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Spectrum analysis --- Chemical reaction [Rate of ] --- Carbenes (Methylene compounds) --- Biradicals. --- Spectrum analysis. --- Chemical reaction, Rate of.
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Chemical reaction, Rate of --- Mathematical models --- Congresses --- Chemical kinetics --- Congresses.
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Chemical reaction, Rate of --- Problems, exercises, etc. --- Chemical reactions --- Kinetics --- Chemical kinetics --- Cinétique chimique --- Réactions chimiques --- Cinétique chimique --- Réactions chimiques
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Analysis [Chemical ] --- Analytical chemistry --- Analytische chemie --- Chemical analysis --- Chemical reaction [Rate of ] --- Chemie [Analytische ] --- Chemische reactiesnelheid --- Chemistry [Analytic ] --- Chimie analytique --- Réactions chimiques [Vitesse de ] --- Chemistry, Analytic --- Chemical kinetics --- Cinétique chimique --- Cinétique chimique --- Analytical chemistry. --- Light. --- Catalysis --- Enzymes --- Instrumentation
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Water --- Organic water pollutants --- Water chemistry --- Hydrodynamics --- Chemical kinetics --- Chemistry --- Civil & Environmental Engineering --- Engineering & Applied Sciences --- Physical Sciences & Mathematics --- Chemistry - General --- Environmental Engineering --- Pollution --- Congresses --- Chemical reaction [Rate of ] --- Organic compounds. --- Elements --- Gas diffusion --- Sediments --- Waters, natural
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Abstracts and fulltext (PDF only), 1997-; abstracts only, 1996.
Chemical kinetics --- Cinétique chimique --- Chemical reaction, Kinetics of --- Chemical reaction, Rate of --- Chemical reaction, Velocity of --- Chemical reaction rate --- Chemical reaction velocity --- Kinetics, Chemical --- Rate of chemical reaction --- Reaction rate (Chemistry) --- Velocity of chemical reaction --- Chemical affinity --- Reactivity (Chemistry)
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Reaction Rate Theory and Rare Events bridges the historical gap between these subjects because the increasingly multidisciplinary nature of scientific research often requires an understanding of both reaction rate theory and the theory of other rare events. The book discusses collision theory, transition state theory, RRKM theory, catalysis, diffusion limited kinetics, mean first passage times, Kramers theory, Grote-Hynes theory, transition path theory, non-adiabatic reactions, electron transfer, and topics from reaction network analysis. It is an essential reference for students, professors and scientists who use reaction rate theory or the theory of rare events. In addition, the book discusses transition state search algorithms, tunneling corrections, transmission coefficients, microkinetic models, kinetic Monte Carlo, transition path sampling, and importance sampling methods. The unified treatment in this book explains why chemical reactions and other rare events, while having many common theoretical foundations, often require very different computational modeling strategies.--
Chemical kinetics. --- Chemical reaction, Kinetics of --- Chemical reaction, Rate of --- Chemical reaction, Velocity of --- Chemical reaction rate --- Chemical reaction velocity --- Kinetics, Chemical --- Rate of chemical reaction --- Reaction rate (Chemistry) --- Velocity of chemical reaction --- Chemical affinity --- Reactivity (Chemistry)
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Chemical kinetics --- Chemical kinetics. --- Chemical reaction, Kinetics of --- Chemical reaction, Rate of --- Chemical reaction, Velocity of --- Chemical reaction rate --- Chemical reaction velocity --- Kinetics, Chemical --- Rate of chemical reaction --- Reaction rate (Chemistry) --- Velocity of chemical reaction --- Chemical affinity --- Reactivity (Chemistry)
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