Êíèãà | Ñòðàíèöû äëÿ ïîèñêà |
Guillemin V., Pollack A. — Differential topology | 123 |
Bartle R.G. — The Elements of Real Analysis | 263 |
Rudin W. — Principles of Mathematical Analysis | 240 |
Apostol T.M. — Calculus (vol 2) | 304 |
Schmalzried H. — Chemical Kinetics of Solids | 101 |
Keisler H.J. — Elementary calculus | 690 |
Zinn-Justin J. — Quantum field theory and critical phenomena | 3, 58 |
Morse P., Feshbach H. — Methods of Theoretical Physics (part 1) | 440 (see also “Steepest descents, method of”) |
Morse P., Feshbach H. — Methods of Theoretical Physics (part 2) | 440 (see also “Steepest descents, method of”) |
Apostol T.M. — Mathematical Analysis | 377 |
Brauer F., Nohel J.A. — The qualitative theory of ordinary differential equations | 92, 95, 103, 171, 200, 219 |
Meirovitch L. — Methods of analytical dynamics | 182, 186, 191 |
Donea J., Huerta A. — Finite Element Methods for Flow Problems | 273, 277 |
Frenkel D., Smit B. — Understanding Molecular Simulation: from algorithms to applications | 462 |
Zienkiewicz O.C., Taylor L.R. — The finite element method (vol. 1, The basis) | 70, 76 |
Olver F.W.J. — Asymptotics and Special Functions | 126, 136 |
Henrici P. — Applied and Computational Complex Analysis (Vol. 2) | 417, 419, 420, 422, 423, 425, 428, 471 |
Jones D.S. — Introduction to Asymptotics: A Treatment Using Nonstandard Analysis | 27 |
Webster R. — Convexity | 188, 240 |
Nayfeh A.H. — Perturbation Methods | 252 |
Nayfeh A.H., Mook D.T. — Nonlinear Oscillations | 2, 44, 109, 113, 116, 131, 134, 172, 183, 190, 207, 208, 344, 348, 349 |
Griffiths H. — Surfaces | 85, 86 |
Fletcher R. — Practical methods of optimization. Volume 1: unconstrained optimization | 36 |
Miklowitz J. — The theory of elastic waves and waveguides | 265—266 |
Fletcher R. — Practical methods of optimization. Volume 2: constrained optimization | 48 |
Polya G., Szego G. — Problems and Theorems in Analysis: Integral Calculus. Theory of Functions | III 132, 131 |
Debnath L. — Nonlinear Partial Differential Equations for Scientists and Engineers | 304—305 |
Hand L.N., Finch J.D. — Analytical Mechanics | 53, 87 |
Ewing W.M., Jardetzky W.S., Press F. — Elastic waves in layered media | 365 |
Lim Ch., Nebus J. — Vorticity, Statistical Mechanics, and Monte Carlo Simulation | 47—49, 130, 131, 224, 226 |
Rumely R.S. — Capacity Theory on Algebraic Curves | 367 |
Fogiel M. — The Operations Research Problem Solver | 9—38, 10—18, 10—36, 13—11 to 13—27, 13—30 to 13—33 |
Liao X., Wang L., Yu P. — Stability of Dynamical Systems, Vol. 5 | 611, 612, 614, 647, 649, 652, 654 |
Lynch S. — Dynamical Systems with Applications Using Mathematica® | 44, 113 |
F.Giannessi, F.Giannessi — Constrained Optimization and Image Space Analysis | 13, 308, 313—315 |
Carr J. — Applications of Centre Manifold Theory | 67 |
Hogben L. — Handbook of Linear Algebra | 50—18 |
Polyanin A., Manzhirov A.V. — Handbook of Mathematics for Engineers and Scientists | 394 |
Jang J.-S.R., Sun Ch.-T., Muzutani E. — Neuro-Fuzzy and Soft Computing | 133, 137, 237 |
Coffin D. — Calculus on the HP-48G/GX | 248 |
Bapat R.B., Raghavan T.E., Rota G.C. (Ed) — Nonnegative Matrices and Applications | 55, 56 |
Jahn J. — Introduction to the Theory of Nonlinear Optimization | 168, 169, 170, 172 |
Strauss W.A. — Partial Differential Equations: An Introduction | 375 |
Aikawa H., Essen M. — Potential Theory - Selected Topics | 118 |
Bergh J., Teillaud M. (Ed) — Effective Computational Geometry for Curves and Surfaces | 223, 300 |
