online & In-Person | Lab
St Paul: Owens Science Hall 378
The purpose of this course is to introduce the structure and function of cells, and how structure and function drives organismal physiology and diversity. By the end of this course, through lecture and laboratory exercises, students should have an understanding of the basic components of cells, how cells and organisms transfer genetic information to future generations, how communication is integral to cellular and organismal function, and how cells and organisms generate and process energy to drive physiological functions. In addition, students will continue to improve skills for scientific inquiry through activities designed to increase familiarity with the scientific literature and science terminology, improve skills to design and critically analyze experiments, foster ability to work with a scientific team, and provide opportunities to improve scientific writing. Any one topic covered in this course has enough material for a course of its own. However, this course will give basic overview of a series of selected topics that are meant to introduce students to the vast field of cellular and organismal biology and the use of biological science in life. Prerequisite: c- or above in BIOL 207 or a C- in any BIOL 100 level course.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:55 am |
9:55 am |
|||||
Subject: Biology (BIOL)
CRN: 20769
Online: Sync Distributed | Lecture
Online
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
Environmental Sci. Major Appr
Sustainability (SUST)
Instructor: TBD
Influences of humans on the global environment have reached unprecedented levels, increasing the need for society to strive to live in a sustainable manner. Many issues facing the environment have a biological basis. Thus, an understanding of basic biology is necessary to understand and address many environmental issues. This course will cover the fundamental biology involved with five environmental issues at the global scale: climate change, excessive nutrient loading into ecosystems, agricultural production, chemical contaminants, and loss of biodiversity. Specific biological principles to be covered include energy and nutrient mass balance by organisms and ecosystems, homeostasis and organismal physiology, and population dynamics and conservation biology. Prerequisite: Completion of BIOL 207 or BIOL 208 or any 100 level GEOL or CHEM 112 or CHEM 115 or permission of the instructor.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:00 am |
8:00 am |
|||||
Subject: Biology (BIOL)
CRN: 20770
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
Environmental Sci. Major Appr
Sustainability (SUST)
Instructor: TBD
Influences of humans on the global environment have reached unprecedented levels, increasing the need for society to strive to live in a sustainable manner. Many issues facing the environment have a biological basis. Thus, an understanding of basic biology is necessary to understand and address many environmental issues. This course will cover the fundamental biology involved with five environmental issues at the global scale: climate change, excessive nutrient loading into ecosystems, agricultural production, chemical contaminants, and loss of biodiversity. Specific biological principles to be covered include energy and nutrient mass balance by organisms and ecosystems, homeostasis and organismal physiology, and population dynamics and conservation biology. Prerequisite: Completion of BIOL 207 or BIOL 208 or any 100 level GEOL or CHEM 112 or CHEM 115 or permission of the instructor.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:15 am |
8:15 am |
8:15 am |
||||
Subject: Biology (BIOL)
CRN: 20771
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
Environmental Sci. Major Appr
Sustainability (SUST)
Instructor: TBD
Influences of humans on the global environment have reached unprecedented levels, increasing the need for society to strive to live in a sustainable manner. Many issues facing the environment have a biological basis. Thus, an understanding of basic biology is necessary to understand and address many environmental issues. This course will cover the fundamental biology involved with five environmental issues at the global scale: climate change, excessive nutrient loading into ecosystems, agricultural production, chemical contaminants, and loss of biodiversity. Specific biological principles to be covered include energy and nutrient mass balance by organisms and ecosystems, homeostasis and organismal physiology, and population dynamics and conservation biology. Prerequisite: Completion of BIOL 207 or BIOL 208 or any 100 level GEOL or CHEM 112 or CHEM 115 or permission of the instructor.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
10:55 am |
10:55 am |
10:55 am |
||||
Subject: Biology (BIOL)
CRN: 20772
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
Environmental Sci. Major Appr
Sustainability (SUST)
Instructor: TBD
Influences of humans on the global environment have reached unprecedented levels, increasing the need for society to strive to live in a sustainable manner. Many issues facing the environment have a biological basis. Thus, an understanding of basic biology is necessary to understand and address many environmental issues. This course will cover the fundamental biology involved with five environmental issues at the global scale: climate change, excessive nutrient loading into ecosystems, agricultural production, chemical contaminants, and loss of biodiversity. Specific biological principles to be covered include energy and nutrient mass balance by organisms and ecosystems, homeostasis and organismal physiology, and population dynamics and conservation biology. Prerequisite: Completion of BIOL 207 or BIOL 208 or any 100 level GEOL or CHEM 112 or CHEM 115 or permission of the instructor.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:35 am |
9:35 am |
9:35 am |
||||
Subject: Biology (BIOL)
CRN: 20773
In Person | Lecture
St Paul: In Person
Requirements Met:
Biology Lab Elective
Instructor: TBD
This interdisciplinary course focuses on infectious pathogens of humans, including their genetics, physiology, host pathogenicity, evolution and epidemiology. Major pathogens of concern for clinicians and healthcare workers are surveyed. Impacts of infectious diseases on society will also be explored. This introductory course is designed to serve students from biology and non-biology majors interested in entering the health professions, including nursing, physician assistant, medical or veterinary school, dental-related professions, etc. Lab consists of acquiring foundational skills necessary to understand how we study human pathogens from the molecular through ecosystem level. Three laboratory hours per week. Students may not receive credit for both BIOL 256 and BIOL 356. Prerequisites: C- or better in CHEM 100 or CHEM 108 or CHEM 111 or CHEM 112 or CHEM 115, AND C- or better in BIOL 101 or BIOL 105 or BIOL 207; declared major in nursing or nutrition or permission of instructor
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
| + asynchronous coursework | ||||||
Subject: Biology (BIOL)
CRN: 20774
Online: Asynchronous | Lecture
Online
Requirements Met:
Biology Lab Elective
This interdisciplinary course focuses on infectious pathogens of humans, including their genetics, physiology, host pathogenicity, evolution and epidemiology. Major pathogens of concern for clinicians and healthcare workers are surveyed. Impacts of infectious diseases on society will also be explored. This introductory course is designed to serve students from biology and non-biology majors interested in entering the health professions, including nursing, physician assistant, medical or veterinary school, dental-related professions, etc. Lab consists of acquiring foundational skills necessary to understand how we study human pathogens from the molecular through ecosystem level. Three laboratory hours per week. Students may not receive credit for both BIOL 256 and BIOL 356. Prerequisites: C- or better in CHEM 100 or CHEM 108 or CHEM 111 or CHEM 112 or CHEM 115, AND C- or better in BIOL 101 or BIOL 105 or BIOL 207; declared major in nursing or nutrition or permission of instructor
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:00 am |
8:00 am |
|||||
Subject: Biology (BIOL)
CRN: 20775
In Person | Lecture
St Paul: In Person
Requirements Met:
Biology Lab Elective
This interdisciplinary course focuses on infectious pathogens of humans, including their genetics, physiology, host pathogenicity, evolution and epidemiology. Major pathogens of concern for clinicians and healthcare workers are surveyed. Impacts of infectious diseases on society will also be explored. This introductory course is designed to serve students from biology and non-biology majors interested in entering the health professions, including nursing, physician assistant, medical or veterinary school, dental-related professions, etc. Lab consists of acquiring foundational skills necessary to understand how we study human pathogens from the molecular through ecosystem level. Three laboratory hours per week. Students may not receive credit for both BIOL 256 and BIOL 356. Prerequisites: C- or better in CHEM 100 or CHEM 108 or CHEM 111 or CHEM 112 or CHEM 115, AND C- or better in BIOL 101 or BIOL 105 or BIOL 207; declared major in nursing or nutrition or permission of instructor
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:15 am |
8:15 am |
8:15 am |
||||
Subject: Biology (BIOL)
CRN: 20776
In Person | Lecture
St Paul: In Person
Requirements Met:
Biology Lab Elective
Instructor: TBD
This interdisciplinary course focuses on infectious pathogens of humans, including their genetics, physiology, host pathogenicity, evolution and epidemiology. Major pathogens of concern for clinicians and healthcare workers are surveyed. Impacts of infectious diseases on society will also be explored. This introductory course is designed to serve students from biology and non-biology majors interested in entering the health professions, including nursing, physician assistant, medical or veterinary school, dental-related professions, etc. Lab consists of acquiring foundational skills necessary to understand how we study human pathogens from the molecular through ecosystem level. Three laboratory hours per week. Students may not receive credit for both BIOL 256 and BIOL 356. Prerequisites: C- or better in CHEM 100 or CHEM 108 or CHEM 111 or CHEM 112 or CHEM 115, AND C- or better in BIOL 101 or BIOL 105 or BIOL 207; declared major in nursing or nutrition or permission of instructor
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:55 am |
9:55 am |
|||||
Subject: Biology (BIOL)
CRN: 20777
In Person | Lecture
St Paul: In Person
Requirements Met:
Biology Lab Elective
This interdisciplinary course focuses on infectious pathogens of humans, including their genetics, physiology, host pathogenicity, evolution and epidemiology. Major pathogens of concern for clinicians and healthcare workers are surveyed. Impacts of infectious diseases on society will also be explored. This introductory course is designed to serve students from biology and non-biology majors interested in entering the health professions, including nursing, physician assistant, medical or veterinary school, dental-related professions, etc. Lab consists of acquiring foundational skills necessary to understand how we study human pathogens from the molecular through ecosystem level. Three laboratory hours per week. Students may not receive credit for both BIOL 256 and BIOL 356. Prerequisites: C- or better in CHEM 100 or CHEM 108 or CHEM 111 or CHEM 112 or CHEM 115, AND C- or better in BIOL 101 or BIOL 105 or BIOL 207; declared major in nursing or nutrition or permission of instructor
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
||||||
Subject: Biology (BIOL)
CRN: 20778
In Person | Lab
St Paul: Owens Science Hall 266
Requirements Met:
Biology Lab Elective
This interdisciplinary course focuses on infectious pathogens of humans, including their genetics, physiology, host pathogenicity, evolution and epidemiology. Major pathogens of concern for clinicians and healthcare workers are surveyed. Impacts of infectious diseases on society will also be explored. This introductory course is designed to serve students from biology and non-biology majors interested in entering the health professions, including nursing, physician assistant, medical or veterinary school, dental-related professions, etc. Lab consists of acquiring foundational skills necessary to understand how we study human pathogens from the molecular through ecosystem level. Three laboratory hours per week. Students may not receive credit for both BIOL 256 and BIOL 356. Prerequisites: C- or better in CHEM 100 or CHEM 108 or CHEM 111 or CHEM 112 or CHEM 115, AND C- or better in BIOL 101 or BIOL 105 or BIOL 207; declared major in nursing or nutrition or permission of instructor
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
6:00 pm |
||||||
Subject: Biology (BIOL)
CRN: 20779
In Person | Lab
St Paul: Owens Science Hall 266
Requirements Met:
Biology Lab Elective
This interdisciplinary course focuses on infectious pathogens of humans, including their genetics, physiology, host pathogenicity, evolution and epidemiology. Major pathogens of concern for clinicians and healthcare workers are surveyed. Impacts of infectious diseases on society will also be explored. This introductory course is designed to serve students from biology and non-biology majors interested in entering the health professions, including nursing, physician assistant, medical or veterinary school, dental-related professions, etc. Lab consists of acquiring foundational skills necessary to understand how we study human pathogens from the molecular through ecosystem level. Three laboratory hours per week. Students may not receive credit for both BIOL 256 and BIOL 356. Prerequisites: C- or better in CHEM 100 or CHEM 108 or CHEM 111 or CHEM 112 or CHEM 115, AND C- or better in BIOL 101 or BIOL 105 or BIOL 207; declared major in nursing or nutrition or permission of instructor
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:00 am |
||||||
Subject: Biology (BIOL)
CRN: 20780
In Person | Lab
St Paul: Owens Science Hall 266
Requirements Met:
Biology Lab Elective
This interdisciplinary course focuses on infectious pathogens of humans, including their genetics, physiology, host pathogenicity, evolution and epidemiology. Major pathogens of concern for clinicians and healthcare workers are surveyed. Impacts of infectious diseases on society will also be explored. This introductory course is designed to serve students from biology and non-biology majors interested in entering the health professions, including nursing, physician assistant, medical or veterinary school, dental-related professions, etc. Lab consists of acquiring foundational skills necessary to understand how we study human pathogens from the molecular through ecosystem level. Three laboratory hours per week. Students may not receive credit for both BIOL 256 and BIOL 356. Prerequisites: C- or better in CHEM 100 or CHEM 108 or CHEM 111 or CHEM 112 or CHEM 115, AND C- or better in BIOL 101 or BIOL 105 or BIOL 207; declared major in nursing or nutrition or permission of instructor
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
Subject: Biology (BIOL)
CRN: 20781
In Person | Lab
St Paul: Owens Science Hall 266
Requirements Met:
Biology Lab Elective
Instructor: TBD
This interdisciplinary course focuses on infectious pathogens of humans, including their genetics, physiology, host pathogenicity, evolution and epidemiology. Major pathogens of concern for clinicians and healthcare workers are surveyed. Impacts of infectious diseases on society will also be explored. This introductory course is designed to serve students from biology and non-biology majors interested in entering the health professions, including nursing, physician assistant, medical or veterinary school, dental-related professions, etc. Lab consists of acquiring foundational skills necessary to understand how we study human pathogens from the molecular through ecosystem level. Three laboratory hours per week. Students may not receive credit for both BIOL 256 and BIOL 356. Prerequisites: C- or better in CHEM 100 or CHEM 108 or CHEM 111 or CHEM 112 or CHEM 115, AND C- or better in BIOL 101 or BIOL 105 or BIOL 207; declared major in nursing or nutrition or permission of instructor
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
6:00 pm |
||||||
Subject: Biology (BIOL)
CRN: 20782
In Person | Lab
St Paul: Owens Science Hall 266
Requirements Met:
Biology Lab Elective
Instructor: TBD
This interdisciplinary course focuses on infectious pathogens of humans, including their genetics, physiology, host pathogenicity, evolution and epidemiology. Major pathogens of concern for clinicians and healthcare workers are surveyed. Impacts of infectious diseases on society will also be explored. This introductory course is designed to serve students from biology and non-biology majors interested in entering the health professions, including nursing, physician assistant, medical or veterinary school, dental-related professions, etc. Lab consists of acquiring foundational skills necessary to understand how we study human pathogens from the molecular through ecosystem level. Three laboratory hours per week. Students may not receive credit for both BIOL 256 and BIOL 356. Prerequisites: C- or better in CHEM 100 or CHEM 108 or CHEM 111 or CHEM 112 or CHEM 115, AND C- or better in BIOL 101 or BIOL 105 or BIOL 207; declared major in nursing or nutrition or permission of instructor
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
||||||
Subject: Biology (BIOL)
CRN: 20783
In Person | Lab
St Paul: Owens Science Hall 266
Requirements Met:
Biology Lab Elective
Instructor: TBD
This interdisciplinary course focuses on infectious pathogens of humans, including their genetics, physiology, host pathogenicity, evolution and epidemiology. Major pathogens of concern for clinicians and healthcare workers are surveyed. Impacts of infectious diseases on society will also be explored. This introductory course is designed to serve students from biology and non-biology majors interested in entering the health professions, including nursing, physician assistant, medical or veterinary school, dental-related professions, etc. Lab consists of acquiring foundational skills necessary to understand how we study human pathogens from the molecular through ecosystem level. Three laboratory hours per week. Students may not receive credit for both BIOL 256 and BIOL 356. Prerequisites: C- or better in CHEM 100 or CHEM 108 or CHEM 111 or CHEM 112 or CHEM 115, AND C- or better in BIOL 101 or BIOL 105 or BIOL 207; declared major in nursing or nutrition or permission of instructor
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
6:00 pm |
||||||
Subject: Biology (BIOL)
CRN: 20784
In Person | Lab
St Paul: Owens Science Hall 266
Requirements Met:
Biology Lab Elective
Instructor: TBD
This interdisciplinary course focuses on infectious pathogens of humans, including their genetics, physiology, host pathogenicity, evolution and epidemiology. Major pathogens of concern for clinicians and healthcare workers are surveyed. Impacts of infectious diseases on society will also be explored. This introductory course is designed to serve students from biology and non-biology majors interested in entering the health professions, including nursing, physician assistant, medical or veterinary school, dental-related professions, etc. Lab consists of acquiring foundational skills necessary to understand how we study human pathogens from the molecular through ecosystem level. Three laboratory hours per week. Students may not receive credit for both BIOL 256 and BIOL 356. Prerequisites: C- or better in CHEM 100 or CHEM 108 or CHEM 111 or CHEM 112 or CHEM 115, AND C- or better in BIOL 101 or BIOL 105 or BIOL 207; declared major in nursing or nutrition or permission of instructor
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:00 am |
||||||
Subject: Biology (BIOL)
CRN: 20785
In Person | Lab
St Paul: Owens Science Hall 266
Requirements Met:
Biology Lab Elective
This interdisciplinary course focuses on infectious pathogens of humans, including their genetics, physiology, host pathogenicity, evolution and epidemiology. Major pathogens of concern for clinicians and healthcare workers are surveyed. Impacts of infectious diseases on society will also be explored. This introductory course is designed to serve students from biology and non-biology majors interested in entering the health professions, including nursing, physician assistant, medical or veterinary school, dental-related professions, etc. Lab consists of acquiring foundational skills necessary to understand how we study human pathogens from the molecular through ecosystem level. Three laboratory hours per week. Students may not receive credit for both BIOL 256 and BIOL 356. Prerequisites: C- or better in CHEM 100 or CHEM 108 or CHEM 111 or CHEM 112 or CHEM 115, AND C- or better in BIOL 101 or BIOL 105 or BIOL 207; declared major in nursing or nutrition or permission of instructor
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
Subject: Biology (BIOL)
CRN: 20786
In Person | Lab
St Paul: Owens Science Hall 266
Requirements Met:
Biology Lab Elective
Instructor: TBD
This interdisciplinary course focuses on infectious pathogens of humans, including their genetics, physiology, host pathogenicity, evolution and epidemiology. Major pathogens of concern for clinicians and healthcare workers are surveyed. Impacts of infectious diseases on society will also be explored. This introductory course is designed to serve students from biology and non-biology majors interested in entering the health professions, including nursing, physician assistant, medical or veterinary school, dental-related professions, etc. Lab consists of acquiring foundational skills necessary to understand how we study human pathogens from the molecular through ecosystem level. Three laboratory hours per week. Students may not receive credit for both BIOL 256 and BIOL 356. Prerequisites: C- or better in CHEM 100 or CHEM 108 or CHEM 111 or CHEM 112 or CHEM 115, AND C- or better in BIOL 101 or BIOL 105 or BIOL 207; declared major in nursing or nutrition or permission of instructor
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
6:00 pm |
||||||
Subject: Biology (BIOL)
CRN: 20787
In Person | Lab
St Paul: Owens Science Hall 266
Requirements Met:
Biology Lab Elective
Instructor: TBD
This interdisciplinary course focuses on infectious pathogens of humans, including their genetics, physiology, host pathogenicity, evolution and epidemiology. Major pathogens of concern for clinicians and healthcare workers are surveyed. Impacts of infectious diseases on society will also be explored. This introductory course is designed to serve students from biology and non-biology majors interested in entering the health professions, including nursing, physician assistant, medical or veterinary school, dental-related professions, etc. Lab consists of acquiring foundational skills necessary to understand how we study human pathogens from the molecular through ecosystem level. Three laboratory hours per week. Students may not receive credit for both BIOL 256 and BIOL 356. Prerequisites: C- or better in CHEM 100 or CHEM 108 or CHEM 111 or CHEM 112 or CHEM 115, AND C- or better in BIOL 101 or BIOL 105 or BIOL 207; declared major in nursing or nutrition or permission of instructor
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:00 am |
||||||
Subject: Biology (BIOL)
CRN: 20788
In Person | Lab
St Paul: Owens Science Hall 266
Requirements Met:
Biology Lab Elective
Instructor: TBD
This interdisciplinary course focuses on infectious pathogens of humans, including their genetics, physiology, host pathogenicity, evolution and epidemiology. Major pathogens of concern for clinicians and healthcare workers are surveyed. Impacts of infectious diseases on society will also be explored. This introductory course is designed to serve students from biology and non-biology majors interested in entering the health professions, including nursing, physician assistant, medical or veterinary school, dental-related professions, etc. Lab consists of acquiring foundational skills necessary to understand how we study human pathogens from the molecular through ecosystem level. Three laboratory hours per week. Students may not receive credit for both BIOL 256 and BIOL 356. Prerequisites: C- or better in CHEM 100 or CHEM 108 or CHEM 111 or CHEM 112 or CHEM 115, AND C- or better in BIOL 101 or BIOL 105 or BIOL 207; declared major in nursing or nutrition or permission of instructor
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:35 am |
9:35 am |
9:35 am |
||||
Subject: Biology (BIOL)
CRN: 20789
In Person | Lecture
St Paul: In Person
While discussions of gender and its social construction have become common in our culture, there is less discussion of whether there are actually binary “biological sexes” that impact those conversations. In addition, while we have made many inclusive efforts in understanding the LGBTQIA+ community, our larger society correlates sexual orientation to biology leaving us to ask: are queer folks born that way and does it stay fixed throughout our lives? This course explores the convergence of sociology and biology in how we define gender, sex, sexual orientation, and sexual behavior as continua instead of binaries as once previously believed. Topics are examined in developmental order from conception to adulthood and include current issues relevant to the LGBTQIA+ community and society at-large. The course also considers these topics in non-human animals to ask ‘what is normal?’ in nature. This will be a BIOL - SOCI crosslisted course.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:35 am |
9:35 am |
9:35 am |
||||
Subject: Biology (BIOL)
CRN: 20790
In Person | Lecture
St Paul: In Person
Requirements Met:
Biology Lab Elective
School of Ed Transfer Course
This course explores the biology of plants from the perspective of our use of plants as a source of food and medicine. Major topics include the overall structure and function of plants, the diversity of plants, and the role of plants as a food source, as well as a source of medicine. Four laboratory hours per week. Prerequisite: BIOL 208, and a minimum grade of C- in BIOL 209. Credit will not be given for both this course and BIOL 316.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
||||||
Subject: Biology (BIOL)
CRN: 20791
In Person | Lab
St Paul: Owens Science Hall 379
Requirements Met:
Biology Lab Elective
School of Ed Transfer Course
This course explores the biology of plants from the perspective of our use of plants as a source of food and medicine. Major topics include the overall structure and function of plants, the diversity of plants, and the role of plants as a food source, as well as a source of medicine. Four laboratory hours per week. Prerequisite: BIOL 208, and a minimum grade of C- in BIOL 209. Credit will not be given for both this course and BIOL 316.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
Subject: Biology (BIOL)
CRN: 20792
In Person | Lab
St Paul: Owens Science Hall 379
Requirements Met:
Biology Lab Elective
School of Ed Transfer Course
This course explores the biology of plants from the perspective of our use of plants as a source of food and medicine. Major topics include the overall structure and function of plants, the diversity of plants, and the role of plants as a food source, as well as a source of medicine. Four laboratory hours per week. Prerequisite: BIOL 208, and a minimum grade of C- in BIOL 209. Credit will not be given for both this course and BIOL 316.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:55 am |
9:55 am |
|||||
Subject: Biology (BIOL)
CRN: 20793
In Person | Lecture
St Paul: In Person
Requirements Met:
Biology Lab Elective
Sustainability (SUST)
[Core] Signature Work
There is increasing public interest and concern over the connections between environmental quality and human health. This course will explore these connections by providing an introduction to the multidisciplinary field of environmental toxicology- the study of the adverse effects of chemical, biological, and physical agents in the environment on living organisms, including humans. Topics will cover global and local problems including issues of environmental justice and future approaches to sustainably mitigate the major environmental health problems in industrialized and developing countries. Four laboratory hours per week. Prerequisite: (BIOL 101 OR 102 OR 105 OR 207, BIOL 208 and a minimum grade of C- in BIOL 209) OR ESCI 310 OR PUBH 300 OR Completion or co-enrollment in ENGR 368 OR Completion or co-enrollment in ENGR 361 OR Completion or co-enrollment in CISC 260 OR CISC 360 OR DASC 240 OR STAT 333 OR ECON 315 OR Permission of the instructor plus 80 completed credits.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
Subject: Biology (BIOL)
CRN: 20794
Blended Online & In-Person | Lab
St Paul: Owens Science Hall 379
Requirements Met:
Biology Lab Elective
Sustainability (SUST)
[Core] Signature Work
Instructor: TBD
There is increasing public interest and concern over the connections between environmental quality and human health. This course will explore these connections by providing an introduction to the multidisciplinary field of environmental toxicology- the study of the adverse effects of chemical, biological, and physical agents in the environment on living organisms, including humans. Topics will cover global and local problems including issues of environmental justice and future approaches to sustainably mitigate the major environmental health problems in industrialized and developing countries. Four laboratory hours per week. Prerequisite: (BIOL 101 OR 102 OR 105 OR 207, BIOL 208 and a minimum grade of C- in BIOL 209) OR ESCI 310 OR PUBH 300 OR Completion or co-enrollment in ENGR 368 OR Completion or co-enrollment in ENGR 361 OR Completion or co-enrollment in CISC 260 OR CISC 360 OR DASC 240 OR STAT 333 OR ECON 315 OR Permission of the instructor plus 80 completed credits.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
Subject: Biology (BIOL)
CRN: 20795
Blended Online & In-Person | Lab
St Paul: Owens Science Hall 379
Requirements Met:
Biology Lab Elective
Sustainability (SUST)
[Core] Signature Work
Instructor: TBD
There is increasing public interest and concern over the connections between environmental quality and human health. This course will explore these connections by providing an introduction to the multidisciplinary field of environmental toxicology- the study of the adverse effects of chemical, biological, and physical agents in the environment on living organisms, including humans. Topics will cover global and local problems including issues of environmental justice and future approaches to sustainably mitigate the major environmental health problems in industrialized and developing countries. Four laboratory hours per week. Prerequisite: (BIOL 101 OR 102 OR 105 OR 207, BIOL 208 and a minimum grade of C- in BIOL 209) OR ESCI 310 OR PUBH 300 OR Completion or co-enrollment in ENGR 368 OR Completion or co-enrollment in ENGR 361 OR Completion or co-enrollment in CISC 260 OR CISC 360 OR DASC 240 OR STAT 333 OR ECON 315 OR Permission of the instructor plus 80 completed credits.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
Subject: Biology (BIOL)
CRN: 20796
Blended Online & In-Person | Lab
St Paul: Owens Science Hall 379
Requirements Met:
Biology Lab Elective
Sustainability (SUST)
[Core] Signature Work
Instructor: TBD
There is increasing public interest and concern over the connections between environmental quality and human health. This course will explore these connections by providing an introduction to the multidisciplinary field of environmental toxicology- the study of the adverse effects of chemical, biological, and physical agents in the environment on living organisms, including humans. Topics will cover global and local problems including issues of environmental justice and future approaches to sustainably mitigate the major environmental health problems in industrialized and developing countries. Four laboratory hours per week. Prerequisite: (BIOL 101 OR 102 OR 105 OR 207, BIOL 208 and a minimum grade of C- in BIOL 209) OR ESCI 310 OR PUBH 300 OR Completion or co-enrollment in ENGR 368 OR Completion or co-enrollment in ENGR 361 OR Completion or co-enrollment in CISC 260 OR CISC 360 OR DASC 240 OR STAT 333 OR ECON 315 OR Permission of the instructor plus 80 completed credits.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
10:55 am |
10:55 am |
10:55 am |
||||
Subject: Biology (BIOL)
CRN: 20798
In Person | Lecture
St Paul: In Person
Requirements Met:
Biology Lab Elective
School of Ed Transfer Course
Sustainability (SUST)
This course is an exploration of the major concepts in modern ecology, including eco-physiology and adaptation, population growth and regulation, community and ecosystem ecology, and biodiversity and conservation biology. Laboratory and fieldwork will complement these topics and will emphasize careful experimental design and statistical analysis of data. Four laboratory hours per week. Prerequisite: BIOL 101 or 102 or 207, or ESCI 310 and a minimum grade of C- in BIOL 209. DASC 120 or MATH 303 recommended.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
12:15 pm |
||||||
Subject: Biology (BIOL)
CRN: 20799
In Person | Lab
St Paul: Owens Science Hall 268
Requirements Met:
Biology Lab Elective
