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Course Criteria
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3.00 Credits
Spectroscopic analytical techniques, including principles and applications of spectroscopic measurements, fundamental interaction of radiation and matter, emission spectroscopy, atomic absorption, UV-visible fluorescence, Fourier transform IR, X-ray techniques, mass spectroscopy, and surface techniques such as AES, ESCA, and SIMS. Three lectures. Prerequisites Chemistry 42 or 141, or permission of instructor. This course meets the following distribution requirements: Please note: If more than one distribution area is listed, the course can be used to satisfy ONE area only. Natural Sciences This course is offered during the following semesters: Spring Semester Course is taught in alternate years
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3.00 Credits
Basic separation theory, practice, and instrumentation in gas, liquid, and other chromatographies, membrane and affinity separations, extraction techniques, electrophoresis, and separations based on phase equilibria. Three lectures. Prerequisites Chemistry 42 or 141, or permission of instructor. This course meets the following distribution requirements: Please note: If more than one distribution area is listed, the course can be used to satisfy ONE area only. Natural Sciences This course is offered during the following semesters: Spring Semester Course is taught in alternate years
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3.00 Credits
Basic theory and application of modern electrochemical methods of analysis including amperometry, voltammetry, modern cyclic and pulse techniques, and stripping analysis. Mechanisms, kinetics, and electron transfer theory are also covered. Three lectures. Prerequisites Chemistry 42 or 141, or permission of instructor. This course meets the following distribution requirements: Please note: If more than one distribution area is listed, the course can be used to satisfy ONE area only. Natural Sciences This course is offered during the following semesters: Fall Semester Course is taught in alternate years
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3.00 Credits
Survey of the principles of organic chemistry. Topics include reaction mechanisms, synthesis, and spectroscopic methods of structure determination. Three lectures. Prerequisites Chemistry 52. This course meets the following distribution requirements: Please note: If more than one distribution area is listed, the course can be used to satisfy ONE area only. Natural Sciences This course is offered during the following semesters: Fall Semester
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3.00 Credits
Advanced organic chemistry with emphasis on structure and reaction mechanisms, uses of kinetics and other physical methods, and dynamic interaction between current theoretical concepts and experiment. Three lectures. Prerequisites Chemistry 52. This course meets the following distribution requirements: Please note: If more than one distribution area is listed, the course can be used to satisfy ONE area only. Natural Sciences This course is offered during the following semesters: Spring Semester Course is taught in alternate years
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3.00 Credits
Study of noteworthy syntheses of complex molecules with a view to developing a rationale and methodology for synthesis. Examination of the mechanism and scope of new bond-forming methods and functional group transformations. Three lectures. Prerequisites Chemistry 52. This course meets the following distribution requirements: Please note: If more than one distribution area is listed, the course can be used to satisfy ONE area only. Natural Sciences This course is offered during the following semesters: Spring Semester Course is taught in alternate years
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3.00 Credits
Applications of NMR, IR, UV, and mass spectrometry to the identification of organic compounds. Three class meetings. Prerequisites Chemistry 52. This course meets the following distribution requirements: Please note: If more than one distribution area is listed, the course can be used to satisfy ONE area only. Natural Sciences This course is offered during the following semesters: Spring Semester Course is taught in alternate years
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3.00 Credits
Molecular-level mechanism of action of compounds useful in human medicine. Introduces the biochemistry of a biological system relevant to a particular disease process, then focuses on the detailed interaction of chemotherapeutic agents with the system. Material is drawn principally from the primary literature. Course is not comprehensive. Topics may include antiviral/antitumor agents, compounds affecting immunity and inflammation, antibiotics, nucleic-acid-based therapeutics, and combinatorial drug discovery methods Prerequisites Biology 13 and Chemistry 52. This course meets the following distribution requirements: Please note: If more than one distribution area is listed, the course can be used to satisfy ONE area only. Natural Sciences This course is offered during the following semesters: Fall Semester Course is taught in alternate years
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3.00 Credits
Atomic and molecular structure. Symmetry operations and symmetry point groups. Chemical bonding in inorganic and coordination compounds. Types of inorganic reactions and their mechanisms. Reactivity of major classes of inorganic compounds. Descriptive chemistry of selected main-group elements. More rigorous than Chemistry 61. May receive credit for only one of Chemistry 61 or 161. Prerequisites Chemistry 32 and 52. This course meets the following distribution requirements: Please note: If more than one distribution area is listed, the course can be used to satisfy ONE area only. Natural Sciences This course is offered during the following semesters: Fall Semester
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3.00 Credits
Descriptive and theoretical chemistry of transition elements; structure, bonding, reactivity, and spectroscopic properties of metal complexes. Prerequisites Chemistry 61 or 161. This course meets the following distribution requirements: Please note: If more than one distribution area is listed, the course can be used to satisfy ONE area only. Natural Sciences This course is offered during the following semesters: Spring Semester Course is taught in alternate years
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