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Advances in Physical Organic Chemistry
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  • Advances in Physical Organic Chemistry
ID: 170407
John Richard
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Advances in Physical Organic Chemistry provides the most-needed organic chemistry. The field is a dynamically developing system. It is a solid state physics.

* Reviews the application of quantitative and mathematical methods
* Multidisciplinary volumes cover organic, organometallic, bioorganic, enzymes and materials topics

1. The Interpretation and Mechanistic
Significance of Activation Volumes for
Organometallic Reactions (R. van Eldik, C. Hubbard).
2. Mechanisms for Catalysis by Small Molecule Analogs of Metalloprotein Active Sites (L. Berreau).
3. Electron Transfer Reactions within Sigma and Pi-bridged Nitrogen-centered Intervalence Radical Ions (S. Nelsen).
4. Using Kinetic Isotope Effects to Determine the Structure of the Transition States for Sn2 Reactions (K. Westaway).
5. Mechanism for Nucleophilic Aliphatic Substitution at Glycosides (N. Horenstein).
6. Effect of Enzyme Enzymatic Efficiency on Catalytic Activity (S. Schwartz).
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