School of Ed Transfer Course
Sustainability (SUST)
This course is an exploration of the major concepts in modern ecology, including eco-physiology and adaptation, population growth and regulation, community and ecosystem ecology, and biodiversity and conservation biology. Laboratory and fieldwork will complement these topics and will emphasize careful experimental design and statistical analysis of data. Four laboratory hours per week. Prerequisite: BIOL 101 or 102 or 207, or ESCI 310 and a minimum grade of C- in BIOL 209. DASC 120 or MATH 303 recommended.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
Subject: Biology (BIOL)
CRN: 20800
In Person | Lab
St Paul: Owens Science Hall 268
Requirements Met:
Biology Lab Elective
School of Ed Transfer Course
Sustainability (SUST)
This course is an exploration of the major concepts in modern ecology, including eco-physiology and adaptation, population growth and regulation, community and ecosystem ecology, and biodiversity and conservation biology. Laboratory and fieldwork will complement these topics and will emphasize careful experimental design and statistical analysis of data. Four laboratory hours per week. Prerequisite: BIOL 101 or 102 or 207, or ESCI 310 and a minimum grade of C- in BIOL 209. DASC 120 or MATH 303 recommended.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
12:15 pm |
||||||
Subject: Biology (BIOL)
CRN: 20801
In Person | Lab
St Paul: Owens Science Hall 268
Requirements Met:
Biology Lab Elective
School of Ed Transfer Course
Sustainability (SUST)
This course is an exploration of the major concepts in modern ecology, including eco-physiology and adaptation, population growth and regulation, community and ecosystem ecology, and biodiversity and conservation biology. Laboratory and fieldwork will complement these topics and will emphasize careful experimental design and statistical analysis of data. Four laboratory hours per week. Prerequisite: BIOL 101 or 102 or 207, or ESCI 310 and a minimum grade of C- in BIOL 209. DASC 120 or MATH 303 recommended.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:15 am |
8:15 am |
8:15 am |
||||
Subject: Biology (BIOL)
CRN: 20802
In Person | Lecture
St Paul: In Person
Instructor: TBD
Principles of Biochemistry examines the chemistry underlying biological phenomena and emphasizes the importance of biochemistry in fields ranging from agriculture to medicine. Major topics include the structure and function of biological molecules; the critical role of enzymes; the generation, storage and regulation of metabolic energy. Prerequisites: CHEM 201, AND a minimum grade of C- in BIOL 208 and 209. For all life science majors besides biochemistry, students may not take CHEM440 in addition to this course and receive BIOL credit for CHEM440. For biochemistry majors, this course does not fulfill a BIOL3XX requirement.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
1:30 pm |
|||||
Subject: Biology (BIOL)
CRN: 20803
In Person | Lecture
St Paul: In Person
Requirements Met:
Biology Lab Elective
School of Ed Transfer Course
This course includes an examination of the functional morphology of the vertebrate endocrine, cardiovascular, respiratory, renal, digestive and reproductive systems, including control and integration of organ systems, as well as adaptation to the environment and evolutionary history. Laboratory work will emphasize functional comparisons of vertebrate organ systems and an experimental approach to physiological problems. Four laboratory hours per week. This course may be taken as a part of a two-semester sequence with BIOL 349 or may be taken alone. Prerequisite: BIOL 207, BIOL 208 and a minimum grad of C- in BIOL 209.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
| + asynchronous coursework | ||||||
Subject: Biology (BIOL)
CRN: 20804
Online: Asynchronous | Lecture
Online
Requirements Met:
Biology Lab Elective
School of Ed Transfer Course
Instructor: TBD
This course includes an examination of the functional morphology of the vertebrate endocrine, cardiovascular, respiratory, renal, digestive and reproductive systems, including control and integration of organ systems, as well as adaptation to the environment and evolutionary history. Laboratory work will emphasize functional comparisons of vertebrate organ systems and an experimental approach to physiological problems. Four laboratory hours per week. This course may be taken as a part of a two-semester sequence with BIOL 349 or may be taken alone. Prerequisite: BIOL 207, BIOL 208 and a minimum grad of C- in BIOL 209.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
3:30 pm |
||||||
| + asynchronous coursework | ||||||
Subject: Biology (BIOL)
CRN: 20805
Blended Online & In-Person | Lab
St Paul: Owens Science Hall 380
Online
Requirements Met:
Biology Lab Elective
School of Ed Transfer Course
This course includes an examination of the functional morphology of the vertebrate endocrine, cardiovascular, respiratory, renal, digestive and reproductive systems, including control and integration of organ systems, as well as adaptation to the environment and evolutionary history. Laboratory work will emphasize functional comparisons of vertebrate organ systems and an experimental approach to physiological problems. Four laboratory hours per week. This course may be taken as a part of a two-semester sequence with BIOL 349 or may be taken alone. Prerequisite: BIOL 207, BIOL 208 and a minimum grad of C- in BIOL 209.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
5:35 pm |
||||||
| + asynchronous coursework | ||||||
Subject: Biology (BIOL)
CRN: 20806
Blended Online & In-Person | Lab
St Paul: Owens Science Hall 380
Online
Requirements Met:
Biology Lab Elective
School of Ed Transfer Course
This course includes an examination of the functional morphology of the vertebrate endocrine, cardiovascular, respiratory, renal, digestive and reproductive systems, including control and integration of organ systems, as well as adaptation to the environment and evolutionary history. Laboratory work will emphasize functional comparisons of vertebrate organ systems and an experimental approach to physiological problems. Four laboratory hours per week. This course may be taken as a part of a two-semester sequence with BIOL 349 or may be taken alone. Prerequisite: BIOL 207, BIOL 208 and a minimum grad of C- in BIOL 209.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
| + asynchronous coursework | ||||||
Subject: Biology (BIOL)
CRN: 20807
Blended Online & In-Person | Lab
St Paul: Owens Science Hall 380
Online
Requirements Met:
Biology Lab Elective
School of Ed Transfer Course
This course includes an examination of the functional morphology of the vertebrate endocrine, cardiovascular, respiratory, renal, digestive and reproductive systems, including control and integration of organ systems, as well as adaptation to the environment and evolutionary history. Laboratory work will emphasize functional comparisons of vertebrate organ systems and an experimental approach to physiological problems. Four laboratory hours per week. This course may be taken as a part of a two-semester sequence with BIOL 349 or may be taken alone. Prerequisite: BIOL 207, BIOL 208 and a minimum grad of C- in BIOL 209.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
3:35 pm |
||||||
| + asynchronous coursework | ||||||
Subject: Biology (BIOL)
CRN: 20808
Blended Online & In-Person | Lab
St Paul: Owens Science Hall 380
Online
Requirements Met:
Biology Lab Elective
School of Ed Transfer Course
This course includes an examination of the functional morphology of the vertebrate endocrine, cardiovascular, respiratory, renal, digestive and reproductive systems, including control and integration of organ systems, as well as adaptation to the environment and evolutionary history. Laboratory work will emphasize functional comparisons of vertebrate organ systems and an experimental approach to physiological problems. Four laboratory hours per week. This course may be taken as a part of a two-semester sequence with BIOL 349 or may be taken alone. Prerequisite: BIOL 207, BIOL 208 and a minimum grad of C- in BIOL 209.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
| + asynchronous coursework | ||||||
Subject: Biology (BIOL)
CRN: 20809
Blended Online & In-Person | Lab
St Paul: Owens Science Hall 380
Online
Requirements Met:
Biology Lab Elective
School of Ed Transfer Course
Instructor: TBD
This course includes an examination of the functional morphology of the vertebrate endocrine, cardiovascular, respiratory, renal, digestive and reproductive systems, including control and integration of organ systems, as well as adaptation to the environment and evolutionary history. Laboratory work will emphasize functional comparisons of vertebrate organ systems and an experimental approach to physiological problems. Four laboratory hours per week. This course may be taken as a part of a two-semester sequence with BIOL 349 or may be taken alone. Prerequisite: BIOL 207, BIOL 208 and a minimum grad of C- in BIOL 209.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
3:35 pm |
||||||
| + asynchronous coursework | ||||||
Subject: Biology (BIOL)
CRN: 20810
Blended Online & In-Person | Lab
St Paul: Owens Science Hall 380
Online
Requirements Met:
Biology Lab Elective
School of Ed Transfer Course
Instructor: TBD
This course includes an examination of the functional morphology of the vertebrate endocrine, cardiovascular, respiratory, renal, digestive and reproductive systems, including control and integration of organ systems, as well as adaptation to the environment and evolutionary history. Laboratory work will emphasize functional comparisons of vertebrate organ systems and an experimental approach to physiological problems. Four laboratory hours per week. This course may be taken as a part of a two-semester sequence with BIOL 349 or may be taken alone. Prerequisite: BIOL 207, BIOL 208 and a minimum grad of C- in BIOL 209.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
| + asynchronous coursework | ||||||
Subject: Biology (BIOL)
CRN: 20811
Blended Online & In-Person | Lab
St Paul: Owens Science Hall 380
Online
Requirements Met:
Biology Lab Elective
School of Ed Transfer Course
Instructor: TBD
This course includes an examination of the functional morphology of the vertebrate endocrine, cardiovascular, respiratory, renal, digestive and reproductive systems, including control and integration of organ systems, as well as adaptation to the environment and evolutionary history. Laboratory work will emphasize functional comparisons of vertebrate organ systems and an experimental approach to physiological problems. Four laboratory hours per week. This course may be taken as a part of a two-semester sequence with BIOL 349 or may be taken alone. Prerequisite: BIOL 207, BIOL 208 and a minimum grad of C- in BIOL 209.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
3:35 pm |
||||||
| + asynchronous coursework | ||||||
Subject: Biology (BIOL)
CRN: 20812
Blended Online & In-Person | Lab
St Paul: Owens Science Hall 380
Online
Requirements Met:
Biology Lab Elective
School of Ed Transfer Course
Instructor: TBD
This course includes an examination of the functional morphology of the vertebrate endocrine, cardiovascular, respiratory, renal, digestive and reproductive systems, including control and integration of organ systems, as well as adaptation to the environment and evolutionary history. Laboratory work will emphasize functional comparisons of vertebrate organ systems and an experimental approach to physiological problems. Four laboratory hours per week. This course may be taken as a part of a two-semester sequence with BIOL 349 or may be taken alone. Prerequisite: BIOL 207, BIOL 208 and a minimum grad of C- in BIOL 209.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:00 am |
8:00 am |
|||||
Subject: Biology (BIOL)
CRN: 20813
In Person | Lecture
St Paul: In Person
This course is a classroom-based introduction to neurobiology, with special emphasis on exploring the molecular, cellular and systems aspects of neurons and neural circuitry. We will look at the anatomy and physiology of nerve cells, the mechanisms that underlie neural function, and how these mechanisms allow organisms to function in their environment. Topics will include the ionic basis for neuronal signaling, neurotransmitters and synaptic function, how information is encoded and transmitted by neural tissues, and neural mechanisms that serve as the basis for sensation, learning and memory. Prerequisite: BIOL101 BIOL102 or BIOL105 or BIOL207, BIOL208 and a minimum grade of C- in BIOL209. Credit will not be given for both this course and BIOL 354.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:15 am |
8:15 am |
8:15 am |
||||
Subject: Biology (BIOL)
CRN: 20814
In Person | Lecture
St Paul: In Person
Requirements Met:
Biology Lab Elective
School of Ed Transfer Course
The in-depth study of microorganismal biology is directed at gaining an understanding of the mechanisms that underlie the functions of bacteria. The importance of microorganisms as they relate to human disease, industry and the environment will be explored through lectures, readings from the literature and discussions. Laboratory includes an independent research project done in collaboration with the professor and peers. Four laboratory hours per week. Prerequisites: BIOL 207, AND BIOL 208, AND a minimum grade of C- in BIOL 209, AND either: CHEM 111 AND CHEM 112, OR CHEM 115
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:00 am |
||||||
Subject: Biology (BIOL)
CRN: 20815
In Person | Lab
St Paul: Owens Science Hall 263
Requirements Met:
Biology Lab Elective
School of Ed Transfer Course
The in-depth study of microorganismal biology is directed at gaining an understanding of the mechanisms that underlie the functions of bacteria. The importance of microorganisms as they relate to human disease, industry and the environment will be explored through lectures, readings from the literature and discussions. Laboratory includes an independent research project done in collaboration with the professor and peers. Four laboratory hours per week. Prerequisites: BIOL 207, AND BIOL 208, AND a minimum grade of C- in BIOL 209, AND either: CHEM 111 AND CHEM 112, OR CHEM 115
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
Subject: Biology (BIOL)
CRN: 20816
In Person | Lab
St Paul: Owens Science Hall 263
Requirements Met:
Biology Lab Elective
School of Ed Transfer Course
The in-depth study of microorganismal biology is directed at gaining an understanding of the mechanisms that underlie the functions of bacteria. The importance of microorganisms as they relate to human disease, industry and the environment will be explored through lectures, readings from the literature and discussions. Laboratory includes an independent research project done in collaboration with the professor and peers. Four laboratory hours per week. Prerequisites: BIOL 207, AND BIOL 208, AND a minimum grade of C- in BIOL 209, AND either: CHEM 111 AND CHEM 112, OR CHEM 115
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
10:55 am |
10:55 am |
10:55 am |
||||
Subject: Biology (BIOL)
CRN: 20817
In Person | Lecture
St Paul: In Person
This course provides an introduction to the microscopic anatomy of cells, tissues, and major organs that constitute the mammalian organism. The animal body is composed of a vast diversity of cell types, which are in turn organized into tissues and organs that carry out the complex functions of life. Microscopic anatomy is the study of the cellular architecture of tissues and provides deep insights into the workings of the body. Emphasis is placed on structural-functional correlates at both the light and electron microscopic levels. Students also will explore alterations in normal histology through disease or injury to provide an understanding of the etiology of various disease states. Prerequisite: minimum grade of C- in BIOL208. Credit will not be given for both this course and BIOL 353 Microscopic Anatomy.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:35 am |
9:35 am |
9:35 am |
||||
Subject: Biology (BIOL)
CRN: 20818
In Person | Lecture
St Paul: In Person
Requirements Met:
Biology Lab Elective
School of Ed Transfer Course
This course focuses on a detailed consideration of specific topics in transmission, molecular, and population genetics. Eukaryotic and prokaryotic systems are discussed and genetic reasoning and analysis will be emphasized. Four laboratory hours per week. Prerequisites: A minimum grade of C- in BIOL 207 or BIOL 101 or 105 or BIOL 110, AND BIOL 208, or a permission of the instructor. Students who get credit for this course will not be able to get credit for BIOL 368 and vice versa.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
||||||
| + asynchronous coursework | ||||||
Subject: Biology (BIOL)
CRN: 20819
Blended Online & In-Person | Lab
St Paul: Schoenecker Center 417
Online
Requirements Met:
Biology Lab Elective
School of Ed Transfer Course
This course focuses on a detailed consideration of specific topics in transmission, molecular, and population genetics. Eukaryotic and prokaryotic systems are discussed and genetic reasoning and analysis will be emphasized. Four laboratory hours per week. Prerequisites: A minimum grade of C- in BIOL 207 or BIOL 101 or 105 or BIOL 110, AND BIOL 208, or a permission of the instructor. Students who get credit for this course will not be able to get credit for BIOL 368 and vice versa.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:00 am |
||||||
| + asynchronous coursework | ||||||
Subject: Biology (BIOL)
CRN: 20820
Blended Online & In-Person | Lab
St Paul: Schoenecker Center 417
Online
Requirements Met:
Biology Lab Elective
School of Ed Transfer Course
This course focuses on a detailed consideration of specific topics in transmission, molecular, and population genetics. Eukaryotic and prokaryotic systems are discussed and genetic reasoning and analysis will be emphasized. Four laboratory hours per week. Prerequisites: A minimum grade of C- in BIOL 207 or BIOL 101 or 105 or BIOL 110, AND BIOL 208, or a permission of the instructor. Students who get credit for this course will not be able to get credit for BIOL 368 and vice versa.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:55 am |
9:55 am |
|||||
Subject: Biology (BIOL)
CRN: 20821
In Person | Lecture
St Paul: In Person
This course will examine the molecular, cellular, and organismal aspects of the human immune system. The goal is to arrive at a clear, memorable understanding of how the immune system protects us from disease, and what can go wrong when it is either overly active or not active enough. The format will consist of less traditional lecturing and more active learning, supported by the instructor. Classroom periods will involve collaborative and creative work by and among students to collectively improve everyone’s learning and understanding. A significant amount of independent work outside the classroom is also required. This course does not include a laboratory component. Prerequisite: BIOL101 or BIOL102 or BIOL105 or BIOL207, BIOL208 and a minimum grade of C- in BIOL209. Credit will not be given for both this course and BIOL 363 Immunology.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:00 am |
8:00 am |
|||||
Subject: Biology (BIOL)
CRN: 20822
In Person | Lecture
St Paul: In Person
Requirements Met:
Biology Lab Elective
School of Ed Transfer Course
An advanced investigation of topics in cell structure and the regulation of cellular activities, including signal transduction, protein transport, cell-cycle regulation, and cellular movement, emphasizing molecular mechanisms, current concepts and their experimental basis. Includes significant use of the primary literature. Four laboratory hours per week. Prerequisite: BIOL 208, and a minimum grade of C- in BIOL 209. Credit will not be given for both this course and BIOL 372.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
||||||
Subject: Biology (BIOL)
CRN: 20823
In Person | Lab
St Paul: Owens Science Hall 389
Requirements Met:
Biology Lab Elective
School of Ed Transfer Course
An advanced investigation of topics in cell structure and the regulation of cellular activities, including signal transduction, protein transport, cell-cycle regulation, and cellular movement, emphasizing molecular mechanisms, current concepts and their experimental basis. Includes significant use of the primary literature. Four laboratory hours per week. Prerequisite: BIOL 208, and a minimum grade of C- in BIOL 209. Credit will not be given for both this course and BIOL 372.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
Subject: Biology (BIOL)
CRN: 20824
In Person | Lab
St Paul: Owens Science Hall 389
Requirements Met:
Biology Lab Elective
School of Ed Transfer Course
An advanced investigation of topics in cell structure and the regulation of cellular activities, including signal transduction, protein transport, cell-cycle regulation, and cellular movement, emphasizing molecular mechanisms, current concepts and their experimental basis. Includes significant use of the primary literature. Four laboratory hours per week. Prerequisite: BIOL 208, and a minimum grade of C- in BIOL 209. Credit will not be given for both this course and BIOL 372.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
1:35 pm |
|||||
Subject: Biology (BIOL)
CRN: 20825
In Person | Topics Lecture 1
St Paul: In Person
Requirements Met:
School of Ed Transfer Course
Instructor: TBD
The subject matter of these courses will vary from year to year, but will not duplicate existing courses. Descriptions of these courses are available in the Classfinder, View Searchable Class Schedule
2 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:55 am |
9:55 am |
|||||
Subject: Biology (BIOL)
CRN: 20827
In Person | Lecture
St Paul: In Person
Requirements Met:
Biology Lab Elective
Writing in the Discipline
Our food system is under extreme duress; urbanization, agricultural intensification, and climate change are contributing to an increasingly vulnerable food system. BIOL 4xx - Sustainable Food Systems will help students summarize existing information about our current food system, identify key research gaps, and assess its scalability and sustainability from a biological perspective. The lab (4 hrs per week) will provide students with a variety of independent opportunities to contribute to a more sustainable food system. Prerequisites: At least two BIOL 3xx electives. Alternative prerequisites may be accepted with the permission of the instructor.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
Subject: Biology (BIOL)
CRN: 20826
In Person | Lab
St Paul: Owens Science Hall 268
Requirements Met:
Biology Lab Elective
Our food system is under extreme duress; urbanization, agricultural intensification, and climate change are contributing to an increasingly vulnerable food system. BIOL 4xx - Sustainable Food Systems will help students summarize existing information about our current food system, identify key research gaps, and assess its scalability and sustainability from a biological perspective. The lab (4 hrs per week) will provide students with a variety of independent opportunities to contribute to a more sustainable food system. Prerequisites: At least two BIOL 3xx electives. Alternative prerequisites may be accepted with the permission of the instructor.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:00 am |
8:00 am |
|||||
Subject: Biology (BIOL)
CRN: 20831
In Person | Lecture
St Paul: In Person
Requirements Met:
Biology Lab Elective
School of Ed Transfer Course
Writing in the Discipline
Instructor: TBD
An investigation of current concepts in molecular biology including gene expression and its regulation, the organization of genetic information, recombinant DNA techniques, oncogenes and genetic engineering. The laboratory consists of a collaborative research project. Four laboratory hours per week. Prerequisites: A minimum grade of C- in BIOL 356, 360, or 371. Alternative prerequisites may be accepted with the permission of the instructor.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
Subject: Biology (BIOL)
CRN: 20830
In Person | Lab
St Paul: Schoenecker Center 417
Requirements Met:
Biology Lab Elective
School of Ed Transfer Course
Instructor: TBD
An investigation of current concepts in molecular biology including gene expression and its regulation, the organization of genetic information, recombinant DNA techniques, oncogenes and genetic engineering. The laboratory consists of a collaborative research project. Four laboratory hours per week. Prerequisites: A minimum grade of C- in BIOL 356, 360, or 371. Alternative prerequisites may be accepted with the permission of the instructor.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:00 am |
8:00 am |
|||||
Subject: Biology (BIOL)
CRN: 20834
Online: Some Synchronous | Lecture
Online
Core Requirements Met:
[Core] Diversity/Soc Just
Other Requirements Met:
Writing in the Discipline
This seminar, required for all senior Biology of Global Health majors, challenges students to examine the multiple aspects of global health in a unifying manner. In this seminar, students will integrate experiential learning with current research and broad applications of global health, and will complete a capstone project focusing on a global health issue. This senior capstone course allows students majoring in Biology of Global Health to analyze specific issues and problems using the knowledge and understanding gained by completing the other required courses in the program. This course does not fulfill the Biology B.A. or Biology B.S. requirement for a 400-level course. Prerequisite: Senior status as a declared Biology of Global Health major.
4 Credits
| 02/01 - 03/19 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
Subject: Biology (BIOL)
CRN: 20835
Online: Sync Distributed | Lecture
Online
Requirements Met:
School of Ed Transfer Course
[Core] Signature Work
Investigation of selected problems in biology at an advanced level, involving student presentations based on the primary literature. The subject will vary and will be announced in the annual Class Schedule. Prerequisite: Upper-class standing and 80 completed credits.
2 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:55 am |
9:55 am |
|||||
Subject: Biology (BIOL)
CRN: 20838
In Person | Lecture
St Paul: In Person
Requirements Met:
Biology Lab Elective
School of Ed Transfer Course
Sustainability (SUST)
Writing in the Discipline
The subject matter of these courses will vary from year to year, but will not duplicate existing courses. Descriptions of these courses are available in the Classfinder, View Searchable Class Schedule
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
Subject: Biology (BIOL)
CRN: 20836
In Person | Lab
St Paul: Schoenecker Center 417
Requirements Met:
Biology Lab Elective
School of Ed Transfer Course
Sustainability (SUST)
The subject matter of these courses will vary from year to year, but will not duplicate existing courses. Descriptions of these courses are available in the Classfinder, View Searchable Class Schedule
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:15 am |
8:15 am |
8:15 am |
||||
Subject: Chemistry (CHEM)
CRN: 20851
In Person | Lecture
St Paul: In Person
This lecture with laboratory course introduces the fundamental principles of chemistry and measurements with an emphasis on chemical bonding, reactions, properties of solutions and gases, and concepts from organic and biochemistry that are needed by students interested in careers in nursing and allied health professions. It is designed as a stand-alone course intended for those nursing and allied health students who do not plan to take additional courses in chemistry. Prerequisites: MATH 100 placement or higher or completion of MATH 005 or higher. NOTE: Students who receive credit for CHEM 108 may not receive credit for CHEM 100, 101, 111 or 115. This course is not equivalent to CHEM 109, CHEM 111, CHEM 112 or CHEM 115 and will not substitute for them.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:35 am |
9:35 am |
9:35 am |
||||
Subject: Chemistry (CHEM)
CRN: 20852
In Person | Lecture
St Paul: In Person
This lecture with laboratory course introduces the fundamental principles of chemistry and measurements with an emphasis on chemical bonding, reactions, properties of solutions and gases, and concepts from organic and biochemistry that are needed by students interested in careers in nursing and allied health professions. It is designed as a stand-alone course intended for those nursing and allied health students who do not plan to take additional courses in chemistry. Prerequisites: MATH 100 placement or higher or completion of MATH 005 or higher. NOTE: Students who receive credit for CHEM 108 may not receive credit for CHEM 100, 101, 111 or 115. This course is not equivalent to CHEM 109, CHEM 111, CHEM 112 or CHEM 115 and will not substitute for them.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
10:55 am |
10:55 am |
10:55 am |
||||
Subject: Chemistry (CHEM)
CRN: 20853
In Person | Lecture
St Paul: In Person
This lecture with laboratory course introduces the fundamental principles of chemistry and measurements with an emphasis on chemical bonding, reactions, properties of solutions and gases, and concepts from organic and biochemistry that are needed by students interested in careers in nursing and allied health professions. It is designed as a stand-alone course intended for those nursing and allied health students who do not plan to take additional courses in chemistry. Prerequisites: MATH 100 placement or higher or completion of MATH 005 or higher. NOTE: Students who receive credit for CHEM 108 may not receive credit for CHEM 100, 101, 111 or 115. This course is not equivalent to CHEM 109, CHEM 111, CHEM 112 or CHEM 115 and will not substitute for them.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
||||||
Subject: Chemistry (CHEM)
CRN: 20854
In Person | Lab
St Paul: Schoenecker Center 405
This lecture with laboratory course introduces the fundamental principles of chemistry and measurements with an emphasis on chemical bonding, reactions, properties of solutions and gases, and concepts from organic and biochemistry that are needed by students interested in careers in nursing and allied health professions. It is designed as a stand-alone course intended for those nursing and allied health students who do not plan to take additional courses in chemistry. Prerequisites: MATH 100 placement or higher or completion of MATH 005 or higher. NOTE: Students who receive credit for CHEM 108 may not receive credit for CHEM 100, 101, 111 or 115. This course is not equivalent to CHEM 109, CHEM 111, CHEM 112 or CHEM 115 and will not substitute for them.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:30 am |
||||||
Subject: Chemistry (CHEM)
CRN: 20855
In Person | Lab
St Paul: Schoenecker Center 405
This lecture with laboratory course introduces the fundamental principles of chemistry and measurements with an emphasis on chemical bonding, reactions, properties of solutions and gases, and concepts from organic and biochemistry that are needed by students interested in careers in nursing and allied health professions. It is designed as a stand-alone course intended for those nursing and allied health students who do not plan to take additional courses in chemistry. Prerequisites: MATH 100 placement or higher or completion of MATH 005 or higher. NOTE: Students who receive credit for CHEM 108 may not receive credit for CHEM 100, 101, 111 or 115. This course is not equivalent to CHEM 109, CHEM 111, CHEM 112 or CHEM 115 and will not substitute for them.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
Subject: Chemistry (CHEM)
CRN: 20856
In Person | Lab
St Paul: Schoenecker Center 405
This lecture with laboratory course introduces the fundamental principles of chemistry and measurements with an emphasis on chemical bonding, reactions, properties of solutions and gases, and concepts from organic and biochemistry that are needed by students interested in careers in nursing and allied health professions. It is designed as a stand-alone course intended for those nursing and allied health students who do not plan to take additional courses in chemistry. Prerequisites: MATH 100 placement or higher or completion of MATH 005 or higher. NOTE: Students who receive credit for CHEM 108 may not receive credit for CHEM 100, 101, 111 or 115. This course is not equivalent to CHEM 109, CHEM 111, CHEM 112 or CHEM 115 and will not substitute for them.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
||||||
Subject: Chemistry (CHEM)
CRN: 20857
In Person | Lab
St Paul: Schoenecker Center 405
This lecture with laboratory course introduces the fundamental principles of chemistry and measurements with an emphasis on chemical bonding, reactions, properties of solutions and gases, and concepts from organic and biochemistry that are needed by students interested in careers in nursing and allied health professions. It is designed as a stand-alone course intended for those nursing and allied health students who do not plan to take additional courses in chemistry. Prerequisites: MATH 100 placement or higher or completion of MATH 005 or higher. NOTE: Students who receive credit for CHEM 108 may not receive credit for CHEM 100, 101, 111 or 115. This course is not equivalent to CHEM 109, CHEM 111, CHEM 112 or CHEM 115 and will not substitute for them.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:30 am |
||||||
Subject: Chemistry (CHEM)
CRN: 20858
In Person | Lab
St Paul: Schoenecker Center 405
Instructor: TBD
