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ter Haar D. — Elements of Statistical Mechanics
ter Haar D. — Elements of Statistical Mechanics



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Название: Elements of Statistical Mechanics

Автор: ter Haar D.

Аннотация:

Following the Boltzmann-Gibbs approach to statistical mechanics, this new edition of Dr ter Haar's important textbook, Elements of Statistical Mechanics, provides undergraduates and more senior academics with a thorough introduction to the subject. Each chapter is followed by a problem section and detailed bibliography.
The first six chapters of the book provide a thorough introduction to the basic methods of statistical mechanics and indeed the first four may be used as an introductory course in themselves. The last three chapters offer more detail on the equation of state, with special emphasis on the van der Waals gas; the second-quantisation approach to many-body systems, with an examination of two-time temperature-dependent Green functions; phase transitions, including various approximation methods for treating the Ising model, a brief discussion of the exact solution of the two-dimensional square Ising model, and short introductions to renormalisation group methods and the Yang and Lee theory of phase transitions. In the problem section which follows each chapter the reader is asked to complete proofs of basic theory and to apply that theory to various physical situations. Each chapter bibliography includes papers which are of historical interest. A further help to the reader are the solutions to selected problems which appear at the end of the book.


Язык: en

Рубрика: Механика/

Статус предметного указателя: Готов указатель с номерами страниц

ed2k: ed2k stats

Издание: 3 edition

Год издания: 1995

Количество страниц: 416

Добавлена в каталог: 13.12.2010

Операции: Положить на полку | Скопировать ссылку для форума | Скопировать ID
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Предметный указатель
Mean-field approximation      9 6 346 352 353 368 372
Melting curve      315 316
Metals      138
Metric transitivity      204
Micro-situation      91
microcanonical ensemble      156 5 7 231 262
Microscopic reversibility      239
Mixed case      6 2
Mixed fixed point      360
Mixing entropy      198
Modulus      180
Modulus of ensemble      156
Molecular chaos      16
Molecular-field approximation      342
Morse potential      7 85
Muon      132
Neel temperature      313
Negative absorption      71
Neutron      132
Normalisation      153 180 219 231
Number operator      297 302
Ohm’s Law      54
One-dimensional Ising chain      334 355 361 369
Operational approach      222
Order at distance      337
Order-disorder transformation      338
Ortho-hydrogen      79
Pair production      265
Para-hydrogen      79
Paradox of specific heats      44
Paramagnetic susceptibility      143 264
Particle batli      179 230
Partition function      50 58
Pauli matrices      261
Pauli paramagnetism      143
Pauli principle      79 89 94 127 144
Perfect Boltzmann gas      120 130 6 6 272
Perfect Bose — Einstein gas      6 7 272
Perfect boson gas      120 298
Perfect Fermi — Dirac gas      6 8 272
Perfect fermion gas      130
Perfect gas      28 52 55 102 4 6 4 7 4 8 148 305
Perfect gas law      25 33 52 113 162 5 8 5 12 242 257 264
Perfect rnonatomic gas      242 245 247
Periodic systems      74
Petit ensemble      179
phase diagram      315 316
Phase function      154 181
Phase integral      50 62 74
Phase of a particle      39
Phase separation      316 338
Phase space      39 74 149
Phase transitions      188
Phonons      136 289 290
Photocurrent      143
Photon fluctuations      245
Pion      132
Planck’s radiation law      3 3 69
Plasmon      290
Poisson bracket      152 218
Polarisation      223 261
Polaron      290
potential energy      37 39 149 268 298
Pressure      116
Pressure fluctuations      191 212
probability      26 41
probability density      216
Propagator      301
Proton      132
Pure case      6 2
Q-potential      103 115 145 183
Quantisation rule      63 85
Quantum liquids      135
Quantum number      63
Quantum of action      61
Quantum statistics      90
Quark      132
Quasi-chemical approximation      9 7 348 368 372
Quasi-particles      289
Quasi-perfect gas      288
Radial distribution function      190
Radiation field      63 88 135 266
Rayleigh’s law      69
Reactions      248
Reduced density matrix      223
Redundant variables      293
Reiner Fall      222
Relativistic electron gas      6 10
Relativistic plasma      267
Relaxation time      21
Renormalisation group      355 372
Renormalisation process      355 357
Representative ensemble      201 221 222 230 234 235 263
Representative point      2 47 60 71 75 149 175 201 207
Repulsive fixed point      360
Retarded Green function      302
Richardson current      142
Rigid rotator      3 5
Rnagnetoresistance      143
Rnonatomic gas      2 36 52 137 268
Root distribution function      329 331
Rotational quantum number      77
Rotational temperature      77
Rotator      261
Rotons      290
Sackur — Tetrode equation      114
Saddle point      107
Saha equilibrium      6 9
Saturation      322
Scale invariance      353 354 355 356
Scaling transformation      369 372
Schottky anomaly      81
Schrodinger representation      221 259 303
Second law of thermodynamics      24 50 172 233
Second quantisation      132
Second-quantisation representation      294
Semiclassical approximation      86
Semiconductors      138
Short-range order      337 338 340 346 354
Short-range order parameter      341 368
Slater determinant      94
Solid solutions      335
Sound waves      289
Specific density      180 193 227
Specific heat      117 123 130
Specific phase      180
Spin and statistics      133
Spin wave      290
Spinor      362
Spontaneous emission      71
Stationary distribution      209
Stationary ensemble      152 5 2 219
Statistical operator      218
Statistical weight      71
Steepest descent method      106 321
Stefan — Boltzmann law      70
Stellar interiors      136
Stimulated emission      71
Stirling formula      27 137
Stosszahlansatz      16 31 35 41
Strong degeneracy      125
Sublimation curve      315 316
Substitutional solid solution      335
Sum over states      58
Superstructure lines      335
Surface density      156
Symmetric top      55 56
Symmetry effects      59 90
Temperature      3 21 49 147 156 177 182 229
Temperature bath      147 179
Temperature fluctations      203
Thermal average      354
thermal conductivity      55 143
Thermal de Broglie length      115 119 269
Thermal potential      102 128 183
Thermionic emission      142
Thermodynamic equilibrium      200
Thermodynamic limit      317 330
Thermodynamic potential      101 103
Thermodynamic state      51 61 160
Thermostat      230
Time average      67 163 174 231
Transfer matrix      362 372
Transition probability      238 263
Transition temperature      366 369 370
Transport coefficients      48
Transport equation      2 5
Triple point      315
Undetermined multipliers      22
Unitary transformation      220 259
Van der Waals equation      1 3 7 2 287 315
Van der Waals gas      1
Variational method      369
Velocity space      2
Virial      9
Virial coefficient      9
Virial expansion      326 368
Virial theorem      34
Weight      92
Weiss-field ferromagnct      333
White dwarfs      250
Wiedemann — Franz ratio      55 143
Wien’s law      69
Wind-wood model      30
WKB approximation      86
work function      141
X-ray diffraction      335
Yang and Lee’s theory of phase transitions      9 4
Zero-point pressure      127 367
Zeropoint energy      63 127
Zeros of grand partition function      329 369 371
1 2
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