Êíèãà | Ñòðàíèöû äëÿ ïîèñêà |
Weintraub S. — Differential Forms. A complement to vector calculus | |
Guillemin V., Pollack A. — Differential topology | 195 |
Ïîòåìêèí Â.Ã. — MatLab 5 äëÿ ñòóäåíòîâ | 238 |
Ãîâîðóõèí Â., Öèáóëèí Á. — Êîìïüþòåð â ìàòåìàòè÷åñêîì èññëåäîâàíèè | 224 |
Ïðîõîðîâ Ã.Â., Ëåäåíåâ Ì.À., Êîëáååâ Â.Â. — Ïàêåò ñèìâîëüíûõ âû÷èñëåíèé MAPLE 5 | 32 |
Ìàíçîí Á.Ì. — Maple V power edition | 214 |
Heinbockel J.H. — Introduction to tensor calculus and continuum mechanics | 17, 30, 40, 101, 127 |
Hunter J.K., Nachtergaele B. — Applied Analysis | 396 |
Spiegel M.R. — Mathematical Handbook of Formulas and Tables | 125 |
Goldschmidt D.M. — Algebraic Functions and Projective Curves | 51, 70 |
Rudin W. — Principles of Mathematical Analysis | 234 |
Misner C.W., Thorne K.S., Wheeler J.A. — Gravitation | 93, 148, 160f |
Soong T.T. — Fundamentals of probability and statistics for engineers | 149 |
Shorack G.R. — Probability for statisticians | 78, 190 |
Sertoz S. — Algebraic Geometry | 115 |
Ito K. — Encyclopedic Dictionary of Mathematics. Vol. 2 | 208.B |
Zinn-Justin J. — Quantum field theory and critical phenomena | 5, 10, 819, 828 |
Zinn-Justin J. — Quantum field theory and critical phenomena | 5, 10 |
Devroye L. — Generation of non-uniform random variates | 14 |
Haerdle W., Simar L. — Applied multivariate statistical analysis | 135 |
Gray R.M., Davisson L.D. — Introduction to statistical signal processing | 114 |
Meirovitch L. — Methods of analytical dynamics | 180, 336, 348 |
Oprea J. — Differential Geometry and Its Applications | 77, 316 |
Finlayson B.A. — Numerical Methods for Problems With Moving Fronts | 295, 297 |
Trottenberg U., Schuller A., Oosterlee C. — Multigrid | 149, 150, 158 |
Allgower E.L., Georg K. — Introduction to numerical continuation methods | see “Derivative” |
Bonet J., Wood R.D. — Nonlinear Continuum Mechanics for Finite Element Analysis | 74 |
Wesseling P. — An introduction to multigrid methods | 201, 215, 227 |
Eisenbud D., Harris J. — The Geometry of Schemes | 230, 231 |
Ferziger J.H., Peric M. — Computational Methods for Fluid Dynamics | 120 |
Frenkel D., Smit B. — Understanding Molecular Simulation: from algorithms to applications | 490 |
Kodaira K. — Complex manifolds and deformation of complex structures | 24 |
Peebles P.Z. — Probability, random variables, and random signal principles | 129 |
Dickson L.E. — Algebraic invariants | 12, 15, 18, 29, 65, 83, 93 |
Dolgachev I. — Lectures on Invariant Theory | 69 |
Zienkiewicz O.C., Taylor L.R. — The finite element method (vol. 1, The basis) | 210, 600, 650 |
Rudin W. — Real and Complex Analysis | 174, 221 |
Miranda R. — Graduate studies in mathematics (vol.5). Algebraic curves and Riemann surfaces | 248, 264, 319, 356 |
Dingle R. — Asymptotic Expansions: Their Derivation and Interpretation | 211 |
Casey J. — A treatise on the analytical geometry | 502, 517 |
Conte R. — Painleve Property: One Century Later | 605, 606 |
Buss S.R. — 3-D computer graphics. A mathematical introduction with openGL | 312, 313, 331 |
Millman R.S., Parker G.D. — Elements of Differential Geometry | 79, 201, 220 |
Gromov M. — Metric Structures for Riemannian and Non-Riemannian Spaces | A. |
Mumford D. — Abelian varieties | never used |
Widder D.V. — Advanced calculus | 22, 38, 200, 208, 209 |
