The VSEPR Model of Molecular Geometry

Nonfiction, Science & Nature, Science, Chemistry, Inorganic
Cover of the book The VSEPR Model of Molecular Geometry by Prof. Ronald J Gillespie, PhD, Prof. Istvan Hargittai, Dover Publications
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Author: Prof. Ronald J Gillespie, PhD, Prof. Istvan Hargittai ISBN: 9780486310527
Publisher: Dover Publications Publication: March 21, 2013
Imprint: Dover Publications Language: English
Author: Prof. Ronald J Gillespie, PhD, Prof. Istvan Hargittai
ISBN: 9780486310527
Publisher: Dover Publications
Publication: March 21, 2013
Imprint: Dover Publications
Language: English
Valence Shell Electron Pair Repulsion (VSEPR) theory is a simple technique for predicting the geometry of atomic centers in small molecules and molecular ions. This authoritative reference was written by Istvan Hartiggai and the developer of VSEPR theory, Ronald J. Gillespie. In addition to its value as a text for courses in molecular geometry and chemistry, it constitutes a classic reference for professionals.
Starting with coverage of the broader aspects of VSEPR, this volume narrows its focus to a succinct survey of the methods of structural determination. Additional topics include the applications of the VSEPR model and its theoretical basis. Helpful data on molecular geometries, bond lengths, and bond angles appear in tables and other graphics.
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Valence Shell Electron Pair Repulsion (VSEPR) theory is a simple technique for predicting the geometry of atomic centers in small molecules and molecular ions. This authoritative reference was written by Istvan Hartiggai and the developer of VSEPR theory, Ronald J. Gillespie. In addition to its value as a text for courses in molecular geometry and chemistry, it constitutes a classic reference for professionals.
Starting with coverage of the broader aspects of VSEPR, this volume narrows its focus to a succinct survey of the methods of structural determination. Additional topics include the applications of the VSEPR model and its theoretical basis. Helpful data on molecular geometries, bond lengths, and bond angles appear in tables and other graphics.

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