Electives

2025 Fall
#22117

Biophysical Chemistry: Physical Principles and the Molecules of Life

Aug 27, 2025 - Dec 12, 2025
Fr
10:00 am - 10:59 am
Social Sciences Building 54

Instruction Mode: In-Person Instruction

Open Seats

3 Unreserved Seats

MCELLBI C100A - DIS 102 Biophysical Chemistry: Physical Principles and the Molecules of Life more detail
Thermodynamic and kinetic concepts applied to understanding the chemistry and structure of biomolecules (proteins, DNA, and RNA). Molecular distributions, reaction kinetics, enzyme kinetics. Bioenergetics, energy transduction, and motor proteins. Electrochemical potential, membranes, and ion channels.
2025 Fall
#23645

Biophysical Chemistry: Physical Principles and the Molecules of Life

Aug 27, 2025 - Dec 12, 2025
Fr
02:00 pm - 02:59 pm

Instruction Mode: In-Person Instruction

Open Seats

8 Unreserved Seats

MCELLBI C100A - DIS 105 Biophysical Chemistry: Physical Principles and the Molecules of Life more detail
Thermodynamic and kinetic concepts applied to understanding the chemistry and structure of biomolecules (proteins, DNA, and RNA). Molecular distributions, reaction kinetics, enzyme kinetics. Bioenergetics, energy transduction, and motor proteins. Electrochemical potential, membranes, and ion channels.
2025 Fall
#21901

Biophysical Chemistry: Physical Principles and the Molecules of Life

Aug 27, 2025 - Dec 12, 2025
Fr
01:00 pm - 01:59 pm

Instruction Mode: In-Person Instruction

Open Seats

8 Unreserved Seats

MCELLBI C100A - DIS 104 Biophysical Chemistry: Physical Principles and the Molecules of Life more detail
Thermodynamic and kinetic concepts applied to understanding the chemistry and structure of biomolecules (proteins, DNA, and RNA). Molecular distributions, reaction kinetics, enzyme kinetics. Bioenergetics, energy transduction, and motor proteins. Electrochemical potential, membranes, and ion channels.
2025 Fall
#22119

Biophysical Chemistry: Physical Principles and the Molecules of Life

Aug 27, 2025 - Dec 12, 2025
Fr
12:00 pm - 12:59 pm

Instruction Mode: In-Person Instruction

Open Seats

5 Unreserved Seats

MCELLBI C100A - DIS 103 Biophysical Chemistry: Physical Principles and the Molecules of Life more detail
Thermodynamic and kinetic concepts applied to understanding the chemistry and structure of biomolecules (proteins, DNA, and RNA). Molecular distributions, reaction kinetics, enzyme kinetics. Bioenergetics, energy transduction, and motor proteins. Electrochemical potential, membranes, and ion channels.
2025 Fall
#23646

Biophysical Chemistry: Physical Principles and the Molecules of Life

Aug 27, 2025 - Dec 12, 2025
Fr
09:00 am - 09:59 am

Instruction Mode: In-Person Instruction

Open Seats

3 Unreserved Seats

MCELLBI C100A - DIS 101 Biophysical Chemistry: Physical Principles and the Molecules of Life more detail
Thermodynamic and kinetic concepts applied to understanding the chemistry and structure of biomolecules (proteins, DNA, and RNA). Molecular distributions, reaction kinetics, enzyme kinetics. Bioenergetics, energy transduction, and motor proteins. Electrochemical potential, membranes, and ion channels.
2025 Fall
#22114

Biophysical Chemistry: Physical Principles and the Molecules of Life

Eunyong Park, Ke Xu
Aug 27, 2025 - Dec 12, 2025
Mo, We, Fr
11:00 am - 11:59 am

Instruction Mode: In-Person Instruction

Open Seats

MCELLBI C100A - LEC 001 Biophysical Chemistry: Physical Principles and the Molecules of Life more detail
Thermodynamic and kinetic concepts applied to understanding the chemistry and structure of biomolecules (proteins, DNA, and RNA). Molecular distributions, reaction kinetics, enzyme kinetics. Bioenergetics, energy transduction, and motor proteins. Electrochemical potential, membranes, and ion channels.
2025 Fall
#21897

Biophysical Chemistry: Physical Principles and the Molecules of Life

Aug 27, 2025 - Dec 12, 2025
Fr
03:00 pm - 03:59 pm

Instruction Mode: In-Person Instruction

Open Seats

9 Unreserved Seats

MCELLBI C100A - DIS 106 Biophysical Chemistry: Physical Principles and the Molecules of Life more detail
Thermodynamic and kinetic concepts applied to understanding the chemistry and structure of biomolecules (proteins, DNA, and RNA). Molecular distributions, reaction kinetics, enzyme kinetics. Bioenergetics, energy transduction, and motor proteins. Electrochemical potential, membranes, and ion channels.
2025 Fall
#23752

Morphology of the Vertebrate Skeleton with Laboratory

Aug 27, 2025 - Dec 12, 2025
12:00 am

Instruction Mode: In-Person Instruction

Open Seats

5 Unreserved Seats

INTEGBI 184L - DIS 101A Morphology of the Vertebrate Skeleton with Laboratory more detail
Lectures on comparative osteology of vertebrates, with emphasis on selected groups of terrestrial vertebrates considered in paleoecological, paleoclimatological, and biostratigraphic analyses. Laboratory: comparative osteology of vertebrates, with emphasis on selected groups of vertebrates. Structure, anatomy, morphology, function, and development of the vertebrate skeleton.
2025 Fall
#23751

Morphology of the Vertebrate Skeleton with Laboratory

Aug 27, 2025 - Dec 12, 2025
Tu, Th
02:00 pm - 04:59 pm

Instruction Mode: In-Person Instruction

Open Seats

5 Unreserved Seats

INTEGBI 184L - LAB 101 Morphology of the Vertebrate Skeleton with Laboratory more detail
Lectures on comparative osteology of vertebrates, with emphasis on selected groups of terrestrial vertebrates considered in paleoecological, paleoclimatological, and biostratigraphic analyses. Laboratory: comparative osteology of vertebrates, with emphasis on selected groups of vertebrates. Structure, anatomy, morphology, function, and development of the vertebrate skeleton.
2025 Fall
#23750

Morphology of the Vertebrate Skeleton with Laboratory

Alan B Shabel, Jack Tseng
Aug 27, 2025 - Dec 12, 2025
Tu, Th
01:00 pm - 01:59 pm

Instruction Mode: In-Person Instruction

Open Seats

INTEGBI 184L - LEC 001 Morphology of the Vertebrate Skeleton with Laboratory more detail
Lectures on comparative osteology of vertebrates, with emphasis on selected groups of terrestrial vertebrates considered in paleoecological, paleoclimatological, and biostratigraphic analyses. Laboratory: comparative osteology of vertebrates, with emphasis on selected groups of vertebrates. Structure, anatomy, morphology, function, and development of the vertebrate skeleton.