Weinstock R. — Calculus of variations with applications to physics & engineering | 9—10, 136, 140—141, 293 |
Smirnov V.I. — Higher mathematics. Vol.2 | 176, 189, 240, 295 |
Ward R.S., Wells R.O. — Twistor geometry and field theory | 430, 432 |
Maeder R.E. — Computer science with mathematica | 182 |
Liboff R. — Kinetic Theory | 17 |
Newman M. — Integral Matrices | 91 |
Kecman V. — Learning and soft computing. Support vector machines, neural networks, and fuzzy logic models | 428—430 |
Ahlfors L.V. — Complex analysis | 25, 75 |
Chorin A., Marsden J. — A Mathematical Introduction to Fluid Mechanics | 8 |
Aris R. — Vectors, Tensors and the Basic Equations of Fluid Mechanics | 50, 137, 276 |
Brin M., Stuck G. — Introdution to dynamical system | 145 |
Freitaq — Several Complex Variables. Local Theory | 4, 64 |
Hand L.N., Finch J.D. — Analytical Mechanics | 203, 249—251, 432, 443—444, 452, 454, 241 (prob) |
Gupta M.M., Jin L., Homma N. — Static and dynamic neural networks | 366 |
Kythe P.K., Schaferkotter M.R. — Partial Differential Equations and Mathematica | 50, 52 |
Lim Ch., Nebus J. — Vorticity, Statistical Mechanics, and Monte Carlo Simulation | 87, 89, 247 |
Marchisotto E.A., Smith J.T. — Legacy of Mario Pieri in Geometry and Arithmetic | See under variety |
Braselton J.P. — Maple by Example | 505, 509 |
Rencher A.C., Barnett V., Bradley R.A. (Ed) — Multivariate Statistical Inference and Applications | 39 |
Bogachev V.I. — Measure Theory Vol.1 | 194, 379 |
Liao X., Wang L., Yu P. — Stability of Dynamical Systems, Vol. 5 | 593, 596, 598, 602, 606, 609, 615, 626, 627, 630, 632, 637, 643, 660 |
Lynch S. — Dynamical Systems with Applications Using Mathematica® | 134 |
Halmos P.R. — Measure Theory | 164 |
Parshin A.N., Shafarevich I.R. — Algebraic Geometry III : Complex Algebraic Varieties. Algebraic Curves and Their Jacobians | 80 |
Eisenbud D. — Computations in Algebraic Geometry with Macaulay 2 | 24 |
Balakrishnan N., Nevzorov V.B. — A Primer on Statistical Distributions | 24, 25, 186, 229, 267, 269—271, 275 |
Carr J. — Applications of Centre Manifold Theory | 3, 93—94, 132 |
Sagan H. — Advanced Calculus of Real-Valued Functions of a Real Variable and Vector-Valued Functions of a Vector Variable | 371 |
Polyanin A., Manzhirov A.V. — Handbook of Mathematics for Engineers and Scientists | 267, 321 |
Lectures on invariant theory | 69 |
Jang J.-S.R., Sun Ch.-T., Muzutani E. — Neuro-Fuzzy and Soft Computing | 100, see Jacobian matrix |
Jones G.A., Singerman D. — Complex Functions: An Algebraic and Geometric Viewpoint | 191 |
Sylvester J.J. — The Collected Mathematical Papers, Volume II | i 583 |
Debnath L. — Linear Partial Differential Equations for Scientists and Engineers | 411 |
Sokolnikoff I.S. — Advanced Calculus | 108, 136—147, 350—354 |
Cappe O., Ryden T., Moulines E. — Inference in Hidden Markov Models | 480, 486, 489—490 |
Weyl H. — The Classical Groups: Their Invariants and Representations, Vol. 1 | 240 |
Shafarevich I.R., Danilov V.I., Iskovskih V.A. — Algebraic Geometry II : Cohomology of Algebraic Varieties. Algebraic Surfaces (Encyclopaedia of Mathematical Sciences) | 101 |
Strauss W.A. — Partial Differential Equations: An Introduction | 4, 387 |
Hansen G.A., Zardecki A., Douglass R.A. — Mesh Enhancement: Selected Elliptic Methods, Foundations and Applications | 188 |