Samelson R.M., Wiggins S. — Lagrangian Transport in Geophysical Jets and Waves: The Dynamical Systems Approach | 21, 31 |
Mishra S.K., Giorgo G. — Invexity and Optimization | 104, 153 |
Ablowitz M.J., Fokas A.S. — Complex Variables: Introduction and Applications | 449 |
Quoc N.S. — Stability and nonlinear solid mechanics | 61 |
Lange K. — Optimization | 3, 6, 82, 199, 219 |
Shankar R. — Basic Training In Mathematics | 54 |
Rockmore D. — Stalking the Riemann Hypothesis: The Quest to Find the Hidden Law of Prime Numbers | 207 |
Weickert J. — Visualization and Processing of Tensor Fields: Proceedings of the Dagstuhl Workshop | 257, 259 |
Duistermaat J.J., Kolk J.A.C. — Multidimensional Real Analysis II: Integration | 74 |
Duistermaat J.J., Kolk J.A.C. — Multidimensional Real Analysis I(Cambridge Studies in Advanced Mathematics #86), Vol. 1 | 74 |
Packel E. — The Mathematics of Games and Gambling | 96, 99, 114 |
Khuri A.I. — Advanced calculus with applications in statistics | 114, 284, 344, 349 |
Eschrig H. — The Fundamentals of Density Functional Theory | 126 |
Chaikin P.M., Lubensky T.C. — Principles of condensed matter physics | 223—224, 624 |
Mihaly L., Martin M.C. — Solid state physics. Problems and solutions | 40, 162, 168 |
Sinha S.M. — Mathematical Programming: Theory and Methods | 189 |
Bowman K.O., Shenton L.R. — Continued Fractions in Statistical Applications | 38, 256, 263 |
Szekeres P. — A Course in Modern Mathematical Physics: Groups, Hilbert Space and Differential Geometry | 118 |
Lin C.C., Segel L.A. — Mathematics Applied to Deterministic Problems in the Natural Sciences | 340 |
Chipot M., Quittner P. — Stationary Partial Differential Equations, Vol. 1 | 390, 403, 436–438, 440, 463–465, 468, 470–475 |
Mahmoud H.M. — Sorting: a distribution theory | 55, 64, 67, 257, 281 |
Lanzcos C. — The Variational Principles of Mechanics | 37 |
Schroeder M.R. — Schroeder, Self Similarity: Chaos, Fractals, Power Laws | 256 |
Lay D.C. — Linear Algebra And Its Applications | 315 |
Robinson D.J.S. — A Course in Linear Algebra with Applications | 359 |
Duffie D. — Security Markets. Stochastic Models | 76 |
Gallier J. — Geometric Methods and Applications: For Computer Science and Engineering | 363 |
Gerstner W., Kistler W.M. — Spiking Neuron Models | 83 |
Karman T., Biot A.M. — Mathematical Methods in Engineering | 149, 153—157 |
Hilborn R.C. — Chaos and nonlinear dynamics | 80—83, 89—91, 126—128 |
Seitz F. — Modern Theory of Solids | 474 |
Knuth D.E. — The art of computer programming (Vol. 1. Fundamental algorithms) | 155 |
Intriligator M.D., Arrow K.J. — Handbook of Mathematical Economics (vol. 1) | 106 |
Demidenko E. — Mixed Models: Theory and Applications | 663 |
Aubin J.- P., Wilson S. — Optima and Equilibria: An Introduction to Nonlinear Analysis | 125—130, 134, 415 |
Bamberg P.G., Sternberg Sh. — A Course in Mathematics for Students of Physics: Volume 1 | 135 |
Strang G. — Linear Algebra and Its Applications | 326, 433, 437 |
Kühnel W., Hunt B. — Differential Geometry: Curves - Surfaces - Manifolds | 76 |
HyperChem Computational Chemistry | 65 |
Rockmore D. — Stalking the Riemann Hypothesis | 207 |
Mattheij R.M.M., Molenaar J. — Ordinary Differential Equations in Theory and Practice (Classics in Applied Mathematics) (No. 43) | 99 |
Allaire G. — Numerical Analysis and Optimization: An Introduction to Mathematical Modelling and Numerical Simulation | 317 |
Suykens J.A.K. — Least Squares Support Vector Machines | 32 |
Chan Man Fong C.F., De Kee D., Kaloni P.N. — Advanced Mathematics for Engineering and Sciences | 745 |
