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Rubinstein M., Colby R.H. — Polymer Physics
Rubinstein M., Colby R.H. — Polymer Physics



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Название: Polymer Physics

Авторы: Rubinstein M., Colby R.H.

Аннотация:

Polymer Physics thoroughly details the fundamental concepts of polymer melts, solutions, and gels in terms of both static structure and dynamics. It goes beyond other introductory polymer texts, deriving the essential tools of the physical polymer chemist or engineer without skipping any steps.

The book is divided into four parts. Part One summarizes the necessary concepts of a first course on polymers and covers the conformations of single polymer chains. Part Two deals with the thermodynamics of polymer solutions and melts, including chain conformations in those states. Part Three applies the concepts of Part Two to the formation and properties of polymer networks. Part Four explains the essential aspects of how polymers move in both melt and solution states.

The text assumes a working knowledge of calculus, physics, and chemistry, but no prior knowledge of polymers. It is ideal for upper-level undergraduate and first-year graduate courses in Condensed Matter Physics, Soft Materials, and Polymers.


Язык: en

Рубрика: Физика/

Статус предметного указателя: Готов указатель с номерами страниц

ed2k: ed2k stats

Год издания: 2003

Количество страниц: 454

Добавлена в каталог: 26.09.2009

Операции: Положить на полку | Скопировать ссылку для форума | Скопировать ID
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Предметный указатель
Kuhn length table      53
Kuhn monomer      54
Kuhn monomer length      54
Kuhn monomer molar mass      54
Kuhn monomer molar mass table      53
Kuhn monomer relaxation time      312
Lamellar      15
Langevin function      76 264
Lennard — Jones potential      118 392 420 421
Lever rule      146
Light scattering      29 36 44 44 81 83
Linear response      285
Liquid crystals      15
Loss tangent      292
Lower critical solution temperature      153 169
Macromolecular hypothesis      1
Macromolecule      1
Mark — Houwink equation      34 316 351
Master curve      336
Maxwell model      283 304 413
Maxwell model creep compliance      288
Maxwell model relaxation time      284
Maxwell model stress relaxation modulus      285
Maxwell model viscosity      286
Maxwell relations      254 295
Mayer f-function      99 117
Mean-field percolation      201 215—220 224 239 250
Melting temperature      15
Mesogen      15
Metastable      146 149 167
Metropolis algorithm      395 421
Microstructure      3
Miscibility gap      149 152
Mixture      137
Mixture binary      137
Mixture ideal      140
Mixture ternary      137
Modulus affine network      259 297 304
Modulus complex      292
Modulus entangled network      267
Modulus equilibrium      266 267 280 284
Modulus glassy      339 340 364
Modulus loss      291 304
Modulus loss critical gel      344
Modulus loss Rouse model      320 324
Modulus near-critical gels      280 281
Modulus phantom network      262
Modulus plateau      266 362 365 370
Modulus plateau table      362
Modulus shear      282
Modulus storage      291 304
Modulus storage critical gel      344
Modulus storage Rouse model      320
Modulus storage Zimm model      324
Modulus stress relaxation      284 285 302
Modulus stress relaxation Doi fluctuation model      384
Modulus stress relaxation fractal polymer      353
Modulus stress relaxation reptation model for melts      364
Modulus stress relaxation reptation model for semidilute solutions      372
Modulus stress relaxation Rouse model      320 322
Modulus stress relaxation semidilute unentangled      329
Modulus stress relaxation star      378
Modulus stress relaxation Zimm model      323
Modulus swollen gel      275 276 280 300 301
molar mass      2 3
Molar mass distribution      16 18 42 250
Molar mass distribution addition      25
Molar mass distribution binary      19 20
Molar mass distribution, condensation branched      228
Molar mass distribution, condensation linear      22 24
Molar mass measuring      35
Molar mass moment      16 39 228
Molar mass number-average      17 39
