Êíèãà | Ñòðàíèöû äëÿ ïîèñêà |
Kharazishvili A.B. — Strange functions in real analysis | |
Bartle R.G. — The Elements of Real Analysis | 169 |
Fritz J. — Lectures on advanced numerical analysis | 61 |
Apostol T.M. — Calculus (vol 2) | 229 |
Shorack G.R. — Probability for statisticians | 74, 540 |
Ito K. — Encyclopedic Dictionary of Mathematics. Vol. 2 | 84.A 163.D 286.B 316.D |
Devroye L. — Generation of non-uniform random variates | 63, 320 |
Fisher Y. — Fractal Image Compression. Theory and Application | 50 |
Pollard D. — Convergence of Stochastic Processes | 45, 74, 101 |
Ames W.F. — Numerical methods for Partial Differential Equations | 337 |
Bulirsch R., Stoer J. — Introduction to numerical analysis | 88, 323, 430ff, 442 |
Apostol T.M. — Mathematical Analysis | 121 (Ex. 5.1), 137 (Ex. 6.2), 316 |
Brauer F., Nohel J.A. — The qualitative theory of ordinary differential equations | 112, 115, 117, 119, 123, 125, 126, 139, 140 |
Meirovitch L. — Methods of analytical dynamics | 174, 178 |
Mathews J.H., Fink K.D. — Numerical Methods Using MATLAB | 430 |
Henrici P. — Elements of numerical analysis | 63, 100, 265, 270, 282 |
Alon N., Spenser J. — The probabilistic method | 96—100, 103—104 |
Shampine L.F., Allen R.C., Pruess Jr.S. — Fundamentals of numerical computing | 211 |
Garnett J.B. — Bounded Analytic Functions | 90 |
Lightstone A.H., Robinson A. — Nonarchimedean Fields and Asymptotic Expansions | 102 |
Bender C., Orszag S. — Advanced Mathematical Methods for Scientists and Engineers | 30, 31 |
Bochner S., Martin W.T. — Several Complex Variables | 171 |
Rudin W. — Real and Complex Analysis | 114 |
Georgescu A. — Asymptotic Treatment of Differential Equations | 172 |
Graves L.M. — Theory of Functions of Real Variables | 118, 136, 203 |
Webster R. — Convexity | 44 |
Pommerenke C. — Univalent functions (Studia mathematica) | 299 |
Smirnov V.I. — Higher mathematics. Vol.2 | 150 |
Tao G. — Adaptive control design and analysis | 36 |
Szego G. — Orthogonal polynomials | 6, 162, 163, 186 |
Kriegl A., Michor P.W. — The Convenient Setting of Global Analysis | 9 |
Davies E. — Spectral Theory and Differential Operators | 124 |
Bellman R. — Methods of nonlinear analysis (Vol. 1) | 141 |
Behnke H., Bachmann F., Fladt K. — Fundamentals of Mathematics, Volume III: Analysis | 279, 281, 291, 292, 425, 426 |
Kythe P.K., Schaferkotter M.R. — Partial Differential Equations and Mathematica | 99 |
Lynch S. — Dynamical Systems with Applications Using Mathematica® | 32 |
Garnett J.B. — Bounded Analytic Functions | 87 |
Machel A.N., Wang K. — Qualitative Theory of Dynamical Systems: The Role of Stability Preserving Mappings | 48, 64, 217 |
Kurtz D.S., Swartz C.W. — Theories of Integration | 35 |
Polyanin A., Manzhirov A.V. — Handbook of Mathematics for Engineers and Scientists | 248, 310, 313, 454, 488, 543, 584 |
Hansen G.A., Zardecki A., Douglass R.A. — Mesh Enhancement: Selected Elliptic Methods, Foundations and Applications | 131 |
Broer H.W., Huitema G.B. — Quasi-Periodic Motions in Families of Dynamical Systems, Vol. 164 | 155 |
Ablowitz M.J., Fokas A.S. — Complex Variables: Introduction and Applications | 517 |
Wicker S.B., Kim S. — Fundamentals of Codes, Graphs, and Iterative Decoding | 85, 86 |
Berberian S.K. — Fundamentals of Real Analysis | 206, 270, 328, 410 |
Pugh C.C. — Real Mathematical Analysis | 142, 170, 195, 230 |
Malliaris A.G., Brock W.A. — Stochastic methods in economics and finance | 94, 162 |