Kuttler K. — Calculus, Applications and Theory | 506 |
Wong K. — Asymptotic Approximations of Integrals | 86, 432 |
Schulman L.S. — Techniques and applications of path integration | 277 |
Nicolis G., Prigogine I. — Self-organization in nonequilibrium systems | 81 |
Antia H.M. — Numerical Methods for Scientists and Engineers | 359, 360, 364, 367, 376, 389, 733, 842 |
ter Haar D. — Elements of Statistical Mechanics | 107 |
Olver P.J., Shakiban C. — Applied linear. algebra | 468, 471 |
Bamberg P.G., Sternberg S. — A Course in Mathematics for Students of Physics, Vol. 1 | 135 |
Economou E.N. — Green's Functions in Quantum Physics | 91, 106, 107 |
Kreyszig E. — Advanced engineering mathematics | 143 |
Binmore K. — Fun and Games: A Text on Game Theory | 45, 221, 244 |
Gilmore R. — Lie Groups, Lie Algebras and Some of Their Applications | 208 |
Estrada R., Kanwal R.P. — A distributional approach to asymptotics theory and applications | 135 |
Knuth D.E. — The art of computer programming (vol. 1 Fundàmental algorithms) | 159 |
Mac Lane S., Birkhoff G.D. — Algebra | 350 |
Grosche C., Steiner F. — Handbook of Feynman path integrals | 16 |
Manton N., Sutcliffe P. — Topological solitons | 441 |
Attouch H., Buttazzo G., Michaille G. — Variational Analysis in Sobolev and BV Spaces: Applications to PDEs and Optimization | 354, 355 |
Amit D.J. — Field theory, the renormalization group, and critical phenomena | 137—142, 145, 328, 330 |
Nash C. — Differential Topology and Quantum Field Theory | 196—198 |
Hubbard J.R. — Theory and Problems of Programming with C++ | 156 |
Margenau H., Murphy G.M. — The mathematics of physics and chemistry | 460 |
Walley P. — Statistical reasoning with imprecise probabilities | 613, 619 |
Bazaraa M.S., Sherali H.D., Shetty C.M. — Nonlinear Programming: Theory and Algorithms | 172, 269 |
Friedrichs K. — Advanced ordinary differential equations | Fig. 2, 3, 4, 40, 41 |
Mullin T. — The nature of chaos | 59 |
Rektorys K. — Survey of applicable mathematics | 752 |
Simmons G.F. — Differential Equations with Applications and Historical Notes | 299 |
Lefschetz S. — Differential Equations: Geometric Theory | 186, 190 |
Bjoerck A., Dahlquist G. — Numerical mathematics and scientific computation | 403 |
Goertzel G. — Some Mathematical Methods of Physics | 288 |
Guckenheimer J., Holmes Ph. — Nonlinear Oscillations, Dynamical Systems, and Bifurcations of Vector Fields, Vol. 42 | 4 |
Bapat R.B., Raghavan T.E.S. — Nonnegative Matrices and Applications | 55, 56 |
Kinsey L.C. — Topology of surfaces | 229 |
Haken H. — Synergetics: an introduction | 115—117 |
Devaney R.L., Keen L. — Chaos and Fractals: The Mathematics Behind the Computer Graphics | 29 |
Poznyak A.S., Najim K., Gomez-Ramirez E. — Self-learning control of finite Markov chains | 53, 124 |
Morse P.M. — Methods of theoretical physics | 440 (see also Steepest descents, method of) |
Blunt L., Jiang X. — Advanced Techniques for Assessment Surface Topography: Development of a Basis for 3D Surface Texture Standards "Surfstand" | 47, 50 |
Chaikin P., Lubensky T. — Principles of condensed matter physics | 223—4, 624 |
Carroll R.W. — Mathematical physics | 269 |
Prigogine I. (ed.), Rice S.A. (ed.) — Advances in Chemical Physics. Volume XXXVI | 145, 149, 153, 155, 159—164 |
Audichya A. — Mathematics: Marvels and milestones | 154 |
Hadley G. — Linear programming | 413 |
Rektorys K. (ed.) — Survey of Applicable Mathematics | 752 |
Hsiung C.-C. — A first course in differential geometry | 19 |
Coffey W.T., Kalmykov Yu.P., Waldron J.T. — The Langevin equation | 97, 483 |
