Advances in Quantum Chemistry: Ratner Volume

Nonfiction, Science & Nature, Science, Biological Sciences, Biophysics, Chemistry, General Chemistry
Cover of the book Advances in Quantum Chemistry: Ratner Volume by John R. Sabin, Erkki J. Brandas, Elsevier Science
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Author: John R. Sabin, Erkki J. Brandas ISBN: 9780128128893
Publisher: Elsevier Science Publication: May 25, 2017
Imprint: Academic Press Language: English
Author: John R. Sabin, Erkki J. Brandas
ISBN: 9780128128893
Publisher: Elsevier Science
Publication: May 25, 2017
Imprint: Academic Press
Language: English

Advances in Quantum Chemistry, Volume 75 presents work and reviews of current progress in computational quantum mechanics as presented by some of the world’s leading experts. This latest release includes chapters on Mean-Field Methods for Time-Dependent Quantum Dynamics of Many-Atom Systems, Electron–Ion Impact Energy Transfer in Nanoplasmas of Coulomb Exploding Clusters, Molecular Properties of Sandwiched Molecules Between Electrodes and Nanoparticles, Criterion for the Validity of D'Alembert's Equations of Motion, and A Time-Dependent Density Functional Theory Study of the Impact of Ligand Passivation on the Plasmonic Behavior of Ag Nanoclusters.

  • Presents reports on current work in molecular and atomic quantum mechanics
  • Contains work reported by many of the best scientists in the field
  • Dedicated to one of the great practitioners in the field, Mark A. Ratner
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Advances in Quantum Chemistry, Volume 75 presents work and reviews of current progress in computational quantum mechanics as presented by some of the world’s leading experts. This latest release includes chapters on Mean-Field Methods for Time-Dependent Quantum Dynamics of Many-Atom Systems, Electron–Ion Impact Energy Transfer in Nanoplasmas of Coulomb Exploding Clusters, Molecular Properties of Sandwiched Molecules Between Electrodes and Nanoparticles, Criterion for the Validity of D'Alembert's Equations of Motion, and A Time-Dependent Density Functional Theory Study of the Impact of Ligand Passivation on the Plasmonic Behavior of Ag Nanoclusters.

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