Ratcliffe J.G. — Foundations of Hyperbolic Manifolds | 580 |
Koblitz N. — p-adic numbers, p-adic analysis, and zeta-functions | 41 |
Khuri A.I. — Advanced calculus with applications in statistics | 75 |
Delves L.M. (ed.), Walsh J. (ed.) — Numerical Solution of Integral Equations | 140, 153, 213, 214, 230, 258 |
Kaczor W.J. — Problems in Mathematical Analysis III: Integration | 114 |
Domb C., Green M.S. (eds.) — Phase Transitions and Critical Phenomena (Vol. 1) | 95 |
Polya G. — Problems and Theorems in Analysis: Theory of Functions. Zeros. Polynomials. Determinants. Number Theory. Geometry | IX 25 162 |
Motwani R., Raghavan P. — Randomized algorithms | 93 |
Vapnik V. — Estimation of dependences based on empirical data | 294, 298, 299 |
Lang S.A. — Undergraduate Analysis | 74, 174, 320, 540, 578 |
Rall D. — Computational Solution to Nonlinear Operator Equations | 73 |
Lin C.C., Segel L.A. — Mathematics Applied to Deterministic Problems in the Natural Sciences | 57 |
Lang S. — Real Analysis | 133, 453 |
Ito K. — Encyclopedic Dictionary of Mathematics | 84.A, 163.D, 286.B, 316.D |
Milovanovic G.V., Mitrinovic D.S., Rassias T.M. — Topics in Polynomials: Extremal Problems, Inequalities, Zeros | 138 |
Burn R.P. — Numbers and Functions: Steps to Analysis | 7.42, 9.18, 10.50, 11.18 |
Shiryaev A.N. — Probability | 512 |
Bellman R. — Stability Theory of Differential Equations | 71 |
Borovkov A.A. — Ergodicity and Stability of Stochastic Processes | 124, 411, 503 |
Rudin W. — Real and complex analysis | 113 |
Kuznetsov N., Mazya V., Vainberq B. — Linear Water Waves: A Mathematical Approach | 71, 253, 254 |
Kress R., Gehring F.W. — Numerical Analysis | 228 |
Sokolnikoff I.S. — Mathematics of Physics and Modern Engineering | 38 |
Giorgi G., Thierfelder J. — Mathematics of Optimization: Smooth and Nonsmooth Case | 17 |
Duffie D. — Security Markets. Stochastic Models | 225 |
von Neumann John, Morgenstern Oscar — Theory of games and economic behavior | 493 |
Denker M., Grillenberger Ch., Sigmund K. — Ergodic Theory on Compact Spaces | 87 |
Bachman G., Beckenstein E. — Fourier And Wavelet Analysis | 166, 186 |
David H., Nagaraja H. — Order Statistics (Wiley Series in Probability and Statistics) | 333 |
Weir A.J. — Lebesgue Integration and Measure | 69 |
Chabert J.-L., Weeks C., Barbin E. — A History of Algorithms: From the Pebble to the Microchip | 378 |
Strichartz R.S. — The way of analysis | 123, 129,138, 139, 149, 163, 232, 274, 397, 421, 469, 578 |
Kolmogorov A.N., Fomin S.V. — Introductory real analysis | 55 |
Sanders J.A., Verhulst F. — Averaging methods in nonlinear dynamical systems | 2, 3 |
Havin V.P., Nikolski N.K. (eds.) — Linear and Complex Analysis Problem Book 3 (part 2) | 3.2, 10.23 |
Spivak M. — A Comprehensive Introduction to Differential Geometry (Vol.1) | 138 |
Munkres J.R. — Analysis on manifolds | 160 |
Ascher U.M., Russell R.D., Mattheij R.M. — Numerical Solution of Boundary Value Problems for Ordinary Differential Equations | 88 |
Arnold B.C., Balakrishnan N., Nagaraja H.N. — A First Course in Order statistics | 229 |
Titchmarsh E.C. — Introduction to the theory of Fourier integrals | 115, 145 |
Bhatia N.P., Szego G.P. — Dynamical Systems: Stability Theory and Applications | 3.1.17 |
Gröbner W., Knapp H, — Contributions to the method of Lie series | 54 |
Adomian George — Nonlinear stochastic operator equations | 135, 283 |