This lecture with laboratory course introduces the fundamental principles of chemistry and measurements with an emphasis on chemical bonding, reactions, properties of solutions and gases, and concepts from organic and biochemistry that are needed by students interested in careers in nursing and allied health professions. It is designed as a stand-alone course intended for those nursing and allied health students who do not plan to take additional courses in chemistry. Prerequisites: MATH 100 placement or higher or completion of MATH 005 or higher. NOTE: Students who receive credit for CHEM 108 may not receive credit for CHEM 100, 101, 111 or 115. This course is not equivalent to CHEM 109, CHEM 111, CHEM 112 or CHEM 115 and will not substitute for them.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
Subject: Chemistry (CHEM)
CRN: 20859
In Person | Lab
St Paul: Schoenecker Center 405
Instructor: TBD
This lecture with laboratory course introduces the fundamental principles of chemistry and measurements with an emphasis on chemical bonding, reactions, properties of solutions and gases, and concepts from organic and biochemistry that are needed by students interested in careers in nursing and allied health professions. It is designed as a stand-alone course intended for those nursing and allied health students who do not plan to take additional courses in chemistry. Prerequisites: MATH 100 placement or higher or completion of MATH 005 or higher. NOTE: Students who receive credit for CHEM 108 may not receive credit for CHEM 100, 101, 111 or 115. This course is not equivalent to CHEM 109, CHEM 111, CHEM 112 or CHEM 115 and will not substitute for them.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
2:55 pm |
2:55 pm |
|||||
Subject: Chemistry (CHEM)
CRN: 20860
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
Sustainability (SUST)
Instructor: TBD
Principles of chemistry and the properties of matter explained in terms of modern chemical theory with emphasis on topics of general interest to the engineer. Topics include atomic structure, chemical bonding, solids, liquids, gases, acids and bases, thermodynamics, kinetics, polymer chemistry and materials science. This is an accelerated course requiring excellent preparation in math and science and is a terminal course intended only for those engineering students who do not plan to take additional courses in chemistry. Prerequisites: ENGR 100 and MATH 109 or higher (or concurrent enrollment in MATH 109). NOTE: Students who receive credit for CHEM 109 may not receive credit for CHEM 100, 101, 111 or 115. This course is not equivalent to CHEM 111, CHEM 112 or CHEM 115 and will not substitute for them.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:30 am |
||||||
Subject: Chemistry (CHEM)
CRN: 20861
In Person | Lab
St Paul: Schoenecker Center 407
Core Requirements Met:
[Core] Natural Science
Instructor: TBD
Principles of chemistry and the properties of matter explained in terms of modern chemical theory with emphasis on topics of general interest to the engineer. Topics include atomic structure, chemical bonding, solids, liquids, gases, acids and bases, thermodynamics, kinetics, polymer chemistry and materials science. This is an accelerated course requiring excellent preparation in math and science and is a terminal course intended only for those engineering students who do not plan to take additional courses in chemistry. Prerequisites: ENGR 100 and MATH 109 or higher (or concurrent enrollment in MATH 109). NOTE: Students who receive credit for CHEM 109 may not receive credit for CHEM 100, 101, 111 or 115. This course is not equivalent to CHEM 111, CHEM 112 or CHEM 115 and will not substitute for them.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
Subject: Chemistry (CHEM)
CRN: 20862
In Person | Lab
St Paul: Schoenecker Center 407
Core Requirements Met:
[Core] Natural Science
Instructor: TBD
Principles of chemistry and the properties of matter explained in terms of modern chemical theory with emphasis on topics of general interest to the engineer. Topics include atomic structure, chemical bonding, solids, liquids, gases, acids and bases, thermodynamics, kinetics, polymer chemistry and materials science. This is an accelerated course requiring excellent preparation in math and science and is a terminal course intended only for those engineering students who do not plan to take additional courses in chemistry. Prerequisites: ENGR 100 and MATH 109 or higher (or concurrent enrollment in MATH 109). NOTE: Students who receive credit for CHEM 109 may not receive credit for CHEM 100, 101, 111 or 115. This course is not equivalent to CHEM 111, CHEM 112 or CHEM 115 and will not substitute for them.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
5:30 pm |
||||||
Subject: Chemistry (CHEM)
CRN: 20863
In Person | Lab
St Paul: Schoenecker Center 407
Core Requirements Met:
[Core] Natural Science
Instructor: TBD
Principles of chemistry and the properties of matter explained in terms of modern chemical theory with emphasis on topics of general interest to the engineer. Topics include atomic structure, chemical bonding, solids, liquids, gases, acids and bases, thermodynamics, kinetics, polymer chemistry and materials science. This is an accelerated course requiring excellent preparation in math and science and is a terminal course intended only for those engineering students who do not plan to take additional courses in chemistry. Prerequisites: ENGR 100 and MATH 109 or higher (or concurrent enrollment in MATH 109). NOTE: Students who receive credit for CHEM 109 may not receive credit for CHEM 100, 101, 111 or 115. This course is not equivalent to CHEM 111, CHEM 112 or CHEM 115 and will not substitute for them.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
2:55 pm |
2:55 pm |
|||||
Subject: Chemistry (CHEM)
CRN: 20865
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
Environmental Sci. Major Appr
Sustainability (SUST)
This course, together with CHEM 112, provides a two- semester introduction to chemistry. Topics include atomic structure, molecular structure, chemical bonding, the periodic table, states of matter, reaction types, stoichiometry, thermochemistry, intermolecular forces, and properties of the common elements and their ions in aqueous solution. Lecture plus four laboratory hours per week. Offered fall and spring semesters. Prerequisite: Completion of CHEM 110 or placement at or above CHEM 111 NOTE: Students who receive credit for CHEM 111 may not receive credit for CHEM 100, 101, 109 or 115.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
7:30 am |
||||||
Subject: Chemistry (CHEM)
CRN: 20866
In Person | Lab
St Paul: Schoenecker Center 407
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
Environmental Sci. Major Appr
This course, together with CHEM 112, provides a two- semester introduction to chemistry. Topics include atomic structure, molecular structure, chemical bonding, the periodic table, states of matter, reaction types, stoichiometry, thermochemistry, intermolecular forces, and properties of the common elements and their ions in aqueous solution. Lecture plus four laboratory hours per week. Offered fall and spring semesters. Prerequisite: Completion of CHEM 110 or placement at or above CHEM 111 NOTE: Students who receive credit for CHEM 111 may not receive credit for CHEM 100, 101, 109 or 115.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
Subject: Chemistry (CHEM)
CRN: 20867
In Person | Lab
St Paul: Schoenecker Center 407
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
Environmental Sci. Major Appr
This course, together with CHEM 112, provides a two- semester introduction to chemistry. Topics include atomic structure, molecular structure, chemical bonding, the periodic table, states of matter, reaction types, stoichiometry, thermochemistry, intermolecular forces, and properties of the common elements and their ions in aqueous solution. Lecture plus four laboratory hours per week. Offered fall and spring semesters. Prerequisite: Completion of CHEM 110 or placement at or above CHEM 111 NOTE: Students who receive credit for CHEM 111 may not receive credit for CHEM 100, 101, 109 or 115.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
Subject: Chemistry (CHEM)
CRN: 20868
In Person | Lab
St Paul: Schoenecker Center 407
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
Environmental Sci. Major Appr
This course, together with CHEM 112, provides a two- semester introduction to chemistry. Topics include atomic structure, molecular structure, chemical bonding, the periodic table, states of matter, reaction types, stoichiometry, thermochemistry, intermolecular forces, and properties of the common elements and their ions in aqueous solution. Lecture plus four laboratory hours per week. Offered fall and spring semesters. Prerequisite: Completion of CHEM 110 or placement at or above CHEM 111 NOTE: Students who receive credit for CHEM 111 may not receive credit for CHEM 100, 101, 109 or 115.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:15 am |
8:15 am |
8:15 am |
||||
Subject: Chemistry (CHEM)
CRN: 20869
In Person | Lecture
St Paul: In Person
Requirements Met:
Environmental Sci. Major Appr
This course continues the study of chemistry begun in 111. Topics include thermodynamics, kinetics, equilibrium, acid- base chemistry, electrochemistry, and nuclear chemistry. Lecture plus four laboratory hours per week. Offered spring semester and summer (when enrollment allows). Prerequisite: A minimum grade of C- in CHEM 111 and Math placement at 108 or higher. NOTE: Students who receive credit for CHEM 112 may not receive credit for CHEM 115.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:35 am |
9:35 am |
9:35 am |
||||
Subject: Chemistry (CHEM)
CRN: 20870
In Person | Lecture
St Paul: In Person
Requirements Met:
Environmental Sci. Major Appr
This course continues the study of chemistry begun in 111. Topics include thermodynamics, kinetics, equilibrium, acid- base chemistry, electrochemistry, and nuclear chemistry. Lecture plus four laboratory hours per week. Offered spring semester and summer (when enrollment allows). Prerequisite: A minimum grade of C- in CHEM 111 and Math placement at 108 or higher. NOTE: Students who receive credit for CHEM 112 may not receive credit for CHEM 115.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
10:55 am |
10:55 am |
10:55 am |
||||
Subject: Chemistry (CHEM)
CRN: 20871
In Person | Lecture
St Paul: In Person
Requirements Met:
Environmental Sci. Major Appr
Instructor: TBD
This course continues the study of chemistry begun in 111. Topics include thermodynamics, kinetics, equilibrium, acid- base chemistry, electrochemistry, and nuclear chemistry. Lecture plus four laboratory hours per week. Offered spring semester and summer (when enrollment allows). Prerequisite: A minimum grade of C- in CHEM 111 and Math placement at 108 or higher. NOTE: Students who receive credit for CHEM 112 may not receive credit for CHEM 115.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
12:15 pm |
12:15 pm |
12:15 pm |
||||
Subject: Chemistry (CHEM)
CRN: 20872
In Person | Lecture
St Paul: In Person
Requirements Met:
Environmental Sci. Major Appr
This course continues the study of chemistry begun in 111. Topics include thermodynamics, kinetics, equilibrium, acid- base chemistry, electrochemistry, and nuclear chemistry. Lecture plus four laboratory hours per week. Offered spring semester and summer (when enrollment allows). Prerequisite: A minimum grade of C- in CHEM 111 and Math placement at 108 or higher. NOTE: Students who receive credit for CHEM 112 may not receive credit for CHEM 115.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
||||||
Subject: Chemistry (CHEM)
CRN: 20873
In Person | Lab
St Paul: Owens Science Hall 478
Requirements Met:
Environmental Sci. Major Appr
This course continues the study of chemistry begun in 111. Topics include thermodynamics, kinetics, equilibrium, acid- base chemistry, electrochemistry, and nuclear chemistry. Lecture plus four laboratory hours per week. Offered spring semester and summer (when enrollment allows). Prerequisite: A minimum grade of C- in CHEM 111 and Math placement at 108 or higher. NOTE: Students who receive credit for CHEM 112 may not receive credit for CHEM 115.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
7:30 am |
||||||
Subject: Chemistry (CHEM)
CRN: 20874
In Person | Lab
St Paul: Owens Science Hall 478
Requirements Met:
Environmental Sci. Major Appr
Instructor: TBD
This course continues the study of chemistry begun in 111. Topics include thermodynamics, kinetics, equilibrium, acid- base chemistry, electrochemistry, and nuclear chemistry. Lecture plus four laboratory hours per week. Offered spring semester and summer (when enrollment allows). Prerequisite: A minimum grade of C- in CHEM 111 and Math placement at 108 or higher. NOTE: Students who receive credit for CHEM 112 may not receive credit for CHEM 115.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
Subject: Chemistry (CHEM)
CRN: 20875
In Person | Lab
St Paul: Owens Science Hall 478
Requirements Met:
Environmental Sci. Major Appr
This course continues the study of chemistry begun in 111. Topics include thermodynamics, kinetics, equilibrium, acid- base chemistry, electrochemistry, and nuclear chemistry. Lecture plus four laboratory hours per week. Offered spring semester and summer (when enrollment allows). Prerequisite: A minimum grade of C- in CHEM 111 and Math placement at 108 or higher. NOTE: Students who receive credit for CHEM 112 may not receive credit for CHEM 115.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
||||||
Subject: Chemistry (CHEM)
CRN: 20876
In Person | Lab
St Paul: Owens Science Hall 478
Requirements Met:
Environmental Sci. Major Appr
Instructor: TBD
This course continues the study of chemistry begun in 111. Topics include thermodynamics, kinetics, equilibrium, acid- base chemistry, electrochemistry, and nuclear chemistry. Lecture plus four laboratory hours per week. Offered spring semester and summer (when enrollment allows). Prerequisite: A minimum grade of C- in CHEM 111 and Math placement at 108 or higher. NOTE: Students who receive credit for CHEM 112 may not receive credit for CHEM 115.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
7:30 am |
||||||
Subject: Chemistry (CHEM)
CRN: 20877
In Person | Lab
St Paul: Owens Science Hall 478
Requirements Met:
Environmental Sci. Major Appr
Instructor: TBD
This course continues the study of chemistry begun in 111. Topics include thermodynamics, kinetics, equilibrium, acid- base chemistry, electrochemistry, and nuclear chemistry. Lecture plus four laboratory hours per week. Offered spring semester and summer (when enrollment allows). Prerequisite: A minimum grade of C- in CHEM 111 and Math placement at 108 or higher. NOTE: Students who receive credit for CHEM 112 may not receive credit for CHEM 115.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
Subject: Chemistry (CHEM)
CRN: 20878
In Person | Lab
St Paul: Owens Science Hall 478
Requirements Met:
Environmental Sci. Major Appr
Instructor: TBD
This course continues the study of chemistry begun in 111. Topics include thermodynamics, kinetics, equilibrium, acid- base chemistry, electrochemistry, and nuclear chemistry. Lecture plus four laboratory hours per week. Offered spring semester and summer (when enrollment allows). Prerequisite: A minimum grade of C- in CHEM 111 and Math placement at 108 or higher. NOTE: Students who receive credit for CHEM 112 may not receive credit for CHEM 115.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
||||||
Subject: Chemistry (CHEM)
CRN: 20879
In Person | Lab
St Paul: Owens Science Hall 478
Requirements Met:
Environmental Sci. Major Appr
Instructor: TBD
This course continues the study of chemistry begun in 111. Topics include thermodynamics, kinetics, equilibrium, acid- base chemistry, electrochemistry, and nuclear chemistry. Lecture plus four laboratory hours per week. Offered spring semester and summer (when enrollment allows). Prerequisite: A minimum grade of C- in CHEM 111 and Math placement at 108 or higher. NOTE: Students who receive credit for CHEM 112 may not receive credit for CHEM 115.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
||||||
Subject: Chemistry (CHEM)
CRN: 20880
In Person | Lab
St Paul: Owens Science Hall 479
Requirements Met:
Environmental Sci. Major Appr
Instructor: TBD
This course continues the study of chemistry begun in 111. Topics include thermodynamics, kinetics, equilibrium, acid- base chemistry, electrochemistry, and nuclear chemistry. Lecture plus four laboratory hours per week. Offered spring semester and summer (when enrollment allows). Prerequisite: A minimum grade of C- in CHEM 111 and Math placement at 108 or higher. NOTE: Students who receive credit for CHEM 112 may not receive credit for CHEM 115.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
7:30 am |
||||||
Subject: Chemistry (CHEM)
CRN: 20881
In Person | Lab
St Paul: Owens Science Hall 479
Requirements Met:
Environmental Sci. Major Appr
Instructor: TBD
This course continues the study of chemistry begun in 111. Topics include thermodynamics, kinetics, equilibrium, acid- base chemistry, electrochemistry, and nuclear chemistry. Lecture plus four laboratory hours per week. Offered spring semester and summer (when enrollment allows). Prerequisite: A minimum grade of C- in CHEM 111 and Math placement at 108 or higher. NOTE: Students who receive credit for CHEM 112 may not receive credit for CHEM 115.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
Subject: Chemistry (CHEM)
CRN: 20882
In Person | Lab
St Paul: Owens Science Hall 479
Requirements Met:
Environmental Sci. Major Appr
Instructor: TBD
This course continues the study of chemistry begun in 111. Topics include thermodynamics, kinetics, equilibrium, acid- base chemistry, electrochemistry, and nuclear chemistry. Lecture plus four laboratory hours per week. Offered spring semester and summer (when enrollment allows). Prerequisite: A minimum grade of C- in CHEM 111 and Math placement at 108 or higher. NOTE: Students who receive credit for CHEM 112 may not receive credit for CHEM 115.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
1:35 pm |
1:35 pm |
||||
Subject: Chemistry (CHEM)
CRN: 20883
In Person | Lecture
St Paul: In Person
Study of the various families of organic compounds. Emphasis is placed on structure determination, reaction mechanisms, stereochemistry and spectroscopy in addition to a survey of various reaction types. An introduction to biochemical topics is included. Lecture plus four laboratory hours per week. Offered Fall and Spring (when enrollment allows). Prerequisite: A minimum grade of C- in CHEM 112 or 115
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
7:30 am |
||||||
Subject: Chemistry (CHEM)
CRN: 20884
In Person | Lab
St Paul: Owens Science Hall 477
Study of the various families of organic compounds. Emphasis is placed on structure determination, reaction mechanisms, stereochemistry and spectroscopy in addition to a survey of various reaction types. An introduction to biochemical topics is included. Lecture plus four laboratory hours per week. Offered Fall and Spring (when enrollment allows). Prerequisite: A minimum grade of C- in CHEM 112 or 115
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
Subject: Chemistry (CHEM)
CRN: 20885
In Person | Lab
St Paul: Owens Science Hall 477
Study of the various families of organic compounds. Emphasis is placed on structure determination, reaction mechanisms, stereochemistry and spectroscopy in addition to a survey of various reaction types. An introduction to biochemical topics is included. Lecture plus four laboratory hours per week. Offered Fall and Spring (when enrollment allows). Prerequisite: A minimum grade of C- in CHEM 112 or 115
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:15 am |
8:15 am |
8:15 am |
||||
Subject: Chemistry (CHEM)
CRN: 20886
In Person | Lecture
St Paul: In Person
Continuation of CHEM 201. Offered Fall and Spring (when enrollment allows). Prerequisite: A minimum grade of C- in CHEM 201
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:35 am |
9:35 am |
9:35 am |
||||
Subject: Chemistry (CHEM)
CRN: 20887
In Person | Lecture
St Paul: In Person
Continuation of CHEM 201. Offered Fall and Spring (when enrollment allows). Prerequisite: A minimum grade of C- in CHEM 201
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
10:55 am |
10:55 am |
10:55 am |
||||
Subject: Chemistry (CHEM)
CRN: 20888
In Person | Lecture
St Paul: In Person
Continuation of CHEM 201. Offered Fall and Spring (when enrollment allows). Prerequisite: A minimum grade of C- in CHEM 201
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
||||||
Subject: Chemistry (CHEM)
CRN: 20889
In Person | Lab
St Paul: Owens Science Hall 476
Continuation of CHEM 201. Offered Fall and Spring (when enrollment allows). Prerequisite: A minimum grade of C- in CHEM 201
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
7:30 am |
||||||
Subject: Chemistry (CHEM)
CRN: 20890
In Person | Lab
St Paul: Owens Science Hall 476
Continuation of CHEM 201. Offered Fall and Spring (when enrollment allows). Prerequisite: A minimum grade of C- in CHEM 201
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
Subject: Chemistry (CHEM)
CRN: 20891
In Person | Lab
St Paul: Owens Science Hall 476
Continuation of CHEM 201. Offered Fall and Spring (when enrollment allows). Prerequisite: A minimum grade of C- in CHEM 201
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
||||||
Subject: Chemistry (CHEM)
CRN: 20892
In Person | Lab
St Paul: Owens Science Hall 476
Continuation of CHEM 201. Offered Fall and Spring (when enrollment allows). Prerequisite: A minimum grade of C- in CHEM 201
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
7:30 am |
||||||
Subject: Chemistry (CHEM)
CRN: 20893
In Person | Lab
St Paul: Owens Science Hall 476
Instructor: TBD
Continuation of CHEM 201. Offered Fall and Spring (when enrollment allows). Prerequisite: A minimum grade of C- in CHEM 201
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
Subject: Chemistry (CHEM)
CRN: 20894
In Person | Lab
St Paul: Owens Science Hall 476
Continuation of CHEM 201. Offered Fall and Spring (when enrollment allows). Prerequisite: A minimum grade of C- in CHEM 201
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
Subject: Chemistry (CHEM)
CRN: 20895
In Person | Lab
St Paul: Owens Science Hall 476
Continuation of CHEM 201. Offered Fall and Spring (when enrollment allows). Prerequisite: A minimum grade of C- in CHEM 201
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:00 am |
8:00 am |
|||||
Subject: Chemistry (CHEM)
CRN: 20896
In Person | Lecture
St Paul: Owens Science Hall 469
Requirements Met:
Writing to learn
This is a foundational course that provides breadth in the inorganic chemistry sub-discipline and lays the groundwork for advanced study in inorganic chemistry. Students will learn the preparation, structure and bonding of inorganic compounds. Selected topics include atomic structure and bonding theories, symmetry operations and point groups, simple crystalline solids and energetics, periodicity, descriptive chemistry, and coordination chemistry. The course will also introduce students to materials science concepts and the bio-inorganic field. Lecture plus four laboratory hours per week. Prerequisites: C– in CHEM 112 or CHEM 115 or CHEM 109.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
Subject: Chemistry (CHEM)
CRN: 20897
In Person | Lab
St Paul: Owens Science Hall 477
This is a foundational course that provides breadth in the inorganic chemistry sub-discipline and lays the groundwork for advanced study in inorganic chemistry. Students will learn the preparation, structure and bonding of inorganic compounds. Selected topics include atomic structure and bonding theories, symmetry operations and point groups, simple crystalline solids and energetics, periodicity, descriptive chemistry, and coordination chemistry. The course will also introduce students to materials science concepts and the bio-inorganic field. Lecture plus four laboratory hours per week. Prerequisites: C– in CHEM 112 or CHEM 115 or CHEM 109.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:55 am |
9:55 am |
|||||
Subject: Chemistry (CHEM)
CRN: 20899
In Person | Lecture
St Paul: Owens Science Hall 469
Requirements Met:
School of Ed Transfer Course
CommGood/Community-Engaged
Writing in the Discipline
Principles and techniques of operation of modern chemical instrumentation not covered in CHEM 300. Topics include the capabilities, limitations and data interpretation of advanced optical spectroscopies (luminescence, Raman, etc.), voltammetry, potentiometry, differential scanning calorimetry, thermal gravimetric analysis and mass spectrometry. Fundamentals of signal processing, basic circuitry and optical components are also included. The laboratory consists of both structured exercises and a student designed project and report based on an industrial problem or on an analysis problem of interest to the student. Lecture plus four hours of lab each week. Offered spring semester. Prerequisites: CHEM 202, 300
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:55 am |
9:55 am |
|||||
Subject: Chemistry (CHEM)
CRN: 20900
In Person | Lecture
St Paul: Owens Science Hall 469
Requirements Met:
School of Ed Transfer Course
CommGood/Community-Engaged
Writing in the Discipline
Principles and techniques of operation of modern chemical instrumentation not covered in CHEM 300. Topics include the capabilities, limitations and data interpretation of advanced optical spectroscopies (luminescence, Raman, etc.), voltammetry, potentiometry, differential scanning calorimetry, thermal gravimetric analysis and mass spectrometry. Fundamentals of signal processing, basic circuitry and optical components are also included. The laboratory consists of both structured exercises and a student designed project and report based on an industrial problem or on an analysis problem of interest to the student. Lecture plus four hours of lab each week. Offered spring semester. Prerequisites: CHEM 202, 300
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
Subject: Chemistry (CHEM)
CRN: 20898
In Person | Lab
St Paul: Owens Science Hall 474
Requirements Met:
School of Ed Transfer Course
Principles and techniques of operation of modern chemical instrumentation not covered in CHEM 300. Topics include the capabilities, limitations and data interpretation of advanced optical spectroscopies (luminescence, Raman, etc.), voltammetry, potentiometry, differential scanning calorimetry, thermal gravimetric analysis and mass spectrometry. Fundamentals of signal processing, basic circuitry and optical components are also included. The laboratory consists of both structured exercises and a student designed project and report based on an industrial problem or on an analysis problem of interest to the student. Lecture plus four hours of lab each week. Offered spring semester. Prerequisites: CHEM 202, 300
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
10:55 am |
10:55 am |
10:55 am |
||||
Subject: Chemistry (CHEM)
CRN: 20901
In Person | Lecture
St Paul: Owens Science Hall 469
Study of chemical systems from the point of view of molecular theory. Introduction to the fundamentals of quantum chemistry and atomic/molecular spectroscopy. Laboratory work involves computational methods in molecular quantum mechanics and spectroscopic measurements of atomic/molecular systems. Lecture plus six laboratory hours per week. Offered spring semester. Prerequisites: CHEM 202, MATH 114 and PHYS 112 or 212
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
||||||
Subject: Chemistry (CHEM)
CRN: 20902
In Person | Lab
St Paul: Owens Science Hall 469
Study of chemical systems from the point of view of molecular theory. Introduction to the fundamentals of quantum chemistry and atomic/molecular spectroscopy. Laboratory work involves computational methods in molecular quantum mechanics and spectroscopic measurements of atomic/molecular systems. Lecture plus six laboratory hours per week. Offered spring semester. Prerequisites: CHEM 202, MATH 114 and PHYS 112 or 212
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
||||||
Subject: Chemistry (CHEM)
CRN: 20903
In Person | Lab
St Paul: Owens Science Hall 469
Study of chemical systems from the point of view of molecular theory. Introduction to the fundamentals of quantum chemistry and atomic/molecular spectroscopy. Laboratory work involves computational methods in molecular quantum mechanics and spectroscopic measurements of atomic/molecular systems. Lecture plus six laboratory hours per week. Offered spring semester. Prerequisites: CHEM 202, MATH 114 and PHYS 112 or 212
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
12:15 pm |
12:15 pm |
|||||
Subject: Chemistry (CHEM)
CRN: 20904
In Person | Lecture
St Paul: In Person
A more detailed study of various spectroscopic methods, especially as they are employed to determine structures of organic molecules. Coverage includes H-1, F-19, and C-13 NMR, mass spectrometry, ultraviolet and visible and infrared spectroscopies. Offered on a rotating basis. Prerequisite: A minimum grade of C- in CHEM 202
2 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:35 am |
9:35 am |
9:35 am |
||||
Subject: Chemistry (CHEM)
CRN: 20907
In Person | Lecture
St Paul: Owens Science Hall 469
Requirements Met:
Writing in the Discipline
The second course in a two-semester sequence examining the chemistry underlying biological processes. Topics include a continued investigation of bioenergetics focusing on the primary metabolism of nitrogenous biomolecules and integration of metabolic pathways followed by pathways of information metabolism; nucleic acid structure and function, regulation of gene expression; protein synthesis; and methods in genetic engineering. Lecture plus four laboratory hours per week. Offered spring semester. Prerequisite: A minimum grade of C- in CHEM 440
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
||||||
Subject: Chemistry (CHEM)
CRN: 20905
In Person | Lab
St Paul: Owens Science Hall 373
The second course in a two-semester sequence examining the chemistry underlying biological processes. Topics include a continued investigation of bioenergetics focusing on the primary metabolism of nitrogenous biomolecules and integration of metabolic pathways followed by pathways of information metabolism; nucleic acid structure and function, regulation of gene expression; protein synthesis; and methods in genetic engineering. Lecture plus four laboratory hours per week. Offered spring semester. Prerequisite: A minimum grade of C- in CHEM 440
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
||||||
Subject: Chemistry (CHEM)
CRN: 20906
In Person | Lab
St Paul: Owens Science Hall 373
The second course in a two-semester sequence examining the chemistry underlying biological processes. Topics include a continued investigation of bioenergetics focusing on the primary metabolism of nitrogenous biomolecules and integration of metabolic pathways followed by pathways of information metabolism; nucleic acid structure and function, regulation of gene expression; protein synthesis; and methods in genetic engineering. Lecture plus four laboratory hours per week. Offered spring semester. Prerequisite: A minimum grade of C- in CHEM 440
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
12:15 pm |
||||||
Subject: Chemistry (CHEM)
CRN: 20908
In Person | Lecture
St Paul: In Person
This sequence of courses begins in the fall semester of the junior year and progresses for a total of four semesters. The first (CHEM 481) and last (CHEM 484) courses are each one credit and are graded on the usual letter grade scale. The interior two courses (CHEM 482, 483) are zero credit and are graded on a pass-fail basis (S/R). Seminars are presented by guest speakers, St. Thomas faculty, and St. Thomas students throughout all four courses. In CHEM 481, juniors are introduced to the chemical literature, literature search techniques including use of computer databases, and write a short paper based on literature research. In CHEM 483 seniors meet in small groups with faculty and discuss articles from the current literature. In CHEM 484, seniors research a topic from the chemical literature and present it in both written and oral formats. Information about career opportunities for students holding a chemistry degree is presented throughout the seminar sequence. Required of all chemistry majors. Offered spring semester.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
12:15 pm |
||||||
Subject: Chemistry (CHEM)
CRN: 20909
In Person | Lecture
St Paul: In Person
This sequence of courses begins in the fall semester of the junior year and progresses for a total of four semesters. The first (CHEM 481) and last (CHEM 484) courses are each one credit and are graded on the usual letter grade scale. The interior two courses (CHEM 482, 483) are zero credit and are graded on a pass-fail basis (S/R). Seminars are presented by guest speakers, St. Thomas faculty, and St. Thomas students throughout all four courses. In CHEM 481, juniors are introduced to the chemical literature, literature search techniques including use of computer databases, and write a short paper based on literature research. In CHEM 483 seniors meet in small groups with faculty and discuss articles from the current literature. In CHEM 484, seniors research a topic from the chemical literature and present it in both written and oral formats. Information about career opportunities for students holding a chemistry degree is presented throughout the seminar sequence. Required of all chemistry majors. Offered spring semester.
