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The theory of intermolecular forces

The theory of intermolecular forces has advanced very greatly in recent years. It has become possible to carry out accurate calculations of intermolecular forces for molecules of useful size, and to apply the results to important practical applications such as understanding protein structure and fun...

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Detalles Bibliográficos
Autor principal: Stone, Anthony J
Lenguaje:eng
Publicado: Oxford University Press 2013
Acceso en línea:https://dx.doi.org/10.1093/acprof:oso/9780199672394.001.0001
http://cds.cern.ch/record/1520111
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author Stone, Anthony J
author_facet Stone, Anthony J
author_sort Stone, Anthony J
collection CERN
description The theory of intermolecular forces has advanced very greatly in recent years. It has become possible to carry out accurate calculations of intermolecular forces for molecules of useful size, and to apply the results to important practical applications such as understanding protein structure and function, and predicting the structures of molecular crystals. The Theory of Intermolecular Forces sets out the mathematical techniques that are needed to describe and calculate intermolecular interactions and to handle the more elaborate mathematical models. It describes the methods that are used to calculate them, including recent developments in the use of density functional theory and symmetry-adapted perturbation theory. The use of higher-rank multipole moments to describe electrostatic interactions is explained in both Cartesian and spherical tensor formalism, and methods that avoid the multipole expansion are also discussed. Modern ab initio perturbation theory methods for the calculation of intermolecular interactions are discussed in detail, and methods for calculating properties of molecular clusters and condensed matter for comparison with experiment are surveyed.
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spelling cern-15201112021-04-21T23:07:47Zdoi:10.1093/acprof:oso/9780199672394.001.0001http://cds.cern.ch/record/1520111engStone, Anthony JThe theory of intermolecular forcesThe theory of intermolecular forces has advanced very greatly in recent years. It has become possible to carry out accurate calculations of intermolecular forces for molecules of useful size, and to apply the results to important practical applications such as understanding protein structure and function, and predicting the structures of molecular crystals. The Theory of Intermolecular Forces sets out the mathematical techniques that are needed to describe and calculate intermolecular interactions and to handle the more elaborate mathematical models. It describes the methods that are used to calculate them, including recent developments in the use of density functional theory and symmetry-adapted perturbation theory. The use of higher-rank multipole moments to describe electrostatic interactions is explained in both Cartesian and spherical tensor formalism, and methods that avoid the multipole expansion are also discussed. Modern ab initio perturbation theory methods for the calculation of intermolecular interactions are discussed in detail, and methods for calculating properties of molecular clusters and condensed matter for comparison with experiment are surveyed.Oxford University Pressoai:cds.cern.ch:15201112013
spellingShingle Stone, Anthony J
The theory of intermolecular forces
title The theory of intermolecular forces
title_full The theory of intermolecular forces
title_fullStr The theory of intermolecular forces
title_full_unstemmed The theory of intermolecular forces
title_short The theory of intermolecular forces
title_sort theory of intermolecular forces
url https://dx.doi.org/10.1093/acprof:oso/9780199672394.001.0001
http://cds.cern.ch/record/1520111
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