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Renliang Xu — Particle Characterization : Light Scattering Methods
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Название: Particle Characterization : Light Scattering Methods
Автор: Renliang Xu
Аннотация: Particle characterization is an important component in product research and development, manufacture, and quality control of particulate materials and an important tool in the frontier of sciences, such as in biotechnology and nanotechnology. This book systematically describes one major branch of modern particle characterization technology — the light scattering methods. This is the first monograph in particle science and technology covering the principles, instrumentation, data interpretation, applications, and latest experimental development in laser diffraction, optical particle counting, photon correlation spectroscopy, and electrophoretic light scattering. In addition, a summary of all major particle sizing and other characterization methods, basic statistics and sample preparation techniques used in particle characterization, as well as almost 500 latest references are provided. The book is a must for industrial users of light scattering techniques characterizing a variety of particulate systems and for undergraduate or graduate students who want to learn how to use light scattering to study particular materials, in chemical engineering, material sciences, physical chemistry and other related fields.
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Рубрика: Технология /
Статус предметного указателя: Готов указатель с номерами страниц
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Издание: 1 edition
Год издания: 2000
Количество страниц: 420
Добавлена в каталог: 31.10.2010
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Предметный указатель
Dunn, R.C. 15
Durian, D.J. 281
Durst, F. 60 305
Dynamic light scattering, heterodyne 86
Dynamic light scattering, homo dyne 86 276
Dynamic light scattering, self-beating 86
Dyson, R.D. 249
Ebert, F. 103 175 208 210
Egelhaaf, S.U. 232
Eichler, T. 21
Einstein, A. 58
Elastic scattering 59
Electrical sensing zone method see "Coulter principle"
Electroacoustic spectral analysis 23
Electrokinetic sonic amplitude effect 23
Electroosmosis 295 310 334
Electrophoresis cell, capillary 307 322
Electrophoresis cell, capillary, coating 314
Electrophoresis cell, capillary, electroosmosis 310
Electrophoresis cell, capillary, flow profile 310
Electrophoresis cell, capillary, stationary layer 311 329
Electrophoresis cell, comparison 317
Electrophoresis cell, parallel-plate 315
Electrophoretic mobility, definition 295
Electrostatic classifier 208
Elings, U.B. 191
Emmett, P.M. 24
Emoto, K. 310
Endoh, S. 170 171
Eppmann, P. 60
Esposito, E. 153
Ettmuller, J. 100
Eustachi, W. 100
Evenstad, J. 103
Extinction 56 98 182 187 205
Extinction, efficiency 98 205
Facq, L. 307
Fair, M.C. 297
Fanderlik, I. 161
Fantini, S., M.A. 100
Farhadpour, F.A. 158
Felton, P.G. 136 159
Ferreira, P.J. 169
Ferri, F. 98 154
Fiber 126 227 230 273 305
Fiber optic frequency shifter 305
Fiber, few-mode 232
Fiber, monomode 127 232 273
Fiber, multimode 232 273
Field flow fractionation 20
Figueiredo, M.M. 169
Fingerprint analysis 267
Finsy, R. 157 224 252 257 258 263 267 272 275 314
Fisher, M.A. 184
Fishkin, J. 100
Flank, W.H. 171
Flatau, P.J. 81
Fleer, G.J. 195 196
Floegel, H.H. 60
Flow profile 310
Fluorescence 15 57
Flux 112 149 188 203
Flygare, W.H. 299 332 335
Focused beam reflectance 95
Ford, J.R. 250 261
Ford, N. 229 234
Forward scattering see "Fraunhofer diffraction"
Fourier optics 128
Fourier transform 74 87 134 300 326
Fractal dimension 174
Fractional distribution 31 254
Fraunhofer diffraction 73 111 144 152 160 173 206
Fraunhofer, J. 74
Fredholm integration 152
Frequency domain photon migration 100
Frequency, shifted 300
Frequency, shifter 85 304
Frequency, shifter, Bragg cell 306
Frequency, shifter, fiberoptic 305
Frequency, shifter, moving mirror 305
Frequency, shifter, rotating grating 306
Fresnel diffraction 74 102 173
Friehmelt, R. 208
Fujime, S. 259
Fukino, Y. 235
Furusawa, K. 26 308 313 323 334
Gang, Z. 98
Garcia-Rubio, L.H. 60 98 99
Gas sorption 24
