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Molecular orbitals. --- Orbites moléculaires --- Orbites moléculaires
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Quantum chemistry --- fysicochemie --- Molecular orbitals --- Orbites moléculaires --- Orbitals, Molecular --- Chemical bonds --- Electrons --- Molecules --- Overlap integral --- Valence (Theoretical chemistry) --- Wave mechanics --- Molecular orbitals. --- Orbites moléculaires
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Molecular orbitals --- Physical organic chemistry --- Orbites moléculaires --- Chimie organique physique --- Molecular orbitals. --- Physical organic chemistry. --- Orbites moléculaires --- Chemical structure --- fysicochemie --- Organic chemistry
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Electrons --- Atomic orbitals --- Molecular orbitals --- Unitary operators --- Orbites électroniques dans l'atome --- Orbites moléculaires --- Atomic orbitals. --- Electrons. --- Molecular orbitals. --- Unitary operators. --- Orbites électroniques dans l'atome --- Orbites moléculaires
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Molecular orbitals --- Orbites moléculaires --- 530.1 --- Orbitals, Molecular --- Chemical bonds --- Electrons --- Molecules --- Overlap integral --- Quantum chemistry --- Valence (Theoretical chemistry) --- Wave mechanics --- Basic principles of physics --- 530.1 Basic principles of physics --- Orbites moléculaires
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Quantum chemistry --- fysicochemie --- Physical organic chemistry --- Molecular orbitals --- Chimie organique physique --- Orbites moléculaires --- 519.68:547 --- Chemistry, Physical organic --- Orbitals, Molecular --- Chemical bonds --- Electrons --- Molecules --- Overlap integral --- Valence (Theoretical chemistry) --- Wave mechanics --- Chemistry, Organic --- Chemistry, Physical and theoretical --- Computer programming-:-Organic chemistry --- Molecular orbitals. --- Physical organic chemistry. --- 519.68:547 Computer programming-:-Organic chemistry --- Orbites moléculaires --- Chemistry, physical organic
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Describes and discusses the use of theoretical models as an alternative to experiment in making accurate predictions of chemical phenomena. Addresses the formulation of theoretical molecular orbital models starting from quantum mechanics, and compares them to experimental results. Draws on a series of models that have already received widespread application and are available for new applications. A new and powerful research tool for the practicing experimental chemist.
Quantum chemistry --- fysicochemie --- Molecular orbitals --- Orbites moléculaires --- Chimie quantique --- 544.18 --- 544.182 --- #WSCH:AAS2 --- Chemistry, Quantum --- Chemistry, Physical and theoretical --- Quantum theory --- Excited state chemistry --- Orbitals, Molecular --- Chemical bonds --- Electrons --- Molecules --- Overlap integral --- Valence (Theoretical chemistry) --- Wave mechanics --- Molecular orbitals. --- Quantum chemistry. --- 544.18 Quantum chemistry --- Orbites moléculaires --- Quantum mechanics
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Theoretical spectroscopy. Spectroscopic techniques --- fysicochemie --- Vibrational spectra. --- Electron spectroscopy. --- Molecular orbitals. --- Symmetry (Physics) --- Spectre de vibration --- Spectroscopie électronique --- Orbites moléculaires --- Symétrie (Physique) --- Molecular orbitals --- Vibrational spectra --- Electron spectroscopy --- Spectroscopie électronique --- Orbites moléculaires --- Symétrie (Physique) --- Excited electronic state --- Symmetry --- Vibrational spectroscopy
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fysicochemie --- Electronics and optics of solids --- Chemical bonds. Valence --- Chemical bonds --- Inorganic compounds --- Molecular orbitals --- Liaisons chimiques --- Composés inorganiques --- Orbites moléculaires --- 541.57 --- 546-16 --- #WSCH:AAS2 --- Bonds --- Inorganic chemistry--?-16 --- Chemical bonds. --- Inorganic compounds. --- Molecular orbitals. --- 541.57 Bonds --- 546-16 Inorganic chemistry--?-16 --- Composés inorganiques --- Orbites moléculaires --- Glasses --- Oxide ion properties --- Solids(Magnetic Properties) --- Semi-conductors --- Bonds in chemistry
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"This new edition of a bestselling reference on applied molecular orbital theory covers organic, organometallic, inorganic, and solid state chemistry, demonstrating how common orbital situations arise through the whole chemical spectrum. This latest edition features a new chapter on current concepts in solid state chemistry, examples of recent advances in the field, more detailed information on trends in the periodic table, expanded information on the mechanics of group theory, and a new chapter on metals. An essential reference for chemists in the areas of organic, inorganic, solid state, and computational chemistry"--
Quantum chemistry --- fysicochemie --- SCIENCE / Chemistry / Physical & Theoretical. --- Molecular orbitals. --- Orbites moléculaires --- Molecular orbitals --- 541.57 --- 539.194 --- Bonds --- Internal mechanics of molecules. Energy relationships. Vibration and rotation in molecules. Electronic levels. Bonds. Resonance energies, potentials. Nuclear coupling. Polarizability etc. --- 539.194 Internal mechanics of molecules. Energy relationships. Vibration and rotation in molecules. Electronic levels. Bonds. Resonance energies, potentials. Nuclear coupling. Polarizability etc. --- 541.57 Bonds --- Orbites moléculaires --- Orbitals, Molecular --- Chemical bonds --- Electrons --- Molecules --- Overlap integral --- Valence (Theoretical chemistry) --- Wave mechanics --- 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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