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Hartree-Fock-Slater Method for Materials Science - The DV-X Alpha  Method for Design and Characterization of Materials... Hartree-Fock-Slater Method for Materials Science - The DV-X Alpha Method for Design and Characterization of Materials (Hardcover, 2006 ed.)
Hirohiko Adachi, Takeshi Mukoyama, Jun Kawai
R4,314 Discovery Miles 43 140 Ships in 12 - 17 working days

Molecular-orbital calculations for materials design such as alloys, ceramics, and coordination compounds are now possible for experimentalists. Molecuar-orbital calculations for the interpretation of chemical effect of spectra are also possible for experimentalists. The most suitable molecular-orbital calculation method for these purpose is the DV-Xa method, which is robust in such a way that the calculation converges to a result even if the structure of the molecule or solid is impossible in the pressure and temperature ranges on earth. This book specially addresses the methods to design novel materials and to predict the spectralline shape of unknown materials using the DV-Xa molecular-orbital method, but is also useful for those who want to calculate electronic structures of materials using any kind of method.

Hartree-Fock-Slater Method for Materials Science - The DV-X Alpha  Method for Design and Characterization of Materials... Hartree-Fock-Slater Method for Materials Science - The DV-X Alpha Method for Design and Characterization of Materials (Paperback, Softcover reprint of hardcover 1st ed. 2006)
Hirohiko Adachi, Takeshi Mukoyama, Jun Kawai
R4,228 Discovery Miles 42 280 Ships in 10 - 15 working days

Molecular-orbital calculations for materials design such as alloys, ceramics, and coordination compounds are now possible for experimentalists. Molecuar-orbital calculations for the interpretation of chemical effect of spectra are also possible for experimentalists. The most suitable molecular-orbital calculation method for these purpose is the DV-Xa method, which is robust in such a way that the calculation converges to a result even if the structure of the molecule or solid is impossible in the pressure and temperature ranges on earth. This book specially addresses the methods to design novel materials and to predict the spectralline shape of unknown materials using the DV-Xa molecular-orbital method, but is also useful for those who want to calculate electronic structures of materials using any kind of method.

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