1 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:00 am |
8:00 am |
|||||
Subject: Computer & Info Sci (UG) (CISC)
CRN: 22166
Lecture
St Paul: O'Shaughnessy Science Hall 432
This course introduces the fundamentals of applications of Artificial Intelligence (AI), with a special focus on generative AI applications. It is designed for students from various disciplines, aiming to provide an introduction to AI's principles, applications, ethical considerations, and its transformative potential across industries. Students will be introduced to how AI systems are designed, trained, and applied in real-world scenarios, emphasizing generative models like GPT (Generative Pre-trained Transformer) and their applications in areas like natural language processing, computer vision, and beyond.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:15 am |
8:00 am |
8:15 am |
8:15 am |
|||
Subject: Computer & Info Sci (UG) (CISC)
CRN: 20911
In Person | Lecture/Lab
St Paul: O'Shaughnessy Science Hall 429
Requirements Met:
Liberal Arts Bus Minor Appr
Instructor: TBD
Introduction to problem solving with computers, using programming languages common to science and engineering disciplines; logical thinking, design and implementation of algorithms; and basic programming structures. Introduction to hardware and software: how computers acquire, store, process, and output information; how computer systems are designed, programmed, and tested. Students will use both a scientific programming language and an application package designed to implement programming features at a level more accessible to non-programmers. This course is designed for students majoring in Engineering or the sciences. Majors in the Department of Computer and Information Sciences should take CISC 131. Please see your academic advisor to ensure you select the appropriate class. Lab included. NOTE: Students who receive credit for CISC 130 may not receive credit for CISC 131. Prerequisite: Placement into MATH 108 or higher or completion of DASC 120 or DASC 112 with a C- or better, or completion of one of: MATH 006, 007, 107,108, 109, 113, 114, or 200.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:35 am |
9:55 am |
9:35 am |
9:35 am |
|||
Subject: Computer & Info Sci (UG) (CISC)
CRN: 20912
In Person | Lecture/Lab
St Paul: O'Shaughnessy Science Hall 428
St Paul: O'Shaughnessy Science Hall 429
Requirements Met:
Liberal Arts Bus Minor Appr
Instructor: TBD
Introduction to problem solving with computers, using programming languages common to science and engineering disciplines; logical thinking, design and implementation of algorithms; and basic programming structures. Introduction to hardware and software: how computers acquire, store, process, and output information; how computer systems are designed, programmed, and tested. Students will use both a scientific programming language and an application package designed to implement programming features at a level more accessible to non-programmers. This course is designed for students majoring in Engineering or the sciences. Majors in the Department of Computer and Information Sciences should take CISC 131. Please see your academic advisor to ensure you select the appropriate class. Lab included. NOTE: Students who receive credit for CISC 130 may not receive credit for CISC 131. Prerequisite: Placement into MATH 108 or higher or completion of DASC 120 or DASC 112 with a C- or better, or completion of one of: MATH 006, 007, 107,108, 109, 113, 114, or 200.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
10:55 am |
1:30 pm |
10:55 am |
10:55 am |
|||
Subject: Computer & Info Sci (UG) (CISC)
CRN: 20913
In Person | Lecture/Lab
St Paul: O'Shaughnessy Science Hall 429
Requirements Met:
Liberal Arts Bus Minor Appr
Instructor: TBD
Introduction to problem solving with computers, using programming languages common to science and engineering disciplines; logical thinking, design and implementation of algorithms; and basic programming structures. Introduction to hardware and software: how computers acquire, store, process, and output information; how computer systems are designed, programmed, and tested. Students will use both a scientific programming language and an application package designed to implement programming features at a level more accessible to non-programmers. This course is designed for students majoring in Engineering or the sciences. Majors in the Department of Computer and Information Sciences should take CISC 131. Please see your academic advisor to ensure you select the appropriate class. Lab included. NOTE: Students who receive credit for CISC 130 may not receive credit for CISC 131. Prerequisite: Placement into MATH 108 or higher or completion of DASC 120 or DASC 112 with a C- or better, or completion of one of: MATH 006, 007, 107,108, 109, 113, 114, or 200.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
5:30 pm |
5:30 pm |
|||||
Subject: Computer & Info Sci (UG) (CISC)
CRN: 20914
In Person | Lecture/Lab
St Paul: O'Shaughnessy Science Hall 429
Requirements Met:
Liberal Arts Bus Minor Appr
Instructor: TBD
Introduction to problem solving with computers, using programming languages common to science and engineering disciplines; logical thinking, design and implementation of algorithms; and basic programming structures. Introduction to hardware and software: how computers acquire, store, process, and output information; how computer systems are designed, programmed, and tested. Students will use both a scientific programming language and an application package designed to implement programming features at a level more accessible to non-programmers. This course is designed for students majoring in Engineering or the sciences. Majors in the Department of Computer and Information Sciences should take CISC 131. Please see your academic advisor to ensure you select the appropriate class. Lab included. NOTE: Students who receive credit for CISC 130 may not receive credit for CISC 131. Prerequisite: Placement into MATH 108 or higher or completion of DASC 120 or DASC 112 with a C- or better, or completion of one of: MATH 006, 007, 107,108, 109, 113, 114, or 200.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
5:30 pm |
5:30 pm |
|||||
Subject: Computer & Info Sci (UG) (CISC)
CRN: 20915
In Person | Lecture/Lab
St Paul: O'Shaughnessy Science Hall 429
Requirements Met:
Liberal Arts Bus Minor Appr
Instructor: TBD
Introduction to problem solving with computers, using programming languages common to science and engineering disciplines; logical thinking, design and implementation of algorithms; and basic programming structures. Introduction to hardware and software: how computers acquire, store, process, and output information; how computer systems are designed, programmed, and tested. Students will use both a scientific programming language and an application package designed to implement programming features at a level more accessible to non-programmers. This course is designed for students majoring in Engineering or the sciences. Majors in the Department of Computer and Information Sciences should take CISC 131. Please see your academic advisor to ensure you select the appropriate class. Lab included. NOTE: Students who receive credit for CISC 130 may not receive credit for CISC 131. Prerequisite: Placement into MATH 108 or higher or completion of DASC 120 or DASC 112 with a C- or better, or completion of one of: MATH 006, 007, 107,108, 109, 113, 114, or 200.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:35 am |
9:35 am |
8:00 am |
9:35 am |
|||
Subject: Computer & Info Sci (UG) (CISC)
CRN: 20916
In Person | Lecture/Lab
St Paul: O'Shaughnessy Science Hall 429
This course is designed for students with majors in the Department of Computer and Information Sciences and focuses on logical thinking, the design and implementation of algorithms in a procedural language, testing, correctness, and the use of common programming structures such as arrays. In addition, basic machine concepts are covered including hardware organization and representation of information in the machine. The typical student will be adept at using the computer but will have no prior programming experience. Engineering and science majors should take CISC 130. Please see your academic advisor to ensure you select the appropriate class. Lab included. NOTE: Students who receive credit for CISC 131 may not receive credit for CISC 130. Prerequisite: Placement into MATH 108 or higher or completion of DASC 120 or DASC 112 with a C- or better, or completion of one of: MATH 006, 007, 107,108, 109, 113, 114, or 200.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
1:35 pm |
9:55 am |
1:35 pm |
|||
Subject: Computer & Info Sci (UG) (CISC)
CRN: 20917
In Person | Lecture/Lab
St Paul: O'Shaughnessy Science Hall 429
This course is designed for students with majors in the Department of Computer and Information Sciences and focuses on logical thinking, the design and implementation of algorithms in a procedural language, testing, correctness, and the use of common programming structures such as arrays. In addition, basic machine concepts are covered including hardware organization and representation of information in the machine. The typical student will be adept at using the computer but will have no prior programming experience. Engineering and science majors should take CISC 130. Please see your academic advisor to ensure you select the appropriate class. Lab included. NOTE: Students who receive credit for CISC 131 may not receive credit for CISC 130. Prerequisite: Placement into MATH 108 or higher or completion of DASC 120 or DASC 112 with a C- or better, or completion of one of: MATH 006, 007, 107,108, 109, 113, 114, or 200.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:15 am |
8:15 am |
8:15 am |
||||
Subject: Computer & Info Sci (UG) (CISC)
CRN: 20918
In Person | Lecture
St Paul: John Roach Center 426
Requirements Met:
Liberal Arts Bus Minor Appr
Instructor: TBD
This course will prepare students to use computers in a business environment and in daily life. It will provide an introduction to programming and problem solving for non-majors. Spreadsheet and database software will be used to solve problems related to business. The course includes an overview of hardware and software, how computers acquire and process information, and related topics. NOTE: Students who receive credit for CISC 200 may not receive credit for CISC 110 or 216.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:35 am |
9:35 am |
9:35 am |
||||
Subject: Computer & Info Sci (UG) (CISC)
CRN: 20919
In Person | Lecture
St Paul: John Roach Center 426
Requirements Met:
Liberal Arts Bus Minor Appr
Instructor: TBD
This course will prepare students to use computers in a business environment and in daily life. It will provide an introduction to programming and problem solving for non-majors. Spreadsheet and database software will be used to solve problems related to business. The course includes an overview of hardware and software, how computers acquire and process information, and related topics. NOTE: Students who receive credit for CISC 200 may not receive credit for CISC 110 or 216.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:55 am |
9:55 am |
|||||
Subject: Computer & Info Sci (UG) (CISC)
CRN: 20920
In Person | Lecture
St Paul: O'Shaughnessy Science Hall 432
Requirements Met:
Liberal Arts Bus Minor Appr
This course will prepare students to use computers in a business environment and in daily life. It will provide an introduction to programming and problem solving for non-majors. Spreadsheet and database software will be used to solve problems related to business. The course includes an overview of hardware and software, how computers acquire and process information, and related topics. NOTE: Students who receive credit for CISC 200 may not receive credit for CISC 110 or 216.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:00 am |
8:00 am |
|||||
Subject: Computer & Info Sci (UG) (CISC)
CRN: 20921
In Person | Lecture
St Paul: O'Shaughnessy Science Hall 431
Requirements Met:
Liberal Arts Bus Minor Appr
Instructor: TBD
This course will prepare students to use computers in a business environment and in daily life. It will provide an introduction to programming and problem solving for non-majors. Spreadsheet and database software will be used to solve problems related to business. The course includes an overview of hardware and software, how computers acquire and process information, and related topics. NOTE: Students who receive credit for CISC 200 may not receive credit for CISC 110 or 216.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
3:25 pm |
3:25 pm |
|||||
Subject: Computer & Info Sci (UG) (CISC)
CRN: 20922
In Person | Lecture
St Paul: O'Shaughnessy Science Hall 431
Requirements Met:
Liberal Arts Bus Minor Appr
Instructor: TBD
This course will prepare students to use computers in a business environment and in daily life. It will provide an introduction to programming and problem solving for non-majors. Spreadsheet and database software will be used to solve problems related to business. The course includes an overview of hardware and software, how computers acquire and process information, and related topics. NOTE: Students who receive credit for CISC 200 may not receive credit for CISC 110 or 216.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:35 am |
9:35 am |
8:00 am |
9:35 am |
|||
Subject: Computer & Info Sci (UG) (CISC)
CRN: 20923
In Person | Lecture/Lab
St Paul: O'Shaughnessy Science Hall 428
St Paul: O'Shaughnessy Science Hall 431
Programming and problem solving using an object-oriented approach. Builds on the procedural language foundation developed in CISC 130 or 131. Topics include: how procedural design differs from object-oriented design, algorithms, modeling, design requirements and representation, Uniform Modeling Language specification, implementation of object-oriented models, testing, and verification, and elementary design patterns. Lab included Prerequisites: A minimum grade of C- in CISC 130 or 131
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
10:55 am |
10:55 am |
9:55 am |
10:55 am |
|||
Subject: Computer & Info Sci (UG) (CISC)
CRN: 20924
In Person | Lecture/Lab
St Paul: O'Shaughnessy Science Hall 428
Programming and problem solving using an object-oriented approach. Builds on the procedural language foundation developed in CISC 130 or 131. Topics include: how procedural design differs from object-oriented design, algorithms, modeling, design requirements and representation, Uniform Modeling Language specification, implementation of object-oriented models, testing, and verification, and elementary design patterns. Lab included Prerequisites: A minimum grade of C- in CISC 130 or 131
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:35 am |
9:35 am |
9:35 am |
||||
Subject: Computer & Info Sci (UG) (CISC)
CRN: 20925
In Person | Lecture
St Paul: O'Shaughnessy Science Hall 432
Presents the fundamental suite of data structures and the algorithms used to implement them. Topics include: abstract data types, algorithm development and representation, searching, sorting, stacks, queues, lists, trees, measuring algorithm complexity, object-oriented design and implementation of moderately large and complex systems. Course assumes the student has proficiency in object-oriented specification, design, and implementation. Prerequisites: A minimum grade of C- in CISC 230
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
1:30 pm |
|||||
Subject: Computer & Info Sci (UG) (CISC)
CRN: 20926
In Person | Lecture
St Paul: O'Shaughnessy Science Hall 434
Presents the fundamental suite of data structures and the algorithms used to implement them. Topics include: abstract data types, algorithm development and representation, searching, sorting, stacks, queues, lists, trees, measuring algorithm complexity, object-oriented design and implementation of moderately large and complex systems. Course assumes the student has proficiency in object-oriented specification, design, and implementation. Prerequisites: A minimum grade of C- in CISC 230
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
12:15 pm |
12:15 pm |
12:15 pm |
||||
Subject: Computer & Info Sci (UG) (CISC)
CRN: 20927
In Person | Lecture
St Paul: O'Shaughnessy Science Hall 429
This course will prepare students to apply fundamental tools that are used to manipulate data. It will provide an introduction to spreadsheets, database technologies, and programming. Students will learn how to employ these tools to solve problems related to business, life sciences, and actuarial sciences.Prerequisites: Math placement at level of MATH 111 or above; or MATH 100, 101, 105, 108, 109, 111 or 113 NOTE: Students who receive credit for CISC 260 may not receive credit for CISC 200, 110 or 216.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
10:55 am |
10:55 am |
10:55 am |
||||
Subject: Computer & Info Sci (UG) (CISC)
CRN: 20928
In Person | Lecture
St Paul: O'Shaughnessy Science Hall 431
The basic principles of designing and building operating systems. Sequential versus concurrent processes, synchronization and mutual exclusion, memory management techniques, CPU scheduling, input/output device handling, file systems design, security and protection. Prerequisite: A minimum grade of C- in CISC 340 or ENGR 330
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
12:15 pm |
12:15 pm |
12:15 pm |
||||
Subject: Computer & Info Sci (UG) (CISC)
CRN: 20929
In Person | Lecture
St Paul: O'Shaughnessy Science Hall 431
The basic principles of designing and building operating systems. Sequential versus concurrent processes, synchronization and mutual exclusion, memory management techniques, CPU scheduling, input/output device handling, file systems design, security and protection. Prerequisite: A minimum grade of C- in CISC 340 or ENGR 330
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
3:25 pm |
3:25 pm |
|||||
Subject: Computer & Info Sci (UG) (CISC)
CRN: 20930
In Person | Lecture
St Paul: O'Shaughnessy Science Hall 428
Instructor: TBD
Introduction to the design and organization of computer systems. Topics covered in this course include digital logic, machine data and instruction representations, computer arithmetic, instruction sets and assembly language, ALU and CPU design, pipelining, cache systems, memory, performance metrics, and parallelism. Prerequisites: a minimum grade of C- in CISC 230
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
5:30 pm |
5:30 pm |
|||||
Subject: Computer & Info Sci (UG) (CISC)
CRN: 20931
In Person | Lecture
St Paul: O'Shaughnessy Science Hall 428
Instructor: TBD
Introduction to the design and organization of computer systems. Topics covered in this course include digital logic, machine data and instruction representations, computer arithmetic, instruction sets and assembly language, ALU and CPU design, pipelining, cache systems, memory, performance metrics, and parallelism. Prerequisites: a minimum grade of C- in CISC 230
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:15 am |
8:15 am |
8:15 am |
||||
Subject: Computer & Info Sci (UG) (CISC)
CRN: 20932
In Person | Lecture
St Paul: O'Shaughnessy Science Hall 431
(Formerly CISC 210) An introductory course in computer security. Topics include operating system security, cryptography, user authentication, application security, secure programming, web security and privacy issues, and ethical issues in the field of computer security. Emphasis is on understanding the technical aspects of how adversaries exploit systems and the techniques for defending against these attacks. Prerequisites: MATH 128 (may be taken concurrently), and a minimum grade of C- in CISC 230
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:00 am |
8:00 am |
|||||
Subject: Computer & Info Sci (UG) (CISC)
CRN: 20934
In Person | Lecture
St Paul: O'Shaughnessy Science Hall 434
Introduction to the design and analysis of algorithms. Course topics include the following algorithm design paradigms: divide and conquer, graph algorithms, dynamic programming, and greedy algorithms. The course will also give an introduction to computational complexity, including NP-completeness and the P versus NP problem. Prerequisites: A minimum grade of C- or better in: MATH 113 (or MATH 109 or MATH 112), MATH 128, CISC 230, and CISC 231
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:55 am |
9:55 am |
|||||
Subject: Computer & Info Sci (UG) (CISC)
CRN: 20935
In Person | Lecture
St Paul: O'Shaughnessy Science Hall 434
Introduction to the design and analysis of algorithms. Course topics include the following algorithm design paradigms: divide and conquer, graph algorithms, dynamic programming, and greedy algorithms. The course will also give an introduction to computational complexity, including NP-completeness and the P versus NP problem. Prerequisites: A minimum grade of C- or better in: MATH 113 (or MATH 109 or MATH 112), MATH 128, CISC 230, and CISC 231
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:55 am |
9:55 am |
|||||
Subject: Computer & Info Sci (UG) (CISC)
CRN: 20936
In Person | Lecture
St Paul: O'Shaughnessy Science Hall 431
This course focuses on the fundamental ability of intelligent systems, including problem-solving, reasoning, decision-making, and learning. It further examines the logical and probabilistic foundations that support these processes. The topics include problem formulation, search strategies, state spaces, applications of logic, knowledge representation, planning, and diverse application domains. Prerequisites: A minimum grade of C- or better in MATH 113 (or MATH 109 or MATH 112), MATH 128, DASC 120 (or DASC 112), CISC 230, and CISC 231
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
1:30 pm |
|||||
Subject: Computer & Info Sci (UG) (CISC)
CRN: 20937
In Person | Lecture
St Paul: O'Shaughnessy Science Hall 431
This course focuses on the fundamental ability of intelligent systems, including problem-solving, reasoning, decision-making, and learning. It further examines the logical and probabilistic foundations that support these processes. The topics include problem formulation, search strategies, state spaces, applications of logic, knowledge representation, planning, and diverse application domains. Prerequisites: A minimum grade of C- or better in MATH 113 (or MATH 109 or MATH 112), MATH 128, DASC 120 (or DASC 112), CISC 230, and CISC 231
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
3:25 pm |
3:25 pm |
|||||
Subject: Computer & Info Sci (UG) (CISC)
CRN: 20938
In Person | Lecture
St Paul: O'Shaughnessy Science Hall 432
This course introduces the fundamental concepts of database management, including aspects of data models, database languages, database design, indexing, and other topics in the field. Emphasis on general purpose relational database management systems using Relational Algebra and SQL. Prerequisites: A minimum grade of C- in CISC 230
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:35 am |
9:35 am |
9:35 am |
||||
Subject: Computer & Info Sci (UG) (CISC)
CRN: 20939
In Person | Lecture
St Paul: O'Shaughnessy Science Hall 434
Requirements Met:
[Core] Signature Work
Writing in the Discipline
The senior capstone course provides computer science majors the opportunity to integrate the knowledge that they have gained from across the curriculum. Students will work in groups to design, document, and implement a large-sized software project. During this process, students will be exposed to programming team organization, software development practices, as well as tools that facilitate the development of software systems. Prerequisites: Senior standing and a minimum grade of C- or better in: CISC 350, CISC 340, and CISC 380 (which 380 may be taken concurrently)
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
10:55 am |
10:55 am |
10:55 am |
||||
Subject: Computer & Info Sci (UG) (CISC)
CRN: 20940
In Person | Lecture
St Paul: O'Shaughnessy Science Hall 434
Requirements Met:
[Core] Signature Work
Writing in the Discipline
The senior capstone course provides computer science majors the opportunity to integrate the knowledge that they have gained from across the curriculum. Students will work in groups to design, document, and implement a large-sized software project. During this process, students will be exposed to programming team organization, software development practices, as well as tools that facilitate the development of software systems. Prerequisites: Senior standing and a minimum grade of C- or better in: CISC 350, CISC 340, and CISC 380 (which 380 may be taken concurrently)
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
1:35 pm |
1:35 pm |
||||
Subject: Computer & Info Sci (UG) (CISC)
CRN: 20942
In Person | Topics Lecture 2
St Paul: O'Shaughnessy Science Hall 428
The subject matter of these courses will vary from year to year, but will not duplicate existing courses. Descriptions of these courses are available in Classfinder, View Searchable Class Schedule
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
3:25 pm |
3:25 pm |
|||||
Subject: Data Science (DASC)
CRN: 22148
Lecture
St Paul: In Person
Requirements Met:
[Core] Signature Work
Instructor: TBD
This course provides students the opportunity to develop and pursue an advanced statistical data analysis with real world relevance and application. In addition to working with a faculty instructor, students are also given the opportunity to collaborate with professional mentors from various industries and to participate in national competitions. Previous sponsors include the Minnesota Department of Natural Resources, the Travelers Companies, U.S. Bancorp, SCOR Reinsurance, Drake Bank, and numerous professors from other departments at St. Thomas. Prerequisites: Grade of C- or higher in DASC 360 and senior standing.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:15 am |
8:15 am |
8:15 am |
||||
Subject: Economics (UG) (ECON)
CRN: 21019
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Soc Sci Analysis
Other Requirements Met:
Liberal Arts Bus Minor Appr
School of Ed Transfer Course
Instructor: TBD
An introduction to macroeconomics: national income analysis, unemployment, price stability, and growth; monetary and fiscal policies; international trade and finance; application of economic theory to current problems. Students who enroll in this course are expected to be able to use high-school algebra.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:35 am |
9:35 am |
9:35 am |
||||
Subject: Economics (UG) (ECON)
CRN: 21020
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Soc Sci Analysis
Other Requirements Met:
Liberal Arts Bus Minor Appr
School of Ed Transfer Course
Instructor: TBD
An introduction to macroeconomics: national income analysis, unemployment, price stability, and growth; monetary and fiscal policies; international trade and finance; application of economic theory to current problems. Students who enroll in this course are expected to be able to use high-school algebra.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:35 am |
9:35 am |
9:35 am |
||||
Subject: Economics (UG) (ECON)
CRN: 21021
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Soc Sci Analysis
Other Requirements Met:
Liberal Arts Bus Minor Appr
School of Ed Transfer Course
Instructor: TBD
An introduction to macroeconomics: national income analysis, unemployment, price stability, and growth; monetary and fiscal policies; international trade and finance; application of economic theory to current problems. Students who enroll in this course are expected to be able to use high-school algebra.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
10:55 am |
10:55 am |
10:55 am |
||||
Subject: Economics (UG) (ECON)
CRN: 21022
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Soc Sci Analysis
Other Requirements Met:
Liberal Arts Bus Minor Appr
School of Ed Transfer Course
Instructor: TBD
An introduction to macroeconomics: national income analysis, unemployment, price stability, and growth; monetary and fiscal policies; international trade and finance; application of economic theory to current problems. Students who enroll in this course are expected to be able to use high-school algebra.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
10:55 am |
10:55 am |
10:55 am |
||||
Subject: Economics (UG) (ECON)
CRN: 21023
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Soc Sci Analysis
Other Requirements Met:
Liberal Arts Bus Minor Appr
School of Ed Transfer Course
Instructor: TBD
An introduction to macroeconomics: national income analysis, unemployment, price stability, and growth; monetary and fiscal policies; international trade and finance; application of economic theory to current problems. Students who enroll in this course are expected to be able to use high-school algebra.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
12:15 pm |
12:15 pm |
12:15 pm |
||||
Subject: Economics (UG) (ECON)
CRN: 21024
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Soc Sci Analysis
Other Requirements Met:
Liberal Arts Bus Minor Appr
School of Ed Transfer Course
Instructor: TBD
An introduction to macroeconomics: national income analysis, unemployment, price stability, and growth; monetary and fiscal policies; international trade and finance; application of economic theory to current problems. Students who enroll in this course are expected to be able to use high-school algebra.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
1:35 pm |
|||||
Subject: Economics (UG) (ECON)
CRN: 21025
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Soc Sci Analysis
Other Requirements Met:
Liberal Arts Bus Minor Appr
School of Ed Transfer Course
Instructor: TBD
An introduction to macroeconomics: national income analysis, unemployment, price stability, and growth; monetary and fiscal policies; international trade and finance; application of economic theory to current problems. Students who enroll in this course are expected to be able to use high-school algebra.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
1:35 pm |
|||||
Subject: Economics (UG) (ECON)
CRN: 21026
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Soc Sci Analysis
Other Requirements Met:
Liberal Arts Bus Minor Appr
School of Ed Transfer Course
Instructor: TBD
An introduction to macroeconomics: national income analysis, unemployment, price stability, and growth; monetary and fiscal policies; international trade and finance; application of economic theory to current problems. Students who enroll in this course are expected to be able to use high-school algebra.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
3:25 pm |
3:25 pm |
|||||
Subject: Economics (UG) (ECON)
CRN: 21027
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Soc Sci Analysis
Other Requirements Met:
Liberal Arts Bus Minor Appr
School of Ed Transfer Course
Instructor: TBD
An introduction to macroeconomics: national income analysis, unemployment, price stability, and growth; monetary and fiscal policies; international trade and finance; application of economic theory to current problems. Students who enroll in this course are expected to be able to use high-school algebra.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:00 am |
8:00 am |
|||||
Subject: Economics (UG) (ECON)
CRN: 21028
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Soc Sci Analysis
Other Requirements Met:
Liberal Arts Bus Minor Appr
School of Ed Transfer Course
Instructor: TBD
An introduction to macroeconomics: national income analysis, unemployment, price stability, and growth; monetary and fiscal policies; international trade and finance; application of economic theory to current problems. Students who enroll in this course are expected to be able to use high-school algebra.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:55 am |
9:55 am |
|||||
Subject: Economics (UG) (ECON)
CRN: 21029
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Soc Sci Analysis
Other Requirements Met:
Liberal Arts Bus Minor Appr
School of Ed Transfer Course
Instructor: TBD
An introduction to macroeconomics: national income analysis, unemployment, price stability, and growth; monetary and fiscal policies; international trade and finance; application of economic theory to current problems. Students who enroll in this course are expected to be able to use high-school algebra.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:55 am |
9:55 am |
|||||
Subject: Economics (UG) (ECON)
CRN: 21030
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Soc Sci Analysis
Other Requirements Met:
Liberal Arts Bus Minor Appr
School of Ed Transfer Course
Instructor: TBD
An introduction to macroeconomics: national income analysis, unemployment, price stability, and growth; monetary and fiscal policies; international trade and finance; application of economic theory to current problems. Students who enroll in this course are expected to be able to use high-school algebra.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
1:30 pm |
|||||
Subject: Economics (UG) (ECON)
CRN: 21031
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Soc Sci Analysis
Other Requirements Met:
Liberal Arts Bus Minor Appr
School of Ed Transfer Course
Instructor: TBD
An introduction to macroeconomics: national income analysis, unemployment, price stability, and growth; monetary and fiscal policies; international trade and finance; application of economic theory to current problems. Students who enroll in this course are expected to be able to use high-school algebra.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
1:30 pm |
|||||
Subject: Economics (UG) (ECON)
CRN: 21032
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Soc Sci Analysis
Other Requirements Met:
Liberal Arts Bus Minor Appr
School of Ed Transfer Course
Instructor: TBD
An introduction to macroeconomics: national income analysis, unemployment, price stability, and growth; monetary and fiscal policies; international trade and finance; application of economic theory to current problems. Students who enroll in this course are expected to be able to use high-school algebra.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
3:25 pm |
3:25 pm |
|||||
Subject: Economics (UG) (ECON)
CRN: 21033
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Soc Sci Analysis
Other Requirements Met:
Liberal Arts Bus Minor Appr
School of Ed Transfer Course
Instructor: TBD
An introduction to macroeconomics: national income analysis, unemployment, price stability, and growth; monetary and fiscal policies; international trade and finance; application of economic theory to current problems. Students who enroll in this course are expected to be able to use high-school algebra.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:35 am |
9:35 am |
9:35 am |
||||
Subject: Economics (UG) (ECON)
CRN: 21034
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Soc Sci Analysis
Other Requirements Met:
Liberal Arts Bus Minor Appr
School of Ed Transfer Course
Instructor: TBD
An introduction to microeconomics: theory of household (consumer) behavior, theory of the firm, market structures, market failures, economic efficiency, factor markets, and income distribution. Students who enroll in this course are expected to be able to use high-school algebra.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:35 am |
9:35 am |
9:35 am |
||||
Subject: Economics (UG) (ECON)
CRN: 21035
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Soc Sci Analysis
Other Requirements Met:
Liberal Arts Bus Minor Appr
School of Ed Transfer Course
Instructor: TBD
An introduction to microeconomics: theory of household (consumer) behavior, theory of the firm, market structures, market failures, economic efficiency, factor markets, and income distribution. Students who enroll in this course are expected to be able to use high-school algebra.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
10:55 am |
10:55 am |
10:55 am |
||||
Subject: Economics (UG) (ECON)
CRN: 21036
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Soc Sci Analysis
Other Requirements Met:
Liberal Arts Bus Minor Appr
School of Ed Transfer Course
Instructor: TBD
An introduction to microeconomics: theory of household (consumer) behavior, theory of the firm, market structures, market failures, economic efficiency, factor markets, and income distribution. Students who enroll in this course are expected to be able to use high-school algebra.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
10:55 am |
10:55 am |
10:55 am |
||||
Subject: Economics (UG) (ECON)
CRN: 21037
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Soc Sci Analysis
Other Requirements Met:
Liberal Arts Bus Minor Appr
School of Ed Transfer Course
Instructor: TBD
An introduction to microeconomics: theory of household (consumer) behavior, theory of the firm, market structures, market failures, economic efficiency, factor markets, and income distribution. Students who enroll in this course are expected to be able to use high-school algebra.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
12:15 pm |
12:15 pm |
12:15 pm |
||||
Subject: Economics (UG) (ECON)
CRN: 21038
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Soc Sci Analysis
Other Requirements Met:
Liberal Arts Bus Minor Appr
School of Ed Transfer Course
Instructor: TBD
An introduction to microeconomics: theory of household (consumer) behavior, theory of the firm, market structures, market failures, economic efficiency, factor markets, and income distribution. Students who enroll in this course are expected to be able to use high-school algebra.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
1:35 pm |
|||||
Subject: Economics (UG) (ECON)
CRN: 21039
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Soc Sci Analysis
Other Requirements Met:
Liberal Arts Bus Minor Appr
School of Ed Transfer Course
Instructor: TBD
An introduction to microeconomics: theory of household (consumer) behavior, theory of the firm, market structures, market failures, economic efficiency, factor markets, and income distribution. Students who enroll in this course are expected to be able to use high-school algebra.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
1:35 pm |
|||||
Subject: Economics (UG) (ECON)
CRN: 21040
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Soc Sci Analysis
Other Requirements Met:
Liberal Arts Bus Minor Appr
School of Ed Transfer Course
Instructor: TBD
An introduction to microeconomics: theory of household (consumer) behavior, theory of the firm, market structures, market failures, economic efficiency, factor markets, and income distribution. Students who enroll in this course are expected to be able to use high-school algebra.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
3:25 pm |
3:25 pm |
|||||
Subject: Economics (UG) (ECON)
CRN: 21041
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Soc Sci Analysis
Other Requirements Met:
Liberal Arts Bus Minor Appr
School of Ed Transfer Course
Instructor: TBD
An introduction to microeconomics: theory of household (consumer) behavior, theory of the firm, market structures, market failures, economic efficiency, factor markets, and income distribution. Students who enroll in this course are expected to be able to use high-school algebra.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:00 am |
8:00 am |
|||||
Subject: Economics (UG) (ECON)
CRN: 21042
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Soc Sci Analysis
Other Requirements Met:
Liberal Arts Bus Minor Appr
School of Ed Transfer Course
Instructor: TBD
An introduction to microeconomics: theory of household (consumer) behavior, theory of the firm, market structures, market failures, economic efficiency, factor markets, and income distribution. Students who enroll in this course are expected to be able to use high-school algebra.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:55 am |
9:55 am |
|||||
Subject: Economics (UG) (ECON)
CRN: 21043
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Soc Sci Analysis
Other Requirements Met:
Liberal Arts Bus Minor Appr
School of Ed Transfer Course
Instructor: TBD
An introduction to microeconomics: theory of household (consumer) behavior, theory of the firm, market structures, market failures, economic efficiency, factor markets, and income distribution. Students who enroll in this course are expected to be able to use high-school algebra.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:55 am |
9:55 am |
|||||
Subject: Economics (UG) (ECON)
CRN: 21044
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Soc Sci Analysis
Other Requirements Met:
Liberal Arts Bus Minor Appr
School of Ed Transfer Course
Instructor: TBD
An introduction to microeconomics: theory of household (consumer) behavior, theory of the firm, market structures, market failures, economic efficiency, factor markets, and income distribution. Students who enroll in this course are expected to be able to use high-school algebra.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
1:30 pm |
|||||
Subject: Economics (UG) (ECON)
CRN: 21045
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Soc Sci Analysis
Other Requirements Met:
Liberal Arts Bus Minor Appr
School of Ed Transfer Course
Instructor: TBD
An introduction to microeconomics: theory of household (consumer) behavior, theory of the firm, market structures, market failures, economic efficiency, factor markets, and income distribution. Students who enroll in this course are expected to be able to use high-school algebra.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
1:30 pm |
|||||
Subject: Economics (UG) (ECON)
CRN: 21046
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Soc Sci Analysis
Other Requirements Met:
Liberal Arts Bus Minor Appr
School of Ed Transfer Course
Instructor: TBD
An introduction to microeconomics: theory of household (consumer) behavior, theory of the firm, market structures, market failures, economic efficiency, factor markets, and income distribution. Students who enroll in this course are expected to be able to use high-school algebra.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
3:25 pm |
3:25 pm |
|||||
Subject: Economics (UG) (ECON)
CRN: 21047
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Soc Sci Analysis
Other Requirements Met:
Liberal Arts Bus Minor Appr
School of Ed Transfer Course
Instructor: TBD
An introduction to microeconomics: theory of household (consumer) behavior, theory of the firm, market structures, market failures, economic efficiency, factor markets, and income distribution. Students who enroll in this course are expected to be able to use high-school algebra.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:35 am |
9:35 am |
9:35 am |
||||
Subject: Economics (UG) (ECON)
CRN: 21048
In Person | Lecture
St Paul: In Person
Requirements Met:
School of Ed Transfer Course
Instructor: TBD
An introduction to techniques used in forecasting with emphasis on analyzing economic and business data. The emphasis is on timeseries data, although cross-sectional analysis is also covered. Techniques presented include variants of moving averages, variants of exponential smoothing, regression and ARIMA processes. Prerequisites: Prerequisites: ECON 251 and 252 and a grade of C- or higher in DASC 112, DASC 120, STAT 303, or STAT 314.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
5:30 pm |
5:30 pm |
|||||
Subject: Economics (UG) (ECON)
CRN: 21049
In Person | Lecture
St Paul: In Person
Requirements Met:
School of Ed Transfer Course
Instructor: TBD
An introduction to techniques used in forecasting with emphasis on analyzing economic and business data. The emphasis is on timeseries data, although cross-sectional analysis is also covered. Techniques presented include variants of moving averages, variants of exponential smoothing, regression and ARIMA processes. Prerequisites: Prerequisites: ECON 251 and 252 and a grade of C- or higher in DASC 112, DASC 120, STAT 303, or STAT 314.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:00 am |
8:00 am |
|||||
Subject: Economics (UG) (ECON)
CRN: 21050
In Person | Lecture
St Paul: In Person
Requirements Met:
School of Ed Transfer Course
Instructor: TBD
An introduction to techniques used in forecasting with emphasis on analyzing economic and business data. The emphasis is on timeseries data, although cross-sectional analysis is also covered. Techniques presented include variants of moving averages, variants of exponential smoothing, regression and ARIMA processes. Prerequisites: Prerequisites: ECON 251 and 252 and a grade of C- or higher in DASC 112, DASC 120, STAT 303, or STAT 314.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:55 am |
9:55 am |
|||||
Subject: Economics (UG) (ECON)
CRN: 21051
In Person | Lecture
St Paul: In Person
Requirements Met:
School of Ed Transfer Course
Instructor: TBD
An introduction to techniques used in forecasting with emphasis on analyzing economic and business data. The emphasis is on timeseries data, although cross-sectional analysis is also covered. Techniques presented include variants of moving averages, variants of exponential smoothing, regression and ARIMA processes. Prerequisites: Prerequisites: ECON 251 and 252 and a grade of C- or higher in DASC 112, DASC 120, STAT 303, or STAT 314.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
3:25 pm |
3:25 pm |
|||||
Subject: Economics (UG) (ECON)
CRN: 21052
In Person | Lecture
St Paul: In Person
Requirements Met:
School of Ed Transfer Course
Instructor: TBD
An introduction to techniques used in forecasting with emphasis on analyzing economic and business data. The emphasis is on timeseries data, although cross-sectional analysis is also covered. Techniques presented include variants of moving averages, variants of exponential smoothing, regression and ARIMA processes. Prerequisites: Prerequisites: ECON 251 and 252 and a grade of C- or higher in DASC 112, DASC 120, STAT 303, or STAT 314.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:55 am |
9:55 am |
|||||
Subject: Economics (UG) (ECON)
CRN: 21053
In Person | Lecture
St Paul: In Person
Requirements Met:
Writing in the Discipline
Instructor: TBD
An introduction to the application of statistical models and methods to economic problems; simple and multiple linear regression models; generalized least-squares; model building and related topics. Emphasis is on use of econometric software to analyze data and to test hypotheses. Prerequisites: Eight credits of ECON at the 300- or 400-level, and MATH 109, 111, or 113, and a grade of C- or higher in one of the following: DASC 120, DASC 112, STAT 303, or STAT 314.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
1:30 pm |
|||||
Subject: Economics (UG) (ECON)
CRN: 21054
In Person | Lecture
St Paul: In Person
Requirements Met:
Writing in the Discipline
Instructor: TBD
An introduction to the application of statistical models and methods to economic problems; simple and multiple linear regression models; generalized least-squares; model building and related topics. Emphasis is on use of econometric software to analyze data and to test hypotheses. Prerequisites: Eight credits of ECON at the 300- or 400-level, and MATH 109, 111, or 113, and a grade of C- or higher in one of the following: DASC 120, DASC 112, STAT 303, or STAT 314.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:00 am |
8:00 am |
|||||
Subject: Economics (UG) (ECON)
CRN: 21055
In Person | Lecture
St Paul: In Person
Instructor: TBD
The application of industrial organization, public finance, labor economics, and economic history to the sports entertainment industry with a view toward better understanding the many economic issues in sports, such as Major League Baseball's antitrust exemption, the deontological and consequentialist bases for the public subsidation of sports stadiums, and the underpayment of salaries to professional athletes in North America. Prerequisite: ECON 252.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
12:15 pm |
12:15 pm |
12:15 pm |
||||
Subject: Economics (UG) (ECON)
CRN: 21056
In Person | Lecture
St Paul: In Person
Instructor: TBD
Economic Inequality focuses on two types of inequality often studied by economists: income and wealth inequality. The course will illustrate how inequality in the U.S. has evolved over time, and how it compares to other countries. It puts particular emphasis on using data and modeling to explain the origins of inequality and explore the impacts of policies aimed to address it. The course highlights how inequality relates to demographics such as race, gender, and education. Finally, it explores hard questions about whether inequality is unavoidable, whether it matters, and what can be done about it. Prerequisites: ECON 251 and ECON 252
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
1:35 pm |
|||||
Subject: Economics (UG) (ECON)
CRN: 21057
In Person | Lecture
St Paul: In Person
Requirements Met:
School of Ed Transfer Course
Instructor: TBD
The nature, evolution, and functions of money; the role of depository financial institutions; structure of financial markets; principles of central banking; monetary theory and monetary policy; introduction to international banking and finance. Prerequisites: ECON 251 and 252
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:35 am |
9:35 am |
9:35 am |
||||
Subject: Economics (UG) (ECON)
CRN: 21058
In Person | Lecture
St Paul: In Person
Requirements Met:
School of Ed Transfer Course
Instructor: TBD
This course examines the role of government in a modern economy. It develops a set of concepts that will allow students to evaluate policy alternatives. The following are among the particular topics likely to be addressed: externalities and environmental protection, education, the redistribution of income, health care, social insurance, taxation and tax reform, cost-benefit analysis, fiscal federalism, and state and local government finance. In each case, the focus is on whether intervention by government is appropriate, what the most effective form of any such intervention is, and how alternative policy interventions affect the private decisions made by citizens and business firms. Prerequisite: ECON 252
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
1:30 pm |
|||||
Subject: Economics (UG) (ECON)
CRN: 21059
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Global Perspective
Other Requirements Met:
School of Ed Transfer Course
Instructor: TBD
This course examines the economics of International trade and trade policy. Topics include: theories of why countries trade and their implications for income distribution and gains from trade; implications of national trade policies; strategic trade policy; regional agreements (including multilateral trade agreements, free trade areas, customs unions, common markets and economic unions); international factor movements; trade issues related to developing countries, the environment of economic growth. Prerequisites: ECON 251 and 252
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
3:25 pm |
3:25 pm |
|||||
Subject: Economics (UG) (ECON)
CRN: 21060
In Person | Lecture
St Paul: In Person
Instructor: TBD
Theories of money, interest, income and expenditure, employment, and inflation; monetary and fiscal policies; introduction to the theory of growth. Prerequisites: ECON 251 and 252
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
1:35 pm |
|||||
Subject: Economics (UG) (ECON)
CRN: 21061
In Person | Lecture
St Paul: In Person
Instructor: TBD
Analysis of consumer behavior and demand theory; theory of production and costs; analysis of the firm and industry under various market structures; factor pricing; general equilibrium. Selected additional topics such as market failure, economics of information, welfare economics, income distribution. Prerequisites: ECON 251, 252 and MATH 109 or 111 or 113 or equivalent.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
3:25 pm |
3:25 pm |
|||||
Subject: Economics (UG) (ECON)
CRN: 21062
In Person | Lecture
St Paul: In Person
Instructor: TBD
Analysis of consumer behavior and demand theory; theory of production and costs; analysis of the firm and industry under various market structures; factor pricing; general equilibrium. Selected additional topics such as market failure, economics of information, welfare economics, income distribution. Prerequisites: ECON 251, 252 and MATH 109 or 111 or 113 or equivalent.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
10:55 am |
10:55 am |
10:55 am |
||||
Subject: Economics (UG) (ECON)
CRN: 21063
In Person | Lecture
St Paul: In Person
Instructor: TBD
Microeconomic theory applied to business decision making. Emphasis on quantitative techniques applied to business decision making under uncertainty, demand and cost estimation, linear production models, pricing decisions, capital budgeting, inventory problems, and group decision making. Quantitative tools include linear regression, statistical decision analysis and linear programming. Prerequisites: ECON 352 and a grade of C- or higher in one of the following: DASC 112, DASC 120, STAT 303, or STAT 314; or permission of the instructor.
