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Computational Chemistry Volume 98 || The Concept of the Potential Energy Surface

โœ Scribed by Lewars, Errol G. (author)


Book ID
111690857
Publisher
Springer Netherlands
Year
2010
Tongue
Dutch
Weight
984 KB
Edition
2
Category
Article
ISBN
9048138620

No coin nor oath required. For personal study only.

โœฆ Synopsis


This corrected second edition contains new material which includes solvent effects, the treatment of singlet diradicals, and the fundamentals of computaional chemistry. "Computational Chemistry: Introduction to the Theory and Applications of Molecular and Quantum Mechanics" is an invaluable tool for teaching and researchers alike. The book provides an overview of the field, explains the basic underlying theory at a meaningful level that is not beyond beginners, and it gives numerous comparisons of different methods with one another and with experiment. The following concepts are illustrated and their possibilities and limitations are given: - potential energy surfaces; - simple and extended Hueckel methods; - ab initio, AM1 and related semiempirical methods; - density functional theory (DFT). Topics are placed in a historical context, adding interest to them and removing much of their apparently arbitrary aspect. The large number of references, to all significant topics mentioned, should make this book useful not only to undergraduates but also to graduate students and academic and industrial researchers.


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Computational Chemistry Volume 98 || The
โœ Lewars, Errol G. (author) ๐Ÿ“‚ Article ๐Ÿ“… 2010 ๐Ÿ› Springer Netherlands ๐ŸŒ Dutch โš– 984 KB

This corrected second edition contains new material which includes solvent effects, the treatment of singlet diradicals, and the fundamentals of computaional chemistry. "Computational Chemistry: Introduction to the Theory and Applications of Molecular and Quantum Mechanics" is an invaluable tool for

The potential energy surface of H4SiO4
โœ Wagner B. De Almeida; Patrick J. O'Malley ๐Ÿ“‚ Article ๐Ÿ“… 1991 ๐Ÿ› Elsevier Science ๐ŸŒ English โš– 352 KB

Three "true" minimum energy conformations and several transition state structures have been located on the potential energy surface for the H,SiO, molecule, calculated at the SCF/3-21G level of theory. Geometry optimisation for each stationary point has been performed with inclusion of polarization