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21 - 30 of 85 results for: CHEM

CHEM 110: Directed Instruction/Reading

Undergraduates pursue a reading program under supervision of a faculty member in Chemistry; may also involve participation in lab. Prerequisites: superior work in 31A,B, 31X, or 33; and consent of instructor.
Terms: Aut, Win, Spr, Sum | Units: 2 | Repeatable 4 times (up to 8 units total)

CHEM 111: Exploring Chemical Research at Stanford

Preference to freshmen and sophomores. Department faculty describe their cutting-edge research and its applications.
Terms: Win | Units: 1

CHEM 130: Organic and Bio-organic Chemistry Laboratory

Intermediate organic and bio-organic chemistry laboratory, including synthesis and spectroscopy. Nobel prize winning reactions and characterization techniques, such as Diels-Alder and modified Wittig reactions, as well as IR, NMR, and GCMS; Biodiesel synthesis and lipid characterization. Prerequisite: Chem 35 taken in Aut 2014-15 or later, or Chem 35 and 36. Corequisite: 131.
Terms: Aut, Win | Units: 3 | UG Reqs: GER: DB-NatSci

CHEM 131: Organic Polyfunctional Compounds

Aromatic compounds, polysaccharides, amino acids, proteins, natural products, dyes, purines, pyrimidines, nucleic acids, and polymers. Prerequisite: 35.
Terms: Aut, Win | Units: 3 | UG Reqs: GER: DB-NatSci

CHEM 132: Synthesis Laboratory

Focus is on longer syntheses with an emphasis upon using metal catalysts. Emphasis will be on complete characterization of final products using chromatographic and spectroscopic methods. Concludes with an individual synthesis project. Prerequisites: 35, 130.
Terms: Win | Units: 3 | UG Reqs: GER: DB-NatSci

CHEM 134: Analytical Chemistry Laboratory

Classical analysis methods, statistical analyses, chromatography, and spectroscopy will be covered with an emphasis upon quantitative measurements and data analysis. WIM course with full lab reports and oral communication. Concludes with student-developed quantitative project. Prerequisite: Chem 35
Terms: Spr | Units: 5 | UG Reqs: GER: DB-NatSci, WAY-SMA, WAY-AQR

CHEM 135: Physical Biochemistry

Introduction to the physical principles that underlie biological function for students in the life sciences. Chemical thermodynamics: first, second and third laws, heat & work, entropy, free energy, chemical equilibrium, physical equilibrium, osmotic pressure, other colligative properties. Chemical kinetics: rate laws, integration of rate laws, reaction mechanisms, enzyme kinetics. Applications to proteins, lipids, nucleic acids, carbohydrates, small molecules, and macromolecular assemblies. Prerequisites: 31A,B, or 31X, 33, 35 & calculus.
Terms: Win | Units: 3 | UG Reqs: GER: DB-NatSci

CHEM 137: Special Topics in Synthesis

The course covers the basic toolbox for construction of more complex structures for function, largely directed towards molecules of biological relevance. The focus will be the ability to perform structural changes efficiently in order to enable the design of the best structure for a function. The concepts of catalytic processes are at the heart of the how small molecule drug discovery is performed. Fundamentals of the pertinent catalytic processes are discussed. The inter-relationship of synthetic chemistry and pharmaceuticals is emphasized. See more at: http://library.stanford.edu/guides/chem-137-special-topics-organic-chemistry#sthash.vi9khNU5.dpuf. Prerequisite CHEM 35.
Terms: Spr | Units: 3 | UG Reqs: GER: DB-NatSci
Instructors: Trost, B. (PI)

CHEM 150: Single-Crystal X-ray Diffraction (CHEM 250)

Practical X-ray crystallography of discrete molecules, which will emphasize crystal growth, measurement strategies, structure solution and refinement, and report generation. Example structures will include absolute configuration of organic compounds containing only second row atoms, metal containing complexes, and small molecule compounds with disorder. Students will gain knowledge of the underlying theory and concepts for each step of x-ray structural determination.
Terms: Aut | Units: 3
Instructors: Maclaren, J. (PI)

CHEM 151: Inorganic Chemistry I

Theories of electronic structure, stereochemistry, and symmetry properties of inorganic molecules. Topics: ionic and covalent interactions, electron-deficient bonding, and molecular orbital theories. Emphasis is on the chemistry of the metallic elements. Prerequisites: 35. Recommended: 171.
Terms: Win | Units: 3 | UG Reqs: GER: DB-NatSci
Instructors: Stack, D. (PI)
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