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CHE 538: Principles of Organic Chemistry
3.00 Credits
University of Kentucky
A general survey of the field of organic chemistry. Topics emphasized are: mechanistic principles relating molecular structure to reaction outcome, stereoisomerism and its effect on chemical reactivity, and simple molecular orbital theory as required to understand aromaticity and to predict the occurrence and stereochemistry of pericyclic reactions. Prereq: CHE 232.
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CHE 538 - Principles of Organic Chemistry
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CHE 547: Principles of Physical Chemistry I
3.00 Credits
University of Kentucky
An introduction to quantum chemistry and spectroscopy, emphasizing modern applications of quantum theory to the calculation of molecular properties. Practical experience with quantum chemistry software on various computer platforms is included. Prereq: MA 213; PHY 213 or 232; or consent of instructor.
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CHE 547 - Principles of Physical Chemistry I
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CHE 548: Principles of Physical Chemistry II
3.00 Credits
University of Kentucky
Fundamental principles of classical physical chemistry, including thermodynamics, statistical thermodynamics, and chemical kinetics. Prereq: CHE 440G.
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CHE 548 - Principles of Physical Chemistry II
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CHE 550: Biological Chemistry I
3.00 Credits
University of Kentucky
An introduction to biological chemistry. Topics include amino acids and proteins; nucleic acids and nucleotides; enzyme structure, function and energetics; metabolism including glycolysis; the tricarboxylic acid cycle; electron transport and oxidative phosphorylation; glycogen metabolism; hormone action; and other aspects of modern biological chemistry. Prereq: CHE 232 and a physical chemistry course at or above the 400 level, or consent of instructor.
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CHE 550 - Biological Chemistry I
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CHE 552: Biological Chemistry II
3.00 Credits
University of Kentucky
A further introduction to biological chemistry. Topics include lipid metabolism, biosynthesis and metabolism of nitrogen-containing compounds, storage and utilization of genetic information, immunochemistry, and other contemporary topics in biological chemistry Prereq: CHE 232 and a physical chemistry course at or above the 400 level, or consent of instructor.
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CHE 552 - Biological Chemistry II
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CHE 553: Chemistry And Molecular Biotechnology
3.00 Credits
University of Kentucky
This course focuses on the chemical aspects of biotechnology development. Current topics in biotechnology are emphasized through extensive reading and classroom discussion of the most recent scientific literature. Biotechnology development in fields as diverse as agriculture, the environment, and medicine will be covered. Prereq: An introductory course in biology, biological chemistry, or biochemistry; and CHE 232; or consent of instructor.
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CHE 553 - Chemistry And Molecular Biotechnology
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CHE 554: Biological Chemistry Laboratory
2.00 Credits
University of Kentucky
An introductory biological chemistry laboratory course. Areas of experimentation will include spectroscopic methods, electrophoresis, chromatography, and isolation and characterization of biological macromolecules. Prereq: CHE 232, CHE 550 or CHE 552, and a physical chemistry course at or above the 400 level, or consent of instructor.
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CHE 554 - Biological Chemistry Laboratory
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CHE 555: Homonuclear Nmr
3.00 Credits
University of Kentucky
This course will give students hands-on experience with modern NMR experiments that are the mainstays of chemical structural analysis and biophysical studies of macromolecules and pharmaceuticals. Lecture, two hours; laboratory, three hours per week. Prereq: CHE 232 or CHE 236; and CHE 440G.
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CHE 558: Hormone Receptors And Cell Signals
3.00 Credits
University of Kentucky
This course starts with the general concepts on hormones and their receptors and describes how hormones interact with their receptors and generate hormone signals and responses. Prereq: BIO 315 or equivalent, BCH 401G or equivalent, CHE 550 or 552 or equivalent, or consent of instructor.
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CHE 558 - Hormone Receptors And Cell Signals
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CHE 559: Molecular Biophysics
3.00 Credits
University of Kentucky
Overview of intermolecular forces responsible for formulation tertiary structure and macromolecular assemblies, as well as linked equilibria, allostery and propagation of signals. Extension of these principles to explain macromolecular machines, complex molecular behavior and, ultimately, processes of life. Prereq: CHE 442G or equivalent or permission of instructor.
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CHE 559 - Molecular Biophysics
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