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Quadrupole coupling intermolecular interaction, electronic

It can now be predicted with confidence that machine calculations will lead gradually toward a really fundamental quantitative understanding of the rules of valence and the exceptions to these toward a real understanding of the dimensions and detailed structures, force constants, dipole moments, ionization potentitils, and other properties of stable molecules and equally unstable radicals, anions, and cations, and chemical reaction intermediates toward a basic understanding of activated states in chemical reactions, and of triplet and other excited states which are important in combustion and explosion processes and in photochemistry and in radiation chemistry and also of intermolecular forces further, of the structure and stability of metals and other solids of those parts of molecular wave functions which are important in nuclear magnetic resonance, nuclear quadrupole coupling, and other interaction involving electrons and nuclei and of very many other aspects of the structure of matter which are now understood only qualitatively or semi-empirically. [Pg.270]


See other pages where Quadrupole coupling intermolecular interaction, electronic is mentioned: [Pg.33]    [Pg.216]    [Pg.29]    [Pg.873]    [Pg.376]    [Pg.486]    [Pg.23]    [Pg.316]    [Pg.21]   


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Coupled interactions

Coupling interactions

Electron coupled

Electron coupling

Electron intermolecular

Electronic coupling

Electronic interactions

Interacting coupling

Intermolecular coupling

Intermolecular interaction

Intermolecular interactions, quadrupole

Quadrupole coupling

Quadrupole interaction

Quadrupole interaction interactions

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