von Neumann J. — Continuous Geometry | 232 |
Billingsley P. — Probability and Measure | 31.17 |
Kincaid D., Cheney W. — Numerical analysis: mathematics of scientific computing | 488 |
Kuttler K. — Calculus, Applications and Theory | 362 |
Bracewell R.N. — The Fourier Transform and its applications | 9 |
Rogosinski W. — Fourier Series | 69 |
Beardon A.F., Axler S. (Ed) — Iteration of Rational Functions | 32 |
Schulman L.S. — Techniques and applications of path integration | 319 |
Mehta M.L. — Random Matrices | 339 |
Antia H.M. — Numerical Methods for Scientists and Engineers | 744 |
Wheeden R.L., Zygmund A. — Measure and integral. An introduction to real analysis | 16, 115 |
Krantz S.G. — Handbook of Real Variables | 153 |
Kreyszig E. — Advanced engineering mathematics | 40 |
Simmons G.F. — Introduction to topology and modern analysis | 339 |
Butcher J. — Numerical Methods for Ordinary Differential Equations | 23, 59 |
Alexits G., Sneddon I.N. — Convergence Problems of Orthogonal Series | 29 |
Ash R.B., Doléans-Dade C.A. — Probability and Measure Theory | 81 |
Bluman G.W. — Problem Book for First Year Calculus | 231, [VII.19] |
Wimp J. — Computation with recurrence relations | 218 |
Saxe K. — Beginning functional analysis | 163 |
Janson S., Rucinski A., Luczak T. — Random Graphs | 38 |
Lang S. — Real and Functional Analysis (Graduate Texts in Mathematics Series #142) | 366, 497 |
Widder D.V. — The Laplace transform | 72, 75 |
Balakrishnan N. (ed.), Rao C.R. (ed.) — Order Statistics - Theory and Methods | 472 |
Titchmarsh E.C. — The Theory of Functions | 13.231. 13.72 |
Chepyzhov V.V., Vishik M.I. — Attractors for equations of mathematical physics | 165 |
Drmota M., Tichy R.F. — Sequences, Discrepancies and Applications | 6, 149, 208 |
Korner T.W. — Exercises in Fourier Analysis | 87—88 |
Bazaraa M.S., Sherali H.D., Shetty C.M. — Nonlinear Programming: Theory and Algorithms | 434 |
Àìåíçàäå Þ.À. — Òåîðèÿ óïðóãîñòè | 147 |
van Dijk N. — Handbook of Statistics 16: Order Statistics: Theory & Methods | 472 |
Moerdijk I., Reyes G.E. — Models for smooth infinitesimal analysis | 312 |
Rektorys K. — Survey of applicable mathematics | 734-5 |
Simmons G.F. — Differential Equations with Applications and Historical Notes | 428 |
Socha L. — Linearization Methods for Stochastic Dynamic Systems | 36 |
Bridges D.S. — Foundations Of Real And Abstract Analysis | 143, 219 |
Lefschetz S. — Differential Equations: Geometric Theory | 30 |
Herriot J.G. — Methods of mathematical analysis and computation | 119 |
Sokolnikoff I.S. — Mathematical Theory of Elasticity | 164 |
Grenander U. — Toeplitz Forms and Their Applications | 15 |
Beardon A.F. — Iteration of rational functions | 32 |
Bjoerck A., Dahlquist G. — Numerical mathematics and scientific computation | 443 |
Adomian G. — Stochastic Systems | 238, 245 |
Browder A. — Mathematical Analysis: An Introduction | 138 |
Bracewell R. — The Fourier Transform and Its Applications | 9 |
Saul'yev V.K. — Integration of Equations of Parabolic Type By the Method of Nets | 182 |
Denn M. — Optimization by variational methods | 222 |
Goffman C., Pedrick G. — First course in functional analysis | 17 |
Cordes H. — Elliptic Pseudo-Differential Operators - An Abstract Theory | 8 |
Valentine F.A. — Convex Sets | 168 |
Kreyszig E. — Introductory functional analysis with applications | 307, 315 |
Argyros I. — Computational Theory of Iterative Methods | 150 |