Molar mass number-average branched condensation      215 219 222
Molar mass number-average linear condensation      23
Molar mass number-average measuring      26 28 44
Molar mass weight-average      18 39
Molar mass weight-average branched condensation      215 219 222 230
Molar mass weight-average linear condensation      24
Molar mass weight-average measuring      26 32 36 44 84 96
Molar mass weight-average, binary      19
Molar mass Z-average      18
Molar mass, most-probable      22 23 24 43
Molar mass, Poisson      25 43
Molar mass, Shultz      25 43
Molecular Dynamics      392 393—395 420 421
Molecular weight      3
Monodisperse      16
Monomer      2
Monomer molar volume      13
Monomer number density      100
Monte Carlo simulation      395 420 421
Mooney — Rivlin equation      269
Mooney — Rivlin model      268 274
Mooney — Rivlin plot      269 274
myosin      334
Network      6 199
Network defects      262
Newton's equations of motion      393
Newton's law of viscosity      283
Newtonian liquids      283
Non-affine network model      273 274 298
Non-affine tube model      272
Non-solvent      101
Nucleation and growth      149 154 168
Number distribution function branched condensation      221
Number fraction      16 21
Number fraction linear condensation      22
Number fraction Poisson      25
Number-average molar mass      17; see “Molar mass”
Oligomer      5 129 165
Optical constant      32
Order parameter      173 214
Ornstein — Zernike scattering function      162 169 189
Oscillatory shear      290 303 304
Oscillatory shear polymer melts      293 337 365
Oscillatory shear polymer networks      293
Osmotic coefficient      27 183
Osmotic compressibility      32 160
Osmotic pressure      26 27 44 155 181—185 193 300 301 355
Osmotic pressure, van't Hoff Law      27 156
Overlap concentration      90 91
Overlap criterion for entanglement      362
Overlap parameter      14 39 41 174 227 238 239
Overlap volume fraction      13 39 41 97 128 172 179 192 353
Overlap volume fraction viscosity      353
Paint      200
Pair correlation function      78 124
Pair correlation function fractal      79
Pair correlation function ideal chain      78
Partition function      75
Percolation      205
Percolation exponents      228—230 235 244
Percolation exponents table      228
Percolation threshold      202 237 247
Percolation, 1-dimensional      231 233 247 2502
Percolation, 2-dimensional      231 2473
Percolation, 3-dimensional      205 227 231 232 247
Periodic boundary conditions      392
Persistence length      57
Pervaded volume      13 41
Phantom network model      260 262 266 296
Phase angle      291
Phase diagram polymer blend      150 153 154
Phase diagram polymer solution      172—174
Physical gel, strong      199 247
Physical gel, weak      200 247
Pincus blobs      106 113 298 375
Plateau modulus      266 362 403
Plateau modulus semidilute solution      370 371
Plateau modulus table      362
Poisson distribution      25 43
Poisson's ratio      296
Polarizability      30 31
Polyampholyte      6
Polydisperse      16
Polydispersity index      18 39 43 220
Polydispersity index linear condensation      24
Polydispersity index randomly branched condensation      248
Polydispersity index Shultz distribution      26
Polyelectrolyte      129 321
Polymer blend      138
Polymer comb      6 300 380 414 419
Polymer ladder      6
Polymer linear      6 63
Polymer liquid      12
Polymer melt      14 157 158 176 266 321 325 552 362 363 367
Polymer randomly branched      6 246
Polymer ring      6 63 92 133 411
Polymer solution      12 138 171—185 189 191 325 368 371
Polymer star      6 45 63 9 194 376
Polymer, H-      6 63 97 380 414
Polymerization      2 7 38
Polymerization addition      43 200 201
Polymerization condensation, branched      200 239
Polymerization condensation, linear      20 22 42 43
Pom-pom polymer dynamics      414
Poor solvent      101 115 119 132 172
Primitive path      265 272 361 374 409 410
Probability distribution function      69
Probability distribution function ideal chain      70 85 92 95
Probability distribution function real chain      121 122
Protein      7 15 19 42
Radius of gyration      60
Radius of gyration cylinder      64 91
