Êíèãà | Ñòðàíèöû äëÿ ïîèñêà |
Grinstead C.M., Snell J.L. — Introduction to Probability | 107 |
Kisacanin B. — Mathematical problems and proofs. Combinatorics, Number theory, and Geometry | 62 |
Streater R.S., Wightman A.S. — PCT, Spin and Statistics, and All That | 146 |
Loeve M. — Probability Theory (part 2) | 43—44 |
Johnson N., Kotz S., Kemp A.W. — Univariate discrete distributions | 405, 420—422 |
Pugovecki E. — Quantum mechanics in hilbert space | 307 |
Skorokhod A.V., Prokhorov Y.V. (Ed) — Basic Principles and Applications of Probability Theory | 20 |
Prugovecki E. — Quantum Mechanics in Hilbert Space | 307 |
Loeve M. — Probability Theory (part 1) | 43, 44 |
Bamberg P.G. — A Course in Mathematics for Students of Physics, Vol. 2 | 803 |
Walecka J.D. — Fundamentals of statistical mechanics | 206, 243f, 292 |
Born M. — Natural philosophy of cause and chance (The Waynflete lectures) | 113, 199—202 |
Haken H. — Laser light dynamics (volume 2) | 272 |
Isihara A. — Statistical physics | 80, 105, 248, 288, 339, 398, 400, 402 |
Kadanoff L.P. — Statistical physics | 187 |
Ziman J.M. — Elements of Advanced Quantum Theory | 26, 40 |
Dorlas T.C. — Statistical mechanics, fundamentals and model solutions | 101, 128 |
Galindo A., Pascual P. — Quantum Mechanics Two | II 231, 238, 246, 256 |
Georgi H. — Lie algebras in particle physics | 141 |
Katayama T., Sugimoto S. — Statistical Methods in Control and Signal Processing | 276, 293 |
Collins G.W. — Fundamentals of Stellar Astrophysics | 10, 229 |
Jauch J.M. — Foundations of quantum mechanics | 278 |
Fowler R.H. — Statistical thermodynamics: A version of statistical mechanics for students of physics and chemistry | 45, 49, 159 |
Zajac A. — Optics | 53, 55 |
Born M. — Atomic Physics | 203, 207, 209—216, 336 |
Debye P. — The Interference Of Electrons | 67 |
Feller W. — Introduction to probability theory and its applications (volume 1) | 5, 20, 40, 61, 113 |
Dalvit D.A.R., Frastai J., Lawrie I.D. — Problems on statistical mechanics | 9, 4.1—4.3 |
Guggenheim E.A. — Thermodynamics | 61, 74 |
Adair R.K. — The Great Design: Particles, Fields, and Creation | 180—182 |
Lopuzanski J. — An introduction to symmetry and supersymmetry in quantum field theory | 83 |
Heer C.V. — Statistical Mechanics: Kinetic, Theory and Stochastic Process | 237 |
Kubo R. — Statistical Mechanics: An Advanced Course with Problems and Solutions | 9, 28, 53, 60, 62, 94, 182, 238, 275 |
Dutra S.M. — Cavity quantum electrodynamics | 104 |
Mandl F., Shaw G. — Quantum field theory | 9, 72—73 |
Balian R. — From Microphysics to Macrophysics: Methods and Applications of Statistical Physics (vol. 1) | see “Bosons”, “Pauli principle” |
Weinberg S. — The Quantum Theory of Fields. Vol. 1 Foundations | 11,170—2,418—20 |
Allen H.C., Cross P.C. — Molecular Vib-Rotors: the Theory and Interpretation of High Resolution Infrared Spectra | 87, 88, 126 |
Park D. — Introduction to the quantum theory | 418, 570 |
Perkins D.H. — Particle Astrophysics | 5 |
Patil G.P. (ed.), Rao C.R. — Environmental Statistics | 740 |
Taketani M. — The formation and logic of quantum mechanics | II258, III152 |
Slichter Ch.P. — Principles of magnetic resonance. With examples from solid state physics | 116 |
Carrol B.W., Ostlie D.A. — An introduction to modern astrophysics | 294 |
Antia H.M. — Numerical Methods for Scientists and Engineers | 267 |
ter Haar D. — Elements of Statistical Mechanics | 89 |
Galwey A.K. — Thermal Decomposition of Ionic Solids | 127—128 |
Kolb E.W., Turner M.S. — The Early Universe | 61—62, 117—118, 144 |
Zee A. — Quantum field theory in a nutshell | 117 |
Greiner W. — Quantum mechanics: special chapters | 83, 98, 281 |
Shankar R. — Principles of quantum mechanics | 271 |
