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CHEM 550: Advanced Quantum Dynamics
4.00 Credits
University of Illinois at Urbana-Champaign
The quantum mechanical description of time-dependent processes, including discussions of the time-dependent Schrodinger equation, approximations, interaction of matter with radiation, wave packets, elastic and inelastic scattering, and relaxation phenomena. Prerequisite: Concurrent registration in CHEM 540 or consent of instructor.
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CHEM 550 - Advanced Quantum Dynamics
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CHEM 554: Topics in Physical Chemistry
2.00 - 4.00 Credits
University of Illinois at Urbana-Champaign
Advanced course dealing with a subject not ordinarily covered by regularly scheduled courses, such as molecular spectroscopy, statistical mechanics, radiation and hot-atom chemistry, molecular quantum mechanics, radio-frequency spectroscopy, advanced experimental methods, kinetics of irreversible processes and cooperative phenomena, etc. May be repeated. Prerequisite: Consent of instructor.
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CHEM 554 - Topics in Physical Chemistry
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CHEM 570: Special Topics Chem Biol
2.00 Credits
University of Illinois at Urbana-Champaign
Advanced tutorials on special topics in Chemical Biology, including biomolecular synthesis and folding, biospectroscopy techniques, and computational biology. Emphasizes the development of presentation skills. Approved for both letter and S/U grading. Prerequisite: Enrollment in the Chemistry Graduate Program or consent of instructor.
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CHEM 570 - Special Topics Chem Biol
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CHEM 572: Enzyme Reaction Mechanisms
3.00 - 4.00 Credits
University of Illinois at Urbana-Champaign
Introduction to the catalytic strategies used by enzymes for accelerating chemical reactions using a combination of kinetics, enzymology, and structural information. Application of gene databases to infer evolutionary relationships among catalytic mechanisms. Same as MCB 553. Prerequisite: Two semesters of undergraduate organic chemistry (CHEM 232 or CHEM 236 and CHEM 332 or CHEM 436) or consent of instructor.
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CHEM 572 - Enzyme Reaction Mechanisms
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CHEM 573: Isotopically Labeled Compounds
0.00 - 4.00 Credits
University of Illinois at Urbana-Champaign
Variable credit course consisting of 2 parts: First half is a practical study of the most commonly used radioisotopes, including procedures for their safe handling; Last half of course covers the synthesis and analysis of isotopically labeled compounds using both radioisotopes and stable isotopes. Course credit is 2 hours (for the first half only) or 4 hours (for the entire course). Prerequisite: CHEM 436.
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CHEM 573 - Isotopically Labeled Compounds
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CHEM 574: Genomics, Proteomics, Bioinfo
3.00 - 4.00 Credits
University of Illinois at Urbana-Champaign
Survey of contemporary methods, applications, and implications of postgenomic biology, including genome sequencing, global RNA analysis, and proteomics. Same as MCB 554. Prerequisite: One year of undergraduate organic chemistry and one semester of biochemistry, or consent of instructor.
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CHEM 574 - Genomics, Proteomics, Bioinfo
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CHEM 575: Chemical Biology Seminar
1.00 Credits
University of Illinois at Urbana-Champaign
Required of all graduate students whose major is Chemical Biology. Prerequisite: Consent of instructor.
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CHEM 575 - Chemical Biology Seminar
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CHEM 576: Topics in Biophysical Chem
4.00 Credits
University of Illinois at Urbana-Champaign
Topics of importance in research in biophysical chemistry are discussed with emphasis on physical background and current applications; topics may be chosen from among the following: NMR and ESR spectra of biological macromolecules; x-ray diffraction studies of macromolecules; kinetics and statistical mechanics of helix coil transitions; physical approaches to the refolding and assembly of multi-subunit proteins; fluorescence spectroscopic studies on macromolecules; and light scattering from macromolecules in solution. Same as BIOP 540 and MCB 556. Prerequisite: CHEM 444 or equivalent, or CHEM 472.
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CHEM 576 - Topics in Biophysical Chem
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CHEM 578: Combinatorial Chemistry
4.00 Credits
University of Illinois at Urbana-Champaign
All aspects of combinatorial chemistry, the synthesis of multiple compounds in a rapid fashion, will be covered. Examples of combinatorial biology will also be discussed. Prerequisite: Chemistry graduate students or two semesters of undergraduate organic chemistry.
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CHEM 578 - Combinatorial Chemistry
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CHEM 582: Chemical Kinetics & Catalysis
4.00 Credits
University of Illinois at Urbana-Champaign
Same as CHBE 551. See CHBE 551.
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CHEM 582 - Chemical Kinetics & Catalysis
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