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Physics of the Shock Tube and Its Use in Chemical
Physics of the Stirred Flow System and Its Use in Chemical
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A-factor activation energies Argon Arrhenius parameters Arrhenius Plot bond dissociation energies buret section butadiene C2H5HSi cal/RT calculated chain Chem Chemical Kinetic concentration Cyclopentene Cyclopropane decomposition kinetics diaphram Dimethylsilane disilane driver section elimination reaction endplate entropy equation estimated Ethylene Versus 1,3-Butadiene Ethynylsilane Decomposition experimental flow rates gas chromatograph gas phase H. E. O'Neal high pressure injection pressure kcal M. A. Ring Me2Si Me2SiH2 Me3SiH MeHSi MeSiH3 methane Methanol methoxysilane modeling scheme observed primary process pulse shock tube pyrolysis rate constants Rate of Silylene reactant reaction cell reaction channel reaction mixture reaction pressure reaction temperature reactor Relative Rate Data relative rate studies Rickborn RRKM rxns San Diego SCProp Shock Tube Conditions shock wave shown SiH2 SiH3 SiH4 sila-3-cyclopentene silacyclopropene silane silicon silylene insertion Silylene Reactions Silylene Trapping single pulse shock stirred flow conditions stirred flow reaction Stirred Flow System stirred flow temperature Table torr trapping reaction unimolecular valve VHSi vinylsilane