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Electron Density And Bonding In Crystals Principles Theory And X-Ray Diffraction Experiments In Solid State Physics And Chemistry 1996 Edition at Meripustak

Electron Density And Bonding In Crystals Principles Theory And X-Ray Diffraction Experiments In Solid State Physics And Chemistry 1996 Edition by V.G Tsirelson, R.P Ozerov , INSTITUTE OF PHYSICS PUBLISHING

Books from same Author: V.G Tsirelson, R.P Ozerov

Books from same Publisher: INSTITUTE OF PHYSICS PUBLISHING

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  • General Information  
    Author(s)V.G Tsirelson, R.P Ozerov
    PublisherINSTITUTE OF PHYSICS PUBLISHING
    ISBN9780750302845
    Pages532
    BindingHardback
    LanguageEnglish
    Publish YearJune 1996

    Description

    INSTITUTE OF PHYSICS PUBLISHING Electron Density And Bonding In Crystals Principles Theory And X-Ray Diffraction Experiments In Solid State Physics And Chemistry 1996 Edition by V.G Tsirelson, R.P Ozerov

    Electron Density and Bonding in Crystals: Principles, Theory and X-Ray Diffraction Experiments in Solid State Physics and Chemistry provides a comprehensive, unified account of the use of diffraction techniques to determine the distribution of electrons in crystals. The book discusses theoretical and practical techniques, the application of electron density studies to chemical bonding, and the determination of the physical properties of condensed matter.The book features the authors' own key contributions to the subject as well a thorough, critical summary of the extensive literature on electron density and bonding. Logically organized, coverage ranges from the theoretical and experimental basis of electron density determination to its impact on investigations of the nature of the chemical bond and its uses in determining electromagnetic and optical properties of crystals. The main text is supplemented by appendices that provide clear, concise guidance on aspects such as systems of units, quantum theory of atomic vibrations, atomic orbitals, and creation and annihilation operators. The result is a valuable compendium of modern knowledge on electron density distributions, making this reference a standard for crystallographers, condensed matter physicists, theoretical chemists, and materials scientists.



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