Nonlinear Hamiltonian Mechanics Applied to Molecular Dynamics : Theory and Computational Methods for Understanding Molecular Spectroscopy and Chemical Reactions. Dieser Artikel ist nicht verfügbar.
Sprache: Englisch
Verlag: Palgrave Macmillan, 2014
Serie: Buch 60 von 220 - SpringerBriefs in Molecular Science
- Softcover
- Neu

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Artikelbeschreibung des Verkäufers
nach der Bestellung gedruckt Neuware - Printed after ordering - This brief presents numerical methods for describing and calculating invariant phase space structures, as well as solving the classical and quantum equations of motion for polyatomic molecules. Examples covered include simple model systems to realistic cases of molecules spectroscopically studied.Vibrationally excited and reacting molecules are nonlinear dynamical systems, and thus, nonlinear mechanics is the proper theory to elucidate molecular dynamics by investigating invariant structures in phase space. Intramolecular energy transfer, and the breaking and forming of a chemical bond have now found a rigorous explanation by studying phase space structures.
Bestandsnummer des Verkäufers 9783319099873
- Titel
- Nonlinear Hamiltonian Mechanics Applied to Molecular Dynamics : Theory and Computational Methods for Understanding Molecular Spectroscopy and Chemical Reactions
- Autor
- Stavros C. Farantos
- Verlag
- Palgrave Macmillan
- Erscheinungsjahr
- 2014
- Zustand
- Neu
- Einband
- Taschenbuch
- Sprache
- Englisch
- ISBN-10
- 3319099876
- ISBN-13
- 9783319099873
- Artikelgewicht
- 303 Gramm
- Abmessungen
- 235x155x10 mm
- Serie
- Buch 60 von 220: SpringerBriefs in Molecular Science
This brief presents numerical methods for describing and calculating invariant phase space structures, as well as solving the classical and quantum equations of motion for polyatomic molecules. Examples covered include simple model systems to realistic cases of molecules spectroscopically studied.
Vibrationally excited and reacting molecules are nonlinear dynamical systems, and thus, nonlinear mechanics is the proper theory to elucidate molecular dynamics by investigating invariant structures in phase space. Intramolecular energy transfer, and the breaking and forming of a chemical bond have now found a rigorous explanation by studying phase space structures.
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