Hu S.-T. — Introduction to contemporary mathematics | 183 |
Adler R.J. — Geometry of random fields | 192 |
Rice J.R. — Linear Theory. Volume 1. The approximation of functions | 67 |
Aliprantis C. — Principles of real analysis | 145, 383 |
Przeworska-Rolewicz D., Rolewicz S. — Equations in linear spaces | 24 |
Kythe P.K., Puri P. — Partial differential equations and Mathematica | 99 |
Antsaklis P.S., Michel A.N. — Linear Systems | 30, 45 |
Rogers C.A. — Hausdorff Measures | 149, 159—165 |
Demidovich B. (ed.) — Problems in mathematical analysis | 385 |
Collatz L. — The numerical treatment of differential equations | 40, 53, 110, 117 |
Bailey P.B. — Nonlinear Two Point Boundary Value Problems | 1—5 |
Almgren F.J. — Plateau's Problem: An Invitation to Varifold Geometry | 14—15, 21 |
Carroll R.W. — Mathematical physics | 74 |
Lang S. — Undergraduate analysis | 74, 174, 320, 540, 578 |
Khinchin A.Y. — Mathematical Foundations Of Quantum Statistics | 184 |
Rektorys K. (ed.) — Survey of Applicable Mathematics | 734—735 |
Kept R. — Fundamentals of the Average Case Analysis of Particular Algorithms | 199 |
Lane S.M. — Mathematics, form and function | 162 |
Tenenbaum M., Pollard H. — Ordinary differential equations: an elementary textbook for students of mathematics, engineering, and the sciences | 731, 734, 764, 766 |
Cloud M.J., Drachman B.C. — Inequalities: with applications to engineering | 33, 117 |
Devroye L. — Non-Uniform Random Variate Generation | 63, 320 |
Kanwal R.P. — Linear Integral Equations: Theory and Techniques | 175 |
Behnke H., Bachmann F., Fladt K. — Fundamentals of mathematics. Volume III. Analysis | 279, 281, 291, 292, 425, 426 |
Intriligator M.D. — Mathematical optimization and economic theory | 469 |
Apostol T.M. — Calculus (Volume 2): Multi-Variable Calculus and Linear Algebra with Applications | 229 |
Cohen G.L. — A Course in Modern Analysis and Its Applications | 118 |
Arnold V.I. — Ordinary Differential Equations | 21 |
Stoll W. — Value Distribution Of Holomorphic Maps Into Compact Complex Manifolds | 33 |
Rektorys K. — Survey of Applicable Mathematics.Volume 2. | II 6, II 671 |
Burden R.L., Faires J.D. — Numerical analysis | 12, 234, 295 |
Nikolsky S.M. — A Course of Mathematical Analysis (Vol. 2) | 204 |
Cheney W. — Analysis for Applied Mathematics | 120, 178, 180 |
Young D.M., Gregory R.T. — A Survey of Numerical Mathematics, Volume 2 | 123, 425, 436—437, 442, 486, 494, 577, 580 |
Mac Lane S. — Mathematics: Form and Function | 162 |
Koblitz N. — P-adic Numbers, p-adic Analysis, and Zeta-Functions, 2nd ed. (Graduate Texts in Mathematics) | 41 |
Lin C., Segel L. — Mathematics Applied to Deterministic Problems in the Natural Sciences | 57 |
Apostol T. — Mathematical Analysis, Second Edition | 121, 137, 316 |
Lin C., Segel L. — Mathematics applied to deterministic problems in the natural sciences | 57 |
Morrey C. — Multiple integrals in the calculus of variations | 4 |
Dennery P., Krzywicki A. — Mathematics for Physicists | 258 |
Goursat E. — A course in mathematical analysis. Volume 2, part 2: Differential equations | 68, 30; 287, 94 |
Pallaschke D., Rolewicz S. — Foundations of Mathematical Optimization. Convex Analysis without Linearity | 59, 143 |
Giorgi G., Guerraggio A., Thierfelder J. — Mathematics of optimization | 17 |
Georgescu A. — Asymptotic Treatment of Differential Equations (Applied Mathematics) | 172 |