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering Educ (Grad) (EGED)
CRN: 22134
Blended Online & In-Person | Lecture
St Paul: In Person
Instructor: TBD
This is a one-semester survey of engineering topics. Topics will span machine design, manufacturing, thermodynamics, electronics, computer programming, and chemical engineering. The course will have weekly lab sessions which will allow students to apply what they are learning from lectures in a hands-on setting. Emphasis will be placed on how the material is used by practitioners. Numerous examples will be given of how this material can be presented in a way that meets Minnesota education standards. Each topics unit will include a component dedicated to the historic and current relevance of the concepts and skills presented. Whenever appropriate, and feasible, guest leactures and field trips will be arranged. The goal of this course is to provide teachers with a short, hands-on introduction to a variety of engineering.
3 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20246
In Person | Lecture
St Paul: In Person
Instructor: TBD
This course introduces students to the engineering disciplines and the design process through a semester-long design challenge. Students will gain improved self-awareness, empathy, and critical thinking skills; this will help them work as a team in a collaborative and inclusive environment to identify a need, interview clients, plan tasks and propose engineering solutions with consideration for the common good.
2 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20247
In Person | Lecture
St Paul: In Person
Instructor: TBD
This course introduces students to the engineering disciplines and the design process through a semester-long design challenge. Students will gain improved self-awareness, empathy, and critical thinking skills; this will help them work as a team in a collaborative and inclusive environment to identify a need, interview clients, plan tasks and propose engineering solutions with consideration for the common good.
2 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20107
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
School of Ed Transfer Course
Instructor: TBD
The course examines the core concepts of energy and power technologies. A hands-on laboratory will examine how refrigerators, swamp coolers, generators, turbines, car engines and solar panels work. The class covers how electricity from fossil fuels is generated and transported, and the status of the technology behind harnessing geothermal resources, solar power, fuel cells, wind power, and biomass energy. Students will be introduced to the 1st and 2nd laws of thermodynamics, trade-off charts and the design process. The cultural, social, and economic impacts of energy production are discussed as well as their effects on the environment. (This course is limited to non-majors or students with Freshman or Sophomore standing.)
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20109
In Person | Lab
St Paul: In Person
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
School of Ed Transfer Course
Instructor: TBD
The course examines the core concepts of energy and power technologies. A hands-on laboratory will examine how refrigerators, swamp coolers, generators, turbines, car engines and solar panels work. The class covers how electricity from fossil fuels is generated and transported, and the status of the technology behind harnessing geothermal resources, solar power, fuel cells, wind power, and biomass energy. Students will be introduced to the 1st and 2nd laws of thermodynamics, trade-off charts and the design process. The cultural, social, and economic impacts of energy production are discussed as well as their effects on the environment. (This course is limited to non-majors or students with Freshman or Sophomore standing.)
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20110
In Person | Lab
St Paul: In Person
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
School of Ed Transfer Course
Instructor: TBD
The course examines the core concepts of energy and power technologies. A hands-on laboratory will examine how refrigerators, swamp coolers, generators, turbines, car engines and solar panels work. The class covers how electricity from fossil fuels is generated and transported, and the status of the technology behind harnessing geothermal resources, solar power, fuel cells, wind power, and biomass energy. Students will be introduced to the 1st and 2nd laws of thermodynamics, trade-off charts and the design process. The cultural, social, and economic impacts of energy production are discussed as well as their effects on the environment. (This course is limited to non-majors or students with Freshman or Sophomore standing.)
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20248
In Person | Lecture
St Paul: In Person
Instructor: TBD
Through a combination of lectures, hands-on computer time, and design projects, students will learn to read, and create, engineering drawings and use computer-aided-design (CAD) terminology and technology. Topics covered will include the engineering design process, rapid prototyping, principles of projection, and introductory methods of representation and constructive geometry.
2 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:55 am |
||||||
Subject: Engineering (UG) (ENGR)
CRN: 20249
In Person | Lecture/Lab
St Paul: Schoenecker Center 309
A hands-on introduction to a variety of basic concepts in Electrical and Computer Engineering. The course includes lessons, labs, and projects that explore analog and digital electronics in both theory and practice. Students will develop proficiency in the basic tools and skills required for electrical and computer engineering projects and coursework, and gain insight into them as a potential major, minor, and/or career.
2 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20036
In Person | Lecture
St Paul: In Person
Instructor: TBD
Principles of statics including such topics as rigid bodies, equilibrium, equivalent systems of forces, 2D structures, distributed forces, centroids and centers of gravity, moments of inertia, friction, forces in beams & cables, and the principle of virtual work. Emphasis on applications with integrated labs/hands-on projects. Prerequisites: A minimum grade of C- in PHYS 211 and a processed Engineering (Electrical, Computer, Civil, Mechanical) or Physics major or minor declaration.
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20284
In Person | Lecture
St Paul: In Person
Instructor: TBD
Principles of statics including such topics as rigid bodies, equilibrium, equivalent systems of forces, 2D structures, distributed forces, centroids and centers of gravity, moments of inertia, friction, forces in beams & cables, and the principle of virtual work. Emphasis on applications with integrated labs/hands-on projects. Prerequisites: A minimum grade of C- in PHYS 211 and a processed Engineering (Electrical, Computer, Civil, Mechanical) or Physics major or minor declaration.
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20001
In Person | Lecture
St Paul: In Person
Instructor: TBD
Principles of deformable body mechanics including stress, strain, basic loading situations, transformations of stress and strain, beam theory, and energy methods. Emphasis on applications with integrated labs/hands-on projects. Prerequisite: A minimum grade of C- in ENGR 220
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20002
In Person | Lecture
St Paul: In Person
Instructor: TBD
Principles of deformable body mechanics including stress, strain, basic loading situations, transformations of stress and strain, beam theory, and energy methods. Emphasis on applications with integrated labs/hands-on projects. Prerequisite: A minimum grade of C- in ENGR 220
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20117
In Person | Lecture
St Paul: In Person
Instructor: TBD
Principles of deformable body mechanics including stress, strain, basic loading situations, transformations of stress and strain, beam theory, and energy methods. Emphasis on applications with integrated labs/hands-on projects. Prerequisite: A minimum grade of C- in ENGR 220
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20071
In Person | Lab
St Paul: In Person
Instructor: TBD
Principles of deformable body mechanics including stress, strain, basic loading situations, transformations of stress and strain, beam theory, and energy methods. Emphasis on applications with integrated labs/hands-on projects. Prerequisite: A minimum grade of C- in ENGR 220
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20072
In Person | Lab
St Paul: In Person
Instructor: TBD
Principles of deformable body mechanics including stress, strain, basic loading situations, transformations of stress and strain, beam theory, and energy methods. Emphasis on applications with integrated labs/hands-on projects. Prerequisite: A minimum grade of C- in ENGR 220
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20073
In Person | Lab
St Paul: In Person
Instructor: TBD
Principles of deformable body mechanics including stress, strain, basic loading situations, transformations of stress and strain, beam theory, and energy methods. Emphasis on applications with integrated labs/hands-on projects. Prerequisite: A minimum grade of C- in ENGR 220
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20182
In Person | Lab
St Paul: In Person
Instructor: TBD
Principles of deformable body mechanics including stress, strain, basic loading situations, transformations of stress and strain, beam theory, and energy methods. Emphasis on applications with integrated labs/hands-on projects. Prerequisite: A minimum grade of C- in ENGR 220
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20074
In Person | Lab
St Paul: In Person
Instructor: TBD
Principles of deformable body mechanics including stress, strain, basic loading situations, transformations of stress and strain, beam theory, and energy methods. Emphasis on applications with integrated labs/hands-on projects. Prerequisite: A minimum grade of C- in ENGR 220
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20108
In Person | Lab
St Paul: In Person
Instructor: TBD
Principles of deformable body mechanics including stress, strain, basic loading situations, transformations of stress and strain, beam theory, and energy methods. Emphasis on applications with integrated labs/hands-on projects. Prerequisite: A minimum grade of C- in ENGR 220
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
10:55 am |
10:55 am |
10:55 am |
||||
Subject: Engineering (UG) (ENGR)
CRN: 20042
In Person | Lecture
St Paul: Schoenecker Center 314
Introduction to the design of digital logic. Topics include Boolean logic, design and optimization of combinational and sequential logic, Hardware Description Language (HDL), the use of field-programmable devices (FPGAs), logic hazards, electronic implementation of logic gates. Students will be expected to specify, design, simulate, construct, and test digital circuits and document all phases of the process.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:30 am |
||||||
Subject: Engineering (UG) (ENGR)
CRN: 20043
In Person | Lab
St Paul: Schoenecker Center 309
Instructor: TBD
Introduction to the design of digital logic. Topics include Boolean logic, design and optimization of combinational and sequential logic, Hardware Description Language (HDL), the use of field-programmable devices (FPGAs), logic hazards, electronic implementation of logic gates. Students will be expected to specify, design, simulate, construct, and test digital circuits and document all phases of the process.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
Subject: Engineering (UG) (ENGR)
CRN: 20044
In Person | Lab
St Paul: Schoenecker Center 309
Instructor: TBD
Introduction to the design of digital logic. Topics include Boolean logic, design and optimization of combinational and sequential logic, Hardware Description Language (HDL), the use of field-programmable devices (FPGAs), logic hazards, electronic implementation of logic gates. Students will be expected to specify, design, simulate, construct, and test digital circuits and document all phases of the process.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:35 am |
9:35 am |
9:35 am |
||||
Subject: Engineering (UG) (ENGR)
CRN: 20003
In Person | Lecture
St Paul: Schoenecker Center 314
Introduction to analog electrical circuits in the time and frequency domains. Circuit analysis techniques including nodal analysis and equivalence theorems will be covered and used to assess a variety of circuits in the time and frequency domains. Students will develop analysis and laboratory skills to analyze and test the operation of circuits composed of resistors, capacitors, inductors, and operational amplifiers. Prerequisites: Concurrent registration with or prior completion of PHYS 212 and a processed Engineering (Electrical, Computer, Civil, Mechanical) or Physics major or minor declaration. NOTE: Students who receive credit for ENGR 350 may not receive credit for ENGR 240.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
5:30 pm |
||||||
Subject: Engineering (UG) (ENGR)
CRN: 20004
In Person | Lab
St Paul: Schoenecker Center 309
Introduction to analog electrical circuits in the time and frequency domains. Circuit analysis techniques including nodal analysis and equivalence theorems will be covered and used to assess a variety of circuits in the time and frequency domains. Students will develop analysis and laboratory skills to analyze and test the operation of circuits composed of resistors, capacitors, inductors, and operational amplifiers. Prerequisites: Concurrent registration with or prior completion of PHYS 212 and a processed Engineering (Electrical, Computer, Civil, Mechanical) or Physics major or minor declaration. NOTE: Students who receive credit for ENGR 350 may not receive credit for ENGR 240.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
5:30 pm |
||||||
Subject: Engineering (UG) (ENGR)
CRN: 20103
In Person | Lab
St Paul: Schoenecker Center 309
Introduction to analog electrical circuits in the time and frequency domains. Circuit analysis techniques including nodal analysis and equivalence theorems will be covered and used to assess a variety of circuits in the time and frequency domains. Students will develop analysis and laboratory skills to analyze and test the operation of circuits composed of resistors, capacitors, inductors, and operational amplifiers. Prerequisites: Concurrent registration with or prior completion of PHYS 212 and a processed Engineering (Electrical, Computer, Civil, Mechanical) or Physics major or minor declaration. NOTE: Students who receive credit for ENGR 350 may not receive credit for ENGR 240.
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20287
In Person | Lab
St Paul: In Person
Instructor: TBD
A hands-on lab providing instruction in fabrication skills used throughout the mechanical engineering curriculum. Training on safety and usage of manual mills, manual lathes, and a wide variety of woodshop equipment.
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20288
In Person | Lab
St Paul: In Person
Instructor: TBD
A hands-on lab providing instruction in fabrication skills used throughout the mechanical engineering curriculum. Training on safety and usage of manual mills, manual lathes, and a wide variety of woodshop equipment.
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20289
In Person | Lab
St Paul: In Person
Instructor: TBD
A hands-on lab providing instruction in fabrication skills used throughout the mechanical engineering curriculum. Training on safety and usage of manual mills, manual lathes, and a wide variety of woodshop equipment.
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20290
In Person | Lab
St Paul: In Person
Instructor: TBD
A hands-on lab providing instruction in fabrication skills used throughout the mechanical engineering curriculum. Training on safety and usage of manual mills, manual lathes, and a wide variety of woodshop equipment.
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20263
Online: Asynchronous | Directed Study
Online
Instructor: TBD
This zero credit course is for co-curricular engineering practical training for undergraduate students in the School of Engineering.
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20035
In Person | Lecture
St Paul: In Person
Instructor: TBD
Focus is on advanced mechanics topics, failure theories (static and dynamic), and on an understanding of basic machine components. This course will develop the student's creative skills in conceptualizing machines to meet performance criteria by means of a design project. Machine designs will require the understanding and use of machine components such as springs, screws, bearings, basic 4-bar linkages, cams, and gears. Finally, a number of mini labs/workshops on topics that support the design project such as dynamic analysis software, machine component design, and design for manufacture are given. Prerequisite: A minimum grade of C- in (ENGR 170 or ENGR 171), ENGR 220 and ENGR 221, and satisfactory completion of ENGR 255 (or concurrent registration)
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20075
In Person | Lecture
St Paul: In Person
Instructor: TBD
Focus is on advanced mechanics topics, failure theories (static and dynamic), and on an understanding of basic machine components. This course will develop the student's creative skills in conceptualizing machines to meet performance criteria by means of a design project. Machine designs will require the understanding and use of machine components such as springs, screws, bearings, basic 4-bar linkages, cams, and gears. Finally, a number of mini labs/workshops on topics that support the design project such as dynamic analysis software, machine component design, and design for manufacture are given. Prerequisite: A minimum grade of C- in (ENGR 170 or ENGR 171), ENGR 220 and ENGR 221, and satisfactory completion of ENGR 255 (or concurrent registration)
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20040
In Person | Lab
St Paul: In Person
Instructor: TBD
Focus is on advanced mechanics topics, failure theories (static and dynamic), and on an understanding of basic machine components. This course will develop the student's creative skills in conceptualizing machines to meet performance criteria by means of a design project. Machine designs will require the understanding and use of machine components such as springs, screws, bearings, basic 4-bar linkages, cams, and gears. Finally, a number of mini labs/workshops on topics that support the design project such as dynamic analysis software, machine component design, and design for manufacture are given. Prerequisite: A minimum grade of C- in (ENGR 170 or ENGR 171), ENGR 220 and ENGR 221, and satisfactory completion of ENGR 255 (or concurrent registration)
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20077
In Person | Lab
St Paul: In Person
Instructor: TBD
Focus is on advanced mechanics topics, failure theories (static and dynamic), and on an understanding of basic machine components. This course will develop the student's creative skills in conceptualizing machines to meet performance criteria by means of a design project. Machine designs will require the understanding and use of machine components such as springs, screws, bearings, basic 4-bar linkages, cams, and gears. Finally, a number of mini labs/workshops on topics that support the design project such as dynamic analysis software, machine component design, and design for manufacture are given. Prerequisite: A minimum grade of C- in (ENGR 170 or ENGR 171), ENGR 220 and ENGR 221, and satisfactory completion of ENGR 255 (or concurrent registration)
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20184
In Person | Lab
St Paul: In Person
Instructor: TBD
Focus is on advanced mechanics topics, failure theories (static and dynamic), and on an understanding of basic machine components. This course will develop the student's creative skills in conceptualizing machines to meet performance criteria by means of a design project. Machine designs will require the understanding and use of machine components such as springs, screws, bearings, basic 4-bar linkages, cams, and gears. Finally, a number of mini labs/workshops on topics that support the design project such as dynamic analysis software, machine component design, and design for manufacture are given. Prerequisite: A minimum grade of C- in (ENGR 170 or ENGR 171), ENGR 220 and ENGR 221, and satisfactory completion of ENGR 255 (or concurrent registration)
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20078
In Person | Lecture
St Paul: In Person
Instructor: TBD
Principles of dynamics including such topics as kinematics of particles, Newton's Second Law, energy and momentum methods, plane motion of rigid bodies, and forces and acceleration. Applied mathematics is used to solve resulting ordinary differential equations numerically with MATLAB. Emphasis on applications with integrated labs/projects. Prerequisites: Minimum of C- in CISC 130, ENGR 220, MATH 200, and MATH 210
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20079
In Person | Lab
St Paul: In Person
Instructor: TBD
Principles of dynamics including such topics as kinematics of particles, Newton's Second Law, energy and momentum methods, plane motion of rigid bodies, and forces and acceleration. Applied mathematics is used to solve resulting ordinary differential equations numerically with MATLAB. Emphasis on applications with integrated labs/projects. Prerequisites: Minimum of C- in CISC 130, ENGR 220, MATH 200, and MATH 210
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20080
In Person | Lab
St Paul: In Person
Instructor: TBD
Principles of dynamics including such topics as kinematics of particles, Newton's Second Law, energy and momentum methods, plane motion of rigid bodies, and forces and acceleration. Applied mathematics is used to solve resulting ordinary differential equations numerically with MATLAB. Emphasis on applications with integrated labs/projects. Prerequisites: Minimum of C- in CISC 130, ENGR 220, MATH 200, and MATH 210
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20081
In Person | Lab
St Paul: In Person
Instructor: TBD
Principles of dynamics including such topics as kinematics of particles, Newton's Second Law, energy and momentum methods, plane motion of rigid bodies, and forces and acceleration. Applied mathematics is used to solve resulting ordinary differential equations numerically with MATLAB. Emphasis on applications with integrated labs/projects. Prerequisites: Minimum of C- in CISC 130, ENGR 220, MATH 200, and MATH 210
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20005
In Person | Lecture
St Paul: In Person
Instructor: TBD
Topics include memory mapped I/O, timer applications (input capture, PWM), analog-to-digital, digital-to-analog conversion, interrupts, communication and bus protocols, clocking, low-power design and interface with sensors, actuators and other common microcontroller peripherals. This course has a major design project. Prerequisite: A minimum grade of C- in both ENGR 230 and (CISC 130 or 131).
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20006
In Person | Lab
St Paul: In Person
Instructor: TBD
Topics include memory mapped I/O, timer applications (input capture, PWM), analog-to-digital, digital-to-analog conversion, interrupts, communication and bus protocols, clocking, low-power design and interface with sensors, actuators and other common microcontroller peripherals. This course has a major design project. Prerequisite: A minimum grade of C- in both ENGR 230 and (CISC 130 or 131).
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20016
In Person | Lab
St Paul: In Person
Instructor: TBD
Topics include memory mapped I/O, timer applications (input capture, PWM), analog-to-digital, digital-to-analog conversion, interrupts, communication and bus protocols, clocking, low-power design and interface with sensors, actuators and other common microcontroller peripherals. This course has a major design project. Prerequisite: A minimum grade of C- in both ENGR 230 and (CISC 130 or 131).
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
1:35 pm |
1:35 pm |
||||
Subject: Engineering (UG) (ENGR)
CRN: 20007
In Person | Lecture
St Paul: Schoenecker Center 314
A continuation of PHYS 341. An introduction to the practical consequences of Maxwell's equations including propagation, reflection and absorption of electromagnetic waves. Applications include antennas, waveguides, transmission lines, and shielding from electromagnetic interference. Prerequisite: A minimum grade of C- in PHYS 341
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:15 am |
8:15 am |
|||||
Subject: Engineering (UG) (ENGR)
CRN: 20272
In Person | Lecture
St Paul: O'Shaughnessy Science Hall 327
Analysis of electronic devices and circuits. Topics include Op Amps, Op Amp feedback, and OA applications, linear and non-linear transistor circuit models, single transistor amplifiers, and circuit design techniques. Applications include power electronics, amplifiers, active filters, and integrated frequency analysis/design. Prerequisites: A minimum grade of C- in ENGR 240 or 350
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:30 am |
||||||
Subject: Engineering (UG) (ENGR)
CRN: 20278
In Person | Lab
St Paul: Schoenecker Center 308
Analysis of electronic devices and circuits. Topics include Op Amps, Op Amp feedback, and OA applications, linear and non-linear transistor circuit models, single transistor amplifiers, and circuit design techniques. Applications include power electronics, amplifiers, active filters, and integrated frequency analysis/design. Prerequisites: A minimum grade of C- in ENGR 240 or 350
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20024
In Person | Lecture
St Paul: In Person
Instructor: TBD
Continuation of ENGR 345. Topics include network theorems applicable to feedback analysis, amplifier feedback analysis, amplifier frequency analysis, and select circuit topologies commonly found in op amps. Special topics covered include an introduction to switch mode power supplies and an introduction to electrical noise and noise sources. Prerequisite: A minimum grade of C- in ENGR 345
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
10:55 am |
10:55 am |
10:55 am |
||||
Subject: Engineering (UG) (ENGR)
CRN: 20049
In Person | Lecture
St Paul: O'Shaughnessy Science Hall 333
This course provides scientists and engineers with a background in electrical circuits, electronics and electric machines. Topics include DC, AC and transient circuit analysis, AC 3-phase and power, frequency response and filters, operational amplifiers and active filter, and electric machines; magnetism, magnetic materials, magnetic circuits, DC and AC motors and generators. The course consists of lectures, demonstrations, discussions and an associated hands-on laboratory. Prerequisite: A minimum grade of C- in PHYS 112 or 212
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
2:55 pm |
2:55 pm |
|||||
Subject: Engineering (UG) (ENGR)
CRN: 20082
In Person | Lecture
St Paul: Schoenecker Center 314
This course provides scientists and engineers with a background in electrical circuits, electronics and electric machines. Topics include DC, AC and transient circuit analysis, AC 3-phase and power, frequency response and filters, operational amplifiers and active filter, and electric machines; magnetism, magnetic materials, magnetic circuits, DC and AC motors and generators. The course consists of lectures, demonstrations, discussions and an associated hands-on laboratory. Prerequisite: A minimum grade of C- in PHYS 112 or 212
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
2:55 pm |
||||||
Subject: Engineering (UG) (ENGR)
CRN: 20037
In Person | Lab
St Paul: Schoenecker Center 309
Instructor: TBD
This course provides scientists and engineers with a background in electrical circuits, electronics and electric machines. Topics include DC, AC and transient circuit analysis, AC 3-phase and power, frequency response and filters, operational amplifiers and active filter, and electric machines; magnetism, magnetic materials, magnetic circuits, DC and AC motors and generators. The course consists of lectures, demonstrations, discussions and an associated hands-on laboratory. Prerequisite: A minimum grade of C- in PHYS 112 or 212
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
5:30 pm |
||||||
Subject: Engineering (UG) (ENGR)
CRN: 20038
In Person | Lab
St Paul: In Person
This course provides scientists and engineers with a background in electrical circuits, electronics and electric machines. Topics include DC, AC and transient circuit analysis, AC 3-phase and power, frequency response and filters, operational amplifiers and active filter, and electric machines; magnetism, magnetic materials, magnetic circuits, DC and AC motors and generators. The course consists of lectures, demonstrations, discussions and an associated hands-on laboratory. Prerequisite: A minimum grade of C- in PHYS 112 or 212
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
5:30 pm |
||||||
Subject: Engineering (UG) (ENGR)
CRN: 20083
In Person | Lab
St Paul: Schoenecker Center 309
Instructor: TBD
This course provides scientists and engineers with a background in electrical circuits, electronics and electric machines. Topics include DC, AC and transient circuit analysis, AC 3-phase and power, frequency response and filters, operational amplifiers and active filter, and electric machines; magnetism, magnetic materials, magnetic circuits, DC and AC motors and generators. The course consists of lectures, demonstrations, discussions and an associated hands-on laboratory. Prerequisite: A minimum grade of C- in PHYS 112 or 212
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20022
In Person | Lecture
St Paul: In Person
Instructor: TBD
An introduction to materials and their properties. This course introduces students to the fundamentals of materials theory, properties and applications. Topics include properties and applications of metals, polymers, ceramics and composite materials. The course emphasizes characteristics of materials in manufacturing operations and service, including open-ended design issues. Offered in fall semester. Prerequisites: A minimum grade of C- in CHEM 109 (preferred), or CHEM 111 or CHEM 115
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20119
In Person | Lecture
St Paul: In Person
Instructor: TBD
An introduction to materials and their properties. This course introduces students to the fundamentals of materials theory, properties and applications. Topics include properties and applications of metals, polymers, ceramics and composite materials. The course emphasizes characteristics of materials in manufacturing operations and service, including open-ended design issues. Offered in fall semester. Prerequisites: A minimum grade of C- in CHEM 109 (preferred), or CHEM 111 or CHEM 115
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20023
In Person | Lab
St Paul: In Person
Instructor: TBD
An introduction to materials and their properties. This course introduces students to the fundamentals of materials theory, properties and applications. Topics include properties and applications of metals, polymers, ceramics and composite materials. The course emphasizes characteristics of materials in manufacturing operations and service, including open-ended design issues. Offered in fall semester. Prerequisites: A minimum grade of C- in CHEM 109 (preferred), or CHEM 111 or CHEM 115
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20045
In Person | Lab
St Paul: In Person
Instructor: TBD
An introduction to materials and their properties. This course introduces students to the fundamentals of materials theory, properties and applications. Topics include properties and applications of metals, polymers, ceramics and composite materials. The course emphasizes characteristics of materials in manufacturing operations and service, including open-ended design issues. Offered in fall semester. Prerequisites: A minimum grade of C- in CHEM 109 (preferred), or CHEM 111 or CHEM 115
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20120
In Person | Lab
St Paul: In Person
Instructor: TBD
An introduction to materials and their properties. This course introduces students to the fundamentals of materials theory, properties and applications. Topics include properties and applications of metals, polymers, ceramics and composite materials. The course emphasizes characteristics of materials in manufacturing operations and service, including open-ended design issues. Offered in fall semester. Prerequisites: A minimum grade of C- in CHEM 109 (preferred), or CHEM 111 or CHEM 115
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20176
In Person | Lab
St Paul: In Person
Instructor: TBD
An introduction to materials and their properties. This course introduces students to the fundamentals of materials theory, properties and applications. Topics include properties and applications of metals, polymers, ceramics and composite materials. The course emphasizes characteristics of materials in manufacturing operations and service, including open-ended design issues. Offered in fall semester. Prerequisites: A minimum grade of C- in CHEM 109 (preferred), or CHEM 111 or CHEM 115
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
12:15 pm |
12:15 pm |
12:15 pm |
||||
Subject: Engineering (UG) (ENGR)
CRN: 20151
In Person | Lecture
St Paul: In Person
Instructor: TBD
Introduction to construction materials commonly used in civil engineering projects, including aggregates, asphalt, concrete, fiber reinforced polymers, masonry, metals, and wood. For each material, topics will include material properties, specifications, laboratory procedures, and test equipment, with an emphasis on ASTM standards. Introduction to asphalt and concrete mix design. Prerequisites: A grade of C- or better in ENGR 221, DASC120, and either CHEM 109 or CHEM 111.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
Subject: Engineering (UG) (ENGR)
CRN: 20153
In Person | Lab
St Paul: Schoenecker Center 101
Introduction to construction materials commonly used in civil engineering projects, including aggregates, asphalt, concrete, fiber reinforced polymers, masonry, metals, and wood. For each material, topics will include material properties, specifications, laboratory procedures, and test equipment, with an emphasis on ASTM standards. Introduction to asphalt and concrete mix design. Prerequisites: A grade of C- or better in ENGR 221, DASC120, and either CHEM 109 or CHEM 111.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
1:35 pm |
1:35 pm |
||||
Subject: Engineering (UG) (ENGR)
CRN: 20669
In Person | Lecture
St Paul: In Person
Identification of loads and load paths through a structure. Analysis of internal loading, stress and deflection in trusses, beams and frames. Topics include shear and moment diagrams, influence lines, and determination of deflection through energy methods. Prerequisite: ENGR 221 and MATH 210 with C- or better.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
10:55 am |
10:55 am |
10:55 am |
||||
Subject: Engineering (UG) (ENGR)
CRN: 20530
In Person | Lecture
St Paul: In Person
Principles of soil mechanics and geotechnical engineering. Physical and mechanical properties of soils including, shear strength of soil, slope stability, soil stabilization, compaction, consolidation and stress analysis. Role of water in soils including permeability, drainage, and Atterberg limits. Theories related to and design of retaining structures. Design of retaining walls, footings, mat foundations and pile foundations. Engineering design will adhere to professional practice, current codes/standards, considerations for economics and safety. Prerequisites: A grade of C- or better in ENGR 221.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:55 am |
||||||
Subject: Engineering (UG) (ENGR)
CRN: 20531
In Person | Lab
St Paul: O'Shaughnessy Science Hall LL13
Principles of soil mechanics and geotechnical engineering. Physical and mechanical properties of soils including, shear strength of soil, slope stability, soil stabilization, compaction, consolidation and stress analysis. Role of water in soils including permeability, drainage, and Atterberg limits. Theories related to and design of retaining structures. Design of retaining walls, footings, mat foundations and pile foundations. Engineering design will adhere to professional practice, current codes/standards, considerations for economics and safety. Prerequisites: A grade of C- or better in ENGR 221.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:55 am |
||||||
Subject: Engineering (UG) (ENGR)
CRN: 22181
In Person | Lab
St Paul: In Person
Principles of soil mechanics and geotechnical engineering. Physical and mechanical properties of soils including, shear strength of soil, slope stability, soil stabilization, compaction, consolidation and stress analysis. Role of water in soils including permeability, drainage, and Atterberg limits. Theories related to and design of retaining structures. Design of retaining walls, footings, mat foundations and pile foundations. Engineering design will adhere to professional practice, current codes/standards, considerations for economics and safety. Prerequisites: A grade of C- or better in ENGR 221.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:15 am |
8:15 am |
8:15 am |
||||
Subject: Engineering (UG) (ENGR)
CRN: 20188
In Person | Lecture
St Paul: In Person
Instructor: TBD
Introduction to the fundamentals of fluid mechanics in the context of civil engineering applications. Topics covered include hydrostatics and pressure variations in non-moving fluids, buoyancy, forces on submerged surfaces, conservation laws of flowing fluids (mass, momentum, and energy), Bernoulli equation, dimensional analysis, viscous internal flow and external flows (drag). The course also introduces pump/fan curves and their incorporation with systems curves in the design of pipe systems. Hands-on engagement of lecture topics, practical hands-on skills, experimental design/build/test projects and utilization of measurement equipment is integrated into course laboratory. Prerequisites: Grade of C- or better in MATH 210 and CHEM 109 or CHEM 111.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:00 am |
||||||
Subject: Engineering (UG) (ENGR)
CRN: 20189
In Person | Lab
St Paul: Schoenecker Center LL01
Instructor: TBD
Introduction to the fundamentals of fluid mechanics in the context of civil engineering applications. Topics covered include hydrostatics and pressure variations in non-moving fluids, buoyancy, forces on submerged surfaces, conservation laws of flowing fluids (mass, momentum, and energy), Bernoulli equation, dimensional analysis, viscous internal flow and external flows (drag). The course also introduces pump/fan curves and their incorporation with systems curves in the design of pipe systems. Hands-on engagement of lecture topics, practical hands-on skills, experimental design/build/test projects and utilization of measurement equipment is integrated into course laboratory. Prerequisites: Grade of C- or better in MATH 210 and CHEM 109 or CHEM 111.