Crisfield M.A. — Non-Linear Finite Element Analysis of Solids and Structures. Vol. 1: Essentials | 137, 234, 272 |
Krantz S.G. — Function Theory of Several Complex Variables | 53 |
Gershenfeld N. — The Nature of Mathematical Modelling-Neil Gershenfeld | 48 |
Lang S. — Diophantine Geometry | 32, 102, 103 |
Pugh C.C. — Real Mathematical Analysis | 306 |
Montiel S., Ros A. — Curves and Surfaces | 76, 277 |
Eringen A.C. — Mechanics of continua | 8, 540 |
Shankar R. — Basic Training In Mathematics | 45, 65 |
O'Donnel P. — Introduction to 2-Spinors in General Relativity | 127, 132 |
Yamaguchi F. — Curves and surfaces in computer aided geometric design | 44, 60—62 |
Kline M. — Mathematical Thought from Ancient to Modern Times, Vol. 1 | 927 28 |
Akivis M., Goldberg V. — Differential Geometry of Varieties with Degenerate Gauss Maps | 99, 101, 195 |
Katok S. — Fuchsian Groups | 12 |
Hall B.C. — Lie Groups, Lie Algebras, and Representations: An Elementary Understanding | 237 |
Bykov V., Kytmanov A., Lazman M. — Elimination methods in polynomial computer algebra | 18 |
Duistermaat J.J., Kolk J.A.C. — Multidimensional Real Analysis II: Integration | 445 |
Stone C.J.D. — Course in Probability and Statistics | 252 |
Chaikin P.M., Lubensky T.C. — Principles of condensed matter physics | 342 |
Lawrynowicz J., Krzyz J. — Quasiconformal Mappings in the Plane: Parametncal Methods | 4 |
Lang S.A. — Undergraduate Analysis | 467 |
Sinha S.M. — Mathematical Programming: Theory and Methods | 23 |
Volakis J.L., Chatterjee A., Kempel L.C. — Finite element method for elecromagnetics | 42, 46 |
Cantwell B.J., Crighton D.G. (Ed), Ablowitz M.J. (Ed) — Introduction to Symmetry Analysis | 59 |
Kline M. — Mathematical Thought from Ancient to Modern Times, Vol. 3 | 927—928 |
Lin C.C., Segel L.A. — Mathematics Applied to Deterministic Problems in the Natural Sciences | 355 |
Lang S. — Real Analysis | 459 |
Ito K. — Encyclopedic Dictionary of Mathematics | 208.B |
Cohen A.M., Cuypers H., Sterk H. — Some tapas of computer algebra | 59 |
Mahmoud H.M. — Sorting: a distribution theory | 110 |
Morita S. — Geometry of differential forms | 5 |
Sokolnikoff I.S. — Higher Mathematics for Engineers and Physicists | 141, 183, 190 |
Rudin W. — Real and complex analysis | 150, 250 |
Golubitsky M., Guillemin V. — Stable Mappings and Their Singularities | 2, 13 |
Zauderer E. — Partial Differential Equations of Applied Mathematics | 50, 56, 64 |
Kuznetsov N., Mazya V., Vainberq B. — Linear Water Waves: A Mathematical Approach | 89, 200, 210 |
Sokolnikoff I.S. — Mathematics of Physics and Modern Engineering | 238, 212p, 271 |
Lang S. — Abelian Varieties | II, § 2, p. 33 |
Morita Sh. — Geometry of Differential Forms | 5 |
Poisson E. — A relativists toolkit | 12, 14, 36 |
Duffie D. — Security Markets. Stochastic Models | 78 |
Gray J. — Mastering Mathematica | 114, 189, 474, 535, 545, 555 |
Thevenin D. (Ed), Janiga G. (Ed) — Optimisation in Computational Fluid Dynamics | 63, 74—76, 120, 125 |
Greenberg M.D. — Advanced engineering mathematics | 649 |
Kythe P.K. — Fundamental Solutions for Differential Operators and Applications | 183 |
Craig J.J. — Introduction to Robotics Mechanic and Control | 8, 152, 169 |
O'Neill B. — Elementary differential geometry | 288, 294(Ex. 8), 296(Ex. 17) |
