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Kogut J.B., Stephanov M.A. — The Phases of Quantum Chromodynamics: From Confinement to Extreme Environments | |
Sornette D. — Critical phenomena in natural sciences | |
Ito K. — Encyclopedic Dictionary of Mathematics. Vol. 2 | 402.D |
Di Francesco P., Mathieu P., Senechal D. — Conformal field theory | 62 |
Fisher Y. — Fractal Image Compression. Theory and Application | 83 |
Parr R., Yang W. — Density-functional theory of atoms and molecules | 27, 44, 269 |
Dittrich W., Reuter M. — Classical and quantum dynamics | 262 |
Dill K.A., Bromberg S. — Molecular Driving Forces: Statistical Thermodynamics in Chemistry and Biology | 188 |
Leach A.R. — Molecular Modelling Principles and Applications | 563, 569 |
Bovier A., Gill R. (Ed), Ripley B.D. (Ed) — Statistical Mechanics of Disordered Systems: A Mathematical Perspective | 19 |
Mayer J.E., Mayer M.G. — Statistical Mechanics | 219 |
Raabe D. — Computational materials science | 51, 56 ff, 72 ff |
Friedlander S.J. (Ed), Serre D. (Ed) — Handbook of Mathematical Fluid Dynamics, Vol. 3 | 10 |
Balescu R. — Equilibrium and nonequilibrium statistical mechanics | 119 |
Chorin A.J. — Vorticity and turbulence | 83 |
Zagoskin A.M. — Quantum theory of many-body systems | 54, 55 |
Yeomans J.M. — Statistical Mechanics of Phase Transitions | 15 |
Walecka J.D. — Fundamentals of statistical mechanics | 55, 87, 187 |
Chaikin P.M., Lubensky T.C. — Principles of condensed matter physics | 119 |
Isihara A. — Statistical physics | 52, 53, 280 |
Kadanoff L.P. — Statistical physics | 179, 182 |
Ziman J.M. — Elements of Advanced Quantum Theory | 99, 159 |
Dreizler R.M., Gross E.K.U. — Density Functional Theory: An Approach to the Quantum Many-Body Problem | 48 |
Toda M., Kubo R., Saito N. — Statistical Physics I: Equilibrium Statistical Mechanics, Vol. 1 | 51 |
Planck M. — Introduction to Theoretical Physics | 368—369, 456—458 |
Dorlas T.C. — Statistical mechanics, fundamentals and model solutions | 136, 137 |
Ito K. — Encyclopedic Dictionary of Mathematics | 402.D |
Haake F. — Quantum signatures of chaos | 163, 175 |
Dalvit D.A.R., Frastai J., Lawrie I.D. — Problems on statistical mechanics | 6, 3.9—3.22, 3.28—3.30 |
Kubo R., Toda M., Hashitsume N. — Statistical physics II. Nonequilibrium statistical mechanics | 147 |
Rickayzen G. — Green's functions and condensed matter | 32 |
Unertl W.N. — Physical Structure | 65 |
Aoki K. — Nonlinear dynamics and chaos in semiconductors | 11 |
HyperChem Computational Chemistry | 72 |
Kubo R. — Statistical Mechanics: An Advanced Course with Problems and Solutions | see “Distribution” |
Huang K. — Introduction to Statistical Physics | 159 |
Fetter A.L., Walecka J.D. — Quantum theory of many-particle systems | 33 |
Nakamura K., Harayama T. — Quantum chaos and quantum dots | 72 |
Gray C.G., Gubbins K.E. — Theory of molecular fluids | 3, 144 |
ter Haar D. — Elements of Statistical Mechanics | 156 |
Pfeiler W. — Alloy Physics: A Comprehensive Reference | 669 |
Greiner W. — Quantum mechanics: special chapters | 280 |
Mackey M.C. — Time's arrow: the origins of thermodynamic behavior | 14 |
Bernard P.S., Wallace J.M. — Turbulent Flow: Analysis, Measurement and Prediction | 480 |
Prigogine I. — From being to becoming: time and complexity in the physical sciences. | 29 |
Basdevant J.-L., Dalibard J. — Quantum Mechanics | 441 |
Prigogine I. — Proceedings of the International Symposium on Transport. Processes in Statistical Mechanics, held in Brussels,. August 27-31, 1956 | 55 |
Pathria P.K. — Statistical Mechanics | 34, 43—56, 60—63, 83, 85, 109—110, 131—133 |
Klyshko D.N. — Photons and nonlinear optics | 194 |
Margenau H., Murphy G.M. — The mathematics of physics and chemistry | 446, 448 |
Flogge S. (ed.) — Encyclopedia of Physics. Thermodynamics of Gases | 74, 79 |
Gallavotti G. — Statistical Mechanics | 21, 22, 27, 61, 62, 65, 69, 71, 91, 106, 107, 115, 120, 121, 149, 266 |
Mandel L., Wolf E. — Optical Coherence and Quantum Optics | 659 |
Mayer J.E., Goeppert Mayer M. — Statistical mechanics | 219 |
Gallavotti G. — Foundations of fluid mechanics | 474 |
Brout R., Carruthers P. — Lectures on the many-electron problem (Interscience monographs and texts in physics and astronomy) | 1, 87 |
Roepstorf G. — Path integral approach to quantum physics | 71 |
McQuarrie D.A. — Statistical Mechanics | 37 |
Chaikin P., Lubensky T. — Principles of condensed matter physics | 119 |
Greiner W., Neise L., Stöcker H. — Thermodynamics and statistical mechanics | 159, 200 |
Richards P.I. — Manual of Mathematical Physics | 196 |
Gould H., Tobochnik J., Christian W. — An introduction to computer simulation methods | 276, 597, 609 |
Grosso G. (Ed), Parravicini G.P. (Ed) — Solid State Physics | 91 |
Thirring W., Harrell E.M. — Quantum Mathematical Physics. Atoms, Molecules and Large many-body Systems | 382 |
Koonin S.E., Meredith D.C. — Computational Physics-Fortran Version | 216 |
Greiner W., Neise L., Stocker H. — Thermodynamics and statistical mechanics | 159, 200 |
Hartmann A.K., Rieger H. — Optimization Algorithms in Physics | 74 |
Lemm J.C. — Bayesian field theory | 328 |
Haile J.M. — Molecular Dyanmics Simualtion: Elementary Methods | see "Ensemble, NVT" |
Haile J.M. — Molecular Dyanmics Simualtion: Elementary Methods | see "Ensemble, NVT" |
Morandi G. — Statistical Mechanics: An Intermediate Course | §6, 244 ff |
ter Haar D. — Elements of Statistical Mechanics | 156 |
Slater J., Frank N. — Introduction to Theoretical Physics | 368—369, 456—458 |
Reichl L.E. — Modern Course in Statistical Physics | 342—343, 354—377 |
Ichimaru S. — Statistical Plasma Physics, Volume I: Basic Principles (Frontiers in Physics, Vol 87) (v. 1) | 363 |
Fetter A.L., Walecka J.D. — Quantum theory of many-particle systems | 33 |
Prigogine I. (ed.) — Advances in Chemical Physics. Volume XIX | 332 |
Plischke M., Bergersen B. — Equilibrium statistical physics | 29, 35—39, 41, 43, 44, 47, 55, 57, 357 |
Rosser W.G.V. — An introduction to statistical physics | 137, 206 |