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Electronic structure. --- Chemical bonds. --- Solid state physics. --- Solid state chemistry.
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Solid state physics --- Electronic structure --- Metallography --- Structure électronique --- Métallographie --- Congresses --- Congrès --- Structure électronique --- Métallographie --- Congrès
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Electronics and optics of solids --- Superconducting quantum interference devices --- Electronic structure --- Quantum electronics --- Congresses --- Congresses. --- 62-039.3 --- -Quantum electronics --- -Superconducting quantum interference devices --- Quantum interference devices, Superconducting --- SQUID devices --- Superconductors --- Electronics --- Quantum electrodynamics --- Structure, Electronic --- Atomic structure --- Energy-band theory of solids --- Nanomaterials --- 62-039.3 Nanomaterials --- Superconducting quantum interference devices - Congresses --- Electronic structure - Congresses --- Quantum electronics - Congresses
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Electronic structure --- Electronics --- Insulating materials --- Semiconductors --- Surface chemistry --- Electrical engineering --- Physical sciences --- Crystalline semiconductors --- Semi-conductors --- Semiconducting materials --- Semiconductor devices --- Crystals --- Solid state electronics --- Building materials --- Congresses --- Materials&delete& --- Surfaces&delete& --- Materials --- Materials sciences --- Surfaces
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Semiconductors --- Electronic structure --- Energy-band theory of solids --- Semiconducteurs --- Structure électronique --- Energie, Bande d' (Physique) --- Optical properties --- Propriétés optiques --- -Electronic structure --- Band theory of solids --- Conduction band --- Crystallography, Mathematical --- Electrons --- Exciton theory --- Molecules --- Quantum theory --- Solids --- Wave mechanics --- Structure, Electronic --- Atomic structure --- Crystalline semiconductors --- Semi-conductors --- Semiconducting materials --- Semiconductor devices --- Crystals --- Electrical engineering --- Electronics --- Solid state electronics --- Materials --- Structure électronique --- Propriétés optiques
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This text is a rigorous, unified account of the fundamental principles of the density-functional theory of the electronic structure of matter and its applications to atoms and molecules. Containing a detailed discussion of the chemical potential and its derivatives, it provides an understanding of the concepts of electronegativity, hardness and softness, and chemical reactivity. Both the Hohenberg-Kohn-Sham and the Levy-Lieb derivations of the basic theorems are presented, and extensive references to the literature are included. Two introductory chapters and several appendices provide all the background material necessary beyond a knowledge of elementary quantum theory. The volume is intended for physicists, chemists, and advanced students in chemistry.
Density functionals --- Electronic structure --- Quantum chemistry --- Quantum theory --- Density functionals. --- Electronic structure. --- Quantum chemistry. --- Quantum theory. --- fysicochemie --- Atomic physics --- Chemical bonds. Valence --- Molecular physics --- 530.145 --- 539.194 --- #WSCH:AAS2 --- Structure, Electronic --- Atomic structure --- Energy-band theory of solids --- Density functional methods --- Density functional theory --- Functional methods, Density --- Functionals, Density --- Functional analysis --- 539.194 Internal mechanics of molecules. Energy relationships. Vibration and rotation in molecules. Electronic levels. Bonds. Resonance energies, potentials. Nuclear coupling. Polarizability etc. --- Internal mechanics of molecules. Energy relationships. Vibration and rotation in molecules. Electronic levels. Bonds. Resonance energies, potentials. Nuclear coupling. Polarizability etc. --- 530.145 Quantum theory --- Quantum dynamics --- Quantum mechanics --- Quantum physics --- Physics --- Mechanics --- Thermodynamics --- Chemistry, Quantum --- Chemistry, Physical and theoretical --- Excited state chemistry --- Structure électronique --- Chimie quantique --- Théorie quantique --- Fonctionnelles densité --- Internal mechanics of molecules. Energy relationships. Vibration and rotation in molecules. Electronic levels. Bonds. Resonance energies, potentials. Nuclear coupling. Polarizability etc
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