Sheil-Small T. — Complex polynomials | 61, 124 |
Phillips G.M. — Interpolation and Approximation by Polynomials | 190 |
Kline M. — Mathematical Thought from Ancient to Modern Times, Vol. 2 | 927—928 |
De Felice F., Clarke C.J.S. — Relativity on curved manifolds | 48 |
Klerk de E. — Aspects of Semidefinite Programming | 47 |
Lewis J.D. — CRM Monograph Series, vol.10: A Survey of the Hodge Conjecture | 292, 320 |
von zur Gathen J., Gerhard J. — Modern computer algebra | 423, 444, 595 |
Bogachev V.I. — Measure Theory Vol.2 | I: 194, 379 |
Yano K. — Differential geometry on complex and almost complex spaces | 1 |
Strichartz R.S. — The way of analysis | 709, 717 |
Kilmister C.W. — General theory of relativity | 40 |
Shapira Y. — Solving PDEs in C++: numerical methods in a unified object-oriented approach | 264 |
Kasner E., Newman J. — Mathematics and the Imagination | 298 |
Meeker W.Q., Escobar L. — Statistical Methods for Reliability Data | 619 |
Kühnel W., Hunt B. — Differential Geometry: Curves - Surfaces - Manifolds | 3 |
Dubrovin B.A., Fomenko A.T., Novikov S.P. — Modern Geometry - Methods and Applications. Part 1. The Geometry of Surfaces, Transformation Groups and Fields | 6 |
Shen Y.R. — The Principles of Nonlinear Optics | 104 |
Kubo R. — Statistical Mechanics: An Advanced Course with Problems and Solutions | 383 |
Guggenheimer H.W. — Differential Geometry | 104 |
Faugeras O., Luong Q., Papadopoulo T. — The Geometry of Multiple Images: The Laws That Govern the Formation of Multiple Images of a Scene and Some of Their Applications | 324, 325, 342, 486, 522, 523 |
Baladi V. — Positive Transfer Operators And Decay Of Correlations | 73, 111, 160 |
Koblitz N., Wu Y.-H., Menezes A.J. — Algebraic Aspects of Cryptography | 145, 168 |
Char B.W. — First Leaves: A Tutorial Introduction to Maple V | 99, 100 |
Visser M. — Lorentzian wormholes. From Einstein to Hawking | 298, 299 |
Logan J.D. — Invariant Variational Principles | 78 |
Fomenko À.Ò., Mishehenko A.S. — A Short Course in Differential Geometry and Topology | 4 |
Lee T.D. — Practicle physics and introduction to field theory | 425—426 |
Berger M., Cole M. (translator) — Geometry I (Universitext) | 4.9.4 |
Gröbner W., Knapp H, — Contributions to the method of Lie series | 47, 66, 68, 72, 81, 94 |
Cowan B. — Topics In Statistical Mechanics | 311 |
Stetter H. J. — Numerical polynomial algebra | 9 |
Jeffrey A., Taniuti T. — Mathematics in Science and Engineering: volume 9. Non-linear wave propagation | 67, 101, 352 |
Pope S.B. — Turbulent Flows | 15, 481, 496, 534 |
Duda R.O., Hart P.E., Stork D.G. — Pattern Classification | 8 |
Billingsley P. — Probability and Measure | 229, 253, 266 |
Grimmett G., Stirzaker D. — Probability and Random Processes | 108 |
Miller W. — Symmetry Groups and Their Applications | 163, 165, 177, 206 |
Searle S.R. — Matrix algebra useful for statistics | 338 |
Park D. — Introduction to the quantum theory | 499 |
Selvadurai A.P.S. — Partial Differential Equations in Mechanics 1: Fundamentals, Laplace's Equation, Diffusion Equation, Wave Equation | 127 |
Wright S. J. — Primal-dual interior-point methods | 6, 13, 127, 129, 164, 198, 241 |
Bolza O. — Lectures of the Calculus of Variations | 57 |
Audin M. — Torus Actions on Symplectic Manifolds | 152 |
