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Результат поиска |
Поиск книг, содержащих: Parabolic equation
Книга | Страницы для поиска | Siegman A.E. — Lasers | 339—343 (see also “Nonlinear Schrodinger equation”) | Bathe K.-J. — Finite element procedures | 106 | Olver P.J. — Equivalence, Invariants and Symmetry | 211 | Golub G.H., Ortega J.M. — Scientific Computing and Differential Equations : An Introduction to Numerical Methods | 247, 252 | Mathews J.H., Fink K.D. — Numerical Methods Using MATLAB | 526 | Zienkiewicz O.C., Taylor L.R. — The finite element method (vol. 1, The basis) | 468 | Nayfeh A.H. — Perturbation Methods | 37, 38, 99, 379 | Debnath L. — Nonlinear Partial Differential Equations for Scientists and Engineers | 12, 284 | Wilmott P., Bowison S., DeWynne J. — Option Pricing: Mathematical Models and Computation | 45, 80 | Machel A.N., Wang K. — Qualitative Theory of Dynamical Systems: The Role of Stability Preserving Mappings | 86, 92, 369 see also linear parabolic equation and nonlinear parabolic equation | Polyanin A., Manzhirov A.V. — Handbook of Mathematics for Engineers and Scientists | 585, 590 | Debnath L. — Linear Partial Differential Equations for Scientists and Engineers | 111 | Drmac Z. (ed.), Tutek Z. (ed.), Marusic M. (ed.) — Proceedings of the Conference on Applied Mathematics and Scientific Computing | 161 | Brekhovskikh L.M., Lysanov Y.P. — Fundamentals of Ocean Acoustics | 164 | Alexiades V. — Mathematical Modeling of Melting and Freezing Processes | 15 | Egorov Y.U. (Ed), Gamkrelidze R.V. (Ed) — Partial Differential Equations I: Foundations of the Classical Theory | 38 | Zauderer E. — Partial Differential Equations of Applied Mathematics | 113, 124, 141, 165, 168, 202, 328, 345, 390, 417, 587, 620, 625, 679, 680, 682, 780 | Jeffrey A., Taniuti T. — Mathematics in Science and Engineering: volume 9. Non-linear wave propagation | 6 | Corduneanu C., Gheorghiu N., Barbu V. — Almost Periodic Function | 144 | Kincaid D., Cheney W. — Numerical analysis: mathematics of scientific computing | 572, 580, 607 | Egorov Y.V., Shubin M.A. — Partial Differential Equations I (Foundations of the Classical) | 38 | Shafer G., Vovk V. — Probability and finance | 221 | Neubrander F. (Ed), Ferreyra G.S. (Ed) — Evolution Equations, Vol. 168 | 35 | Nash C. — Differential Topology and Quantum Field Theory | 31, 33—34 | Wilmott P., Howison S., Dewynne J. — The Mathematics of Financial Derivatives : A Student Introduction | 45, 60 | Ladyzhenskaya O.A. — The Boundary Value Problems Of Mathematical Physics | 103—146, 247—253, 271—281 | Haraux A. — Nonlinear Evolution Equations - Global Behavior of Solutions | 88, 96, 164—172, 241—248, 285—290 | Curle N., Davies H. — Modern Fluid Dynamics. Compressible flow | 67 | Saul'yev V.K. — Integration of Equations of Parabolic Type By the Method of Nets | 3, & passim | Ralston A., Wilf H.S. — Mathematical methods for digital computers | 216 | Gloub G.H., Ortega J.M. — Scientific Computing and Differential Equations | 247, 252 | Zhang B. G., Yong Z. — Qualitative analysis of delay partial difference equations | 237 | Choquet-Bruhat Y., DeWitt-Morette C., Dillard-Bleick M. — Analysis, manifolds and physics. Part I. | 494, 510 | Achmanov S.A., Nikitin S.Yu. — Physical Optics | 270 | Fox L., Parker I.B. — Chebyshev Polynomials in Numerical Analysis | 163, 167 | Adams D.R., Hedberg L.I. — Function spaces and potential theory | 182 | Blum E.K., Lototsky S.V. — Mathematics of Physics and Engineering | 319 | Lasota A., Mackey M.C. — Probabilistic Properties of Deterministic Systems | 326 | Pier J.-P. — Mathematical Analysis during the 20th Century | 232, 241 | Collatz L. — Functional analysis and numerical mathematics | 393 | Kloeden P/, Platen E., Schurz H. — Numerical solution of SDE through computer experiments | 247 | Akhmanov S.A., Nikitin S.Yu. — Physical Optics | 270 | Flanders H. — Differential Forms with Applications to the Physical Sciences | 90 | Young D.M., Gregory R.T. — A Survey of Numerical Mathematics, Volume 2 | 951 | Choquet-Bruhat Y., Dewitt-Morette C. — Analysis, manifolds and physics | 494, 510 | Logan J. — Applied Mathematics: A Contemporary Approach | 155, 157 | Vretblad A. — Fourier Analysis and Its Applications (Graduate Texts in Mathematics) | 2 |
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