Radius of gyration disk      64 91
Radius of gyration measuring      85 86 95 96
Radius of gyration rod      63 64 9
Radius of gyration sphere      64 91
Radius of gyration temperature dependence      118
Radius of gyration, ideal branched      64 224 226
Radius of gyration, ideal H-      63 9
Radius of gyration, ideal linear      62 63
Radius of gyration, ideal ring      63 92
Radius of gyration, ideal star      63 91
Radius of gyration, randomly branched      249
Random phase approximation      161
Random walk      66 69 90 92 309
Random walk, directed      74
Rayleigh ratio      31 44 124
Recoverable compliance      290
Recovery      290
Recurrence relation      217 219 249
Reference temperature      335 338
Refractive index      31
Refractive index increment      29
Regular solution      138
Regular solution theory      143 166
Relative extent of reaction      209 222
Relaxation time      283
Relaxation time, experimentally defined      365
Reptation model      363 375
Reptation model computer simulation      398 399
Reptation model diffusion coefficient      364 372
Reptation model oscillatory shear      385 386 406
Reptation model stress relaxation modulus      366 404 405
Reptation model subdiffusive motion      382 383 413
Reptation model viscosity      367 373
Reptation model viscosity asymptotic approach      386
Reptation time      363 404
Reptation time semidilute solution      371 407
Repton model      399 420
Repton model viscosity      401
Retraction potential      377
Reversible gel      200
Ring polymer dynamics      411 412
Rotational isomeric state model      59
Rouse model      311 312 555
Rouse model diffusion coefficient      311 354
Rouse model dynamic structure factor      350
Rouse model fractals      353 357
Rouse model intrinsic viscosity      315
Rouse model oscillatory shear      320 321 355
Rouse model randomly branched polymers      342
Rouse model relaxation modes      319
Rouse model simulation      397
Rouse model stress relaxation modulus      320 322 329 365 372
Rouse model subdiffusive motion      322 325 382 383
Rouse model tube motion      387 391 418
Rouse model viscosity      321 330
Rouse time      311 404
Rouse time semidilute solution      327
Rouse time, entanglement strand      363 371
Rubber      253 296
Rubber elasticity      255 256 257 259
Rubber elasticity 1-dimensional swelling      3003
Rubber elasticity 2-dimensional swelling      274
Rubber elasticity uniaxial deformation      258
Rubbery plateau      362 384
Rubbery plateau width      404 408
Scaling relation      229 230 231 235
Scattering contrast      29 38 79 161
Scattering dilute solutions      31 83 122
Scattering form factor      82 95
Scattering function      123 160 189
Scattering intensity      30
Scattering intermolecular      124
Scattering intramolecular      123
Scattering miscible blends      162 169
Scattering semidilute solutions      189
Scattering volume      29
Scattering wavevector      81
Second virial coefficient      28 32 44 96 119 132
Self-avoiding walk      104 129 421
Self-similar      9 12 79 188 241
Self-similar dynamics      319
Semi crystalline      15
Semidilute solution      14
Semidilute solution length scales      369
Semidilute theta solutions      172 183 185 189 193 330
Semiflexible chains      330 334
Sequence isomerism      4
shear modulus      282
Shear rate      283 310
Shear strain      282
Shear stress      282
Shear thickening      287
Shear thinning      287
Shear viscosity      283
Site percolation      204 204
Site-bond percolation      204
Size exclusion chromatography      35 242
Sol      199
Sol fraction      214 215 217 245
Sol-gel transition      199
Solubility parameter      143 166—168
Soxhlet extraction      241
Spinodal      151 153 154 166
Spinodal decomposition      149 154 167
Spring constant      333
Star polymer dynamics      376 378—380 410 413 414
Steady shear      286 354
Steady state compliance      288
Step strain      284
Stereoisomerism      4
Stirling's approximation      68 92
Stokes law      310
Stokes — Einstein relation      310 360
Strain hardening      264 298
Strain invariants      268 298
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