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De Gennes P.-G. — Scaling concepts in polymer physics
De Gennes P.-G. — Scaling concepts in polymer physics



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Название: Scaling concepts in polymer physics

Автор: De Gennes P.-G.

Язык: en

Рубрика: Физика/Физика твёрдого тела/Приложения/

Статус предметного указателя: Готов указатель с номерами страниц

ed2k: ed2k stats

Год издания: 1979

Количество страниц: 324

Добавлена в каталог: 16.08.2005

Операции: Положить на полку | Скопировать ссылку для форума | Скопировать ID
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Предметный указатель
Pines, D.      245
Polydispersity and the des Cloiseaux trick      282
Polydispersity, definition      20
Polydispersity, effects near a consolute point      110 286
Polyelectrolytes      299
Polymer melts, correlation hole in      63
Polymer melts, dynamical scaling laws for      221 222
Polymer melts, ideal behavior of chains      54
Polymer melts, random phase calculations for      262 263
Porous media, behavior of polymers in dynamical effects      193
Porous media, semi-dilute solution      88
Porous media, single chain      34 49
Precipitation of polymer in solvent      121
Precipitation, competition with gelation      148
Ptitsyn, O.      23
Random networks, electrical properties      141
Random walks in confined geometries      34
Random walks, ideal      29
Random walks, self-avoiding      39
Rapaport, D. C.      312
Relaxation modes for a reptating chain      225 226
Relaxation modes for semi-dilute solutions      205
Relaxation modes for single chain      165 171 178 179
Rempp, P.      130
Reptation for a branched chain      230
Reptation, calculation of terminal time      224
Reptation, competition with tube renewal      234
Reptation, model      223
Richards, R. W.      13
Richmond, P.      256
Riedel, E.      312
Riseman, J.      174
Robert, R.      100
Robinson, R.      259
Rogovina, L.      135
Rondelez, F.      80 229
Rouse model, for chain dynamics      165
Rouse, P. E.      165
Rubin, M. H.      87
Rubin, R.      35
Sands, M.      247
Sarti, G.      237
Scaling laws (dynamic)      (see Dynamical scaling laws)
Scaling laws (static) for swollen chains      39 43
Scaling laws (static) for two polymers plus solvent      125 127
Scaling laws (static) in the region      119
Scaling laws (static) notation      26
Scaling laws (static) notationfor semi-dilute solutions      78 85
Scaling laws (static) notationfor the sol-gel transition      138 140
Schrag, J.      185
Scott, R. L.      103
Screening of interactions in polymer melts      56
Screening of interactions, full random-phase calculation      262
Screening of interactions, simplified approach      85
Sedimentation coefficents      208
Segregation effects in gels      148
Segregation effects in polymer mixtures A plus B      103
Segregation effects, cases of weak      100
Segregation effects, general features      98 103
Seitz, W. A.      51
Self-avoiding walks      (see Random walks)
Self-consistent calculations for pair correlations      262
Self-consistent calculations, Flory method for single chain      43
Self-consistent calculations, formal principles      245
Self-consistent calculations, simplified situations with ground state dominance      254
Semi-dilute solutions, crossover between good and poor solvents      119
Semi-dilute solutions, definition      78
Semi-dilute solutions, scaling laws in good solvents      78 82
Semi-dilute solutions, screening in      85
Shen, M.      223
Silbergerg, A.      35
Silbey, R.      83
Slonimskii, G.      135
Sol-gel transition      (see Gelation)
Solvents, athermal      72
Solvents, effect on gelation      148
Solvents, good      72
Solvents, poor      113
Spinodal curve of gels, dynamics      215
Spinodal curve of gels, statics      158
Spinodal curve of solutions in poor solvents      122
Spinodal curve, definition and limitations      107
Stainby, G.      133
Stanley, H. E.      110 112 121 265 270
Star-shaped polymers, dynamics      230
Star-shaped polymers, neutron scattering by      156
Stauffer, D.      137 139
Stephen, M.      217 308 312
Stockmayer, W. H.      13 38 111 137 139 142 146 165 168 182
Stokes, R.      259
Straley, J.      217
Subunits      (see Decimation method)
Tagami, Y.      35
Tanaka, T.      158 214 215
Tanford, C.      181 187
Terminal time (for mechanical relaxation) for branched systems      232
Terminal time (for mechanical relaxation), definition      221
Terminal time (for mechanical relaxation), effects of dilution      227
Terminal time (for mechanical relaxation), reptation model      223
Terminal time (for mechanical relaxation), scaling laws      222
Theta point, deviations from ideality at the      116 305
Theta point, Flory picture      115
Theta point, renormalization group description      304
Theta point, semi-dilute solutions at T      0 118
Theta point, shift due to higher order interactions      115 304
Theta point, solvent      126
Thouless, D.      141 142
Titomanlio, G.      237
Tobolsky, A.      223
Torrie, G.      52
Toulouse, G.      146 269
Toy, L.      223
Tube, chains confined in      34 49 88 193
Tube, effective (for entanglements)      224
Tube, renewal      235
Tubeless siphon      187
Two-dimensional problems, correlation hole in melts      66
Two-dimensional problems, perturbation calculations for melts      60
Two-dimensional problems, semi-dilute solutions      96
Vail, J. G      130
Van der Waals interactions and sign of the Flory parameter      72
Van der Waals interactions, effect on adsorption      52
Van Esker, M.      102
Van Hove, L.      177 239
Varoqui, R.      210 211
Velasco, R. M.      46 303
Verdier, P.      168
Viscosity of dilute solutions      38 183
Viscosity of melts      222 236
Viscosity, frequency dependence (single chain)      185
Viscosity, internal      199
Vrij, A.      102
Vulcanization, critical exponents for      146
Wada, E.      43
Wall, F. T.      14 39 51
Walsh, D      129
Wegner, F.      312
Weill, G.      177
Whittington, S.      51 52
Wiegel, F.      246
Wilson, K.      290 299
Windwer, S.      39 52
Yvon, J.      260
Zimin relaxation time      181
Zimin, B.      165 171 181 185
Zinn Justin, J.      45
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