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Liboff R. — Kinetic Theory
Liboff R. — Kinetic Theory



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Название: Kinetic Theory

Автор: Liboff R.

Аннотация:

Kinetic Theory: Classical, Quantum, and Relativistic Descriptions goes beyond the scope of other works in the field with its thorough treatment of applications in a wide variety of disciplines. Its clear exposition and emphasis on concrete examples will make it not only an excellent graduate text but also a valuable resource for researchers in such disciplines as aerospace, mechanical, and chemical engineering; astrophysics, solid state and laser physics and devices, plasma physics, and controlled and thermonuclear fusion. Among the topics covered are: - The Liouville equation and analyses of the Liouville equation, including two independent derivations - The Boltzmann equation and Boltzmann's H-theorem - Analysis of the linearized collision operator - Fluid dynamics and irreversibility - Assorted kinetic equations with applications to plasmas and neutral fluids - Elements of quantum kinetic theory, including the Green's-function formalism and the Wigner-Moyal equation - Relativistic kinetic theory and Lorentz invariants - Kinetic properties of metals and amorphous media - Monte-Carlo analysis in kinetic theory - Kinetic study of shock waves This third revised edition features a new section on constants of motion and symmetry and a new appendix on the Lorentz-Legendre expansion. Each chapter concludes with a variety of problems, many of which provide self-contained descriptions of related topics; lists of such "topical problems" are included in the Table of Contents. Numerous appendices supply vector formulas and tensor notation, properties of special functions, physical constants, references, and a historical time chart.