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20008
In Person | Lecture
St Paul: In Person
Instructor: TBD
This course covers such basic principles as metal forming, metal cutting, plastic molding, and continuous processes. Students will learn statistical evaluation tools such as the meaning of population distributions, means, medians, regression analysis, and standard deviations. Statistical process control and acceptance testing in the context of modern manufacturing processes will be covered. Prerequisite: A minimum grade of C- in MATH 114 and ENGR 221 (or concurrent registration)
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20121
In Person | Lecture
St Paul: In Person
Instructor: TBD
This course covers such basic principles as metal forming, metal cutting, plastic molding, and continuous processes. Students will learn statistical evaluation tools such as the meaning of population distributions, means, medians, regression analysis, and standard deviations. Statistical process control and acceptance testing in the context of modern manufacturing processes will be covered. Prerequisite: A minimum grade of C- in MATH 114 and ENGR 221 (or concurrent registration)
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20017
In Person | Lecture
St Paul: In Person
Instructor: TBD
A study of thermal and mechanical energy and their applications to technology. First law of thermodynamics (energy conservation); second law of thermodynamics (restrictions on energy transformations). Major topics include the analysis of closed and open (steady state and transient) systems, power cycles, thermophysical properties of substances humidity, dew point and other characteristics of non-reacting mixtures. Prerequisites: A minimum grade of C- in CHEM 115 or 109
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20018
In Person | Lab
St Paul: In Person
Instructor: TBD
A study of thermal and mechanical energy and their applications to technology. First law of thermodynamics (energy conservation); second law of thermodynamics (restrictions on energy transformations). Major topics include the analysis of closed and open (steady state and transient) systems, power cycles, thermophysical properties of substances humidity, dew point and other characteristics of non-reacting mixtures. Prerequisites: A minimum grade of C- in CHEM 115 or 109
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20019
In Person | Lab
St Paul: In Person
Instructor: TBD
A study of thermal and mechanical energy and their applications to technology. First law of thermodynamics (energy conservation); second law of thermodynamics (restrictions on energy transformations). Major topics include the analysis of closed and open (steady state and transient) systems, power cycles, thermophysical properties of substances humidity, dew point and other characteristics of non-reacting mixtures. Prerequisites: A minimum grade of C- in CHEM 115 or 109
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20046
In Person | Lecture
St Paul: In Person
Instructor: TBD
Introduction to the fundamentals of fluid mechanics in the context of engineering applications. Topics covered include fluid properties, hydrostatics and pressure variations in non‐moving fluids, buoyancy, conservation laws of flowing fluids (mass, momentum, and energy), dimensional analysis, boundary layers, internal flow, external flow, drag and lift. Experimental uncertainty analysis is integrated into the course lecture and lab. Also, the evaluation of turbomachinery and use of pump/blower curves is addressed. Prerequisite: Grade of C- or higher in ENGR 381 and MATH 200.
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20105
In Person | Lecture
St Paul: In Person
Instructor: TBD
Introduction to the fundamentals of fluid mechanics in the context of engineering applications. Topics covered include fluid properties, hydrostatics and pressure variations in non‐moving fluids, buoyancy, conservation laws of flowing fluids (mass, momentum, and energy), dimensional analysis, boundary layers, internal flow, external flow, drag and lift. Experimental uncertainty analysis is integrated into the course lecture and lab. Also, the evaluation of turbomachinery and use of pump/blower curves is addressed. Prerequisite: Grade of C- or higher in ENGR 381 and MATH 200.
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20047
In Person | Lab
St Paul: In Person
Instructor: TBD
Introduction to the fundamentals of fluid mechanics in the context of engineering applications. Topics covered include fluid properties, hydrostatics and pressure variations in non‐moving fluids, buoyancy, conservation laws of flowing fluids (mass, momentum, and energy), dimensional analysis, boundary layers, internal flow, external flow, drag and lift. Experimental uncertainty analysis is integrated into the course lecture and lab. Also, the evaluation of turbomachinery and use of pump/blower curves is addressed. Prerequisite: Grade of C- or higher in ENGR 381 and MATH 200.
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20050
In Person | Lab
St Paul: In Person
Instructor: TBD
Introduction to the fundamentals of fluid mechanics in the context of engineering applications. Topics covered include fluid properties, hydrostatics and pressure variations in non‐moving fluids, buoyancy, conservation laws of flowing fluids (mass, momentum, and energy), dimensional analysis, boundary layers, internal flow, external flow, drag and lift. Experimental uncertainty analysis is integrated into the course lecture and lab. Also, the evaluation of turbomachinery and use of pump/blower curves is addressed. Prerequisite: Grade of C- or higher in ENGR 381 and MATH 200.
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20085
In Person | Lab
St Paul: In Person
Instructor: TBD
Introduction to the fundamentals of fluid mechanics in the context of engineering applications. Topics covered include fluid properties, hydrostatics and pressure variations in non‐moving fluids, buoyancy, conservation laws of flowing fluids (mass, momentum, and energy), dimensional analysis, boundary layers, internal flow, external flow, drag and lift. Experimental uncertainty analysis is integrated into the course lecture and lab. Also, the evaluation of turbomachinery and use of pump/blower curves is addressed. Prerequisite: Grade of C- or higher in ENGR 381 and MATH 200.
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20122
In Person | Lab
St Paul: In Person
Instructor: TBD
Introduction to the fundamentals of fluid mechanics in the context of engineering applications. Topics covered include fluid properties, hydrostatics and pressure variations in non‐moving fluids, buoyancy, conservation laws of flowing fluids (mass, momentum, and energy), dimensional analysis, boundary layers, internal flow, external flow, drag and lift. Experimental uncertainty analysis is integrated into the course lecture and lab. Also, the evaluation of turbomachinery and use of pump/blower curves is addressed. Prerequisite: Grade of C- or higher in ENGR 381 and MATH 200.
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20203
In Person | Lecture
St Paul: In Person
Instructor: TBD
Introduction to the fundamentals of heat transfer in the context of engineering applications. The major topics to be covered include conduction, convection, and radiation. Students will solve steady and unsteady conduction heat transfer problems in both one-dimensional and multi-dimensional coordinate systems. Internal and external convection will be covered as well as heat exchangers and natural convection. Prerequisite: Grades of C- or higher in ENGR 381, ENGR 383 and MATH 210.
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20217
In Person | Lab
St Paul: In Person
Instructor: TBD
Introduction to the fundamentals of heat transfer in the context of engineering applications. The major topics to be covered include conduction, convection, and radiation. Students will solve steady and unsteady conduction heat transfer problems in both one-dimensional and multi-dimensional coordinate systems. Internal and external convection will be covered as well as heat exchangers and natural convection. Prerequisite: Grades of C- or higher in ENGR 381, ENGR 383 and MATH 210.
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20218
In Person | Lab
St Paul: In Person
Instructor: TBD
Introduction to the fundamentals of heat transfer in the context of engineering applications. The major topics to be covered include conduction, convection, and radiation. Students will solve steady and unsteady conduction heat transfer problems in both one-dimensional and multi-dimensional coordinate systems. Internal and external convection will be covered as well as heat exchangers and natural convection. Prerequisite: Grades of C- or higher in ENGR 381, ENGR 383 and MATH 210.
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20219
In Person | Lab
St Paul: In Person
Instructor: TBD
Introduction to the fundamentals of heat transfer in the context of engineering applications. The major topics to be covered include conduction, convection, and radiation. Students will solve steady and unsteady conduction heat transfer problems in both one-dimensional and multi-dimensional coordinate systems. Internal and external convection will be covered as well as heat exchangers and natural convection. Prerequisite: Grades of C- or higher in ENGR 381, ENGR 383 and MATH 210.
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20220
In Person | Lab
St Paul: In Person
Instructor: TBD
Introduction to the fundamentals of heat transfer in the context of engineering applications. The major topics to be covered include conduction, convection, and radiation. Students will solve steady and unsteady conduction heat transfer problems in both one-dimensional and multi-dimensional coordinate systems. Internal and external convection will be covered as well as heat exchangers and natural convection. Prerequisite: Grades of C- or higher in ENGR 381, ENGR 383 and MATH 210.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
10:55 am |
10:55 am |
10:55 am |
||||
Subject: Engineering (UG) (ENGR)
CRN: 20009
In Person | Lecture
St Paul: O'Shaughnessy Science Hall 328
An introduction to automation and single-input-single-output (SISO) control systems. Emphasis is placed on continuous-time control loop theory and the use of Laplace transforms to design and analyze control systems. Topics include system modeling, block diagram representation, stability, error analysis, and proportional-integral-derivative (PID) controller synthesis. Prerequisites: A minimum grade of C- in ENGR 240 or 350, MATH 210, CISC 130 or 131.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
12:15 pm |
12:15 pm |
12:15 pm |
||||
Subject: Engineering (UG) (ENGR)
CRN: 20010
In Person | Lecture
St Paul: O'Shaughnessy Science Hall 328
An introduction to automation and single-input-single-output (SISO) control systems. Emphasis is placed on continuous-time control loop theory and the use of Laplace transforms to design and analyze control systems. Topics include system modeling, block diagram representation, stability, error analysis, and proportional-integral-derivative (PID) controller synthesis. Prerequisites: A minimum grade of C- in ENGR 240 or 350, MATH 210, CISC 130 or 131.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
Subject: Engineering (UG) (ENGR)
CRN: 20012
In Person | Lab
St Paul: Schoenecker Center 310
Instructor: TBD
An introduction to automation and single-input-single-output (SISO) control systems. Emphasis is placed on continuous-time control loop theory and the use of Laplace transforms to design and analyze control systems. Topics include system modeling, block diagram representation, stability, error analysis, and proportional-integral-derivative (PID) controller synthesis. Prerequisites: A minimum grade of C- in ENGR 240 or 350, MATH 210, CISC 130 or 131.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
5:30 pm |
||||||
Subject: Engineering (UG) (ENGR)
CRN: 20013
In Person | Lab
St Paul: Schoenecker Center 310
Instructor: TBD
An introduction to automation and single-input-single-output (SISO) control systems. Emphasis is placed on continuous-time control loop theory and the use of Laplace transforms to design and analyze control systems. Topics include system modeling, block diagram representation, stability, error analysis, and proportional-integral-derivative (PID) controller synthesis. Prerequisites: A minimum grade of C- in ENGR 240 or 350, MATH 210, CISC 130 or 131.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
Subject: Engineering (UG) (ENGR)
CRN: 20021
In Person | Lab
St Paul: Schoenecker Center 310
Instructor: TBD
An introduction to automation and single-input-single-output (SISO) control systems. Emphasis is placed on continuous-time control loop theory and the use of Laplace transforms to design and analyze control systems. Topics include system modeling, block diagram representation, stability, error analysis, and proportional-integral-derivative (PID) controller synthesis. Prerequisites: A minimum grade of C- in ENGR 240 or 350, MATH 210, CISC 130 or 131.
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20187
In Person | Lecture
St Paul: In Person
Instructor: TBD
An overview of the latest trends in the Embedded Computing Systems area. Course topic changes from year to year. The course deals with both the technical as well as societal aspects of the trend. Prerequisites: ENGR 331 with a grade of C- or better OR permission of instructor.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
1:35 pm |
1:35 pm |
||||
Subject: Engineering (UG) (ENGR)
CRN: 20528
In Person | Lecture
St Paul: In Person
Introduction to the design of steel structures; behavior of tension, compression, bending and combined force members and their connections; theoretical, experimental, and practical bases for proportioning members and their connections. Study of the strength, behavior, and design of reinforced concrete members subjected to axial forces, shear forces and moment forces. Prerequisite: A grade of C- or better in ENGR 363 and ENGR 364
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
Subject: Engineering (UG) (ENGR)
CRN: 20529
In Person | Lab
St Paul: In Person
Introduction to the design of steel structures; behavior of tension, compression, bending and combined force members and their connections; theoretical, experimental, and practical bases for proportioning members and their connections. Study of the strength, behavior, and design of reinforced concrete members subjected to axial forces, shear forces and moment forces. Prerequisite: A grade of C- or better in ENGR 363 and ENGR 364
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:35 am |
9:35 am |
9:35 am |
||||
Subject: Engineering (UG) (ENGR)
CRN: 20245
In Person | Lecture
St Paul: In Person
Introduction to design of transportation systems. Principles of geometric roadway design, traffic modeling and forecasting, traffic signal operation and timing. Land use, social issues, and planning for multi- modal transportation systems. Alternative transportation modes including bike, pedestrian, and mass transit. Basics of pavement design. Prerequisite: DASC 120, ENGR 160, ENGR 221 and ENGR 222 with a C- or better
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
12:15 pm |
12:15 pm |
12:15 pm |
||||
Subject: Engineering (UG) (ENGR)
CRN: 20382
In Person | Lecture
St Paul: In Person
Introduction to water resources engineering including analysis and design of hydraulic systems and hydrological assessment. Hydrological cycle, analysis and urban hydrology. Design elements of pipe and channel flow including groundwater flow, distribution systems, pumping systems, reservoirs and storm sewer collection systems. Prerequisites: ENGR 368 with C- or better.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
10:55 am |
10:55 am |
10:55 am |
||||
Subject: Engineering (UG) (ENGR)
CRN: 22184
In Person | Lecture
St Paul: In Person
Advanced topics in the design of steel structures; behavior of members subject to combined forces, composite members, built up members, advanced connection design, and stability. Theoretical, experimental, and practical bases for proportioning members and their connections. Prerequisite: A minimum grade of C- in ENGR 464 or ENGR 365.
4 Credits
| 02/01 - 03/19 | ||||||
| M | T | W | Th | F | Sa | Su |
10:55 am |
10:55 am |
10:55 am |
||||
Subject: Engineering (UG) (ENGR)
CRN: 20532
In Person | Lecture
St Paul: In Person
This course is designed to introduce students to process design and water treatment, including concepts, simple models, and sizing/design. Topics will also include sustainable water sourcing and design of pumps and pipes. The course will be split between learning about water treatment processes and working on case studies relevant to local treatment plants. Prerequisite: CHEM 111 or CHEM 109.
2 Credits
| 03/30 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
10:55 am |
10:55 am |
10:55 am |
||||
Subject: Engineering (UG) (ENGR)
CRN: 20533
In Person | Lecture
St Paul: In Person
This course is designed to introduce students to wastewater treatment, including biological (secondary) wastewater treatment and industrial wastewater treatment topics. The course will be about split between learning about wastewater treatment processes and working on case studies relevant to local facilities. A course project will involve building a process model of a wastewater treatment plant and using it to design and troubleshoot the system. Prerequisite: ENGR 468 with grade of C- or higher
2 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20014
In Person | Lecture
St Paul: In Person
Instructor: TBD
A continuation of ENGR 480 involving the application of engineering principles to the solution of real problems in an actual industrial setting. Student design teams will work under the direction of faculty advisers and industry liaisons. Opportunity will be provided for objective formulation, analysis, synthesis and evaluation of alternative solutions. Prerequisite: ENGR 480
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20181
In Person | Lab
St Paul: In Person
Instructor: TBD
A continuation of ENGR 480 involving the application of engineering principles to the solution of real problems in an actual industrial setting. Student design teams will work under the direction of faculty advisers and industry liaisons. Opportunity will be provided for objective formulation, analysis, synthesis and evaluation of alternative solutions. Prerequisite: ENGR 480
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20177
In Person | Topics Lecture 1
St Paul: In Person
Instructor: TBD
The subject matter of these courses will vary from year to year, but will not duplicate existing courses. Descriptions of these courses are available in Classfinder, View Searchable Class Schedule
2 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20314
In Person | Topics Lecture 2
St Paul: In Person
Instructor: TBD
The subject matter of these courses will vary from year to year, but will not duplicate existing courses. Descriptions of these courses are available in Classfinder, View Searchable Class Schedule
2 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Engineering (UG) (ENGR)
CRN: 20679
In Person | Topics Lecture 4
St Paul: In Person
Instructor: TBD
The subject matter of these courses will vary from year to year, but will not duplicate existing courses. Descriptions of these courses are available in Classfinder, View Searchable Class Schedule
2 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
Subject: Engr Tech Leadrshp (Grad) (ETLS)
CRN: 21112
Online: Asynchronous | Lecture
Online
This course provides an overview of the key natural, social, economic and governance systems, principles and perspectives impacting a sustainable future. Using Electric Vehicles as a springboard, we will address the complex natural systems (water, land, climate) and social systems (economics, government, business) involved in improving human and environmental health and successfully transitioning to sustainable technology. Through case studies and practical exercises, students will develop a deep understanding of the interdependent systems impacted when developing and implementing sustainable and regenerative practices in a range of industries and sectors.
3 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Exercise Science (EXSC)
CRN: 20093
In Person | Lecture
St Paul: In Person
Instructor: TBD
This is the introductory course in the Exercise Science major and provides and overview of the field of applied exercise science. The student will gain exposure to various career options and possible settings for professional practice of exercise science, and will be introduced to the foundations of Biomechanics, Exercise Physiology, Exercise Psychology and Sociology. (Formerly PHED 130)
2 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Exercise Science (EXSC)
CRN: 20522
In Person | Lecture
St Paul: In Person
Instructor: TBD
This is the introductory course in the Exercise Science major and provides and overview of the field of applied exercise science. The student will gain exposure to various career options and possible settings for professional practice of exercise science, and will be introduced to the foundations of Biomechanics, Exercise Physiology, Exercise Psychology and Sociology. (Formerly PHED 130)
2 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Exercise Science (EXSC)
CRN: 20280
In Person | Lecture
St Paul: In Person
Instructor: TBD
This course allows students the opportunity to be engaged in hands-on research methodology focused on exercise science. This includes instruction regarding obtaining and reading research, the IRB process, the use of equipment in the exercise science labs, working with human participants, and the process of manuscript preparation.
2 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Exercise Science (EXSC)
CRN: 20099
In Person | Lecture/Lab
St Paul: In Person
Instructor: TBD
This course is a study of human anatomical structure using a body systems approach from the microscopic to gross levels of organization. Of particular emphasis are unifying themes including the complementarity of human anatomy form and function, interrelationships between organ systems and the application of knowledge to homeostatic disruptions observed in human disease and other clinical conditions. This workshop-style course combines the lecture and laboratory components (three laboratory hours per week) to provide students with hands-on experiences learning anatomical concepts, developing critical thinking, understanding scientific methodology and the application of scientific principles. Prerequisite: Sophomore standing
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Exercise Science (EXSC)
CRN: 20254
In Person | Lecture/Lab
St Paul: In Person
Instructor: TBD
This course is a study of human anatomical structure using a body systems approach from the microscopic to gross levels of organization. Of particular emphasis are unifying themes including the complementarity of human anatomy form and function, interrelationships between organ systems and the application of knowledge to homeostatic disruptions observed in human disease and other clinical conditions. This workshop-style course combines the lecture and laboratory components (three laboratory hours per week) to provide students with hands-on experiences learning anatomical concepts, developing critical thinking, understanding scientific methodology and the application of scientific principles. Prerequisite: Sophomore standing
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Exercise Science (EXSC)
CRN: 20357
In Person | Lecture/Lab
St Paul: In Person
Instructor: TBD
This course is a study of human anatomical structure using a body systems approach from the microscopic to gross levels of organization. Of particular emphasis are unifying themes including the complementarity of human anatomy form and function, interrelationships between organ systems and the application of knowledge to homeostatic disruptions observed in human disease and other clinical conditions. This workshop-style course combines the lecture and laboratory components (three laboratory hours per week) to provide students with hands-on experiences learning anatomical concepts, developing critical thinking, understanding scientific methodology and the application of scientific principles. Prerequisite: Sophomore standing
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Exercise Science (EXSC)
CRN: 20095
In Person | Lecture
St Paul: In Person
Instructor: TBD
This is a course designed to provide students with an understanding of the regulation and function of the human body and physiological integration for the maintenance of homeostasis. Areas of study include muscular, neural, cardiovascular, respiratory, renal, endocrine and reproductive systems. This course is a three-hour lecture course with a two-hour lab section. Two laboratory hours per week. (Formerly PHED 214)
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Exercise Science (EXSC)
CRN: 20096
In Person | Lecture
St Paul: In Person
Instructor: TBD
This is a course designed to provide students with an understanding of the regulation and function of the human body and physiological integration for the maintenance of homeostasis. Areas of study include muscular, neural, cardiovascular, respiratory, renal, endocrine and reproductive systems. This course is a three-hour lecture course with a two-hour lab section. Two laboratory hours per week. (Formerly PHED 214)
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Exercise Science (EXSC)
CRN: 20354
In Person | Lecture
St Paul: In Person
Instructor: TBD
This is a course designed to provide students with an understanding of the regulation and function of the human body and physiological integration for the maintenance of homeostasis. Areas of study include muscular, neural, cardiovascular, respiratory, renal, endocrine and reproductive systems. This course is a three-hour lecture course with a two-hour lab section. Two laboratory hours per week. (Formerly PHED 214)
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Exercise Science (EXSC)
CRN: 20630
In Person | Lecture
St Paul: In Person
Instructor: TBD
This is a course designed to provide students with an understanding of the regulation and function of the human body and physiological integration for the maintenance of homeostasis. Areas of study include muscular, neural, cardiovascular, respiratory, renal, endocrine and reproductive systems. This course is a three-hour lecture course with a two-hour lab section. Two laboratory hours per week. (Formerly PHED 214)
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Exercise Science (EXSC)
CRN: 20113
In Person | Lab
St Paul: In Person
Instructor: TBD
This is a course designed to provide students with an understanding of the regulation and function of the human body and physiological integration for the maintenance of homeostasis. Areas of study include muscular, neural, cardiovascular, respiratory, renal, endocrine and reproductive systems. This course is a three-hour lecture course with a two-hour lab section. Two laboratory hours per week. (Formerly PHED 214)
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Exercise Science (EXSC)
CRN: 20114
In Person | Lab
St Paul: In Person
Instructor: TBD
This is a course designed to provide students with an understanding of the regulation and function of the human body and physiological integration for the maintenance of homeostasis. Areas of study include muscular, neural, cardiovascular, respiratory, renal, endocrine and reproductive systems. This course is a three-hour lecture course with a two-hour lab section. Two laboratory hours per week. (Formerly PHED 214)
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Exercise Science (EXSC)
CRN: 20094
In Person | Lab
St Paul: In Person
Instructor: TBD
This is a course designed to provide students with an understanding of the regulation and function of the human body and physiological integration for the maintenance of homeostasis. Areas of study include muscular, neural, cardiovascular, respiratory, renal, endocrine and reproductive systems. This course is a three-hour lecture course with a two-hour lab section. Two laboratory hours per week. (Formerly PHED 214)
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Exercise Science (EXSC)
CRN: 20112
In Person | Lab
St Paul: In Person
Instructor: TBD
This is a course designed to provide students with an understanding of the regulation and function of the human body and physiological integration for the maintenance of homeostasis. Areas of study include muscular, neural, cardiovascular, respiratory, renal, endocrine and reproductive systems. This course is a three-hour lecture course with a two-hour lab section. Two laboratory hours per week. (Formerly PHED 214)
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Exercise Science (EXSC)
CRN: 20355
In Person | Lab
St Paul: In Person
Instructor: TBD
This is a course designed to provide students with an understanding of the regulation and function of the human body and physiological integration for the maintenance of homeostasis. Areas of study include muscular, neural, cardiovascular, respiratory, renal, endocrine and reproductive systems. This course is a three-hour lecture course with a two-hour lab section. Two laboratory hours per week. (Formerly PHED 214)
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Exercise Science (EXSC)
CRN: 20356
In Person | Lab
St Paul: In Person
Instructor: TBD
This is a course designed to provide students with an understanding of the regulation and function of the human body and physiological integration for the maintenance of homeostasis. Areas of study include muscular, neural, cardiovascular, respiratory, renal, endocrine and reproductive systems. This course is a three-hour lecture course with a two-hour lab section. Two laboratory hours per week. (Formerly PHED 214)
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Exercise Science (EXSC)
CRN: 20360
In Person | Lab
St Paul: In Person
Instructor: TBD
This is a course designed to provide students with an understanding of the regulation and function of the human body and physiological integration for the maintenance of homeostasis. Areas of study include muscular, neural, cardiovascular, respiratory, renal, endocrine and reproductive systems. This course is a three-hour lecture course with a two-hour lab section. Two laboratory hours per week. (Formerly PHED 214)
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Exercise Science (EXSC)
CRN: 20361
In Person | Lab
St Paul: In Person
Instructor: TBD
This is a course designed to provide students with an understanding of the regulation and function of the human body and physiological integration for the maintenance of homeostasis. Areas of study include muscular, neural, cardiovascular, respiratory, renal, endocrine and reproductive systems. This course is a three-hour lecture course with a two-hour lab section. Two laboratory hours per week. (Formerly PHED 214)
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Exercise Science (EXSC)
CRN: 20097
Online: Asynchronous | Lecture
Online
Instructor: TBD
This course is intended to introduce students to technical terminology used in the health profession. Emphasis will be placed on nomenclature, medical vocabulary, pronunciation, spelling, and accurate definition. The Greek and Latin root words that form the basis of the technical terminology used in the health profession will be studied, thus providing students with an understanding of the fundamental building blocks of this terminology. (Formerly PHED 240)
2 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Exercise Science (EXSC)
CRN: 20101
In Person | Lecture/Lab
St Paul: In Person
Instructor: TBD
Structure and function of the human skeletal and muscular systems with respect to movement will be examined. Neuromuscular aspects of movement, forces, torque, balance and stability are studied with applications to sport, physical activity and activities of daily living. Observing and analyzing skill performance are experienced. Laboratory experiences will be done within the scheduled class time. Prerequisite: EXSC 213
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Exercise Science (EXSC)
CRN: 20091
In Person | Lecture/Lab
St Paul: In Person
Instructor: TBD
Structure and function of the human skeletal and muscular systems with respect to movement will be examined. Neuromuscular aspects of movement, forces, torque, balance and stability are studied with applications to sport, physical activity and activities of daily living. Observing and analyzing skill performance are experienced. Laboratory experiences will be done within the scheduled class time. Prerequisite: EXSC 213
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Exercise Science (EXSC)
CRN: 20100
In Person | Lecture
St Paul: In Person
Instructor: TBD
This course is designed to provide an introduction to physiological responses experienced when training for, and participating in, sport and physical activity. Basic exercise physiology topics will be covered including the principles of exercise as well as adaptations to exercise for the purpose of cardiovascular fitness, muscular strength and/or endurance. Training for sport, detraining and ergogenic aids, cardiovascular disease, and obesity will also be studied. Laboratory experiences will be done within the scheduled class time. (Formerly PHED 332) Prerequisite: PHED 208 or EXSC 214 (Formerly PHED 214)
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Exercise Science (EXSC)
CRN: 20415
In Person | Lecture
St Paul: In Person
Instructor: TBD
This course is designed to provide an introduction to physiological responses experienced when training for, and participating in, sport and physical activity. Basic exercise physiology topics will be covered including the principles of exercise as well as adaptations to exercise for the purpose of cardiovascular fitness, muscular strength and/or endurance. Training for sport, detraining and ergogenic aids, cardiovascular disease, and obesity will also be studied. Laboratory experiences will be done within the scheduled class time. (Formerly PHED 332) Prerequisite: PHED 208 or EXSC 214 (Formerly PHED 214)
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Exercise Science (EXSC)
CRN: 20273
In Person | Lab
St Paul: In Person
Instructor: TBD
This course is designed to provide an introduction to physiological responses experienced when training for, and participating in, sport and physical activity. Basic exercise physiology topics will be covered including the principles of exercise as well as adaptations to exercise for the purpose of cardiovascular fitness, muscular strength and/or endurance. Training for sport, detraining and ergogenic aids, cardiovascular disease, and obesity will also be studied. Laboratory experiences will be done within the scheduled class time. (Formerly PHED 332) Prerequisite: PHED 208 or EXSC 214 (Formerly PHED 214)
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Exercise Science (EXSC)
CRN: 20274
In Person | Lab
St Paul: In Person
Instructor: TBD
This course is designed to provide an introduction to physiological responses experienced when training for, and participating in, sport and physical activity. Basic exercise physiology topics will be covered including the principles of exercise as well as adaptations to exercise for the purpose of cardiovascular fitness, muscular strength and/or endurance. Training for sport, detraining and ergogenic aids, cardiovascular disease, and obesity will also be studied. Laboratory experiences will be done within the scheduled class time. (Formerly PHED 332) Prerequisite: PHED 208 or EXSC 214 (Formerly PHED 214)
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Exercise Science (EXSC)
CRN: 20416
In Person | Lab
St Paul: In Person
Instructor: TBD
This course is designed to provide an introduction to physiological responses experienced when training for, and participating in, sport and physical activity. Basic exercise physiology topics will be covered including the principles of exercise as well as adaptations to exercise for the purpose of cardiovascular fitness, muscular strength and/or endurance. Training for sport, detraining and ergogenic aids, cardiovascular disease, and obesity will also be studied. Laboratory experiences will be done within the scheduled class time. (Formerly PHED 332) Prerequisite: PHED 208 or EXSC 214 (Formerly PHED 214)
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Exercise Science (EXSC)
CRN: 20417
In Person | Lab
St Paul: In Person
Instructor: TBD
This course is designed to provide an introduction to physiological responses experienced when training for, and participating in, sport and physical activity. Basic exercise physiology topics will be covered including the principles of exercise as well as adaptations to exercise for the purpose of cardiovascular fitness, muscular strength and/or endurance. Training for sport, detraining and ergogenic aids, cardiovascular disease, and obesity will also be studied. Laboratory experiences will be done within the scheduled class time. (Formerly PHED 332) Prerequisite: PHED 208 or EXSC 214 (Formerly PHED 214)
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Exercise Science (EXSC)
CRN: 20283
In Person | Lecture
St Paul: In Person
Instructor: TBD
Essentials of strength training and conditioning is a professional preparation course addressing the theory and practical skills necessary to design and implement a variety of resistance training programs across a diverse population. The use of different resistance training modalities typically used to improve muscular endurance or muscular strength will be considered as well as physiological, biomechanical, and safety aspects of resistance, anaerobic, and aerobic training. Prerequisites: EXSC 326 and 332.
