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Поиск книг, содержащих: Cooper pairs
Книга | Страницы для поиска | Greenwood N.N., Earnshaw A. — Chemistry of the Elements | 1183 | Tarantello G. — Self-Dual Gauge Field Vortices: An Analytical Approach | 4, 75 | Mihaly L., Martin M.C. — Solid state physics. Problems and solutions | 43, 80 | Wagner M. — Unitery Transformations in Solid State Physics | 5ff | Dorlas T.C. — Statistical mechanics, fundamentals and model solutions | 215 | Fishbane P.M. — Physics For Scientists and Engineers with Modern Physics | 1173—1174, 1178 | Gottfried K., Weisskopf V.F. — Concepts of particle physics (volume 2) | 512, 516 | Nagaosa N. — Quantum field theory in condensed matter physics | 61, 122, 152 | Hofstadter D.R. — Godel, Escher, Bach: An Eternal Golden Braid | 304—305 | Cracknell A.P., Wong K.C. — The Fermi Surface: Its Concept, Determination and Use in the Physics of Metals | 465, 467 | Stone M. — The physics of quantum fields | 134, 183 | Collins P.D., Squires E.J., Martin A.D. — Particle Physics and Cosmology | 189 | Gautreau R., Savin W. — Schaum's Outline of Modern Physics | 320 | Orlando T.P., Delin K.F. — Foundations of Applied Superconductivity | 8, 396, 531—534 (see also Superelectrons) | Fetter A.L., Walecka J.D. — Quantum theory of many-particle systems | 320—326, 359—360, 417, 441 | Avery J. — Creation and Annihilation Operators | 91 | Stahl A. — Physics with tau leptons | 91 | Collins P.D.B., Martin A.D., Squires E.J. — Particle Physics and Cosmology | 189 | Greiner W. — Quantum mechanics: special chapters | 226, 234 | Risken H. — The Fokker-Planck equation: methods of solution and applications | 282 | Phillips P. — Advanced Solid State Physics | 205-206, 210, 219-223, 271, 272, 305-308, 312, 342-345 | Ashcroft N.W., Mermin N.D. — Solid State Physics | 740—743 | Mourachkine A. — High-Temperature Superconductivity in Cuprates: The Nonlinear Mechanism and Tunneling Measurements | 1, 13 | Tinkham M. — Introduction to superconductivity | 9, 44—46, 197, 256—257, 286, 374 | Aitchison I.J.R. — An Informal Introduction to Gauge Field Theories | 100 | Appenzeller I. (ed.), Habing H.J. (ed.), Léna P. (ed.) — Evolution of Galaxies Astronomical Observations | 342 | Povh B., Rith K., Scholz C., Zetsche F. — Particles and nuclei. An introduction to the Physical Concepts | 159, 160, 305 | Roepstorf G. — Path integral approach to quantum physics | 269 | Brewer D.F. — Progress in Low Temperature Physics. Volume X | 10, 43 | Hugh D. Young, Roger A. Freedman — University physics with modern physics | 1460, 1476 | Morkoc H. — Advanced semiconductor and organic nano-techniques | 303 | Moriyasu K. — An Elementary Primer for Gauge Theory | see "Superconductor" | Abrikosov A.A., Gorkov L.P., Dzyalosliinski I.E. — Methods of quantum fields theory in statistical physics | 279, 285, 323 | Jahne B., Haubecker H. — Computer vision and applications | 105 | Dolan T.J. — Fusion Research: Principles, Experiments and Technology | 636 | Abrikosov A.A., Gоr'kov L.P., Dzyalosiiinskh I.Yk. — Quantum field theoretical methods in statistical physics | 279, 285, 323 | Davies P. — The New Physics | 226, 282—285, 288 | Collins P.D.B., Martin A.D., Squires E.J. — Particle Physics and Cosmology | 189 | Reichl L.E. — Modern Course in Statistical Physics | 408—409 | Unknown A. — Solid State Physics | 119 | Fetter A.L., Walecka J.D. — Quantum theory of many-particle systems | 320—326, 359—360, 417, 441 | Kittel C. — Introduction to solid state physics | 356, 656 | Liboff R.L. — Introductory quantum mechanics | 541 |
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