Spiegel M.R. — Schaum's mathematical handbook of formulas and tables | 125 |
Chan Man Fong C.F., De Kee D., Kaloni P.N. — Advanced Mathematics for Engineering and Sciences | 21, 276, 317 |
Bayfield J.E. — Quantum Evolution: An Introduction to Time-Dependent Quantum Mechanics | 72 |
Lynch D.R. — Numerical Partial Differential Equations for Environmental Scientists and Engineers: A First Practical Course | 86 |
Kullback S. — Information theory and statistics | 325, 328, 384 |
Axellson O., Barker V.A. — Finite Element Solution of Boundary Value Problems. Theory and Computation | 189, 219, 225, 235, 237 |
Gray C.G., Gubbins K.E. — Theory of molecular fluids | 152—153 |
Mehta M.L. — Random Matrices | 51, 193 |
Antia H.M. — Numerical Methods for Scientists and Engineers | 325, 326, 327, 329, 331, 332, 344, 410, 558, 562, 567, 574, 832, 905, 911 |
Burger E.B. — Exploring the Number Jungle: A Journey into Diophantine Analysis | 84 |
Kreyszig E. — Advanced engineering mathematics | 436, 733 |
Coxeter H.S.M., Greitzer S.L. — Geometry revisited | 175 |
D'Inverno R. — Introducing Einstein's Relatvity | 58, 59, 67, 91, 103 |
Bhaya A., Kaszkurewicz E. — Control Perspectives on Numerical Algorithms and Matrix Problems | 45 |
Bertlmann R.A. — Anomalies in Quantum Field Theory | 251, 257, 259, 268, 270, 275—277, 410, 433—435 |
Arwini K. — Information Geometry: Near Randomness and Near Independence | 8, 10 |
Schlichenmaier M. — An Introduction to Riemann Surfaces, Algebraic Curves and Moduli Spaces | 52 |
Grosche C., Steiner F. — Handbook of Feynman path integrals | 79 |
Murrel J.N., Bosanac S.D. — Introduction to the Theory of Atomic and Molecular Collisions | 84, 173 |
Mihalas D., Mihalas B.W. — Foundations of Radiation Hydrodynamics | 22, 58—60, 442, 664—666 |
Kitahara M. — Boundary Integral Equation Methods in Eigenvalue Problems of Elastodynamics and Thin Plates | 108 |
Koblitz N., Menezes A.J. (Contributor), Wu Y.-H. (Contributor) — Algebraic Aspects of Cryptography | 145, 168 |
Trefethen L.N., Bau D. — Numerical Linear Algebra | 90, 132—133, 258 |
Lang S. — Real and Functional Analysis (Graduate Texts in Mathematics Series #142) | 503 |
Lang S. — Introduction to Algebraic and Abelian Functions | 59 |
Conte R. — The Painlevé property: One century later | 605, 606 |
Bell E.T. — The Development of Mathematics | 426 |
Tannehill J.C., Pletcher R.H., Anderson D.A. — Computational Fluid Mechanics and Heat Transfer | 25—26, 30, 91, 267, 340, 566—569, 577, 635—637, 683 |
Craig J.J. — Introduction to Robotics: Mechanics and Control | 8, 152, 169 |
Morrow J., Kodaira K. — Complex Manifolds | 5 |
Spiegel M.R. — Schaum's outline of theory and problems of probability and statistics | 46, 47, 56, 58, 59 |
Carmeli M. — Classical Fields: General Gravity and Gauge Theory | 21, 22, 35, 121, 555 |
Fordy A.P., Wood J.C. (eds.) — Harmonic maps and integrable systems | 136 |
Fantechi B., Gottsche L., Illusie L. — Fundamental Algebraic Geometry. Grothendieck's FGA Explained MAg | 241, 245 |
Johnson C. — Numerical solution of partial differential equations by the finite element method | 242 |
Astfalk G. — Applications on Advanced Architecture Computers | 103, 108, 111, 112, 248—251, 267 |
Williamson J.H. — Lebesgue Integration | 77 |