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Exercise Science (EXSC)
CRN: 20092
In Person | Lecture
St Paul: In Person
Instructor: TBD
This course is designed to build on the basic understanding of the skeletal and muscular systems as they relate to human movement and examine the mechanics of movement in exercise and sport. Techniques for observing movement, data collection and analyzing sport performance and movement will be emphasized. Research techniques will be introduced and students will participate in designing and conducting a Biomechanics research project. Two hour laboratory per week. Prerequisite: Minimum grade of C- in EXSC 326
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Exercise Science (EXSC)
CRN: 20102
In Person | Lab
St Paul: In Person
Instructor: TBD
This course is designed to build on the basic understanding of the skeletal and muscular systems as they relate to human movement and examine the mechanics of movement in exercise and sport. Techniques for observing movement, data collection and analyzing sport performance and movement will be emphasized. Research techniques will be introduced and students will participate in designing and conducting a Biomechanics research project. Two hour laboratory per week. Prerequisite: Minimum grade of C- in EXSC 326
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Exercise Science (EXSC)
CRN: 20106
In Person | Lab
St Paul: In Person
Instructor: TBD
This course is designed to build on the basic understanding of the skeletal and muscular systems as they relate to human movement and examine the mechanics of movement in exercise and sport. Techniques for observing movement, data collection and analyzing sport performance and movement will be emphasized. Research techniques will be introduced and students will participate in designing and conducting a Biomechanics research project. Two hour laboratory per week. Prerequisite: Minimum grade of C- in EXSC 326
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Exercise Science (EXSC)
CRN: 20275
In Person | Lecture/Lab
St Paul: In Person
Requirements Met:
[Core] Signature Work
Instructor: TBD
This course is designed to teach research methodology specific to the field of Exercise Science. Students are required to engage in hands-on research focused on an area of interest in the field of Exercise Science. Students will learn research skills, through locating primary literature sources, formulating a research question, conducting an original research study, and presenting it in several formats. Prerequisite: EXSC 211, 326, 332
2 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Exercise Science (EXSC)
CRN: 20279
In Person | Lecture/Lab
St Paul: In Person
Requirements Met:
[Core] Signature Work
Instructor: TBD
This course is designed to teach research methodology specific to the field of Exercise Science. Students are required to engage in hands-on research focused on an area of interest in the field of Exercise Science. Students will learn research skills, through locating primary literature sources, formulating a research question, conducting an original research study, and presenting it in several formats. Prerequisite: EXSC 211, 326, 332
2 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Exercise Science (EXSC)
CRN: 20098
Directed Study
St Paul: In Person
Instructor: TBD
This course meets the internship requirement for majors in the Exercise Science and Health Promotion programs. The required 100 observational hours fulfills a requirement for application to graduate clinical programs (e.g. physical therapy, chiropractic school, physician assistant school). S-R grading option only. Prerequisite: EXSC 326 and EXSC 332 must be successfully completed prior to (not at the same time as) enrolling in EXSC 450.
2 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
| + asynchronous coursework | ||||||
Subject: Geology (GEOL)
CRN: 21165
Online: Asynchronous | Lecture
Online
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
Environmental Sci. Major Appr
Sustainability (SUST)
This course emphasizes the interactions between humans and their environment, focusing on those processes and issues that are fundamentally geological in nature. Early in the course, students will be introduced to basic geoscience concepts and principals, the scientific method, plate tectonics, and earth materials (rocks and minerals). The remainder of the course will focus on specific topics at the interface between humans and their environment, including volcanic and earthquake hazards, human impacts on the hydrological cycle, surface and groundwater contamination, climate and the carbon cycle, nuclear waste storage, soil erosion, nonrenewable resources, and slope stability. NOTE: Students who receive credit for GEOL 115 may not receive credit for GEOL 111, 114, or 163.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
| + asynchronous coursework | ||||||
Subject: Geology (GEOL)
CRN: 21166
Online: Asynchronous | Lecture
Online
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
Environmental Sci. Major Appr
Sustainability (SUST)
This course emphasizes the interactions between humans and their environment, focusing on those processes and issues that are fundamentally geological in nature. Early in the course, students will be introduced to basic geoscience concepts and principals, the scientific method, plate tectonics, and earth materials (rocks and minerals). The remainder of the course will focus on specific topics at the interface between humans and their environment, including volcanic and earthquake hazards, human impacts on the hydrological cycle, surface and groundwater contamination, climate and the carbon cycle, nuclear waste storage, soil erosion, nonrenewable resources, and slope stability. NOTE: Students who receive credit for GEOL 115 may not receive credit for GEOL 111, 114, or 163.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:55 am |
9:55 am |
|||||
Subject: Geology (GEOL)
CRN: 21167
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
Environmental Sci. Major Appr
Sustainability (SUST)
This course emphasizes the interactions between humans and their environment, focusing on those processes and issues that are fundamentally geological in nature. Early in the course, students will be introduced to basic geoscience concepts and principals, the scientific method, plate tectonics, and earth materials (rocks and minerals). The remainder of the course will focus on specific topics at the interface between humans and their environment, including volcanic and earthquake hazards, human impacts on the hydrological cycle, surface and groundwater contamination, climate and the carbon cycle, nuclear waste storage, soil erosion, nonrenewable resources, and slope stability. NOTE: Students who receive credit for GEOL 115 may not receive credit for GEOL 111, 114, or 163.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:35 am |
||||||
Subject: Geology (GEOL)
CRN: 21168
In Person | Lab
St Paul: O'Shaughnessy Science Hall 123
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
Environmental Sci. Major Appr
Sustainability (SUST)
This course emphasizes the interactions between humans and their environment, focusing on those processes and issues that are fundamentally geological in nature. Early in the course, students will be introduced to basic geoscience concepts and principals, the scientific method, plate tectonics, and earth materials (rocks and minerals). The remainder of the course will focus on specific topics at the interface between humans and their environment, including volcanic and earthquake hazards, human impacts on the hydrological cycle, surface and groundwater contamination, climate and the carbon cycle, nuclear waste storage, soil erosion, nonrenewable resources, and slope stability. NOTE: Students who receive credit for GEOL 115 may not receive credit for GEOL 111, 114, or 163.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
4:00 pm |
||||||
Subject: Geology (GEOL)
CRN: 21169
In Person | Lab
St Paul: O'Shaughnessy Science Hall 123
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
Environmental Sci. Major Appr
Sustainability (SUST)
This course emphasizes the interactions between humans and their environment, focusing on those processes and issues that are fundamentally geological in nature. Early in the course, students will be introduced to basic geoscience concepts and principals, the scientific method, plate tectonics, and earth materials (rocks and minerals). The remainder of the course will focus on specific topics at the interface between humans and their environment, including volcanic and earthquake hazards, human impacts on the hydrological cycle, surface and groundwater contamination, climate and the carbon cycle, nuclear waste storage, soil erosion, nonrenewable resources, and slope stability. NOTE: Students who receive credit for GEOL 115 may not receive credit for GEOL 111, 114, or 163.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
4:00 pm |
||||||
Subject: Geology (GEOL)
CRN: 21170
In Person | Lab
St Paul: O'Shaughnessy Science Hall 124
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
Environmental Sci. Major Appr
Sustainability (SUST)
This course emphasizes the interactions between humans and their environment, focusing on those processes and issues that are fundamentally geological in nature. Early in the course, students will be introduced to basic geoscience concepts and principals, the scientific method, plate tectonics, and earth materials (rocks and minerals). The remainder of the course will focus on specific topics at the interface between humans and their environment, including volcanic and earthquake hazards, human impacts on the hydrological cycle, surface and groundwater contamination, climate and the carbon cycle, nuclear waste storage, soil erosion, nonrenewable resources, and slope stability. NOTE: Students who receive credit for GEOL 115 may not receive credit for GEOL 111, 114, or 163.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:35 am |
||||||
Subject: Geology (GEOL)
CRN: 21171
In Person | Lab
St Paul: O'Shaughnessy Science Hall 124
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
Environmental Sci. Major Appr
Sustainability (SUST)
This course emphasizes the interactions between humans and their environment, focusing on those processes and issues that are fundamentally geological in nature. Early in the course, students will be introduced to basic geoscience concepts and principals, the scientific method, plate tectonics, and earth materials (rocks and minerals). The remainder of the course will focus on specific topics at the interface between humans and their environment, including volcanic and earthquake hazards, human impacts on the hydrological cycle, surface and groundwater contamination, climate and the carbon cycle, nuclear waste storage, soil erosion, nonrenewable resources, and slope stability. NOTE: Students who receive credit for GEOL 115 may not receive credit for GEOL 111, 114, or 163.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
Subject: Geology (GEOL)
CRN: 21172
In Person | Lab
St Paul: O'Shaughnessy Science Hall 124
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
Environmental Sci. Major Appr
Sustainability (SUST)
This course emphasizes the interactions between humans and their environment, focusing on those processes and issues that are fundamentally geological in nature. Early in the course, students will be introduced to basic geoscience concepts and principals, the scientific method, plate tectonics, and earth materials (rocks and minerals). The remainder of the course will focus on specific topics at the interface between humans and their environment, including volcanic and earthquake hazards, human impacts on the hydrological cycle, surface and groundwater contamination, climate and the carbon cycle, nuclear waste storage, soil erosion, nonrenewable resources, and slope stability. NOTE: Students who receive credit for GEOL 115 may not receive credit for GEOL 111, 114, or 163.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
4:00 pm |
||||||
Subject: Geology (GEOL)
CRN: 21173
In Person | Lab
St Paul: O'Shaughnessy Science Hall 124
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
Environmental Sci. Major Appr
Sustainability (SUST)
This course emphasizes the interactions between humans and their environment, focusing on those processes and issues that are fundamentally geological in nature. Early in the course, students will be introduced to basic geoscience concepts and principals, the scientific method, plate tectonics, and earth materials (rocks and minerals). The remainder of the course will focus on specific topics at the interface between humans and their environment, including volcanic and earthquake hazards, human impacts on the hydrological cycle, surface and groundwater contamination, climate and the carbon cycle, nuclear waste storage, soil erosion, nonrenewable resources, and slope stability. NOTE: Students who receive credit for GEOL 115 may not receive credit for GEOL 111, 114, or 163.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
12:15 pm |
12:15 pm |
12:15 pm |
||||
Subject: Geology (GEOL)
CRN: 21174
In Person | Lecture
St Paul: O'Shaughnessy Science Hall 123
Requirements Met:
School of Ed Transfer Course
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
||||||
Subject: Geology (GEOL)
CRN: 21175
In Person | Lab
St Paul: O'Shaughnessy Science Hall 123
Requirements Met:
School of Ed Transfer Course
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
1:30 pm |
|||||
Subject: Geology (GEOL)
CRN: 21176
In Person | Lecture
St Paul: Schoenecker Center LL03
Requirements Met:
[Core] Signature Work
This course focuses on groundwater and how geology influences its recharge, movement, storage, and withdrawal. The course will cover basic concepts of surface- and subsurface water flow, aquifer properties, well testing, heterogeneity in aquifers, groundwater chemistry and contamination, the role of groundwater in geological processes, and regional groundwater systems. Examples, labs, and projects will focus on groundwater in Minnesota and its immediate surroundings. Prerequisites: one of GEOL 102, 110, 111, 113, 114, 115, 161, 162, or 163 or permission of instructor plus 80 completed credits.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
||||||
Subject: Geology (GEOL)
CRN: 21177
In Person | Lab
St Paul: Schoenecker Center LL03
Requirements Met:
[Core] Signature Work
This course focuses on groundwater and how geology influences its recharge, movement, storage, and withdrawal. The course will cover basic concepts of surface- and subsurface water flow, aquifer properties, well testing, heterogeneity in aquifers, groundwater chemistry and contamination, the role of groundwater in geological processes, and regional groundwater systems. Examples, labs, and projects will focus on groundwater in Minnesota and its immediate surroundings. Prerequisites: one of GEOL 102, 110, 111, 113, 114, 115, 161, 162, or 163 or permission of instructor plus 80 completed credits.
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Health (HLTH)
CRN: 20067
Online: Asynchronous | Lecture
Online
Instructor: TBD
This course will entail an examination of the components of a healthful lifestyle. The interrelationship of physical, intellectual, spiritual and emotional health will be the focal point. Specific areas such as mental health, stress and coping, human sexuality, resiliency enhancement, disease prevention, aging, grief and loss will be addressed.
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Health (HLTH)
CRN: 20068
In Person | Lecture
St Paul: In Person
Instructor: TBD
The focus of the course is on exploration of effective, healthful strategies of stress management. This course is an opportunity to expand ones understanding of how to redirect stress responses into positive sources of energy. For those going into health education either in the field or for licensure, there will be ample items that you could adopt into your own teaching and classroom. This course is open to students from all fields.
2 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Health (HLTH)
CRN: 20640
Online: Asynchronous | Lecture
St Paul: In Person
Instructor: TBD
This course will examine health behavior change theories and individual, social, political, organizational, environmental, cultural, technological and economic factors influencing health behavior. Through literature review, case studies and role play exercises, students will identify and utilize evidence-based behavior change interventions to promote positive behavior change. Additionally, students will apply behavior change theories and foundations in developing a behavior modification plan, practicing health coaching, and delivering health information and support. Prerequisites: HLTH 250 or PUBH 220 or instructor approval.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:15 am |
8:15 am |
8:15 am |
||||
Subject: Mathematics (MATH)
CRN: 21309
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Quant Analysis
Instructor: TBD
This survey of basic mathematical concepts includes both modern and historical perspectives. Emphasis is on the development and appreciation of mathematical ideas and their relationship to other disciplines. Topics include, among others: mathematical problem-solving, set theory, graph theory, an introduction to randomness, counting and probability, statistics and data exploration, measurement and symmetry, and recursion.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:15 am |
8:15 am |
8:15 am |
||||
Subject: Mathematics (MATH)
CRN: 21310
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Quant Analysis
Elementary set theory, linear equations and matrices, linear programming (optional), finite probability, applications primarily in business and the social sciences. Offered Fall, J-Term, Spring and Summer.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:35 am |
9:35 am |
9:35 am |
||||
Subject: Mathematics (MATH)
CRN: 21311
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Quant Analysis
Instructor: TBD
Elementary set theory, linear equations and matrices, linear programming (optional), finite probability, applications primarily in business and the social sciences. Offered Fall, J-Term, Spring and Summer.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
10:55 am |
10:55 am |
10:55 am |
||||
Subject: Mathematics (MATH)
CRN: 21312
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Quant Analysis
Elementary set theory, linear equations and matrices, linear programming (optional), finite probability, applications primarily in business and the social sciences. Offered Fall, J-Term, Spring and Summer.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
12:15 pm |
12:15 pm |
12:15 pm |
||||
Subject: Mathematics (MATH)
CRN: 21313
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Quant Analysis
Instructor: TBD
Elementary set theory, linear equations and matrices, linear programming (optional), finite probability, applications primarily in business and the social sciences. Offered Fall, J-Term, Spring and Summer.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
1:35 pm |
1:35 pm |
||||
Subject: Mathematics (MATH)
CRN: 21314
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Quant Analysis
Elementary set theory, linear equations and matrices, linear programming (optional), finite probability, applications primarily in business and the social sciences. Offered Fall, J-Term, Spring and Summer.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:00 am |
8:00 am |
|||||
Subject: Mathematics (MATH)
CRN: 21315
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Quant Analysis
Elementary set theory, linear equations and matrices, linear programming (optional), finite probability, applications primarily in business and the social sciences. Offered Fall, J-Term, Spring and Summer.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:55 am |
9:55 am |
|||||
Subject: Mathematics (MATH)
CRN: 21316
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Quant Analysis
Instructor: TBD
Elementary set theory, linear equations and matrices, linear programming (optional), finite probability, applications primarily in business and the social sciences. Offered Fall, J-Term, Spring and Summer.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
1:30 pm |
|||||
Subject: Mathematics (MATH)
CRN: 21317
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Quant Analysis
Elementary set theory, linear equations and matrices, linear programming (optional), finite probability, applications primarily in business and the social sciences. Offered Fall, J-Term, Spring and Summer.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
1:30 pm |
|||||
Subject: Mathematics (MATH)
CRN: 21318
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Quant Analysis
Elementary set theory, linear equations and matrices, linear programming (optional), finite probability, applications primarily in business and the social sciences. Offered Fall, J-Term, Spring and Summer.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
3:25 pm |
3:25 pm |
|||||
Subject: Mathematics (MATH)
CRN: 21319
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Quant Analysis
Elementary set theory, linear equations and matrices, linear programming (optional), finite probability, applications primarily in business and the social sciences. Offered Fall, J-Term, Spring and Summer.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
10:55 am |
10:55 am |
10:55 am |
||||
Subject: Mathematics (MATH)
CRN: 21320
In Person | Lecture
St Paul: In Person
Instructor: TBD
This course is designed to help students refresh and strengthen mathematical concepts and problem-solving skills for use within the context of calculus. Within a comprehensive conceptual framework, this course refreshes students on fundamental arithmetic and algebraic skills, and introduces several precalculus concepts, such as function notation, domain and range, average rate of change, and the relationship between rate of change and slope. Gaining knowledge of these concepts will lead to increased preparedness for Calculus with Review. Emphasis will also be placed on developing growth mindsets and study skills necessary to succeed in mathematics. Successful completion of MATH 107 with a C- or above allows students to take MATH 108. Offered fall and spring semesters.
2 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:00 am |
8:00 am |
|||||
Subject: Mathematics (MATH)
CRN: 21321
In Person | Lecture
St Paul: In Person
This course is designed to help students refresh and strengthen mathematical concepts and problem-solving skills for use within the context of calculus. Within a comprehensive conceptual framework, this course refreshes students on fundamental arithmetic and algebraic skills, and introduces several precalculus concepts, such as function notation, domain and range, average rate of change, and the relationship between rate of change and slope. Gaining knowledge of these concepts will lead to increased preparedness for Calculus with Review. Emphasis will also be placed on developing growth mindsets and study skills necessary to succeed in mathematics. Successful completion of MATH 107 with a C- or above allows students to take MATH 108. Offered fall and spring semesters.
2 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:55 am |
9:55 am |
|||||
Subject: Mathematics (MATH)
CRN: 21322
In Person | Lecture
St Paul: In Person
This course is designed to help students refresh and strengthen mathematical concepts and problem-solving skills for use within the context of calculus. Within a comprehensive conceptual framework, this course refreshes students on fundamental arithmetic and algebraic skills, and introduces several precalculus concepts, such as function notation, domain and range, average rate of change, and the relationship between rate of change and slope. Gaining knowledge of these concepts will lead to increased preparedness for Calculus with Review. Emphasis will also be placed on developing growth mindsets and study skills necessary to succeed in mathematics. Successful completion of MATH 107 with a C- or above allows students to take MATH 108. Offered fall and spring semesters.
2 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:15 am |
8:15 am |
8:15 am |
||||
Subject: Mathematics (MATH)
CRN: 21323
In Person | Lecture
St Paul: In Person
Requirements Met:
Environmental Sci. Major Appr
The first course of a two-course sequence designed to integrate introductory calculus material with the algebraic and trigonometric topics necessary to support that study. Review topics include: number systems, basic algebra, functions, the Cartesian coordinate system and graphing. Calculus topics include limits, continuity, derivatives for algebraic functions, applications of derivatives and more graphing. This course is intended only for students planning to take MATH 109 and does not satisfy the mathematics requirement in the core curriculum. Prerequisite: Placement at MATH 108 or above, or successful completion of MATH 107. NOTE: Students who receive credit for MATH 108 may not receive credit for MATH 103, 104, 105, 111, or 113.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:35 am |
9:35 am |
9:35 am |
||||
Subject: Mathematics (MATH)
CRN: 21324
In Person | Lecture
St Paul: In Person
Requirements Met:
Environmental Sci. Major Appr
The first course of a two-course sequence designed to integrate introductory calculus material with the algebraic and trigonometric topics necessary to support that study. Review topics include: number systems, basic algebra, functions, the Cartesian coordinate system and graphing. Calculus topics include limits, continuity, derivatives for algebraic functions, applications of derivatives and more graphing. This course is intended only for students planning to take MATH 109 and does not satisfy the mathematics requirement in the core curriculum. Prerequisite: Placement at MATH 108 or above, or successful completion of MATH 107. NOTE: Students who receive credit for MATH 108 may not receive credit for MATH 103, 104, 105, 111, or 113.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
12:15 pm |
12:15 pm |
12:15 pm |
||||
Subject: Mathematics (MATH)
CRN: 21325
In Person | Lecture
St Paul: In Person
Requirements Met:
Environmental Sci. Major Appr
The first course of a two-course sequence designed to integrate introductory calculus material with the algebraic and trigonometric topics necessary to support that study. Review topics include: number systems, basic algebra, functions, the Cartesian coordinate system and graphing. Calculus topics include limits, continuity, derivatives for algebraic functions, applications of derivatives and more graphing. This course is intended only for students planning to take MATH 109 and does not satisfy the mathematics requirement in the core curriculum. Prerequisite: Placement at MATH 108 or above, or successful completion of MATH 107. NOTE: Students who receive credit for MATH 108 may not receive credit for MATH 103, 104, 105, 111, or 113.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:00 am |
8:00 am |
|||||
Subject: Mathematics (MATH)
CRN: 21326
In Person | Lecture
St Paul: In Person
Requirements Met:
Environmental Sci. Major Appr
Instructor: TBD
The first course of a two-course sequence designed to integrate introductory calculus material with the algebraic and trigonometric topics necessary to support that study. Review topics include: number systems, basic algebra, functions, the Cartesian coordinate system and graphing. Calculus topics include limits, continuity, derivatives for algebraic functions, applications of derivatives and more graphing. This course is intended only for students planning to take MATH 109 and does not satisfy the mathematics requirement in the core curriculum. Prerequisite: Placement at MATH 108 or above, or successful completion of MATH 107. NOTE: Students who receive credit for MATH 108 may not receive credit for MATH 103, 104, 105, 111, or 113.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
1:30 pm |
|||||
Subject: Mathematics (MATH)
CRN: 21327
In Person | Lecture
St Paul: In Person
Requirements Met:
Environmental Sci. Major Appr
Instructor: TBD
The first course of a two-course sequence designed to integrate introductory calculus material with the algebraic and trigonometric topics necessary to support that study. Review topics include: number systems, basic algebra, functions, the Cartesian coordinate system and graphing. Calculus topics include limits, continuity, derivatives for algebraic functions, applications of derivatives and more graphing. This course is intended only for students planning to take MATH 109 and does not satisfy the mathematics requirement in the core curriculum. Prerequisite: Placement at MATH 108 or above, or successful completion of MATH 107. NOTE: Students who receive credit for MATH 108 may not receive credit for MATH 103, 104, 105, 111, or 113.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:15 am |
8:15 am |
8:15 am |
||||
Subject: Mathematics (MATH)
CRN: 21328
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Quant Analysis
Other Requirements Met:
Environmental Sci. Major Appr
The second course of a two-course sequence designed to integrate introductory calculus material with the algebraic and trigonometric topics necessary to support that study. Review topics include: exponential and logarithmic functions, trigonometric functions and their inverses and associated graphs. Calculus topics include: derivatives of the transcendental functions, applications of those derivatives and an introduction to integration. Prerequisite: a grade of C- or better in MATH 108. NOTE: Students who receive credit for MATH 109 may not receive credit for MATH 103, 104, 105, 111, or 113.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:35 am |
9:35 am |
9:35 am |
||||
Subject: Mathematics (MATH)
CRN: 21329
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Quant Analysis
Other Requirements Met:
Environmental Sci. Major Appr
The second course of a two-course sequence designed to integrate introductory calculus material with the algebraic and trigonometric topics necessary to support that study. Review topics include: exponential and logarithmic functions, trigonometric functions and their inverses and associated graphs. Calculus topics include: derivatives of the transcendental functions, applications of those derivatives and an introduction to integration. Prerequisite: a grade of C- or better in MATH 108. NOTE: Students who receive credit for MATH 109 may not receive credit for MATH 103, 104, 105, 111, or 113.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
10:55 am |
10:55 am |
10:55 am |
||||
Subject: Mathematics (MATH)
CRN: 21330
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Quant Analysis
Other Requirements Met:
Environmental Sci. Major Appr
The second course of a two-course sequence designed to integrate introductory calculus material with the algebraic and trigonometric topics necessary to support that study. Review topics include: exponential and logarithmic functions, trigonometric functions and their inverses and associated graphs. Calculus topics include: derivatives of the transcendental functions, applications of those derivatives and an introduction to integration. Prerequisite: a grade of C- or better in MATH 108. NOTE: Students who receive credit for MATH 109 may not receive credit for MATH 103, 104, 105, 111, or 113.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
1:35 pm |
1:35 pm |
||||
Subject: Mathematics (MATH)
CRN: 21331
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Quant Analysis
Other Requirements Met:
Environmental Sci. Major Appr
The second course of a two-course sequence designed to integrate introductory calculus material with the algebraic and trigonometric topics necessary to support that study. Review topics include: exponential and logarithmic functions, trigonometric functions and their inverses and associated graphs. Calculus topics include: derivatives of the transcendental functions, applications of those derivatives and an introduction to integration. Prerequisite: a grade of C- or better in MATH 108. NOTE: Students who receive credit for MATH 109 may not receive credit for MATH 103, 104, 105, 111, or 113.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:00 am |
8:00 am |
|||||
Subject: Mathematics (MATH)
CRN: 21332
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Quant Analysis
Other Requirements Met:
Environmental Sci. Major Appr
The second course of a two-course sequence designed to integrate introductory calculus material with the algebraic and trigonometric topics necessary to support that study. Review topics include: exponential and logarithmic functions, trigonometric functions and their inverses and associated graphs. Calculus topics include: derivatives of the transcendental functions, applications of those derivatives and an introduction to integration. Prerequisite: a grade of C- or better in MATH 108. NOTE: Students who receive credit for MATH 109 may not receive credit for MATH 103, 104, 105, 111, or 113.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:55 am |
9:55 am |
|||||
Subject: Mathematics (MATH)
CRN: 21333
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Quant Analysis
Other Requirements Met:
Environmental Sci. Major Appr
The second course of a two-course sequence designed to integrate introductory calculus material with the algebraic and trigonometric topics necessary to support that study. Review topics include: exponential and logarithmic functions, trigonometric functions and their inverses and associated graphs. Calculus topics include: derivatives of the transcendental functions, applications of those derivatives and an introduction to integration. Prerequisite: a grade of C- or better in MATH 108. NOTE: Students who receive credit for MATH 109 may not receive credit for MATH 103, 104, 105, 111, or 113.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
1:30 pm |
|||||
Subject: Mathematics (MATH)
CRN: 21334
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Quant Analysis
Other Requirements Met:
Environmental Sci. Major Appr
The second course of a two-course sequence designed to integrate introductory calculus material with the algebraic and trigonometric topics necessary to support that study. Review topics include: exponential and logarithmic functions, trigonometric functions and their inverses and associated graphs. Calculus topics include: derivatives of the transcendental functions, applications of those derivatives and an introduction to integration. Prerequisite: a grade of C- or better in MATH 108. NOTE: Students who receive credit for MATH 109 may not receive credit for MATH 103, 104, 105, 111, or 113.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:00 am |
8:00 am |
|||||
Subject: Mathematics (MATH)
CRN: 21335
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Quant Analysis
An introductory course in calculus with motivation and examples drawn from business and the social sciences whenever possible. Does not include the calculus of trigonometric functions. Offered Fall and Spring. Prerequisite: a grade of C- or above in MATH 103 or MATH 105 or placement at MATH 111 or above. Four years of high school mathematics, including college algebra, are also recommended as background for this course. Students who are considering taking MATH 114 should take MATH 113 instead of MATH 111. NOTE: Students who receive credit for MATH 111 may not receive credit for MATH 108, 109, or 113.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
12:15 pm |
12:15 pm |
12:15 pm |
||||
Subject: Mathematics (MATH)
CRN: 21336
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Quant Analysis
Other Requirements Met:
Environmental Sci. Major Appr
Instructor: TBD
An introductory course in calculus: limits; derivatives and integrals of algebraic, exponential, logarithmic and trigonometric functions of one real variable; applications of the derivative in engineering and the natural sciences. Offered Fall, Spring and Summer. Prerequisite: a grade of C- or above in MATH 104 or 105 or placement at MATH 113 or above. Four years of high school mathematics, including college algebra and trigonometry, also are recommended as background for this course. NOTE: Students who receive credit for MATH 113 may not receive credit for MATH 108, 109, or 111.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:35 am |
9:35 am |
9:35 am |
||||
Subject: Mathematics (MATH)
CRN: 21337
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Quant Analysis
Techniques of integration; applications of integration; infinite series; parametric/polar equations. Offered Fall, Spring and Summer. Prerequisite: a grade of C- or above in MATH 112 or in MATH 113 or MATH 109
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
10:55 am |
10:55 am |
10:55 am |
||||
Subject: Mathematics (MATH)
CRN: 21338
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Quant Analysis
Techniques of integration; applications of integration; infinite series; parametric/polar equations. Offered Fall, Spring and Summer. Prerequisite: a grade of C- or above in MATH 112 or in MATH 113 or MATH 109
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
12:15 pm |
12:15 pm |
12:15 pm |
||||
Subject: Mathematics (MATH)
CRN: 21339
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Quant Analysis
Techniques of integration; applications of integration; infinite series; parametric/polar equations. Offered Fall, Spring and Summer. Prerequisite: a grade of C- or above in MATH 112 or in MATH 113 or MATH 109
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:55 am |
9:55 am |
|||||
Subject: Mathematics (MATH)
CRN: 21340
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Quant Analysis
Techniques of integration; applications of integration; infinite series; parametric/polar equations. Offered Fall, Spring and Summer. Prerequisite: a grade of C- or above in MATH 112 or in MATH 113 or MATH 109
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
1:30 pm |
|||||
Subject: Mathematics (MATH)
CRN: 21341
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Quant Analysis
Techniques of integration; applications of integration; infinite series; parametric/polar equations. Offered Fall, Spring and Summer. Prerequisite: a grade of C- or above in MATH 112 or in MATH 113 or MATH 109
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:00 am |
8:00 am |
|||||
Subject: Mathematics (MATH)
CRN: 21342
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Quant Analysis
An examination of the mathematical underpinnings of the K-8 school curriculum with an emphasis on the conceptual understanding of mathematics. Topics include foundations of integer and rational arithmetic, notions of place-value and base, number sense and estimation, ratio and proportion, and mathematical problem-solving. This course is recommended as the first course in a three-course sequence in mathematics for prospective elementary teachers. Offered Spring. Prerequisites: Any EDUC course or concurrent registration in any EDUC course.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:00 am |
8:00 am |
|||||
Subject: Mathematics (MATH)
CRN: 21343
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Quant Analysis
A survey of basic discrete mathematical concepts. Topics include: Boolean algebra, logic, analysis of algorithms, mathematical induction and matrices. Focus on applications to computer science. Offered Fall and Spring.Prerequisite: A C‐ or better in either Math 109, Math 111, or Math 113 and a C‐ or better in either CISC 130 or CISC 131, or instructor permission
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:55 am |
9:55 am |
|||||
Subject: Mathematics (MATH)
CRN: 21344
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Quant Analysis
A survey of basic discrete mathematical concepts. Topics include: Boolean algebra, logic, analysis of algorithms, mathematical induction and matrices. Focus on applications to computer science. Offered Fall and Spring.Prerequisite: A C‐ or better in either Math 109, Math 111, or Math 113 and a C‐ or better in either CISC 130 or CISC 131, or instructor permission
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:35 am |
9:35 am |
9:35 am |
||||
Subject: Mathematics (MATH)
CRN: 21345
In Person | Lecture
St Paul: In Person
Vector algebra in two and three dimensions, partial derivatives, multiple integrals, line integrals, surface integrals, Green's Theorem, Stokes' Theorem, divergence theorem. Offered Fall and Spring. Prerequisite: a grade of C- or higher in MATH 109 or 113, and MATH 114
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
10:55 am |
10:55 am |
10:55 am |
||||
Subject: Mathematics (MATH)
CRN: 21346
In Person | Lecture
St Paul: In Person
Vector algebra in two and three dimensions, partial derivatives, multiple integrals, line integrals, surface integrals, Green's Theorem, Stokes' Theorem, divergence theorem. Offered Fall and Spring. Prerequisite: a grade of C- or higher in MATH 109 or 113, and MATH 114
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:00 am |
8:00 am |
|||||
Subject: Mathematics (MATH)
CRN: 21347
In Person | Lecture
St Paul: In Person
Vector algebra in two and three dimensions, partial derivatives, multiple integrals, line integrals, surface integrals, Green's Theorem, Stokes' Theorem, divergence theorem. Offered Fall and Spring. Prerequisite: a grade of C- or higher in MATH 109 or 113, and MATH 114
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
1:30 pm |
|||||
Subject: Mathematics (MATH)
CRN: 21348
In Person | Lecture
St Paul: In Person
Vector algebra in two and three dimensions, partial derivatives, multiple integrals, line integrals, surface integrals, Green's Theorem, Stokes' Theorem, divergence theorem. Offered Fall and Spring. Prerequisite: a grade of C- or higher in MATH 109 or 113, and MATH 114
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
1:30 pm |
|||||
Subject: Mathematics (MATH)
CRN: 21349
In Person | Lecture
St Paul: In Person
Introduction to mathematical proof with an emphasis on exploring mathematical ideas and developing initial cognitive skills needed for mathematical proof and written and oral communication of mathematical arguments. Topics covered include logic and truth tables, basic set theory, functions, and various types of proof and disproof, including direct, indirect, induction, and counterexamples. Prerequisites: A grade of C- or better in Math 109 or Math 113. This course can count towards the electives for all tracks in the mathematics major after discussion with the department.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:15 am |
8:15 am |
8:15 am |
||||
Subject: Mathematics (MATH)
CRN: 21350
In Person | Lecture
St Paul: In Person
An introduction to ordinary differential equations (ODEs), with an emphasis on linear differential equations and linear systems, including applications. Topics covered include first-order equations, ODE models in the physical and biological sciences and engineering, numerical methods of solution, higher order linear equations, matrix tools, the role of eigenvalues and eigenvectors, and LaPlace transforms. Offered Fall and Spring. Prerequisite: a grade of C- or above in MATH 114
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:35 am |
9:35 am |
9:35 am |
||||
Subject: Mathematics (MATH)
CRN: 21351
In Person | Lecture
St Paul: In Person
An introduction to ordinary differential equations (ODEs), with an emphasis on linear differential equations and linear systems, including applications. Topics covered include first-order equations, ODE models in the physical and biological sciences and engineering, numerical methods of solution, higher order linear equations, matrix tools, the role of eigenvalues and eigenvectors, and LaPlace transforms. Offered Fall and Spring. Prerequisite: a grade of C- or above in MATH 114
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
12:15 pm |
12:15 pm |
12:15 pm |
||||
Subject: Mathematics (MATH)
CRN: 21352
In Person | Lecture
St Paul: In Person
An introduction to ordinary differential equations (ODEs), with an emphasis on linear differential equations and linear systems, including applications. Topics covered include first-order equations, ODE models in the physical and biological sciences and engineering, numerical methods of solution, higher order linear equations, matrix tools, the role of eigenvalues and eigenvectors, and LaPlace transforms. Offered Fall and Spring. Prerequisite: a grade of C- or above in MATH 114
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
1:35 pm |
1:35 pm |
||||
Subject: Mathematics (MATH)
CRN: 21353
In Person | Lecture
St Paul: In Person
An introduction to ordinary differential equations (ODEs), with an emphasis on linear differential equations and linear systems, including applications. Topics covered include first-order equations, ODE models in the physical and biological sciences and engineering, numerical methods of solution, higher order linear equations, matrix tools, the role of eigenvalues and eigenvectors, and LaPlace transforms. Offered Fall and Spring. Prerequisite: a grade of C- or above in MATH 114
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:55 am |
9:55 am |
|||||
Subject: Mathematics (MATH)
CRN: 21354
In Person | Lecture
St Paul: In Person
An advanced examination of the mathematical underpinnings of the K-8 school curriculum with an emphasis on the conceptual understanding of mathematics. Topics include counting, graph theory and other discrete topics, number theory, recursion, algebra and functions, probability and statistics. As the third course in a three-course sequence in mathematics for prospective elementary teachers, this course integrates uses of technology and problem solving in STEM applications appropriate for the K-8 classroom. Offered Fall and Spring. Prerequisites: A C‐ or above in MATH 121 and a C‐ or above in MATH 122
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:55 am |
9:55 am |
|||||
Subject: Mathematics (MATH)
CRN: 21355
In Person | Lecture
St Paul: In Person
An introductory course in linear algebra, beginning with linear equations and matrix algebra. Subsequent topics include study of vector spaces, orthogonality, eigenvectors and inner products. The course combines theoretical and applied perspectives, including concepts of rigorous proof. Offered Fall and Spring. Prerequisite: A grade of C- or above in MATH 200, concurrent enrollment allowed.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:15 am |
8:15 am |
8:15 am |
||||
Subject: Mathematics (MATH)
CRN: 21356
In Person | Lecture
St Paul: In Person
Requirements Met:
School of Ed Transfer Course
Properties of sets, relations and mappings; introduction to groups, rings and fields. Offered Spring. Prerequisite: A grade of C- or above in MATH 201
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
1:35 pm |
|||||
Subject: Mathematics (MATH)
CRN: 21357
In Person | Lecture
St Paul: In Person
Requirements Met:
School of Ed Transfer Course
Rigorous mathematical treatment of standard topics in numerical analysis including solutions to linear and nonlinear systems, interpolation, numerical integration and differentiation, differential equations, and iterative techniques in matrix algebra. This course provides a theoretical foundation for the numerical solution of mathematical problems. Prerequisites: A grade of C- or above in MATH 210 or MATH 230 and a grade of C- or above in MATH 240, or permission of instructor
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Physical Education (PHED)
CRN: 20048
In Person | Topics Lecture 1
St Paul: In Person
Instructor: TBD
A physical activity course that will cover planned, structured and repetitive instruction to improve or maintain one or more components of physical fitness. These activity courses are also designed to improve proficiency in a selected physical activity. Students will learn basic skills, strategy and rules of the activity. Students will also learn how physical fitness can contribute to personal lifelong health and wellness through assessment, monitoring and discipline. There will be a written test(s) along with proficiency test(s) depending on the type of physical activity. Credits may be earned twice (for a maximum of 4 credits) under this number for different activities. For further descriptions, please see the Online Printable Schedule.
