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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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Investigation of the Orientation Dependence of the F + H2 Reaction Using Scaled Barrier Functions in. → HF + H reaction on the Muckerman 5 potential energy surface in two and three dimensions. Three different scaled barrier functions have been used, together with an unscaled one obtained by inversion of zero impact-parameter quasiclassical trajectory (QCT) data. None of the barrier functions studi
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Laser Studies of Reaction Dynamics: The Ca* + HF → CaF(X2Σ+,v) + H and Ca* + SF6 → CaF(X2Σ+,v) + SF5he mechanism of elementary chemical reactions is illustrated by two selected examples, i.e. studies in which laser-induced fluorescence (LIF) has been used to determine the specific impact parameter dependence of the Ca* + HF → CaF(X) + H reaction and the product state distributions for the reaction of metastable Ca with SF..
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Investigation of the Orientation Dependence of the F + H2 Reaction Using Scaled Barrier Functions ined is able to reproduce consistently within ±2 standard deviations the QCT excitation functions over an extended energy range. The calculations complement earlier work by the authors and Whitehead in Ref. 10.
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Book 1988gards to reagents having particular energy states, symmetries, alignment and orientation and the resulting formation of certain products with their corresponding energies, states, alignment and polarisation. Such problems come close to the ultimate goal of reaction dynamics of being able to determin
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