This book presents an overview of recent progress in computational techniques as well as examples of the application of existing computational methods in different areas of chemistry, physics, and biochemistry. Introductory chapters cover a broad range of fundamental topics, including: state-of-the-art basis set expansion methods for computing atomic and molecular electronic structures based on the use of relativistic quantum mechanics; the most recent developments in Hartree-Fock methods, particularly in techniques suited for very large systems; the current analysis of the solute-solvent free energy of interaction and the physical bases used to evaluate the electrostatic, cavitation, and dispersion terms; an introduction to the additive fuzzy electron density fragmentation scheme within various ab initio Hartree-Fock quantum-chemical computational schemes, which has provided the means for generating representative molecular fragment densities characteristic to their local environment within a molecule. This book also features a review of recent ab initio calculations on the structure and interactions of DNA bases, a chapter on computational approaches to the design of safer drugs and their molecular properties, and a systematic conceptual study on a route which allows one to stuff fullerenes.
Reihe
Sprache
Verlagsort
Zielgruppe
Für höhere Schule und Studium
Für Beruf und Forschung
Produkt-Hinweis
Fadenheftung
Gewebe-Einband
ISBN-13
978-981-02-2572-8 (9789810225728)
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Schweitzer Klassifikation
Herausgeber*in
Univ Of Florida, Usa
Palacky University Olomouc; Department Of Physical Chemistry
Lawrence Livermore Nat'l Lab, Usa
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Univ Of Saskatchewan, Canada
Jackson State Univ, Usa
Univ Of Hyderabad, India
Tel-aviv Univ, Israel
Univ Of Hyderabad, India
Relativistic many-body calculations on atoms and molecules, Y. Ishikawa and U. Kaldor; modern developments in Hartree-Fock theory - fast methods for computing the Coulomb matrix, M. Challacombe et al; local shape analysis of macromolecular electron densities, P.G. Mezey; liquid-state quantum chemistry - computational applications of the polarizable continuum models, J.-L. Rivail and D. Rinaldi; elemental boron route to stuffed fullerenes, E.D. Jemmis and B. Kiran; interactions of DNA bases and the structure of DNA - a nonempirical "ab initio" study with inclusion of electron correlation, J. Sponer et al; computational approches to the design of safer drugs and their molecular properties, N. Bodor and M.-J. Huang.