Weyl H. — Philosophy of mathematics and natural science | 240 |
Gilmore R. — Lie Groups, Lie Algebras and Some of Their Applications | 146 |
Padmanabhan T. — Theoretical Astrophysics: Volume 1, Astrophysical Processes | 231 |
Prigogine I. — Proceedings of the International Symposium on Transport. Processes in Statistical Mechanics, held in Brussels,. August 27-31, 1956 | 234 |
Auletta G. — Foundations and Interpretation of Quantum Mechanics | 54 |
Pathria P.K. — Statistical Mechanics | 5, 6, 119, 127—137, 148—149 |
Margenau H., Murphy G.M. — The mathematics of physics and chemistry | 462 |
Vincenti W.G., Kruger C.H. — Introduction to Physical Gas Dynamics | 95, 98, 447 |
Tsang L., Kong J.A., Ding K.- H. — Scattering of electromagnetic waves (Vol 1. Theories and applications) | 145 |
Flogge S. (ed.) — Encyclopedia of Physics. Thermodynamics of Gases | 81, 454, 458 |
Spiegel M.R. — Schaum's outline of theory and problems of probability and statistics | 36 |
Eliezer Sh., Ghatak A., Hora H. — Fundamentals of Equations of State | 49, 55 |
Domb C., Lebowitz J.L. — Phase transitions and critical phenomena (Vol. 11) | 4 |
Padmanabhan T. — Cosmology and Astrophysics through Problems | 149 |
De Finetti B. — Theory of Probability. A critical introductory treatment(vol. 2) | 181, 184 |
Streater R.F., Wightman A.S. — PCT, spin and statistics and all that | 146 |
Nouredine Z. — Quantum Mechanics: Concepts and Applications | 445 |
Riley, Hobson — Mathematical Methods for Physics and Engineering | 980 |
N. Vilenkin, George Yankovsky (translator) — Combinatorial mathematics for recreation | 59 |
Mendelsohn K. — Cryophysics | 44, 123, 127, 149—151 |
Hamming R.W. — Art of Probability for Scientists and Engineers | 62 |
Harnwell G.P., Livingood J.J. — Experimental Atomic Physics | 70 |
Lena P., Lebrun F. — Observational Astrophysics (Astronomy and Astrophysics Library Series) | 88 |
Jauch J.M. — Foundations Of Quantum Mechanics | 278 |
Reif F. — Fundamentals of statistical and thermal physics | 346—349 |
McQuarrie D.A. — Statistical Mechanics | 73, 75, 160 |
Henley E.M., Thirring W. — Elementary Quantum Field Theory | 20, 26, 52, 88, 182, 186 |
Greiner W., Neise L., Stöcker H. — Thermodynamics and statistical mechanics | 292 |
Greiner W., Reinhardt J. — Field quantization | 64, 68, 76, 123, 130, 323, 329 |
Rosser G. — Interpretation of classical electromagnetism | 163 |
Dugdale J.S. — Entropy and its Physical Meaning | 129, 152 |
Milonni P.W. — The quantum vacuum: introduction to quantum electrodynamics | 65 |
Zeidler E. — Applied Functional Analysis: Applications to Mathematical Physics | 355 |
Greiner W., Neise L., Stocker H. — Thermodynamics and statistical mechanics | 292 |
Saha M.N., Srivastava B.N. — A treatise on heat: Including kinetic theory of gasses, thermodynamics and recent advances in statistical thermodynamics | 746 |
Visconti A. — Quantum field theory. Volume 1 | 192—193 |
Brown L., Dresden M., Hoddeson L. — Pions to quarks: Particle physics in the 1950s | 443 |
Hassani S. — Mathematical Methods: for Students of Physics and Related Fields | 792 |
Sakurai J.J. — Modern quantum mechanics | 361 |
ter Haar D. — Elements of Statistical Mechanics | 89 |
Mackey G. — Unitary Group Representations in Physics, Probability and Number Theory | 225 |
Park D. — Introduction to the Quantum Theory (Pure & Applied Physics) | 418, 570 |
Reichl L.E. — Modern Course in Statistical Physics | 123, 381—382 |
Clarke C.L.A., Cormack G.V. — Information Retrieval: Implementing and Evaluating Search Engines | 300 |
Plischke M., Bergersen B. — Equilibrium statistical physics | 43 |
Kalckar J. — Foundations of Quantum Physics I (1926 - 1932), Volume 6 | 50, 144, 397, 398, 404, 466 |
D.H. Perkins — Introduction to high energy physics | 12 |