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Practice of Kinetics (Comprehensive Chemical Kinetics, Volume 1)

Practice of Kinetics (Comprehensive Chemical Kinetics, Volume 1)

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INDEX 433—, test for, 2, 11, 30heterogeneous reactions, and very low pressureflow system, 25—, study using molecular beam, 176hexaphenylethane, dissociation <strong>of</strong>, 309HNO radicals, see nitroxyl radicalhomogeneity <strong>of</strong> rate coefficients, 377-386,412-414hot atoms, from nuclear recoil processes, 65,61—, in reactions, 283hot radicals, effects <strong>of</strong>, 3, 5—, production <strong>of</strong> by CH 8 insertion, 77, 305—, reactions <strong>of</strong>, 16, 63, 64, 283HSe and HS radicals, study by ESR, 313hydrated electron, see electronhydrates, decomposition <strong>of</strong>, 247hydrazine, decomposition in fiow system, 26—, photolysis <strong>of</strong>, 294—, reaction + H, study using o-p H 2 , 317hydrazoic acid, flash photolysis <strong>of</strong>, 294—, matrix photolysis <strong>of</strong>, 334—, pyrolysis <strong>of</strong>, 333, 334hydrocarbons, adsorption on Ir, study by fieldemission, 204—, adsorption on metal films, 197—, determination by gas chromatography, 80,81—, determination by gas titration, 78—, exchange with D a over catalysts, 235—, flames <strong>of</strong>, diffusion, study by spectroscopy,290—, —, study using separated burner, 281—, glasses <strong>of</strong>, for radical trapping, 310, 311—, oxidation <strong>of</strong>, and anti-knock, 120, 121—, —, effect <strong>of</strong> HBr on, 76—, —, photosensitisation <strong>of</strong>, 77—, —, study by adiabatic compression, 127hydrogen, adsorption on Ni, conductivity andcontamination, 211—, —, molecular beam study, 175, 176—, adsorption on vessel walls, 11—, as carrier gas, in gas chromatography, 79,82, 83, 85, 234—, —, in mirror detection <strong>of</strong> radicals, 314—, as driver gas in shock tube, 124, 127—, chemisorption on metals and oxides, 190—, determination <strong>of</strong>, by absorption* 71—. —. by gas chromatography, 80, 237—, —, in ultra high vacuum work, ,197—» diffusion flame <strong>of</strong>, spectroscopy and, 290—, diffusion through vessel walls, 10, 11—, efficiency in energy transfer, 17 . •, -—, exchange with D t over catalysts, 235, "241—» from CH,CHO decomposition, 3—, from CtU 9 photolysis, 63—, ortho-para conversion, and catalytic studies,235-237—, and radical detection, 71, 316, 317reaction -f Br„ rate expression for, 396reaction + CI a , differential calorimetryand, 101—, effect <strong>of</strong> NO on, 76reaction 4- CO, and thermal conductivity,97reaction + D a , radiation induced, 70reaction + O a , effect <strong>of</strong> inert additives, 17—, effect <strong>of</strong> S/V ratio, 11—, excited OH from, 286—, explosion limits, 18-20—, flame, determination <strong>of</strong> electron concentration,329-, —, determination <strong>of</strong> H in, 171, 172,302—, —, determination <strong>of</strong> O in, 318—, radon induced, 64—, sensitised, 76—, study by shock tube, 127, 128reaction + OH, ESR study, 313reduction by for cleaning surfaces, 181thermal conductivity <strong>of</strong>, 82hydrogen arc, for absorption spectroscopy, 292hydrogenation, catalytic in solution, 251hydrogen atoms, addition to C 8 H 6 , 73detection by metallic mirrors, 315determination by calorimetry, 325, 326— gas titration, 78, 320, 321— mass spectrometry, 300— optical pumping, 96— optical spectroscopy, 290— pressure measurement, 324— thermal conductivity, 325determination in flames, 171, 172, 302,317-319determination using D g » D a O and p-H%,317— MoOa, 315— uv spectroscopy, 89, 90dimerisation, 91, 319from C 3 H 8 radiolysis, 70from reactions <strong>of</strong> hydrated electron, 123hot, reaction + HI, 283reaction + Cl„ 55, 90, 288reaction + glass, 11reaction + HC1, 90reaction -j- N 8 H 4 and olefins, and o-p H»»317reaction + NO, 2, 78, 321reaction + NO a , 78, 292, 320reaction + O s , 282reaction + OH+Na, 319

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