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Ïîèñê êíèã, ñîäåðæàùèõ: Partition function
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(Ed) — Statistical Mechanics of Disordered Systems: A Mathematical Perspective | 14 | Lim Ch., Nebus J. — Vorticity, Statistical Mechanics, and Monte Carlo Simulation | 30, 32, 34, 38—40, 45, 46, 48, 49, 51, 52, 55, 58, 72, 73, 116, 128, 134, 137, 151, 205, 215, 237, 238, 241, 243, 246, 255, 256 | Lynch S. — Dynamical Systems with Applications Using Mathematica® | 345 | Heermann D.W. — Computer Simulation Methods in Theoretical Physics | 66, 83, 91, 94, 96 | Palmer J. — Planar Ising Correlations | 2 | Afraimovich V., Ugalde E. — Fractal Dimensions for Poincare Recurrences | 34, 92, 191 | Ruelle D. — Thermodynamic Formalism: The Mathematical Structure of Equilibrium Statistical Mechanics | 3, 35, 104, 133 | Goodman F.M., Harpe P. — Coxeter Graphs and Towers of Algebras | II.b | Allouche J.-P., Shallit J. — Automatic Sequences: Theory, Applications, Generalizations | 457, 458 | Chow W.W., Koch S.W. — Semiconductor-laser fundamentals | 33 | Bollobas B. — Modern Graph Theory | 343 | Ott E. — Chaos in dynamical systems | 327, 330—331 | Raabe D. — Computational materials science | 58 ff, 73 | Chari V., Pressley A. — A Guide to Quantum Groups | 247, 249, 510 | Klimyk A., Schmudgen K. — Quantum Groups and Their Representations | 176, 295 | Finch S.R. — Mathematical constants | 344, 395 | Bamberg P.G. — A Course in Mathematics for Students of Physics, Vol. 2 | 814, 823 | Balescu R. — Equilibrium and nonequilibrium statistical mechanics | 118, 121 | Simon B. — The Statistical Mechanics of Lattice Gases (vol 1) | 4, 102 | Getzlaff M. — Fundamentals of Magnetism | 14 | Kopparapu S.K., Desai U.D. — Bayesian Approach to Image Interpretation | 14, 36, 83 | Chorin A.J. — Vorticity and turbulence | 71 | Yeomans J.M. — Statistical Mechanics of Phase Transitions | 15, 17, 18 | Walecka J.D. — Fundamentals of statistical mechanics | 56, 58, 60—73, 187, 279 | Chaikin P.M., Lubensky T.C. — Principles of condensed matter physics | 120 | Born M. — Natural philosophy of cause and chance (The Waynflete lectures) | 54, 60, 61, 72, 158—159, 162, 167, 171, 199 | Streater R.F. (Ed) — Mathematics of Contemporary Physics | 216 | Isihara A. — Statistical physics | 51ff, 72, 81, 108, 113, 208, 215ff, 281, 285, 303 | Kadanoff L.P. — Statistical physics | 5 | Rammer J. — Quantum transport theory | 72, 88, 234 | Ziman J.M. — Elements of Advanced Quantum Theory | 100 | Toda M., Kubo R., Saito N. — Statistical Physics I: Equilibrium Statistical Mechanics, Vol. 1 | 57, 102, 103 | Kohno T. — Conformal Field Theory and Topology | 8, 42 | Dorlas T.C. — Statistical mechanics, fundamentals and model solutions | 125 | Henneaux M., Teitelboim C. — Quantization of Gauge Systems | 338, 355 | Ito K. — Encyclopedic Dictionary of Mathematics | 402.D | Katayama T., Sugimoto S. — Statistical Methods in Control and Signal Processing | 527 | Collins G.W. — Fundamentals of Stellar Astrophysics | 13, 293 | Dittrich T. (ed.), Hanggi P. (ed.), Ingold G.