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Electron, Spin and Momentum Densities and Chemical Reactivity (Softcover Reprint of the Original 1st 2000)

Contributor(s): Mezey, Paul G (Editor), Robertson, Beverly E (Editor)

ISBN: 9781402004131

Publisher: Springer

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Pub Date: November 30, 2001

Dewey: 541.28

Lexile Code: 0000

Features: Maps

Target Age Group: NA to NA

Physical Info: 0.70" H x 9.28" L x 6.20" W ( 1.07 lbs) 334 pages

Series: Understanding Chemical Reactivity

Descriptions, Reviews, etc.

Description: The electron density of a non-degenerate ground state system determines essentially all physical properties of the system. This statement of the Hohenberg-Kohn theorem of Density Functional Theory plays an exceptionally important role among all the fundamental relations of Molecular Physics. In particular, the electron density distribution and the dynamic properties of this density determine both the local and global reactivities of molecules. High resolution experimental electron densities are increasingly becoming available for more and more molecules, including macromolecules such as proteins. Furthermore, many of the early difficulties with the determination of electron densities in the vicinity of light nuclei have been overcome. These electron densities provide detailed information that gives important insight into the fundamentals of molecular structure and a better understanding of chemical reactions. The results of electron density analysis are used in a variety of applied fields, such as pharmaceutical drug discovery and biotechnology. If the functional form of a molecular electron density is known, then various molecular properties affecting reactivity can be determined by quantum chemical computational techniques or alternative approximate methods.

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