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Computational Quantum Mechanics of Molecular and Extended Systems
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The theoretical frameworks of Hartree-Fock theory and density functional theory are presented in this course as approximate methods to solve the many-electron problem. A variety of ways to incorporate electron correlation are discussed. The application of these techniques to calculate the reactivity and spectroscopic properties of chemical systems, in addition to the thermodynamics and kinetics of chemical processes, is emphasized. This course also focuses on cutting edge methods to sample complex hypersurfaces, for reactions in liquids, catalysts and biological systems.

Subject:
Applied Science
Chemistry
Engineering
Physical Science
Physics
Material Type:
Full Course
Provider Set:
MIT OpenCourseWare
Author:
Trout, Bernhardt
Date Added:
09/01/2004
Environmental Chemistry Videos
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CC BY-NC-ND
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Learn about environmental chemistry through engaging, bitesize animated videos. The videos are organised into chapters including: the earth, the air, water, rocks, metals and their reactivity, global warming, carbon chemistry, fuels and recycling.

Subject:
Physical Science
Material Type:
Lecture
Date Added:
01/12/2016
Molecular Aspects of Chemical Engineering
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This class covers molecular-level engineering and analysis of chemical processes. The use of chemical bonding, reactivity, and other key concepts in the design and tailoring of organic systems are discussed in this class. Specific class topics include application and development of structure-property relationships, and descriptions of the chemical forces and structural factors that govern supramolecular and interfacial phenomena for molecular and polymeric systems.

Subject:
Applied Science
Chemistry
Engineering
Physical Science
Material Type:
Full Course
Provider Set:
MIT OpenCourseWare
Author:
Hammond, Paula
Date Added:
09/01/2004
Organic Chemistry I
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This subject deals primarily with the basic principles to understand the structure and reactivity of organic molecules. Emphasis is on substitution and elimination reactions and chemistry of the carbonyl group. The course also provides an introduction to the chemistry of aromatic compounds.

Subject:
Chemistry
Physical Science
Material Type:
Full Course
Provider Set:
MIT OpenCourseWare
Author:
Berkowski, Kimberly
O’Connor, Sarah
Date Added:
02/01/2005
Organic Chemistry I
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5.12 is an introduction to organic chemistry, focusing primarily on the basic principles to understand the structure and reactivity of organic molecules. Emphasis is on substitution and elimination reactions and chemistry of the carbonyl group. The course also provides an introduction to the chemistry of aromatic compounds.

Subject:
Chemistry
Physical Science
Material Type:
Full Course
Provider Set:
MIT OpenCourseWare
Author:
Imperiali, Barbara
Tabacco, Sarah
Date Added:
02/01/2003
Organic Chemistry II
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CC BY-NC-SA
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This intermediate organic chemistry course focuses on the methods used to identify the structure of organic molecules, advanced principles of organic stereochemistry, organic reaction mechanisms, and methods used for the synthesis of organic compounds. Additional special topics include illustrating the role of organic chemistry in biology, medicine, and industry.

Subject:
Chemistry
Physical Science
Material Type:
Full Course
Provider Set:
MIT OpenCourseWare
Author:
Jamison, Timothy
Tabacco, Sarah
Date Added:
09/01/2003
Organic Chemistry II
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CC BY-NC-SA
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This intermediate organic chemistry course focuses on the methods used to identify the structure of organic molecules, advanced principles of organic stereochemistry, organic reaction mechanisms, and methods used for the synthesis of organic compounds. Additional special topics include illustrating the role of organic chemistry in biology, medicine, and industry.

Subject:
Chemistry
Physical Science
Material Type:
Full Course
Provider Set:
MIT OpenCourseWare
Author:
Berkowski, Kimberly
Jamison, Timothy
Date Added:
09/01/2006