-L. (ed,) — Quantum transport and dissipation | 220, 233, 244—246 | Du D. (ed.), Pardalos P. (ed.) — Handbook of combinatorial optimization: supplement volume A | 268 | Elizalde E., Odintsov A.D., Romeo A. — Zeta Regularization Techiques with Applications | 146 | Kannan D. (ed.), Lakshmikantham V. (ed.) — Handbook of stochastic analysis and applications | 644 | Frampton P. — Dual Resonance Models and Superstrings | 88, 93, 155 | Schroeder M.R. — Schroeder, Self Similarity: Chaos, Fractals, Power Laws | 206 | Guimaraes A.P. — Magnetism and Magnetic Resonance in Solids | 260, 273 | Rubinstein M., Colby R.H. — Polymer Physics | 75 | Beyer H.F., Shevelko V.P. — Introduction to the Physics of Highly Charged Ions | 265 | Ramond P. — Field Theory: A modern Primer | 88 | Greiner W., Schramm S., Stein E. — Quantum chromodynamics | 443 | Borwein J.M., Borwein P.B. — Pi and the AGM: A Study in Analytic Number Theory and Computational Complexity | 67, 307 | Berard P.H. — Spectral Geometry | 100 | Hilborn R.C. — Chaos and nonlinear dynamics | 395, 398, 415—416, 419 | Kyle T.G. — Atmospheric transmission, emission and scattering | 165, 173, 189 | Green M.B., Schwarz J.H., Witten E. — Superstring Theory (vol. 1) | 117 | Bailin D., Love A. — Introduction to Gauge Field Theory | 315 | Seitz F. — Modern Theory of Solids | 101 | Kubo R., Toda M., Hashitsume N. — Statistical physics II. Nonequilibrium statistical mechanics | 10 | Shanbhag D.N. (ed.), Rao C.R. (ed.) — Stochastic Processes - Modelling and Simulation | 485 | Chan T., Shen J. — Image Processing and Analysis: Variational, PDE, Wavelet, and Stochastic Methods | 59, 72, 118 | Unertl W.N. — Physical Structure | 719 | Adams C.C. — The Knot Book: An Elementary Introduction to the Mathematical Theory of Knots | 208 | Beckenbach E.F. (editor), Polya G., Lehmer D.H. and others — Applied combinatorial mathematics | 122 | Heer C.V. — Statistical Mechanics: Kinetic, Theory and Stochastic Process | see “Generating function” | Aoki K. — Nonlinear dynamics and chaos in semiconductors | 330, 332, 369 | Kubo R. — Statistical Mechanics: An Advanced Course with Problems and Solutions | 45 | Baladi V. — Positive Transfer Operators And Decay Of Correlations | 19 | Chung F.R.K. — Spectral Graph Theory | 131 | Sinai Ya.G. — Theory of Phase Transitions: Rigorous Results | 104, 105 | Dong F.M., Teo K.L., Koh K.M. — Chromatic Polynomials And Chromaticity Of Graphs | 300 | Kittel C. — Introduction to solid state physics | 376 | Kittel Charles, Kroemer Herbert — Thermal Physics | 61 | Cowan B. — Topics In Statistical Mechanics | 17, 18, 20, 120 | Talagrand M. — Spin Glasses: A Challenge for Mathematicians | 2 | Birrell N.D., Davies P.C.W. — Quantum Fields in Curved Space | 25, 289—290 | Kenzel W., Reents G., Clajus M. — Physics by Computer | 190 | Deligne P., Kazhdan D., Etingof P. — Quantum fields and strings: A course for mathematicians (Vol. 1) | 27, 1186, 1227, 1241, 1270ff | Huang K. — Introduction to Statistical Physics | 160 | Arias J.M., Lozano M. — The Hispalensis Lectures On Nuclear Physics, Vol. 2 | 44 | Sernelius B.E. — Surface Modes in Physics | 142 | Park D. — Introduction to the quantum theory | 548 | Pomraning G.C. — The equations of radiation hydrodynamics | 165 | Landau L.D., Lifshitz E.M. — Statistical physics (volume 5 of Course of Theoretical Physics) | 91 | Nakamura K., Harayama T. — Quantum chaos and quantum dots | 80 | Kleinert H., Schulte-Frohlinde — Critical Properties of (Phi)P4-Theories | 