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Course Criteria
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1.00 Credits
1 hour lecture Continuation of CHM 401. Lectures on current topics in chemistry from guest lecturers and students. Majors must enroll for two semesters out of four in the junior and senior years.
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3.00 Credits
3 hours lecture Prerequisites: At least a C- in CHM 252, recommended BIO 234 A comprehensive study of biochemistry including amino acid and protein chemistry, enzymology, enzyme kinetics, bioenergetics, metabolism of carbohydrates, lipids, amino acids, nucleotides; biosynthesis of nucleic acids and proteins.
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3.00 Credits
Prerequisites: At least a C- in CHM 411 A continuation of CHM 411. A comprehensive study of biochemistry including amino acid and protein chemistry, enzymology, enzyme kinetics, bioenergetics, metabolism of carbohydrates, lipids, amino acids, nucleotides; biosynthesis of nucleic acids and proteins.
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3.00 Credits
1 hour lecture, 6 hours laboratory Prerequisites: At least a C- in CHM 264 or 266; CHM 411 Pre- or Corequisite: CHM 412 Recommended: CHM 305, 307; BIO 234, 244 Basic biochemical techniques and methods including spectrophotometry, electrophoresis, chromatography, ultracentrifugation and radioisotopic techniques and their application to amino acids and proteins, lipids and membranes, enzymes and nucleic acids.
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1.00 Credits
Prerequisites: At least a C- in CHM 155, 156, 251, 252; or permission of instructor Topics in computer science with applications to organic chemistry and bioinformatics. Includes molecular modeling, quantum chemistry, computational molecular biology, and biological data analysis. Includes an introduction to computer programing for computational molecular biology and biological data analysis and an overview of methods for molecular modeling and quantum chemistry.
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3.00 Credits
Prerequisites: Pre- or Corequisite: At least a C- in CHM 315 The first part of the course provides a background in the various areas of physical organic chemistry such as thermodynamics, kinetics, acid-base theory, structure-reactivity relationships and dipole moments. This is followed by a systematic study of reaction mechanisms.
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3.00 Credits
Selected topics in applied mathematics and computer science with applications to physical chemistry, organic chemistry, and bioinformatics. Includes introduction to differential equations, linear algebra, computer programming, curve and surface fitting, numerical integration, trajectory calculations, molecular modeling, quantum chemistry, computational molecular biology, and biological data analysis.
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2.00 Credits
Prerequisites: At least a C- in CHM, two semesters of college physics, and three semesters of calculus; or permission of instructor. Pre- or corequisite: CHM 316 Topics in applied mathematics with applications to physical chemistry. Includes introduction to differential equations, linear algebra, computer programming, curve and surface fitting, numerical integration, and trajectory calculations. Computer mathematics software will be used extensively throughout the course.
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3.00 Credits
2 hours lecture, 4 hours laboratory Prerequisites: At least a C- in CHM 252, 315; recommended, TEC 410 Laboratory synthesis of polymers and copolymers by different methods with an emphasis on the practical aspects of polymer synthesis. A discussion of various techniques of polymer characterization in terms of basic principles, experimental procedure, and interpretation of results. A selected number of experiments will be conducted on a class-project basis.
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3.00 Credits
Prerequisites: One year of physical chemistry with grades of C- or better. The application of physico-chemical principles to inorganic systems. Discussion of chemistry of the representative elements utilizing thermodynamic principles and the modern theories of bonding and structure. Introduction to coordination chemistry.
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