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Titlebook: Selectivity in Chemical Reactions; J. C. Whitehead Book 1988 Kluwer Academic Publishers 1988 Atom.chemical reaction.chemical synthesis.com

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Laser Studies of Reaction Dynamics: The Ca* + HF → CaF(X2Σ+,v) + H and Ca* + SF6 → CaF(X2Σ+,v) + SF5ds is now very wide and includes internal state preparation of reactants, change of collision energies, state detection of products, and thus determination of state-to-state reaction rates. The great impact of laser spectroscopy on knowledge in the field of structure, molecular energy transfer and t
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Spin-Orbit Effects in Chemical Reactionsn the rate of a chemical reaction. In this paper, we review investigations of spin-orbit effects in reactions involving atoms with both nonzero electronic orbital and spin angular momenta. There has been increasing interest in reactions of individual atomic spin-orbit levels because of the importanc
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Alignment Effects in Electronic Energy Transfer and Reactive Eventsic potentials participating in the reaction or energy transfer event. Recent work from our laboratory is presented on the effect of orbital alignment in near resonant energy transfer processes of electronically excited Ca and Sr atoms. Several energy transfer events are carried out on aligned p-stat
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Saturation in Laser-Induced Fluorescence: Detection of Nascent Product Rotational Angular Momentum A cases saturation effects can strongly perturb the information provided by the LIF signal on state populations and rotational angular momentum alignment. In this paper we extend a previous rate equation based treatment of LIF alignment analysis to cover most experimental configurations probing cylin
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