Fr. 219.00

Computational Spectroscopy - Methods, Experiments and Applications

Inglese · Copertina rigida

Spedizione di solito entro 1 a 3 settimane (non disponibile a breve termine)

Descrizione

Ulteriori informazioni

Unique in its comprehensive coverage of not only theoretical methods but also applications in computational spectroscopy, this ready reference and handbook compiles the developments made over the last few years, from single molecule studies to the simulation of clusters and the solid state, from organic molecules to complex inorganic systems and from basic research to commercial applications in the area of environment relevance. In so doing, it covers a multitude of apparatus-driven technologies, starting with the common and traditional spectroscopic methods, more recent developments (THz), as well as rather unusual methodologies and systems, such as the prediction of parity violation, rare gas HI complexes or theoretical spectroscopy of the transition state. With its summarized results of so many different disciplines, this timely book will be of interest to newcomers to this hot topic while equally informing experts about developments in neighboring fields.

Sommario

NMR SpectroscopyESR SpectroscopyIR Spectroscopy UV Spectroscopy, TDDFTTHz Spectroscopy Parity ViolationVibrational CD Electronic CDComputational Spectroscopy in Inorganic ChemistryComputational Spectroscopy in Bioinorganic ChemistrySolid Water ClustersSmall Water ClustersCalculation of Vibration-Rotation SpectraComputational Spectroscopy of ProteinsComputational Spectroscopy of DNANMR SpectroscopyESR SpectroscopyIR Spectroscopy UV Spectroscopy, TDDFTTHz Spectroscopy Parity ViolationVibrational CD Electronic CDComputational Spectroscopy in Inorganic ChemistryComputational Spectroscopy in Bioinorganic ChemistrySolid Water ClustersSmall Water ClustersCalculation of Vibration-Rotation SpectraComputational Spectroscopy of ProteinsComputational Spectroscopy of DNA

Info autore

Jörg Grunenberg studied chemistry at the University Erlangen-Nürnberg.§After his doctorate he moved to the Technische Universität Braunschweig and is now head of the scientific computing section at the Institute of Organic Chemistry. His interests are the in silico prediction of molecular spectroscopic properties, the quantification of covalent and non-covalent interactions, and molecular recognition in general. He is author and co-author of more than 80 original papers and book chapters on computational chemistry.

Riassunto

Unique in its comprehensive coverage of not only theoretical methods but also applications in computational spectroscopy, this ready reference and handbook compiles the developments made over the last few years, from single molecule studies to the simulation of clusters and the solid state, from organic molecules to complex inorganic systems and from basic research to commercial applications in the area of environment relevance.
In so doing, it covers a multitude of apparatus-driven technologies, starting with the common and traditional spectroscopic methods, more recent developments (THz), as well as rather unusual methodologies and systems, such as the prediction of parity violation, rare gas HI complexes or theoretical spectroscopy of the transition state.
With its summarized results of so many different disciplines, this timely book will be of interest to newcomers to this hot topic while equally informing experts about developments in neighboring fields.

Dettagli sul prodotto

Autori Jörg Grunenberg
Con la collaborazione di Jör Grunenberg (Editore), Jörg Grunenberg (Editore)
Editore Wiley-VCH
 
Lingue Inglese
Formato Copertina rigida
Pubblicazione 04.11.2010
 
EAN 9783527326495
ISBN 978-3-527-32649-5
Pagine 416
Dimensioni 177 mm x 248 mm x 27 mm
Peso 1048 g
Illustrazioni 75 SW-Abb., 14 Farbabb., 22 Tabellen
Categorie Scienze naturali, medicina, informatica, tecnica > Chimica

Chemie, Physikalische Chemie, Spektroskopie, chemistry, spectroscopy, Physical Chemistry, Computational Chemistry, Computational Chemistry u. Molecular Modeling, Computational Chemistry & Molecular Modeling

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