|
|
Ðåçóëüòàò ïîèñêà |
Ïîèñê êíèã, ñîäåðæàùèõ: Compton effect
Êíèãà | Ñòðàíèöû äëÿ ïîèñêà | Atkins P.W., Friedman R.S. — Molecular Quantum Mechanics | 5, 8 | Naber G.L. — The geometry of Minkowski spacetime: an introduction to the mathematics of the special theory of relativity | 95 | Aitchison I.J.R., Hey A.J.G. — Gauge theories in particle physics. Volume 1: from relativistic quantum mechanics to QED | 29 | Gudder S.P. — Stochastic methods in quantum mechanics | 3, 5 | Zel'dovich Ya.B., Raizer Yu.P. — Physics of Shock Waves and High-Temperature Hydrodynamic Phenomena (vol. 1) | 124, 125 | Ziman J.M. — Elements of Advanced Quantum Theory | 76, 90, 203 | Lerner K.L., Lerner B.W. — The gale encyclopedia of science (Vol. 6) | 2:988, 4:2985 | Galindo A., Pascual P. — Quantum Mechanics Two | I 5 | Dienes G.J., Vineyard G.H. — Radiation Effects in Solids | 47 | Fermi E. — Nuclear Physics | 38, 40 | Pettifor D.G. — Bonding and structure of molecules and solids | 24—25 | Konopinski E.J. — Electromagnetic fields and relativistic particles | 295, 363—364 | Leff H.S., Rex A.F. — Maxwell's Demon 2: Entropy, Classical and Quantum Information, Computing | 377 | Zajac A. — Optics | 57 | Fishbane P.M. — Physics For Scientists and Engineers with Modern Physics | 1116—1117, 1131 | Heitler W. — The Quantum Theory of Radiation | 146 | Born M. — Atomic Physics | 75—77, 87, 279 | Debye P. — The Interference Of Electrons | 32, 43 | Forsythe W.E. — Smithsonian Physical Tables | 49, 52, 55 | Peleg Y., Pnini R., Zaarur E. — Schaum's outline of theory and problems of quantum mechanics | 1, 5, 6 | Zimmer E. — Revolution in Physics | 64ff., 157, 165, 174 | Chandrasekhar S. — Radiative Transfer | 328, 335 | Kleppner D., Kolenkow R. — An introduction to mechanics | 503 | Castelfranchi G. — Recent Advances in Atomic Physics | ii, 184, 196 | Galindo A., Pascual P. — Quantum Mechanics One | 5 | Zel'dovich Ya.B., Raizer Yu.P. — Physics of Shock Waves and High-Temperature Hydrodynamic Phenomena (vol. 2) | 124, 125 | Meyerhof W.E. — Elements of Nuclear Physics | 91, 93—99 | Lim Y. (ed.) — Problems and solutions on electromagnetism. (Major American Universities Ph.D. Qualifying Questions and Solutions) | 5005 | Bethe H.A., Salpeter E.E. — Quantum Mechanics of One-and-Two-Electron Atoms | 314 | Eddington A. — The Internal Consitution of the Stars | 76, 316 | Martin P.A. — Many-body problems and quantum field theory: an introduction | 375, 379, 381 | Charles S.Barrett — Structure of Metals | 58 | Fowler R.H. — Statistical Mechanics: The Theory of Properties of Matter in Equilibrium | 730- 732 | Park D. — Introduction to the quantum theory | 8 | Carrol B.W., Ostlie D.A. — An introduction to modern astrophysics | 118 | Shore S.N. — The Tapestry of Modern Astrophysics | see “Scattering, Compton” | Slater J.C. — Quantum Theory of Atomic Structure vol1 | 32—33 | Greiner W. — Quantum mechanics: special chapters | 59 | Sears F.W. — Optics | 3 | Lawden D.F. — An Introduction to Tensor Calculus, Relativity and Cosmology | 65 | Hume-Rothery W. — Atomic Theory for Students of Metallurgy | 18 | Padmanabhan T. — Theoretical Astrophysics: Volume 1, Astrophysical Processes | 274 | Auletta G. — Foundations and Interpretation of Quantum Mechanics | 26, 29, 104 | Guinier A., Mauguin C., Kathleen F.R. — X-Ray Crystallographic Technology | 8, 16—18, 96, 232, 255 | Fernow R.C. — Introduction to experimental particle physics | 56—8 | Compton A.H., Allison S.K. — X-Rays in Theory and Experiment | 48, 200 | Clark G.L. — Applied X-rays | 96, 131, 132, 134, 162 | Whittaker E. — A history of the theories of aether and electricity (Vol 2. The modern theories) | 208 | Padmanabhan T. — Cosmology and Astrophysics through Problems | 286 | Nouredine Z. — Quantum Mechanics: Concepts and Applications | 13—15 | Mott N.F., Sneddon I.N. — Wave Mechanics and Its Applications | 4, 33, 190, 274, 316 | Harnwell G.P., Livingood J.J. — Experimental Atomic Physics | 290, 312, 356 | Beard D.B. — Quantum Mechanics | 36—38 | Povh B., Rith K., Scholz C., Zetsche F. — Particles and nuclei. An introduction to the Physical Concepts | 347 | Akhiezer A.I., Berestetskii V.B. — Quantum electrodynamics | 325 | Wilson W. — Theoretical physics - Relativity and quantum dynamics | 163, 165 | Bransden B., Joachain C. — Physics of Atoms and Molecules | 18—22 | Podgorsak E. — Radiation Physics for Medical Physicists | 31, 188, 183, 252, 257, 369 | Wilson W.F.R.S. — Theoretical physics. Volume II. Electromagnetism and optics | 227 | Beard D.B. — Quantum Mechanics | 36—38 | Atkins P.W., Friedman R.S. — Molecular Quantum Mechanics | 4 | 0 — Holt Physics | 885—887, 885f, 896 | HarrisR. — Nonclassical physics: beyond Newton's view | 77—81 | Ashby N., Miller S.C. — Principles of modern physics | 119 | Adams S. — Relativity: An Introduction to Space-Time Physics | 166, 168, 174 | Synge J.L. — Relativity: The Special Theory | 193ff, 202, 205, 249 | Barut A.O. — Electrodynamics and Classical Theory of Fields and Particles | 205 | Brown L., Dresden M., Hoddeson L. — Pions to quarks: Particle physics in the 1950s | 129, 470, 684 | Sakurai J.J. — Modern quantum mechanics | 1 | Hume-Rothery W. — Electrons, Atoms, Metals and Alloys | 44 | Sexl R., Urbantke H.K. — Relativity, Groups, Particles. Special Relativity and Relativistic Symmetry in Field and Particle Physics | 70 | Bettini A. — Introduction to Elementary Particle Physics | 26 | Campbell S.A. — The Science and Engineering of Microelectronic Fabrication | 206—207 | Park D. — Introduction to the Quantum Theory (Pure & Applied Physics) | 8 | Castelfranchi C. — Recent advances in Atomic Physics Volume II Quantum Theory | ii.184, 196 | Foster J., Nightingale J. — A Short Course in General Relativity (Longman mathematical texts) | 111 | Kittel C., Knight W., Ruderman M. — Berkeley physics course 1. Mechanics | 387—389 | D.H. Perkins — Introduction to high energy physics | 356 | Liboff R.L. — Introductory quantum mechanics | 49p |
|
|