2 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Physical Education (PHED)
CRN: 20070
Online: Asynchronous | Topics Lecture 1
Online
Instructor: TBD
A physical activity course that will cover planned, structured and repetitive instruction to improve or maintain one or more components of physical fitness. These activity courses are also designed to improve proficiency in a selected physical activity. Students will learn basic skills, strategy and rules of the activity. Students will also learn how physical fitness can contribute to personal lifelong health and wellness through assessment, monitoring and discipline. There will be a written test(s) along with proficiency test(s) depending on the type of physical activity. Credits may be earned twice (for a maximum of 4 credits) under this number for different activities. For further descriptions, please see the Online Printable Schedule.
2 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
1:35 pm |
|||||
Subject: Physics (PHYS)
CRN: 21458
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
FYE CommGood/Learning Comm
School of Ed Transfer Course
Sustainability (SUST)
Introduction to physical principles and their application to astronomy for non-science majors. Emphasis is on comprehension of ideas and principles. Topics include the motions of the sun, moon, stars and planets; properties of the solar system; the stars including giants, dwarfs, pulsars and black holes; nebulae, galaxies and quasars; cosmology and life. The course consists of lecture, discussion and laboratory. Prerequisite: MATH placement at or above 099, concurrent enrollment in either MATH 100 or MATH 101, or a grade of C- or better in MATH 007 or above.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
3:25 pm |
||||||
Subject: Physics (PHYS)
CRN: 21459
In Person | Lab
St Paul: Schoenecker Center 403
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
School of Ed Transfer Course
Sustainability (SUST)
Introduction to physical principles and their application to astronomy for non-science majors. Emphasis is on comprehension of ideas and principles. Topics include the motions of the sun, moon, stars and planets; properties of the solar system; the stars including giants, dwarfs, pulsars and black holes; nebulae, galaxies and quasars; cosmology and life. The course consists of lecture, discussion and laboratory. Prerequisite: MATH placement at or above 099, concurrent enrollment in either MATH 100 or MATH 101, or a grade of C- or better in MATH 007 or above.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
Subject: Physics (PHYS)
CRN: 21460
In Person | Lab
St Paul: Schoenecker Center 403
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
School of Ed Transfer Course
Sustainability (SUST)
Introduction to physical principles and their application to astronomy for non-science majors. Emphasis is on comprehension of ideas and principles. Topics include the motions of the sun, moon, stars and planets; properties of the solar system; the stars including giants, dwarfs, pulsars and black holes; nebulae, galaxies and quasars; cosmology and life. The course consists of lecture, discussion and laboratory. Prerequisite: MATH placement at or above 099, concurrent enrollment in either MATH 100 or MATH 101, or a grade of C- or better in MATH 007 or above.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
10:55 am |
10:55 am |
10:55 am |
||||
Subject: Physics (PHYS)
CRN: 21461
In Person | Lecture/Lab
St Paul: Schoenecker Center 403
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
School of Ed Transfer Course
An introductory course intended for non-science majors; treats fundamental principles of physics and acoustics as they relate to musical sounds and musical instruments. The course consists of lecture, discussion and laboratory. Prerequisites: High school algebra and a music background (one year practice, instrument or voice, or one course)
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
1:35 pm |
1:35 pm |
||||
Subject: Physics (PHYS)
CRN: 21462
In Person | Lecture/Lab
St Paul: Schoenecker Center 403
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
School of Ed Transfer Course
This algebra-based course and its continuation PHYS 110 serve as a two-semester introduction to classical and modern physics. Applications are chosen that focus on the life sciences. Topics include principles of classical mechanics: description of motion, force, torque and rotational motion, energy, momentum and their conservation, fluid mechanics; thermodynamics. The course meets three times a week for two consecutive periods consisting of integrated lecture, discussion and laboratory. Prerequisite: A minimum grade of C- in MATH 108, or Math placement at a level of MATH 111 or above. NOTE: PHYS 109 does not count toward the Physics B.A., B.S., or Minor.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
1:35 pm |
1:35 pm |
||||
Subject: Physics (PHYS)
CRN: 21463
In Person | Lecture/Lab
St Paul: In Person
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
School of Ed Transfer Course
This algebra-based course and its continuation PHYS 110 serve as a two-semester introduction to classical and modern physics. Applications are chosen that focus on the life sciences. Topics include principles of classical mechanics: description of motion, force, torque and rotational motion, energy, momentum and their conservation, fluid mechanics; thermodynamics. The course meets three times a week for two consecutive periods consisting of integrated lecture, discussion and laboratory. Prerequisite: A minimum grade of C- in MATH 108, or Math placement at a level of MATH 111 or above. NOTE: PHYS 109 does not count toward the Physics B.A., B.S., or Minor.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:15 am |
8:15 am |
8:15 am |
||||
Subject: Physics (PHYS)
CRN: 21464
In Person | Lecture/Lab
St Paul: Schoenecker Center 403
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
School of Ed Transfer Course
This algebra-based course is a continuation of PHYS 109. Topics include oscillations, waves and sound, electricity and magnetism; light and optics; atomic, quantum and nuclear physics. The course meets three times a week for two consecutive periods consisting of integrated lecture, discussion and laboratory. Prerequisite: A minimum grade of C- in PHYS 109, 111, or 211. NOTE: PHYS 110 does not count toward the Physics B.A., B.S., or Minor.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:15 am |
8:15 am |
8:15 am |
||||
Subject: Physics (PHYS)
CRN: 21465
In Person | Lecture/Lab
St Paul: Owens Science Hall 169
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
FYE CommGood/Learning Comm
Environmental Sci. Major Appr
School of Ed Transfer Course
Sustainability (SUST)
Instructor: TBD
This calculus-based course and its continuation PHYS 212 serve as a two-semester introduction to classical physics. Applications are chosen that focus on engineering and the physical sciences. Topics include principles of classical mechanics: vectors, kinematics, particle and rigid body rotational dynamics and statics; conservation laws; and thermodynamics. The course meets three times a week for two consecutive periods consisting of integrated lecture, discussion and laboratory. Prerequisite: A minimum grade of C- in MATH 109 or MATH 113.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
9:35 am |
9:35 am |
9:35 am |
||||
Subject: Physics (PHYS)
CRN: 21466
In Person | Lecture/Lab
St Paul: Owens Science Hall 168
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
FYE CommGood/Learning Comm
Environmental Sci. Major Appr
School of Ed Transfer Course
Sustainability (SUST)
This calculus-based course and its continuation PHYS 212 serve as a two-semester introduction to classical physics. Applications are chosen that focus on engineering and the physical sciences. Topics include principles of classical mechanics: vectors, kinematics, particle and rigid body rotational dynamics and statics; conservation laws; and thermodynamics. The course meets three times a week for two consecutive periods consisting of integrated lecture, discussion and laboratory. Prerequisite: A minimum grade of C- in MATH 109 or MATH 113.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
10:55 am |
10:55 am |
10:55 am |
||||
Subject: Physics (PHYS)
CRN: 21467
In Person | Lecture/Lab
St Paul: Owens Science Hall 168
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
FYE CommGood/Learning Comm
Environmental Sci. Major Appr
School of Ed Transfer Course
Sustainability (SUST)
This calculus-based course and its continuation PHYS 212 serve as a two-semester introduction to classical physics. Applications are chosen that focus on engineering and the physical sciences. Topics include principles of classical mechanics: vectors, kinematics, particle and rigid body rotational dynamics and statics; conservation laws; and thermodynamics. The course meets three times a week for two consecutive periods consisting of integrated lecture, discussion and laboratory. Prerequisite: A minimum grade of C- in MATH 109 or MATH 113.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
1:35 pm |
1:35 pm |
||||
Subject: Physics (PHYS)
CRN: 21468
In Person | Lecture/Lab
St Paul: Owens Science Hall 168
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
FYE CommGood/Learning Comm
Environmental Sci. Major Appr
School of Ed Transfer Course
Sustainability (SUST)
This calculus-based course and its continuation PHYS 212 serve as a two-semester introduction to classical physics. Applications are chosen that focus on engineering and the physical sciences. Topics include principles of classical mechanics: vectors, kinematics, particle and rigid body rotational dynamics and statics; conservation laws; and thermodynamics. The course meets three times a week for two consecutive periods consisting of integrated lecture, discussion and laboratory. Prerequisite: A minimum grade of C- in MATH 109 or MATH 113.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
1:35 pm |
1:35 pm |
||||
Subject: Physics (PHYS)
CRN: 21469
In Person | Lecture/Lab
St Paul: Owens Science Hall 169
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
FYE CommGood/Learning Comm
Environmental Sci. Major Appr
School of Ed Transfer Course
Sustainability (SUST)
This calculus-based course and its continuation PHYS 212 serve as a two-semester introduction to classical physics. Applications are chosen that focus on engineering and the physical sciences. Topics include principles of classical mechanics: vectors, kinematics, particle and rigid body rotational dynamics and statics; conservation laws; and thermodynamics. The course meets three times a week for two consecutive periods consisting of integrated lecture, discussion and laboratory. Prerequisite: A minimum grade of C- in MATH 109 or MATH 113.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:15 am |
8:15 am |
8:15 am |
||||
Subject: Physics (PHYS)
CRN: 21470
In Person | Lecture/Lab
St Paul: Owens Science Hall 166
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
School of Ed Transfer Course
This calculus-based course is a continuation of PHYS 211. Topics include waves and sound; electricity and magnetism; geometric and physical optics. The course meets three times a week for two consecutive periods consisting of integrated lecture, discussion and laboratory. Prerequisites: A minimum grade of C- in both PHYS 211 and MATH 114 or 200.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
10:55 am |
10:55 am |
10:55 am |
||||
Subject: Physics (PHYS)
CRN: 21471
In Person | Lecture/Lab
St Paul: Owens Science Hall 166
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
School of Ed Transfer Course
This calculus-based course is a continuation of PHYS 211. Topics include waves and sound; electricity and magnetism; geometric and physical optics. The course meets three times a week for two consecutive periods consisting of integrated lecture, discussion and laboratory. Prerequisites: A minimum grade of C- in both PHYS 211 and MATH 114 or 200.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
1:35 pm |
1:35 pm |
||||
Subject: Physics (PHYS)
CRN: 21472
In Person | Lecture/Lab
St Paul: Owens Science Hall 166
Core Requirements Met:
[Core] Natural Science
Other Requirements Met:
School of Ed Transfer Course
This calculus-based course is a continuation of PHYS 211. Topics include waves and sound; electricity and magnetism; geometric and physical optics. The course meets three times a week for two consecutive periods consisting of integrated lecture, discussion and laboratory. Prerequisites: A minimum grade of C- in both PHYS 211 and MATH 114 or 200.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:35 pm |
1:35 pm |
1:35 pm |
||||
Subject: Physics (PHYS)
CRN: 21473
In Person | Lecture
St Paul: In Person
Requirements Met:
School of Ed Transfer Course
Writing to learn
This course investigates the quantum theory of light, wave- particle duality, quantum mechanics in one-dimension, statistical physics, lasers, and solid state physics. The course consists of lecture, discussion and laboratory. Prerequisites: A minimum grade of C- in PHYS 212.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
||||||
Subject: Physics (PHYS)
CRN: 21474
In Person | Lab
St Paul: Schoenecker Center 403
Requirements Met:
School of Ed Transfer Course
Writing to learn
This course investigates the quantum theory of light, wave- particle duality, quantum mechanics in one-dimension, statistical physics, lasers, and solid state physics. The course consists of lecture, discussion and laboratory. Prerequisites: A minimum grade of C- in PHYS 212.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:00 am |
||||||
Subject: Physics (PHYS)
CRN: 21476
In Person | Lab
St Paul: Schoenecker Center 403
Requirements Met:
School of Ed Transfer Course
Writing to learn
Instructor: TBD
This course investigates the quantum theory of light, wave- particle duality, quantum mechanics in one-dimension, statistical physics, lasers, and solid state physics. The course consists of lecture, discussion and laboratory. Prerequisites: A minimum grade of C- in PHYS 212.
0 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
1:30 pm |
|||||
Subject: Physics (PHYS)
CRN: 21477
In Person | Lecture/Lab
St Paul: Owens Science Hall 168
This is a one semester course in computational physics that provides a grounding in the standard tools and techniques involved in the use of computers to solve problems in physics. Topics include numerically solving differential equations, minimization and optimization as they apply to parameter estimation, software engineering and object oriented programming, Newtonian dynamics and N-body simulation, and animation and visualization of computational results. This course consists of lecture, lab, and discussion. Offered spring semester of odd years. Prerequisites: A minimum grade of C- in PHYS 212 and either CISC 131 or CISC 130 or permission of instructor.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
12:15 pm |
12:15 pm |
12:15 pm |
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Subject: Physics (PHYS)
CRN: 21478
In Person | Lecture
St Paul: In Person
Requirements Met:
School of Ed Transfer Course
The foundation of Quantum Mechanics will be explored with mathematical rigor. Specific topics include the time-independent Schrodinger equation, the hydrogen atom, and angular momentum including spin. Discussion of identical particles will lead to an introduction of quantum statistical mechanics. Lecture and discussion. Prerequisite: A minimum grade of C- in PHYS 215, PHYS 225, MATH 200, either 210 or 230, and 240.
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Public Health (PUBH)
CRN: 20281
Blended Online & In-Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Natural Science
Instructor: TBD
In recent decades, infectious diseases such as West Nile virus, Ebola, Zika, MERS, HIV, H5N1 and H1N1 influenza virus have jumped geographical boundaries and even species boundaries to emerge in new populations. This class offers an introduction to emerging and reemerging infectious disease and focuses on the underlying mechanisms of microbial emergence, epidemiology, and the strategies available to contain them. In this age of antibiotics and vaccines, why do millions die each year from infectious diseases worldwide? With new pathogens continuing to emerge, can we ever hope to win the battle? The emergence and re-emergence of infectious diseases involves many interrelated factors. Global interconnectedness continues to increase with international travel and trade; economic, political, and cultural interactions; and human-to-human and animal-to-human interactions. This course will address the biological mechanism of infectious disease and the socioeconomic and ecological factors that influence the outbreak of infectious diseases.
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Public Health (PUBH)
CRN: 20282
Online: Asynchronous | Lab
Online
Core Requirements Met:
[Core] Natural Science
Instructor: TBD
In recent decades, infectious diseases such as West Nile virus, Ebola, Zika, MERS, HIV, H5N1 and H1N1 influenza virus have jumped geographical boundaries and even species boundaries to emerge in new populations. This class offers an introduction to emerging and reemerging infectious disease and focuses on the underlying mechanisms of microbial emergence, epidemiology, and the strategies available to contain them. In this age of antibiotics and vaccines, why do millions die each year from infectious diseases worldwide? With new pathogens continuing to emerge, can we ever hope to win the battle? The emergence and re-emergence of infectious diseases involves many interrelated factors. Global interconnectedness continues to increase with international travel and trade; economic, political, and cultural interactions; and human-to-human and animal-to-human interactions. This course will address the biological mechanism of infectious disease and the socioeconomic and ecological factors that influence the outbreak of infectious diseases.
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Public Health (PUBH)
CRN: 20362
In Person | Lecture
St Paul: In Person
Core Requirements Met:
[Core] Natural Science
Instructor: TBD
This course is designed to provide students with an understanding of the biology of human/animal/environmental interactions that impact health. Students will practice evidence-based approaches to these public health issues including identifying problems and risk factors, considering evidence-based recommendations for interventionism developing strategies for putting interventions in place, and evaluating outcomes. The University of St. Thomas challenges students "... to be morally responsible leaders, who think critically, act wisely, and work skillfully towards the common good." Students completing this course will build critical thinking skills while learning fundamental concepts and practices that benefit the health of global and local communities.
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Public Health (PUBH)
CRN: 20375
Online: Asynchronous | Lab
Online
Core Requirements Met:
[Core] Natural Science
Instructor: TBD
This course is designed to provide students with an understanding of the biology of human/animal/environmental interactions that impact health. Students will practice evidence-based approaches to these public health issues including identifying problems and risk factors, considering evidence-based recommendations for interventionism developing strategies for putting interventions in place, and evaluating outcomes. The University of St. Thomas challenges students "... to be morally responsible leaders, who think critically, act wisely, and work skillfully towards the common good." Students completing this course will build critical thinking skills while learning fundamental concepts and practices that benefit the health of global and local communities.
0 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Public Health (PUBH)
CRN: 20250
In Person | Lecture
St Paul: In Person
Requirements Met:
Sci, Med, Soc (SMDS) Minor
Instructor: TBD
Public health impacts each of us on a daily basis, yet too few of us can explain exactly what it is ordescribe the numerous ways in which it “touches” our daily lives. For students interested in the healthsciences it is critical that you understand how public health has and continues to influence our collectivehealth. In this course you will acquire an understanding of the academic discipline of public health, majorpublic health problems, and public health systems intended to protect andmaintain the health of the public.The course will orient you to core principles of public health, including social justice, and provideopportunities for you to apply your knowledge of public health to address complex population healthproblems that affect the population. Course activities will challenge you to think critically about variouscomplex health problems while you compare, contrast and devise “solutions” or interventions to addressthem. This class will equip you with tools to begin to address the critical public health issues that face you,your community, and your world.
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Public Health (PUBH)
CRN: 20197
Online: Asynchronous | Lecture
Online
Requirements Met:
Sci, Med, Soc (SMDS) Minor
Instructor: TBD
Course description: Some of the major global health challenges we will discuss include communicable and non-communicable diseases, as well as environmental, women’s, and refugee health issues. We will pay particular attention to health systems and the role these systems play in promoting health and development around the globe. The course is global in its scope, but the focus of many of our discussions will be on low- and middle-income countries, the health of the poor, and health inequity. The relationship between health and socio-economic development will be examined throughout the course. The course will expose students to concepts from social epidemiology, such as social determinants of health and the impact of various social, economic, political, and historical contexts on health.
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Public Health (PUBH)
CRN: 20198
Online: Asynchronous | Online: Asynchronous
St Paul: In Person
Instructor: TBD
Course description: Epidemiology (“epi”) is the study of the distribution and determinants of health and disease patterns in human populations. As a scientific method, epidemiology can be used to investigate, analyze, and ultimately prevent or control health problems on the population level. In this course you will develop your understanding of the epidemiologic approach for addressing important population health problems. You will have the opportunity to examine various population health issues from an epidemiologic perspective. Initially, you will learn to speak the “epi” language such that you can describe data in epidemiologic terms and examine associations between exposures and health/disease outcomes. You will also develop skills to conduct basic data analysis, critically analyze epidemiologic study methods, and assess the validity of “epi” study results. You will leave this course with a better understanding of both the significant impact of epidemiology on human health as well as some of the limitations of the science. Prerequisites: PUBH 220 and DASC 120, or Junior Standing and DASC 120, or Permission of the instructor.
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Public Health (PUBH)
CRN: 20223
In Person | Lecture
St Paul: In Person
Instructor: TBD
Public Health policies are inescapable, critical, but often invisible components of our everyday lives. The accessibility, cost and quality of health care; our preparedness for disasters; the safety of our food, water, environment and medications; the right to make individual decisions about our personal health and well-being; and many other issues are vitally tied to health policies and laws. Health policies and laws may have a lasting effect on our quality of life as individuals and on our welfare as a nation. This course examines the relationship between public health research and policymaking. Complex health policy problems facing policymakers today will be discussed. Specifically, this course examines healthcare policy from a public health perspective. Over the course of the semester, we will discuss federal, state, and local health policies in order to improve our understanding of how and why policies were and are developed and how research, politics, and other social factors inform the health policymaking process. Many of the contemporary health policy problems facing federal, state, and local policymakers today will be explored. Prerequisites: PUBH 220 or approval of the instructor
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Public Health (PUBH)
CRN: 20224
Online: Asynchronous | Lecture
Online
Instructor: TBD
Welcome to PUBH 350: Environment, Health and Justice. In this course we will examine public health structures, principles, tools, and programs used to address current and historical environmental health issues. Throughout the course we will consider how the world we live in impacts our health, how we negatively impact the environment and our own health, and what can be done to improve population health. We will consider these topics from an environmental justice perspective because around the world environmental hazards and diseases are not equally distributed across all populations. Environmental health issues are complex and in order to more fully understand them we will draw on ideas and concepts from sociology, economics and environmental epidemiology, toxicology, and regulation. This course will encourage you to understand and think critically about ways public health systems measure, control, and remove exposures to environmental hazards to protect population health. Prerequisites: PUBH 220 or approval of the instructor
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Public Health (PUBH)
CRN: 20199
In Person | Lecture
St Paul: In Person
Instructor: TBD
This course is intended to guide students thorough a five-step process for conducting health research. Students will develop skills necessary to understand, interpret, design various types of health research, as well as contribute to the scholarly conversation in public health. Students will have the opportunity to develop a research question, design a research project to address their question, draft a manuscript, and present their findings to their peers and faculty. Topics to be covered in this course include: identifying an appropriate research study question, selecting an effective study approach, designing a study, collecting data, analyzing data, and reporting findings. This course serves as a hands-on, writing intensive course for students majoring in Public Health. Prerequisites: PUBH 220 and PUBH 300
4 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Public Health (PUBH)
CRN: 20258
Directed Study
St Paul: In Person
Instructor: TBD
The Public Health undergraduate internship learning experience has a three central goals: 1) to broaden student exposure to public health professionals and agencies, 2) facilitate opportunities for students to integrate, synthesize, and apply knowledge gained from coursework , and 3) provide opportunities for students to observe public health leadership in action. This course requires students to complete 100 hours engaging in public health-related competencies. Prior to registering for this class, students must receive internship site approval by faculty or advisor and secure an agreement, in writing, with an internship site. Prerequisites: DASC 120, PUBH 300, and PUBH 340
2 Credits
| M | T | W | Th | F | Sa | Su |
Subject: Public Health (PUBH)
CRN: 20251
Blended Online & In-Person | Lecture
St Paul: In Person
Requirements Met:
[Core] Signature Work
Instructor: TBD
This is the senior capstone seminar for public health majors. The overarching aim of the course is toprovide students with a culminating experience to their overall studies in undergraduate public health.Students will bring to this course all of the knowledge and tools of analysis that they have learned in publichealth throughout their undergraduate tenure. This seminar allows students majoring in public health toanalyze specific issues and problems using the knowledge and understanding gained by completing therequired courses in the program and an experiential learning or research experience. Prerequisites: PUBH 465 or 470 and be senior standing or get permission of the instructor.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
1:30 pm |
1:30 pm |
|||||
Subject: Statistics (STAT)
CRN: 21578
In Person | Lecture
St Paul: In Person
Probability, Estimation, Hypothesis Testing, Analysis of Variance, Regression Analysis, Topics selected from Experimental Design, Statistical Process Control, Non-Parametric Methods, Factor Analysis as time permits. Prerequisite: A grade of C- or above in MATH 114. NOTE: Students who receive credit for STAT 303 may not receive credit for STAT 313 or STAT 314.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
8:00 am |
8:00 am |
|||||
Subject: Statistics (STAT)
CRN: 21579
In Person | Lecture
St Paul: In Person
Probability theory in discrete and continuous sample spaces; random variables and distribution functions; moments; the moment-generating function; functions of random variables; law of large numbers; central limit theorem. Prerequisites: A grade of C- or above in MATH 200 (may be taken concurrently with consent of instructor). NOTE: Students who receive credit for STAT 313 may not receive credit for STAT 303.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
10:55 am |
10:55 am |
10:55 am |
||||
Subject: Statistics (STAT)
CRN: 21580
In Person | Lecture
St Paul: In Person
Requirements Met:
School of Ed Transfer Course
Students will learn the theory and applications of point estimation, interval estimation, and hypothesis testing. Students will construct intervals and tests using a variety of statistical tools including frequentist statistical theory, Bayesian statistical theory, and resampling-based simulation. Prerequisites: Grades C- or higher in MATH 240 and STAT 313. NOTE: Students who receive credit for STAT 314 may not receive credit for STAT 303.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
12:15 pm |
12:15 pm |
12:15 pm |
||||
Subject: Statistics (STAT)
CRN: 21581
In Person | Lecture
St Paul: In Person
Requirements Met:
School of Ed Transfer Course
The course introduces the theory and applications of simple and multiple regression methods, including model construction and selection, transformation of variables and residual analysis; introduction to GLM (generalized linear models) for categorical and count response variables; time series analysis with ARIMA (autoregressive integrated moving average models). Students are introduced to principles of data collection and analysis, learn to work with statistical literature. Students present a writing intensive small group course project. Prerequisites: Grades C- or higher in MATH 240 and in STAT 303 or STAT 314.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
3:25 pm |
3:25 pm |
|||||
Subject: Statistics (STAT)
CRN: 21582
In Person | Lecture
St Paul: In Person
Requirements Met:
[Core] Signature Work
This course provides students the opportunity to develop and pursue an advanced statistical analysis with real world relevance and application. In addition to working with a faculty instructor, students are also given the opportunity to collaborate with professional mentors from various industries and to participate in national competitions. Previous sponsors include the Minnesota Department of Natural Resources, the Travelers Companies, U.S. Bancorp, SCOR Reinsurance, Drake Bank, and numerous professors from other departments at St. Thomas. Grade of C- or higher in STAT 360 and senior standing.
4 Credits
| 02/01 - 05/21 | ||||||
| M | T | W | Th | F | Sa | Su |
3:25 pm |
3:25 pm |
|||||
Subject: Statistics (STAT)
CRN: 22150
In Person | Lecture
St Paul: In Person
The subject matter of these courses will vary from year to year, but will not duplicate existing courses. Descriptions of these courses are available in Classfinder, View Searchable Class Schedule
4 Credits