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  • 3.00 Credits

    Provides school science teachers with skills needed to integrate laboratory experiments efficiently and safely into the science curriculum. Major topics include evaluation of facilities, selection of experiments, teaching strategies, record keeping, ordering supplies, and laboratory safety. Three hours of lecture per week. Does not count towards a major or minor in chemistry, a major in general science, or a minor in physical science. As needed.
  • 3.00 Credits

    Required course for the ACS-certified chemistry BS degree: Biochemistry Track. (CHEM 4230 or CHEM 3300 is required for the ACS-certified BS: Standard Track and the non-ACS certified chemistry BS degree). A survey of the structure and functions of important classes of biomolecules. Metabolism, processing of genetic information, and current topics in biochemistry will be addressed. Three hours of lecture per week. Prerequisite: Grade of C or better in CHEM 3411. Fall, spring.
  • 3.00 Credits

    Required course for the ACS-certified BS degree: Biochemistry Track and an elective for the ACS-certified BS degree: Standard Track. Continuation of CHEM 4320. Three hours of lecture per week. Prerequisite: Grade of C or better in CHEM 4320. Fall, spring.
  • 3.00 Credits

    An upper-division elective for chemistry majors and minors and a required course for those in the biology and chemistry tracks of the Environmental Science program. The course explores the chemistry of the environment with particular emphasis on the atmosphere, hydrosphere, lithosphere, biosphere, and energy. Discussion/lecture. Three hours of lecture per week. Elective option for the ACS-certified chemistry BS degree: Standard Track. Prerequisites: Grade of C or better in CHEM 3411 and CHEM 3520. Fall.
  • 3.00 Credits

    Required course for the ACS-certified chemistry BS degree Standard Track, and an elective in the non-ACS certified chemistry BS degree.? CHEM 4380 or CHEM 3360 is required for the ACS-certified BS degree: Biochemistry Track. Emphasis on the periodic properties of the elements and how these derive from modern atomic theory. Uses modern theories of chemical bonding, including molecular orbital theory and symmetry, to outline the systematic chemistry of the transition metals as well as representative main group elements. Introduction to organometallic compounds and their catalysis of important organic transformations. Emphasizes current primary inorganic literature sources. Three hours of lecture per week. Prerequisite: Grade of C or better in CHEM 4450. Spring.
  • 3.00 Credits

    An elective upper-division course for both the ACS-certified BS degree and the non-ACS certified chemistry BS degree. Advanced topics in chemistry based on the quantum mechanical and other concepts of modern physical chemistry. Three hours of lecture per week. Elective option for the ACS-certified chemistry BS degree: Standard Track. Prerequisite: CHEM 4460. As needed.
  • 3.00 Credits

    Required upper-division course for chemistry majors. Modern theoretical chemistry with laboratory applications. Serves as a prerequisite class for advanced chemistry courses. Designed to challenge students to think of chemistry primarily from a molecular and mathematical basis. Topics covered are predominately those relating to quantum chemistry, spectroscopy, and chemical kinetics. Significant amount of computer simulation using modern mathematical software. Three hours of lecture and three hours of laboratory per week. Prerequisites: Grade of C or better in CHEM 1451, PHYS 1442, and MATH 1592. Fall.
  • 3.00 Credits

    Required upper division course for the ACS-certified standard track and an upper division elective for both the ACS-certified biochemistry track and the non-ACS certified chemistry BS degree. This course focuses on instrumentation used in modern chemical analysis for a variety of techniques. Operational theory is a major component of lecture portion of the course. Emphasis is placed on physical phenomena that are probed or manipulated in each technique and their relationships to instrumental optimization. Laboratory experiments illustrate principles of electronics, data acquisition, experimental theory, and specific operation details for each method. Three hours of lecture and three hours of laboratory per week. Prerequisite: Grade of C or better in CHEM 3520. Fall.
  • 3.00 Credits

    Required course for the ACS-certified chemistry BS degree and for the non-ACS certified chemistry BS degree. The lecture covers classical thermodynamics, statistical mechanics, chemical equilibria, thermochemistry, and solutions. The laboratory component includes experiments illustrating principles of calorimetry, thermodynamics, and multicomponent systems. Three hours of lecture and three hours of laboratory per week. Prerequisites: Grade of C or better in CHEM 1451, PHYS 1442, and MATH 1592. Spring.
  • 3.00 Credits

    Beginning study of modern Standard Chinese for Beginners with no prior exposure to the language. Basic skills are emphasized, including elementary Mandarin pronunciation, grammar, and orthography (in both Pinyin and characters). Discussion/lecture. Fall, spring.
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