Bickel P., Doksum K. — Mathematical statistics | 199 |
Davis H.T. — Introduction to nonlinear differential and integral equations | 270, 314 |
Marder M.P. — Condensed matter physics | 162, 400 |
Hirsch M.W., Smale S. — Differential Equations, Dynamical Systems, and Linear Algebra | 190 |
Schreiber E. — Femtosecond real-time spectroscopy of small molecules and clusters | 159 |
Barbu V. — Analysis and control of nonlinear infinite dimensional systems | 8 |
Hinrichsen D., Pritchard A. — Mathematical Systems Theory I: Modelling, State Space Analysis, Stability and Robustness | 111 |
Antes H., Panagiotopoulos P.D. — The boundary integral approach to static and dynamic contact problem | 149, 156, 167, 178, 179, 199, 226 |
Hildebrand F.B. — Advanced Calculus for Applications | 351 |
Wong R. — Asymptotic approximations of integrals | 85, 432 |
De Bruijn N.G. — Asymptotic methods in analysis | 80 |
Cvitanovic P., Artuso R., Dahlqvist P. — Classical and quantum chaos | see "Stationary phase" |
Strang G. — Introduction to Applied Mathematics | 102, 134, 494, 705, 710 |
Intriligator M.D. — Mathematical optimization and economic theory | 56, 112 |
Oertel H. — Prandtl's Essentials of Fluid Mechanics (Applied Mathematical Sciences) | 57 |
Bluman G.W. — Similarity Methods for Differential Equations | 128, 293 |
Apostol T.M. — Calculus (Volume 2): Multi-Variable Calculus and Linear Algebra with Applications | 304 |
Greiner W. — Classical mechanics. Systems of particles and hamiltonian dynamics | 428, 454 |
Zeidler E. — Oxford User's Guide to Mathematics | 952, 1136 |
Fuchs M., Seregin G. — Variational Methods for Problems from Plasticity Theory and for Generalized Newtonian Fluids | 10, 24 |
Schott J.R. — Matrix Analysis for Statistics | 345 |
Arnold V.I. — Ordinary Differential Equations | 25 |
Mittra R., Lee S.W. — Analytical Techniques in the Theory of Guided Waves | 26 |
Rapoport A. — N-person game theory: Concepts and Applications | 60—63, 65, 73—75, 80 |
Murray J.D. — Asymptotic Analysis | 43 |
Rektorys K. — Survey of Applicable Mathematics.Volume 2. | II 27 |
Driver R.D. — Ordinary and delay differential equations | 419 |
Gullberg J. — Mathematics: from the birth of numbers | 816 |
Kaufmann A. — Graphs, dynamic programming, and finite games | 154, 408 |
Rao S.S. — Mechanical Vibrations | 637 |
Drmota M., Flajolet P., Gardy D. — Mathematics and computer science 3. Algorithms, trees, combinatorics and probabilities | 3 |
Kardar M. — Statistical physics of fields | 15, 24, 45, 264 |
Courant R. — Differential and Integral Calculus, Vol. 1 | 462 |
Lyons L. — All You Wanted to Know about Mathematics but Were Afraid to Ask - Mathematics for Science Students. Volume 1 | 232, 254—257, 261—273, 278, 285, 320 |
ter Haar D. — Elements of Statistical Mechanics | 107 |
Lord E., Wilson C. — The Mathematical Description of Shape and Form (Mathematics and Its Applications) | 80 |
Necas J., Hlavacek I. — Mathematical Theory of Elastic and Elastico-Plastic Bodies: An Introduction | 68, 258, 314 |
Cheney W. — Analysis for Applied Mathematics | 347 |
Lin C., Segel L. — Mathematics Applied to Deterministic Problems in the Natural Sciences | 340 |
Lin C., Segel L. — Mathematics Applied to Deterministic Problems in the Natural Sciences | 340 |
Apostol T. — Mathematical Analysis, Second Edition | 377 |
Lin C., Segel L. — Mathematics applied to deterministic problems in the natural sciences | 340 |
Nievergelt J., Farrar J.C., Reingold E.M. — Computer approaches to mathematical problems | 113—114, 116 |