Balakrishnan N., Rao C.R. — Handbook of Statistics (Vol. 17): Order Statistics: Applications | 7 |
Bjoerck A., Dahlquist G. — Numerical mathematics and scientific computation | 443 |
Browder A. — Mathematical Analysis: An Introduction | 182, 294 |
Eisenbud D., Harris J. — The geometry of schemes (textbook draft) | 230, 231 |
Morita S. — Geometry of Differential Forms | 5 |
Goffman C. — Calculus of several variables | 162 |
Marks R.J.II. — The Joy of Fourier | 350 |
Goldenfeld N. — Lectures on Phase Transitions and the Renormalization Group | 128 |
Lang S. — Introduction to Algebraic and Abelian functions | 59 |
Novikov S.P., Fomenko A.T. — Basic elements of differential geometry and topology | 19 |
Hermann R. — Differential geometry and the calculus of variations | 51, 135, 138 |
Harman T.L., Dabney J.B., Richert N.J. — Advanced Engineering Mathematicas with MATLAB | 556, 657 |
Domb C.M., Green M. — Phase Transitions and Critical Phenomena: Series Expansion for Lattice Models, Vol. 3 | 144 |
Selig J.M. — Introductory robotics | 59—72, 79, 93—94, 109, 134, 139 |
Gelman A., Carlin J.B., Stern H.S. — Bayesian data analysis | 24 |
Thomas A.D. — Zeta functions, introduction to algebraic geometry | 103, 142, 177 |
Alder B., Fernbach S., Rotenberg M. — Methods in computational physics. Volume 3. Fundamental methods in hydrodynamics | 3, 141, 185 |
Barnett S.M., Radmore P.M. — Methods in Theoretical Quantum Optics | 74 |
Gantmacher F. — Lectures in Analytical Mechanics | 71, 74 |
Aliprantis C. — Principles of real analysis | 386 |
Yoo T.S. (ed.) — Insight into Images: Principles and Practice for Segmentation, Registration, and Image Analysis | 109, 248, 324, 326, 334, 336 |
Kythe P.K., Puri P. — Partial differential equations and Mathematica | 50, 52 |
Choquet-Bruhat Y., DeWitt-Morette C., Dillard-Bleick M. — Analysis, manifolds and physics. Part I. | 72 |
Eringen A.C., Suhubi E.S. — Elastodynamics (vol. 2) Linear theory | 958, 965 |
IItaka S. — Algebraic Geometry: An Introduction to Birational Geometry of Algebraic Varieties | 192 |
Dynkin E.B., Yushkevich A.A. — Markov processes; theorems and problems | 49, 224 |
Davis H. F., Snider A. D. — Introduction to Vector Analysis | 241, 266 |
Braden H.W., Krichever I.M. — Integrability: The Seiberg-Witten and Whitham Equations | 9, 19, 20, 33, 34, 36, 166, 218, 224 |
Hausner M., Schwartz J.T. — Lie groups, Lie algebras | 27 |
Tykodi R.J. — Thermodynamics of steady states | 29, 169 |
Demidovich B. (ed.) — Problems in mathematical analysis | 253, 264 |
Mitchell T.M. — Machine Learning | 354 |
Fantechi B., Kleiman S.L., Illusie L. — Fundamental Algebraic Geometry | 241, 245 |
Handelman D.E. — Positive Polynomials, Convex Integral Polytopes, and a Random Walk Problem | 124 |
Mehta M.L. — Matrix theory | 113 |
Belotserkovsky S.M., Lifanov I.K. — Method of Discrete Vortices | 89 |
Alder B. (ed.), Fernbach S. (ed.), Rotenberg M. (ed.) — Methods in computational physics: advances in research and applications. Volume 3. Fundamental methods in hydrodynamics | 3, 141, 185 |
Eddington A.S. — The mathematical theory of relativity | 108 |
Gelbaum B.R. — Problems in Real and Complex Analysis | s 6.1. 322, s 8.1. 386 |
Schulz F., Dold A. (Ed), Eckmann B. (Ed) — Regularity Theory for Quasilinear Elliptic Systems and Monge-Ampere Equations in Two Dimensions | 30, 53, 69, 92 |
