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Titlebook: Chemical Kinetics and Transport; Peter C. Jordan Book 1979 Springer Science+Business Media New York 1979 Atom.Diffusion.catalysis.chemical

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Single-Collision Chemistry,mine whether or not reaction occurs can only be inferred from other chemical knowledge. Our previous discussion leads to only two very general, and hardly informative, conditions for reaction: molecules must interact (collide) and must have sufficient energy.
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Theories of Reaction Rates,d the product angular distribution (Figs. 8.7, 8.8, 8.10, 8.11, and 8.13). Such an undertaking would be exceptionally ambitious. It would essentially require theoretical predictions of all details of the reaction process.
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Photochemistry,agents in the vibrational degree of freedom which most favors reaction. Furthermore, thermal processes always proceed by low-energy pathways. It is thus not possible, by heating, to select another mode of reaction requiring vastly greater activation energy.
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,Kinetic Theory of Gases—Equilibrium,properties of bulk matter. By combining the molecular hypothesis with Newtonian mechanics and using a statistical approach, the theory provides an explanation for the thermodynamic similarities between dilute gases, makes numerous verifiable predictions, and suggests a number of unifying principles.
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