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Результат поиска |
Поиск книг, содержащих: Structure function
Книга | Страницы для поиска | Ross S.M. — Introduction to probability models | 476, 515 | Gomez C., Ruiz-Altaba M., Sierra G. — Quantum Groups in Two-Dimensional Physics | 289 | Ito K. — Encyclopedic Dictionary of Mathematics. Vol. 2 | 191.C | Olver P.J. — Equivalence, Invariants and Symmetry | 257, 261, 347, 433 | Frisch U. — Turbulence. The legacy of A.N. Kolmogorov | 139, 141, 151, 152; see also $\beta$-model, intermittency, K41, multifractal model | Taberling P. (ed.), Cardoso O. (ed.) — Turbulence: a tentative dictionary | 27, 28, 103, 125—127, 140, 145 | Biscamp D. — Magnetohydrodynamic turbulence | 137 | Brekhovskikh L.M., Lysanov Y.P. — Fundamentals of Ocean Acoustics | 19, 231 | Aitchison I.J.R., Hey A.J.G. — Gauge theories in particle physics. Volume 1: from relativistic quantum mechanics to QED | 251—253, 255—256 | Dorfman I. — Dirac Structures and Integrability of Nonlinear Evolution Equations | 96—100 | Chorin A.J. — Vorticity and turbulence | 40 | Chaikin P.M., Lubensky T.C. — Principles of condensed matter physics | 32 | Kadanoff L.P. — Statistical physics | 124, 287 | Gompper G., Schick M. — Self-Assembling Amphiphilic Systems | 43, 45, 47, 110, 116, 117, 119, 123 | Ito K. — Encyclopedic Dictionary of Mathematics | 191.C | Shiryaev A.N. — Probability | 425 | Kuo W., Zuo M.J. — Optimal Reliability Modeling: Principles and Applications | 87, 395 | Kyle T.G. — Atmospheric transmission, emission and scattering | 145, 146 | Barlow R.E., Proschan F. — Mathematical Theory of Reliability | 204 | Pollock D.H. (ed.) — The infrared & electro-optical systems handbook. Countermeasure systems | 414, 419, 421, 483 | Grimmett G., Stirzaker D. — Probability and Random Processes | 58 | Lebowitz J.L., Montroll E.W. — Nonequilibrium phenomena II. From stochastics to hydrodynamics | 53, 115 | Ike E.R., Sabatier P.C. (Ed) — Scattering: Scattering and Inverse Scattering in Pure and Applied Science | 469 | Tyson R.K. (ed.) — Adaptive optics engineering handbook | 202 | Shore S.N. — The Tapestry of Modern Astrophysics | 143—144, 626 | Kundt W. — Astrophysics. A Primer | 119 | Siegel W. — Fields | IXA2 | Bernard P.S., Wallace J.M. — Turbulent Flow: Analysis, Measurement and Prediction | 404 | Phillips P. — Advanced Solid State Physics | 130-134 | Cheng T.-P., Li L.-F. — Gauge Theory of Elementary Particle Physics | 138, 201, 204, 211-14, 305 (see also form factor, scaling, parton distribution function) | Thomas A.W., Weise W. — The structure of the nucleon | 28, 76, 137 | Alekseevskij D.V., Vinogradov A.M., Lychagin V.V. — Geometry I: Basic Ideas and Concepts of Differential Geometry | 186, 188 | Aitchison I.J.R. — An Informal Introduction to Gauge Field Theories | 155 | Mandel L., Wolf E. — Optical Coherence and Quantum Optics | 410 | Appenzeller I. (ed.), Habing H.J. (ed.), Léna P. (ed.) — Evolution of Galaxies Astronomical Observations | 258, 261 | Lena P., Lebrun F. — Observational Astrophysics (Astronomy and Astrophysics Library Series) | 55 | Siegel W. — Fields | IXA2 | Chaikin P., Lubensky T. — Principles of condensed matter physics | 32 | Khinchin A.Y. — Mathematical Foundations Of Quantum Statistics | 8, 88 | Biskamp D. — Magnetic Reconnection in Plasmas | 191 | Biskamp D. — Magnetohydrodynamic Turbulence | 137 | Greiner W. — Relativistic quantum mechanics. Wave equations | 252 | Borówko M. (ed.) — Computational Methods in Surface and Colloid Science | see "Structure factor" | Morandi G. — Statistical Mechanics: An Intermediate Course | 75 | Kane G.L. — Modern elementary particle physics | 135, 137, 205, 208, 210, 298 | Bettini A. — Introduction to Elementary Particle Physics | 205, 211 | Unknown A. — Solid State Physics | 64, 67—69 | Lipparini E. — Modern many-particle physics: atomic gases, quantum dots and quantum fluids | 313, 321 |
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