Язык: en

Рубрика: Физика/

Статус предметного указателя: Готов указатель с номерами страниц

ed2k: ed2k stats

Издание: 3-rd

Год издания: 2003

Количество страниц: 552

Добавлена в каталог: 16.04.2007

Операции: Положить на полку | Скопировать ссылку для форума | Скопировать ID
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Предметный указатель
Lorentzian form      see “Spectral function”
Lorenz number      373 376
Lorenz relation      483
Mach number      298
Macroscopic variables, absolute      159
Macroscopic variables, relative      160
Magnetic alloys, dilute      515
Mandelstam variables      465 478
Markov process      41
Master equation      43 319 446
Maxwell interaction      144 219 221 271
Maxwell molecules      see “Maxwell interaction”
Maxwellian      96 225 275 306 327
Maxwellian, absolute      169
Maxwellian, local      169
Maxwellian, relativistic      467 475
Maxwell’s equations      66 459
Mean-free-path      179
Mean-free-path, acoustic phonon      384
Mean-free-path, estimates      178
Measure of a set      241
Measurement and commutators      332
Measurement and operators      331
Metal-insulator transition      506 510
Metals      480
Metals, electron transport in      369
Method of moments, Grad’s      213
Metric space      133
Metric tensor      471
Metrically indecomposable sets      242
Metrically transitive transformations      242
Microcanonical distribution      344
Mixed states      341 434
Mixing flow      243
Mobility, edge      506 511
Mobility, electrical      177 192
Mobility, electron      369
Mobility, gap      511
Mobility, hole      369
Monte Carlo analysis      319 328
Mott transition      378
Mott, N.F.      510
Navier — Stokes equations      199
Neural networks      515
Neutron, magnetic moment      430
Nitrogen, viscosity      212
Noble metals      487
Non-Cartesian coordinates      474
Nyquist criterion      292 327
Occupation numbers      395
Optical phonons      379
O’Connell, M.O.      354
Pair connectedness      518
Partition function      432
Partition function, grand      433
Pauli principle      339 394
Percolation      506 514ff
Percolation, bond      515
Percolation, cluster      515
Percolation, site      515
Periodic motion, conditional      249
Phase average      see “Averages”
Phase density averages      125
Phonon polarization      490
Phonon scattering      see “Relaxation time”
Planck distribution      364 379
Plasma waves      285
Plasma waves, stable modes      286
Plasma waves, unstable modes      291
Plasma, dielectric function      282
Plasma, frequency      113 282 326
Plasma, parameter      113 304 314
Plemelj’s formula      362
Poincare map      254
Poincare recurrence theorem      163
Poisson brackets      10 64
Poisson distribution      52 58 69
Polycrystalline material      480
Polymer gelatin      515
Potential, generalized      66
Potential, hard      220
Potential, soft      220
Prandtl number      185
Pratt, W.P.      488
Pressure tensor      175
Prigogine analysis      97
Principal part      326
Projection representation      350 438
Proper frequency      461
Proper time      454
Proper volume      463
Pure state      341 397 398 432
Quantum distributions      see “Bose — Einstein distribution; Fermi — Dirac distribution; Planck distribution”
Quantum statistics      386
Quantum-modified Boltzmann equation      see “Boltzmann equation”
Quartz      480
Quasi-classical kinetic equation      433 (see also “Boltzmann equation”)
Quasi-classical limit      386 392
Quasi-free particle      413
Quasi-free particle, energy      428
Quasi-free particle, lifetime      428
Radial distribution function      96 135 448 480
Radiation field      366
Random numbers      323
Random phases      345 510
Random variables, definition      47
Random variables, sums of      49
Random walk      44 50 55 187
Range of interaction      86
Rayleigh dissipation      304
Rayleigh’s formula      365
Reichl, L.E.      394
Relativistic Maxwellian      see “Maxwellian”
Relativistic Vlasov equation      see “Vlasov equation”
Relativity, postulates      450
Relaxation time approximation      485
Relaxation time approximation, phonon scattering      379
Representations, coordinate      335
Representations, momentum      335
Resistivity, metallic      481
Resistivity, metallic, Bloch component of      501
Resistivity, metallic, electrical      498 501
Resistivity, metallic, low-temperature      483
Resistivity, metallic, reduced      504
Resistivity, metallic, residual      488 501
Resolvent of Liouville operator      see “Liouville operator”
Riemann zeta function      544
Rigid spheres, collision integral      153
Rigid spheres, transport coefficients      210
Rosenbluth — Rostoker limit      96
Rough spheres      273
Sample space      47
Saxon — Hunter theorem      523
Scattering cross section      see “Cross section”
Scattering, angle      140
Scattering, inelastic      319
Scattering, matrix      142 258 488 493
Scattering, rate      362
Schenter, G.K.      394 488
Schmidt number      185
Schroeder, P.A.      488
Schwartzchild metric      478
Scully, M.O.      354
Second quantization      395
Self-consistent solution      92
Self-scattering mechanism      320
Semiconductor      369 480
Semimetals      480
Shock front      298
Shock waves      298
Sine — Gordon equation      70 71
Single-crystal material      480
Small shot noise      53
Smooth spheres      273
Sodium, band structure      370
Soft potential      see “Potential”
Solids, categories of      480
Sonine polynomials      204 221 224 259 266
Sound speed      268
Spectral function      409 425
Spectral function, Lorentzian form      426
Spectral theorem      224
Spherical harmonics      220
Spin      338
Spin and density matrix      348 430
Spin and density of states      371
Spinor      430
Spontaneous decay      366
Stable modes      see “Plasma”
Statistical balance      167 381 387
Stefan — Boltzmann law      366
Stimulated decay      366
Stirling’s approximation      57 544
Stosszahlansatz      152
strain      176
Strain tensor, symmetric      176
Strain-acoustic interaction      379
Strain-optical interaction      379
Stress tensor      175 203 265 266
Structure factor      97 135
Subsonic flow      298
Superposition principle      41 337
Sutherland model      211
Symmetry properties of distribution functions      39 66 73 75
Synge, J.L.      467
Temperature      161
Tensor, covariant and contravariant      472
Tensor, equivalents      539
Tensor, integrals      471
Tensor, metric      471
thermal conductivity      175 185 202
Thermal conductivity, coefficient of      483 487 505
Thermal speed      169 179 275
Thermopower      484
Thomas — Fermi potential      377 378
Thomas — Fermi screening, distance      376 377
Thomas — Fermi screening, wave number      376 377
Thouless, D.      510
Three-body problem      253
Tight-binding approximation      508 520
Time dilation      454
Tori, invariant      252 257
Transfer integral      510
Transfer matrix method      522
Transonic flow      298
Transport coefficients      174
Transport coefficients, Chapman — Enskog estimates      210
Transport coefficients, mean-free-path estimates      186
Uehling — Uhlenbeck equation      388
Uhlenbeck, G.E.      204 220
Umklapp process      482
Uncertainty, in quantum mechanics      333 334
Unstable modes      see “Plasma waves”
Van Leewen, W.A.      449
van Weert, Ch.G.      449
Variance      48 161
Variational technique      442
Vector potential      66 452 466 475
Velocity autocorrelation function      441
Viscosity coefficient      175 184 204 211
Viscosity coefficient, observed values      212
Vlasov equation      92
Vlasov equation for a plasma      279
Vlasov equation, relativistic      459 475
Vlasov fluid      92
Walker, C.H.      257
Wang Chang, C.S.      204 220
Wave number of closest approach      314
Weidemann — Franz Law      483
Weyl correspondence      354 435 438
Wigner distribution      351 396 435 436 437 438
Wigner distribution, equation of motion      353 396
Wigner — Moyal equation      358 399 431
World line      450
Zallen, R.      510
Zero sound      377 391
Zero-point energy, ion      492
Ziman, J.M.      508
Zwanzig, R.      188
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