Gaussian distribution 33 217
Gebhart, J. 211 217
Gelade, E. 157 169 257 258 272 275
Geometric mean 30 41
Gerber, M. 60 96
Geurts, J.M. 26
Giddings, J.C. 20 21
Giglio, M. 154
Giles, C.L. 69
Gillioen, P. 272
Gimsa, T. 60
Girvin, K.L. 185
Glatter, O. 143 161 163 252
Global analysis 257
Goetz, P.J. 22 23
Goldlin, A.A. 256
Goossens, H.W.J. 135
Gouesbet, G. 63
Gradon, L. 203
Graf, C. 296
Grant, D.C. 217
Gregg, S.J. 24
Grehan, G. 63 103
Grell, E. 256
Grosberg, A.Y. 229
Grosse, C. 297
Gucker, F.T.Jr. 182
Gulari, Er. 98 252
Gulari, Es. 98 252
Gull, S.R 253
Gustavson, R.G. 307
Haas, D.D. 60 299 308 309 336
Haestier, A. 272
Hagenbuchle, M. 296
Hagenow, A. 100
Hall, R.S. 265
Hamilton, J.D. 307
Hammond, D.C 159
Hanson, R.J. 204 249
Hanus, L.H. 250
Hanusch, T. 203
Hareland, G.A. 172
Harris, J.M. 310 313 314
Harrison, C.F. 188 189 193
Hart, W.H. 119 128 131
Harvill, T.L. 83 164
Haugen, P. 103
Havard, T. 229 234
Hawkins, A.E. 46
Hayakawa, O. 60 170
He-Ne laser 126 185 226 305
Heffels, C.M.G. 74 169 175 176
Heidenreich, S. 208 210
Heitzmann, D. 169 176
Heller, W. 98
Henry equation 295
Henry, D.C. 295
Herard, C. 171
Herdan, G. 29
Hess, C.F. 60 224
Heterodyne 86
Heuer, M. 154
Heybroek, M. 183
Heywood, H. 7
Hideaki, I. 172
Hildebrand, H. 267
Hioki, R. 307
Hirleman, E.D. 60 83 148 154 163 169 176
Hirst, E. 174
histogram 29 40 252 326
Hitchen, C.J. 162
Hjerten, S. 314
Ho, K. 60
Hoff, C. 60 96
Holographic method 16
Holve, D.J. 83 164 165 203
Homodyne 86 276
Hong, C. 98
Hoog, J.H. 83 164
horizontal polarization 61 118
Horn, D.F. 60 257 273 275
Houtmeyers, E. 169
Hubner, T. 170 172
Huchins, D.K. 60
Huckel equation 297
Huffman, D. 60 69
Humphy-Baker, R. 171
Hunter, R. 294
Hydro-focusing 194
Hydrodynamic chromatography 19
Hydrodynamic effect 265
Hydrodynamic size 245 264 268
Igushi, T. 115
Ikeda, C. 170—172
Ikegami, A. 259
Imae, T. 322
Image analysis 15 39
in-line measurement 99 139 272
Inaba, K. 137 171
Incandescent filament lamp 185
Inoue, S. 15
Instrument, alignment 143 150 233
Instrument, calibration 143 149 188 190 208 214 323
Interference 56 148 241 280 301 323
Irniger, V. 60
Irregularly shaped particles 173
Isenberg, I. 249
Ishii, K. 281
ISO 8 250
Isoelectric point 294
Iwai, T. 281
Iwata, H. 170—172
Jacobasch, H.-J. 26
Jaenicke, R. 203
Jakeman, E. 239
Jennings, B.R. 60 72
Jizmagian, G.S. 99
Johnson, C.S.Jr. 265
Johnston, R.G. 60 224
Jones, A.R. 74 169 173
Jones, R. 164 234
Joosten, J. 157 257 258 275
Kaiser, T. 69
Kameyama, K. 311 322
Karasikov, N. 60 97
Kasper, G. 217
Katz, S. 184
Kaufman, S.L. 183
Kaye, B.H. 6
Kaye, P. 174
Keh, H.J. 297
Kellner, G. 143 163
Kelly, J. 171 172
Kerker, M. 60 65 66 69
Kern, J. 169
Khintchine, A. 88
Kidai, M. 311
Kim, S. 297
Kimura, Y. 60
Kinney, P.D. 97
Kirkland, J.J. 19
Klein, J.P. 60 96
Klingler, J.F. 60
Knable, N. 223
Knapp, J.Z. 216
Knight, J. 153
Knollenberg, R.G. 185 190 191 194 195 197 198 208 210
Knollenberg, S.C. 190
Knox, R.J. 313 314 323
Koehler, W. 60
Kohler, M. 60 98
Kohno, T. 235
Komagata, S. 311
Komrska, J. 74
Koo, J.H. 153
Koppel, D.E. 249
Kornbrekke, R.E. 331
Koropchak, J.A. 183
Kouzelis, D. 153
Krahn, W. 224
Kratochvil, P. 60 90
Krause, R. 296
Kubota, K. 259
Kuga, Y. 170—172
Kuo, C. 60 98
kurtosis 35
Kusters, K.A. 80
Laerum, O.D. 60 224
Lange, H. 37
Laplace inversion 251
Laser diode 126 185 226 273
Lawson, C.L. 204
Lee, H.S. 211
Lehner, D. 143 163
Leipertz, A. 172 229
Leith, D. 97
Leschonski, K. 40 141
Leyte, J.C. 26
Li, K. 69
Li, X. 159
Licinio, P. 252
Lieberman, A. 184 192 193
Liebman, L.A. 81
Light source, incandescentfilament lamp 185
Light source, laser, diode 126 185 226 273
Light source, laser, He-Ne 126 185 226 305
Light source, multiple 130
Light source, tungsten 13
Light source, white light 126
Light-beating spectroscopy 85
Lilge, D. 257
Lindenthal, G. 205
Linder, A.O. 21
Linear correlator 236
Lines, R.W. 13
Linewidth 306 326
Liquid-borne particles 139 150 182 194 295
Lisse, M.W. 307
List, J. 175
Liu, B.Y.H. 191 199 208 211 215 217
Livesey, A.K. 252
Local oscillator 85 233 275
Loeb, A.L. 296
Log-normal distribution 33 204
Logiudice, P.J. 170
Loizeau, J.-L. 167
Lorentzian spectrum 300 323
Lorenz, L.V. 58
Lucas, K. 224
Luckas, M. 224
Lueddecke, E. 257
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