Graham A. — Kronecker products and matrix calculus: with applications | 53, 109 |
Verdina J. — Projective Geometry and Point Tranformations | 184 |
Grimmett G., Welsh D. — Probability: An Introduction | 86 |
Hristev R.M. — The artificial neural network book | 164, 247 |
McQuarrie D.A. — Statistical Mechanics | 371, 422 |
Vasil'ev V. A., Sossinski A. — Introduction to Topology | 49 |
Chaikin P., Lubensky T. — Principles of condensed matter physics | 342 |
Kasner E., Newman J. — Mathematics and the imagination | 298 |
Krantz S.G. — Function theory of several complex variables | 53 |
Carroll R.W. — Mathematical physics | 53, 292, 355 |
Lang S. — Undergraduate analysis | 467 |
Avramidi I.G. — Heat Kernel and Quantum Gravity | 119, 120, 122 |
Ram-Mohan R. — Finite Element and Boundary Element Applications in Quantum Mechanics | 40 |
Smart N.P. — The algorithmic resolution of Diophantine equations | 214 |
Smart N.P. — The algorithmic resolution of Diophantine equations | 214 |
Ercolani N.M., Gabitov I.R., Levermore C.D. — Singular limits of dispersive waves | 106 |
Lauterborn W., Kurz T. — Coherent optics | 191 |
Lauterborn W., Kurz T. — Coherent optics | 191 |
Pommaret J.F. — Systems of partial differential equations and Lie pseudogroups | 7.1.7 |
Luenberger D.G. — Introduction to dynamic systems | 326 |
Tuynman G.M. — Supermanifolds and Supergroups: Basic Theory | 116 |
Bickel P., Doksum K. — Mathematical statistics | 485 |
Lane S.M. — Mathematics, form and function | 275 |
Hooft G.T. — Under the spell of the gauge principle | 13, 85 |
Percival D.B., Walden A.T. — Wavelet methods for time series analysis | 258, 261 |
Liu P.D., Qian M., Dold A. — Smooth Ergodic Theory of Random Dynamical Systems | 3 |
Antes H., Panagiotopoulos P.D. — The boundary integral approach to static and dynamic contact problem | 86 |
Devroye L. — Non-Uniform Random Variate Generation | 14 |
Ðàäèîðåëåéíàÿ ñòàíöèÿ òèïà Ð-414. Òåõíè÷åñêîå îïèñàíèå. Êíèãà âòîðàÿ | 5 |
Cvitanovic P., Artuso R., Dahlqvist P. — Classical and quantum chaos | 81, 99 |
Strang G. — Introduction to Applied Mathematics | 221, 374, 440, 497 |
Eddington A.S. — Mathematical Theory of Relativity | 108 |
Morley F., Morley F.V. — Inversive Geometry | 28, 30, 31, 35, 52, 67 |
Schutz B.F. — A first course in general relativity | 126, 127, 148, 157 |
Biedenharn L.C., Louck J.D. — Angular momentum in quantum physics | 561, 562 |
Blum E.K., Lototsky S.V. — Mathematics of Physics and Engineering | 148, 203 |
Bates Douglas M., Watts Donald G. — Nonlinear Regression Analysis and Its Applications (Wiley Series in Probability and Statistics) | 217 |
Vafa C., Zaslow E. — Mirror symmetry | 18 |
Bluman G.W. — Similarity Methods for Differential Equations | 165, 320 |
Kubo R. — Thermodynamics | 139 |
Lemm J.C. — Bayesian field theory | 90, 112, 168, 196 |
Collatz L. — Functional analysis and numerical mathematics | 275 |
Hodge W.V.D., Pedoe D. — Methods of Algebraic Geometry: Volume 1 | 133 |
Weld L.G. — Mathematical Monographs No. 3. Determinants | 48 |
Carter R.W. — Simple groups of Lie type | 134, 166 |
Hassani S. — Mathematical Methods: for Students of Physics and Related Fields | 207—210 |
Osche G.R. — Optical detection theory for laser applications | 24 |