31, 32 | Slichter Ch.P. — Principles of magnetic resonance. With examples from solid state physics | 116 | Petrou M., Sevilla P.G. — Image Processing: Dealing with Texture | 198 | Baker G.A., Gammel J.L. — The Padé Approximant in Theoretical Physics | 100 | Gray C.G., Gubbins K.E. — Theory of molecular fluids | 9 | Carrol B.W., Ostlie D.A. — An introduction to modern astrophysics | 214 | Schulman L.S. — Techniques and applications of path integration | 237, 251, 252, 254, 262 | Mehta M.L. — Random Matrices | 63, 79, 83, 87, 89, 92, 224, 227 | ter Haar D. — Elements of Statistical Mechanics | 50, 58 | Baxter R.J. — Exactly Solved Models in Statistical Mechanics | 8—9, 16, 25 | Shore S.N. — The Tapestry of Modern Astrophysics | 25—26, 515 | Pfeiler W. — Alloy Physics: A Comprehensive Reference | 219, 348, 365, 668 | Ambjorn J., Durhuus B., Jonsson T. — Quantum Geometry: A Statistical Field Theory Approach | 80, 252, 309 | Greiner W. — Quantum mechanics: special chapters | 279 | Mackey M.C. — Time's arrow: the origins of thermodynamic behavior | 12 | Berezin F.A., Shubin M.A. — The Schroedinger equation | 370 | Daniel C. 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(ed.) — General relativity and gravitation. 100 years after the birth of Albert Einstein (volume 2) | 509 | Crisanti A., Paladin G., Vulpiani A. — Products of random matrices in statistical physics | 11 | Kardar M. — Statistical physics of fields | 19 | Glimm J., Jaffe A. — Quantum Physics: A Functional Integral Point of View | 33, 57, 66, 68, 69, 81, 212, 231, 243, 263, 298, 327, 360, 367, 370, 465, 466, 468 | Cheng T.P., Li L.F. — Gauge theory of elementary practicle physics | 23, see "Path integral for partition function" | Kashiwa T., Ohnuki Y., Suzuki M. — Path Integral Methods | 13 | Morandi G. — Statistical Mechanics: An Intermediate Course | §6, 245 ff | ter Haar D. — Elements of Statistical Mechanics | 50, 58, Ch.3, 112, 160, 177, 225, 227, 249, 342, 347, 355, 357, 361, 363, 366, 369 | Powell R. — Physics of Solid State Laser Materials (Atomic, Molecular and Optical Physics Series) | 181 | Davies P. — The New Physics | 238 | Kleinert H. — Gauge fields in condensed matter (part 2) | 8, 13, 26, 27, 29, 31, 57, 62, 147, 152, 153, 156, 162, 164, 215, 220, 225, 227, 231 | Mackey G. — Unitary Group Representations in Physics, Probability and Number Theory | 289, 290, 291, 297, 299, 301 | Meyer-Ortmanns H., Reisz T. — Principles of phase structures in particle physics | 26 | Park D. — Introduction to the Quantum Theory (Pure & Applied Physics) | 548 | Bird R.B., Curtiss C.F., Armstrong R.C. — Dynamics of Polymeric Liquids. Vol. 2. Kinetic Theory | (2)15 | Bellac M. — Thermal Field Theory (Cambridge Monographs on Mathematical Physics) | 21, 29, 32, 38, 88, 95, 98, 108 | Honerkamp J. — Statistical physics: an advanced approach with applications | 60, 119 | Jost J. — Bosonic Strings: A mathematical treatment | 29, 42, 83, 84 | Knuth D.E. — Selected papers on discrete mathematics | 534 | Rosser W.G.V. — An introduction to statistical physics | 109, 111, 118 | De Witt L. Sumners — New Scientific Applications of Geometry and Topology (Proceedings of Symposia in Applied Mathematics, V. 45) | 133, 134, 168, 169, 186, 205 |
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