| Êíèãà | Ñòðàíèöû äëÿ ïîèñêà | 
| Ito K. — Encyclopedic Dictionary of Mathematics. Vol. 2 | 402.B | 
| Zeidler E. — Nonlinear Functional Analysis and its Applications IV: Applications to Mathematical Physic | 59, 366, 400, 884 | 
| Demtroeder W. — Laser spectroscopy | 10 | 
| Fishman G.S. — Monte Carlo: concepts, algorithms, and applications | 399 | 
| Majid S. — Foundations of Quantum Group Theory | 455 | 
| Goldstein H., Poole C., Safko J. — Classical mechanics | 185 | 
| Anderson J.D. — Modern Compressible Flow: With Historical Perspective | 14—15 | 
| Mukamel S. — Principles of Nonlinear Optical Spectroscopy | 51, 113 | 
| Debnath L. — Nonlinear Partial Differential Equations for Scientists and Engineers | 344 | 
| Von Laue M. — History of Physics | 100, 103, 129, 131 | 
| Serre D. — Handbook of Mathematical Fluid Dynamics, Vol. 1 | 17 | 
| Winterbone D.E. — Advanced thermodynamics for engineers | 340 | 
| Burke E.K., Kendall G. — Search Methodologies: Introductory Tutorials in Optimization and Decision Support Techniques | 190 | 
| Allouche J.-P., Shallit J. — Automatic Sequences: Theory, Applications, Generalizations | 457 | 
| Newman J.R. — The World of Mathematics, Volume 2 | 979 fn., 994 | 
| McMano D., Topa D.M. — A Beginner's Guide to Mathematica | 481 | 
| Thouless D.J. — Topological quantum numbers in nonrelativistic physics | 1, 23 | 
| Chaikin P.M., Lubensky T.C. — Principles of condensed matter physics | 11, 216, 376 | 
| Kadanoff L.P. — Statistical physics | 7 | 
| Zel'dovich Ya.B., Raizer Yu.P. — Physics of Shock Waves and High-Temperature Hydrodynamic Phenomena (vol. 1) | 441 | 
| Toda M., Kubo R., Saito N. — Statistical Physics I: Equilibrium Statistical Mechanics, Vol. 1 | 31 | 
| Li M., Vitanyi P. — An introduction to Kolmogorov complexity and its applications | 528, 561 | 
| Scott A. — Neuroscience: a mathematical primer | 59 | 
| Ito K. — Encyclopedic Dictionary of Mathematics | 402.B | 
| Galindo A., Pascual P. — Quantum Mechanics Two | I 2 | 
| Mukamel S. — Principles of nonlinear spectroscopy | 51, 113 | 
| Waseda Y. — Novel Application of Anomalous (Resonance) X-Ray Scattering for Structural Characterization of Disordered Materials | 102 | 
| Langmuir I. — Phenomena, Atoms and Molecules | 71 | 
| Rubinstein M., Colby R.H. — Polymer Physics | 27 | 
| Beyer H.F., Shevelko V.P. — Introduction to the Physics of Highly Charged Ions | 29 | 
| Sokolnikoff I.S. — Mathematics of Physics and Modern Engineering | 633 | 
| Fishbane P.M. — Physics For Scientists and Engineers with Modern Physics | 1173 | 
| Kythe P.K. — Fundamental Solutions for Differential Operators and Applications | 356 | 
| Zeldovich Ya.B., Yaglom I.M. — Higher Math for Beginners | 389 | 
| Banerjee P.P., Poon T.-C. — Principles of applied optics | 244 | 
| Newman J.R. (ed.) — The World of Mathematics, Volume 4 | 979 fn., 994 | 
| Guggenheim E.A. — Thermodynamics | 67, 94 | 
| Meeker W.Q., Escobar L. — Statistical Methods for Reliability Data | 472 | 
| Adams C.C. — The Knot Book: An Elementary Introduction to the Mathematical Theory of Knots | 207 | 
| Nayfeh M.H., Brussel M.K. — Electricity and Magnetism | 173, 212, 333 | 
| Ludvigsen M. — General relativity. A geometric approach | 188 | 
| Lieberman M.A., Lichtenberg A.J. — Principles of Plasma Discharges and Materials Processing | 36 | 
| Galindo A., Pascual P. — Quantum Mechanics One | 2 | 
| Zel'dovich Ya.B., Raizer Yu.P. — Physics of Shock Waves and High-Temperature Hydrodynamic Phenomena (vol. 2) | 441, 881 | 
| Kittel Charles, Kroemer Herbert — Thermal Physics | 41, 45, 446 | 
| Balian R. — From Microphysics to Macrophysics: Methods and Applications of Statistical Physics (vol. 1) | 26, 36, 104, 112, 200, 229, 323, 337 | 