Lee A. — Mathematics Applied to Continuum Mechanics | 148—149 |
Lemaitre J., Desmorat R. — Engineering Damage Mechanics: Ductile, Creep, Fatigue and Brittle Failures | 124 |
Rice J.A. — Mathematical statistics and data analysis | 98 |
Higham D.J., Higham N.J. — MATLAB guide | 284t |
Courant R. — Differential and Integral Calculus, Vol. 1 | 479, 480 |
Abhyankar S.S. — Lectures on Algebra Volume 1 | 650 |
Lyons L. — All You Wanted to Know about Mathematics but Were Afraid to Ask - Mathematics for Science Students. Volume 1 | 222—230, 319—320 |
Ivanov O.A. — Easy as Pi?: An Introduction to Higher Mathematics | 109, 116 |
Carr G.S. — Formulas and Theorems in Pure Mathematics | ths 1600—1609, AJ.3, thZ.10 |
Demidovich B.P., Maron I.A. — Computational Mathematics | 156, 657 |
Bonahon F. — Low-Dimensional Geometry: From Euclidean Surfaces to Hyperbolic Knots (Student Mathematical Library: Ias Park City Mathematical Subseries) | 238, 317 |
Shirley P., Ashikhmin M, Gleicher M. — Fundamentals of computer graphics | 363 |
Schutz B. — Geometrical Methods in Mathematical Physics | 9, 122, 129, 132 |
Cheney W. — Analysis for Applied Mathematics | 118 |
Young D.M., Gregory R.T. — A Survey of Numerical Mathematics, Volume 2 | 164, 963 |
Park D. — Introduction to the Quantum Theory (Pure & Applied Physics) | 499 |
Synge J. L. — Tensor Calculus | 6, 240 |
Tannehill J.C., Anderson D.A., Pletcher R.H. — Computational Fluid Mechanics and Heat Transfer | 25—26, 30, 91, 267, 340, 566—569, 577, 635—637, 683 |
Choquet-Bruhat Y., Dewitt-Morette C. — Analysis, manifolds and physics | 72 |
Griewank A. — Evaluating derivatives: principles and techniques of algorithmic differentiation | 121, 161, 201 |
Mac Lane S. — Mathematics: Form and Function | 275 |
Hogg R.V., Craig A.T. — Introduction to Mathematical Statistics | 179, 186, 224 |
Shafarevich I.R. (ed.) — Algebraic Geometry II: Cohomology of Algebraic Varieties. Algebraic Surfaces (Encyclopaedia of Mathematical Sciences. Volume 35) | 101 |
BertsekasD., Tsitsiklis J. — Neuro-Dynamic Programming (Optimization and Neural Computation Series, 3) | 465 |
Ãîâîðóõèí Â., Öèáóëèí Á. — Êîìïüþòåð â ìàòåìàòè÷åñêîì èññëåäîâàíèè | 224 |
Ãîâîðóõèí Â., Öèáóëèí Á. — Êîìïüþòåð â ìàòåìàòè÷åñêîì èññëåäîâàíèè - Maple, Matlab, LaTex | 224 |
Buckmaster J. — The Mathematics of combustion | 56, 58, 87 |
Lin C., Segel L. — Mathematics Applied to Deterministic Problems in the Natural Sciences | 355 |
Lin C., Segel L. — Mathematics Applied to Deterministic Problems in the Natural Sciences | 355 |
Markl M., Shnider S., Stasheff J. — Operads in Algebra, Topology and Physics | 20 |
Lin C., Segel L. — Mathematics applied to deterministic problems in the natural sciences | 355 |
Kline M. — Mathematical thought from ancient to modern times | 927, 928 |
Castillo J. — Mathematical Aspects of Numerical Grid Generation | 6, 11, 27, 31, 130 |
Lyndon R., Schupp P. — Combinatorial Group Theory (Classics in Mathematics) | 29, 99 |
Daniels R.W. — Introduction to numerical methods and optimization techniques | 240 |
Morita S. — Geometry of Differential Forms (Translations of Mathematical Monographs, Vol. 201) | 5 |
Jost J. — Bosonic Strings: A mathematical treatment | 70 |
Hoel P. — Introduction to Mathematical Statistics | 381 |
Robert E Marshak — Meson physics | 44, 300—301, 304 |