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Course Criteria
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4.00 Credits
Selected physiochemical principles including quantum theory, spectroscopy, statistical thermodynamics, and rates of chemical reactions. Credit may not be claimed for both CH 433 and CH 437.
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3.00 Credits
Chemical identification (recognition), and chemical separation techniques (identification) used to demarcate class and individual characteristics relevant in legal claims.
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4.00 Credits
An advanced laboratory class in the synthesis, separation and characterization of organic, inorganic, and polymeric materials. Techniques include reactions under inert atmosphere, column chromatography, fractional distillations, NMR spectroscopy, and other advanced procedures. Scientific writing is emphasized.
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4.00 Credits
An advanced laboratory class in the synthesis, separation and characterization of organic, inorganic, polymer and materials compounds. Techniques include literature searches, reactions, under inert atmosphere, column chromatography, fractional distillations, NMR spectroscopy, and other advanced procedures. This course builds upon the skills acquired in CH 442 and has significant independent work.
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4.00 Credits
Modern analytical and physical chemistry laboratory techniques. Emphasis on statistical methods, chemical thermodynamics, chromatography, atomic and molecular spectroscopy, report writing, scientific methodology, and laboratory safety.
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4.00 Credits
Laboratory course designed on systematic method development in practical applications for the separation and analysis of environmental, pharmaceutical and biologically important samples. Isocratic and gradient elution HPLC separations and temperature programming in GC are covered. In addition to GC, the three major HPLC modes of Reversed Phase, Ion Exchange, and Hydrophilic Interaction will be studied for separations of mixtures of small organic molecules and biologically important molecules such as peptides and carbohydrates.
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4.00 Credits
Formation and properties of fiber-forming polymers. Step-growth and chain-growth polymerization. Survey of formation techniques for man-made fibers. Relationships between chemical structure and physical properties of natural and man-made fibers.
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3.00 Credits
Survey of the present state of understanding of the molecular mechanisms leading to the emergence of sustainable self-replicating systems in the prebiotic era on the early Earth, including historical context, experimental studies, and theoretical foundation. The course will include a focus on the fundamental chemistry of and mechanisms for the plausible prebiotic formation of diverse biomolecules (including amino acids, sugars, nucleotides, lipids, tetrapyrroles) and self-organizing chemistry leading to protocells, the proposed early progenitors of living cells. Credit will not be given for both CH 463 and CH 563.
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3.00 Credits
Chemical processes controlling the composition of oceans, including discussions of chemical equilibria, biological cycling of nutrients and use of chemical tracers in marine environment; consideration of origin and chemical history of oceans. Creditis not allowed for both MEA 473 and MEA 573
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1.00 - 4.00 Credits
Independent study and research projects in chemistry.
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