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Electron correlations in molecules and solids

Electron Correlations in Molecules and Solids bridges the gap between quantum chemistry and solid-state theory. In the first half of the text new concepts are developed for treating many-body and correlation effects, combining standard quantum chemical methods with projection techniques, Greens-function methods and Monto-Carlo techniques. The second half deals with applications of the theory to molecules, semiconductors, transition metals, heavy fermion systems, and the new high-Tc superconducting materials.

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  • "物理學"
  • "Fen zi he gu ti zhong de dian zi guan lian"@en
  • "分子和固体中的电子关联"
  • "Wu li xue"@en

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  • "Quantum chemistry and solid-state theory are two important related fields ofresearch that have grown up with almost no cross communication. This book brdges the gap between the two. In the first half, new concepts for treatingweak and strong correlations are developed, and standard quantum chemical methods as well as denisty functional integral, and Monte Carlo methods are discussed. The second half discusses applications of the theory to molecules, semiconductors, homogeneous metallic systems, transition metals, and strongly correlated systems such as heavy-fermion systems and the new high-T superconducting materials."
  • "Electron Correlations in Molecules and Solids bridges the gap between quantum chemistry and solid-state theory. In the first half of the text new concepts are developed for treating many-body and correlation effects, combining standard quantum chemical methods with projection techniques, Greens-function methods and Monto-Carlo techniques. The second half deals with applications of the theory to molecules, semiconductors, transition metals, heavy fermion systems, and the new high-Tc superconducting materials."@en
  • "Quantum chemistry and solid-state theory are two important related fields of research that have grown up with almost no cross communication. This book bridges the gap between the two. In the first half, new concepts for treating weak and strong correlations are developed, and standard quantum-chemical methods, as well as density functional, Green's function, functional integral, and Monte Carlo methods are discussed. The second half discusses applications of the theory to molecules, semiconductors, homogeneous metallic systems, transition metals, and strongly correlated systems such as heavy-fermion systems and the new high-Tc superconducting materials."

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  • "Electronic books"
  • "Electronic books"@en

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  • "Electron correlations in molecules and solids"@pl
  • "Electron correlations in molecules and solids"@en
  • "Electron correlations in molecules and solids"
  • "Electron correlation in molecules and solids"
  • "Electron correlations in molecules and solids ( ying wen ying yin ban)"@en
  • "Electron Correlations in Molecules and Solids"@en
  • "Electron Correlations in Molecules and Solids"
  • "Electron correlations in molecules and solids (英文影印版)"

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