| Herbert C.G., Johnstone R.A.W. — Mass Spectrometry Basics | 46, 49 | 
| Cercignani C. — Theory and Application of the Boltzman Equation | 84, 130 | 
| Kenzel W., Reents G., Clajus M. — Physics by Computer | 39, 190 | 
| Sernelius B.E. — Surface Modes in Physics | 53, 192 | 
| Pomraning G.C. — The equations of radiation hydrodynamics | 2 | 
| Animalu A.O. — Intermediate Quantum Theory of Crystalline Solids | 54 | 
| Chan Man Fong C.F., De Kee D., Kaloni P.N. — Advanced Mathematics for Engineering and Sciences | 845 | 
| ter Haar D. — Elements of Statistical Mechanics | 102 | 
| Mackey M.C. — Time's arrow: the origins of thermodynamic behavior | 16 | 
| Stewart I.W. — The Static and Dynamic  Continuum Theory of  Liquid Crystals: A Mathematical Introduction | 244, 329 | 
| Prigogine I. — From being to becoming: time and complexity in the physical sciences. | 10, 79 | 
| Demtröder W. — Laser spectroscopy: basic concepts and instrumentation | 10 | 
| Basdevant J.-L., Dalibard J. — Quantum Mechanics | XVII | 
| Prigogine I. — Proceedings of the International Symposium on Transport. Processes in Statistical Mechanics, held in Brussels,. August 27-31, 1956 | 287, 307, 383 | 
| Vincenti W.G., Kruger C.H. — Introduction to Physical Gas Dynamics | 7, 524 | 
| Thompson Philip A. — Compressible-fluid dynamics | 77 | 
| Sone Y. — Molecular Gas Dynamics Theory, Techniques, and Applications | 2, 618 | 
| Messiah A. — Quantum mechanics. Volume 1 | 205 | 
| Nouredine Z. — Quantum Mechanics: Concepts and Applications | 6 | 
| Toro E.F. — Riemann Solvers and Numerical Methods for Fluid Dynamics: A Practical Introduction | 11, 12 | 
| Bird G.A. — Molecular gas dynamics and the direct simulation of gas flows | 14, 25, 211, 243 | 
| Beard D.B. — Quantum Mechanics | 8 | 
| Gamow G. — Creation of the Universe | 51n | 
| Wurfel P. — Physics of Solar Cells: From Principles to New Concepts | 181 | 
| Christe P., Henkel M. — Introduction to conformal invariance and its applications to critical phenomena | 3 | 
| Reif F. — Fundamentals of statistical and thermal physics | 137 | 
| Hristev R.M. — The artificial neural network book | 208 | 
| McQuarrie D.A. — Statistical Mechanics | 43, 593 | 
| Chaikin P., Lubensky T. — Principles of condensed matter physics | 11, 216, 376 | 
| Tzenov S.I. — Contemporary Accelerator Physics | 186 | 
| Hugh D. Young, Roger A. Freedman — University physics with modern physics | 622, 627, 879, 1328 | 
| Lauterborn W., Kurz T. — Coherent optics | 4 | 
| Lauterborn W., Kurz T. — Coherent optics | 4 | 
| Beard D.B. — Quantum Mechanics | 8 | 
| Henkel M. — Conformal Invariance and Critical Phenomena | 4 | 
| Hartmann A.K., Rieger H. — Optimization Algorithms in Physics | 74 | 
| Zeidler E. — Oxford User's Guide to Mathematics | 509, 694, 987 | 
| Sakurai J.J. — Modern quantum mechanics | 184 | 
| Haile J.M. — Molecular Dyanmics Simualtion: Elementary Methods | 462 | 
| Haile J.M. — Molecular Dyanmics Simualtion: Elementary Methods | 462 | 
| Attwood S.S. — Electric and Magnetic Fields | 16, 174 | 
| Rice F.O., Teller E. — The structure of matter | 47 | 
| Fung Y. — A First Course in Continuum Mechanics: for Physical and Biological Engineers and Scientists | 182 | 
| ter Haar D. — Elements of Statistical Mechanics | 102 | 
| Cercignani C. — Rarefied Gas Dynamics | 20 | 
| Davies P. — The New Physics | 212 | 
| Kleinert H. — Gauge fields in condensed matter (part 2) | 8 | 
| Yao W-M — Review of particle physics | 97 | 
| Plischke M., Bergersen B. — Equilibrium statistical physics | 50 | 
| Iwamoto M., Chen-Xu W. — The Physical Properties of Organic Monolayers | 22, 85, 146, 159 | 
| Rosser W.G.V. — An introduction to statistical physics | 44, 107, 157, 259, 260 |