Êíèãà | Ñòðàíèöû äëÿ ïîèñêà |
Guillemin V., Pollack A. — Differential topology | 8 |
Hunter J.K., Nachtergaele B. — Applied Analysis | 387 |
van der Dries L. — Tame topology and O-minimal structures | 108 |
Apostol T.M. — Calculus (vol 2) | 271 |
Press W.H., Teukolsky S.A., Vetterling W.T. — Numerical recipes in FORTRAN77 | 374, 376, 379, 382, 731, 1197f., 1309 |
Ito K. — Encyclopedic Dictionary of Mathematics. Vol. 2 | 208.B |
Ogata K. — Modern Control Engineering | 905 |
Bulirsch R., Stoer J. — Introduction to numerical analysis | 13, 15ff, 263, 269 |
Ben-Israel A., Greville T. — Generalized inverses: Theory and applications | 265, 280 |
Olver P.J. — Equivalence, Invariants and Symmetry | 11, 22, 26, 176, 423, 438 |
Saad Y. — Numerical Methods for Large Eigenvalue Problems | 314 |
Golub G.H., Ortega J.M. — Scientific Computing and Differential Equations : An Introduction to Numerical Methods | 168 |
Crisfield M.A. — Non-Linear Finite Element Analysis of Solids and Structures. Vol. 2: Advanced Topics | 33—34, 41, 48 |
Stein E. (ed.), Ramm E. — Error-controlled adaptive finite elements in solid mechanics | 273, 275 |
Smith I.M., Griffiths D.V. — Programming the finite element method | 61 |
Enns R.H., Mc Guire G.C. — Nonlinear physics with mathematica for scientists and engineers | 135, 397 |
Mathews J.H., Fink K.D. — Numerical Methods Using MATLAB | 170, 176 |
Henrici P. — Elements of numerical analysis | 104 |
Schenck H. — Computational algebraic geometry | 171 |
Kodaira K. — Complex manifolds and deformation of complex structures | 24 |
Wedderburn J.H.M. — Lectures on Matrices | 132 |
Baker A. — Matrix Groups: An Introduction to Lie Group Theory | 184 |
Lutkepohl H. — Handbook of Matrices | 173, 183, 254 |
Hyvarinen A. — Independent Component Analysis | 58 |
Coutinho S.C. — A primer of algebraic D-modules | 28 |
Zienkiewicz O.C., Taylor L.R. — The finite element method (vol. 1, The basis) | 209, 290 |
Zienkiewicz O.C., Taylor L.R. — The finite element method (vol. 2, Solid mechanics) | 26, 273 |
Eisenbud D. — Commutative algebra with a view toward algebraic geometry | 402 |
Henrici P. — Applied and Computational Complex Analysis (Vol. 2) | 78 |
Abell M.L., Braselton J.P. — Mathematica by Example | 451 |
Berkovitz L.D. — Convexity and Optimization in Rn | 25, 165 |
Lee J.M. — Introduction to Smooth Manifolds | 51, 425 |
Isham J. — Modern Differential Geometry for Physics | 88 |
Nayfeh A.H. — Perturbation Methods | 202 |
Ward R.S., Wells R.O. — Twistor geometry and field theory | 15, 344 |
Murnaghan F.D. — Finite deformation of an elastic solid | 3 |
Williamson R.E., Crowell R.H., Trotter H.F. — Calculus of vector functions | 146 |
Watkins D. — Fundamentals of matrix computations | 299 |
Fletcher R. — Practical methods of optimization. Volume 1: unconstrained optimization | 92 |
Fletcher R. — Practical methods of optimization. Volume 2: constrained optimization | 3 |
Chorin A., Marsden J. — A Mathematical Introduction to Fluid Mechanics | 24 |
Voisin C. — Hodge theory and complex algebraic geometry 1 | 41 |
Bellman R. — Methods of nonlinear analysis (Vol. 1) | 64 |
Debnath L., Mikusinski P. — Introduction to Hilbert Spaces with Applications | 414 |
Gupta M.M., Jin L., Homma N. — Static and dynamic neural networks | 203 |
Hamilton J.D. — Time Series Analysis | 737 |
Rumely R.S. — Capacity Theory on Algebraic Curves | 31, 32, 37 |
Braselton J.P. — Maple by Example | 505, 515 |
Fogiel M. — The Operations Research Problem Solver | 10—23, 10—25, 10—43 |
Sepanski R.M. — Compact Lie Groups | 24 |
Le Bruyn L. — Noncommutative geometry | 81, 123 |
Eisenbud D. — Computations in Algebraic Geometry with Macaulay 2 | 24 |
Sagan H. — Advanced Calculus of Real-Valued Functions of a Real Variable and Vector-Valued Functions of a Vector Variable | 324 |
Brown R.F., Gorniewicz L., Jiang B. — Handbook of Topological Fixed Point Theory | 190 |
Kohonen T. — Self-organizing maps | 300 |
Jang J.-S.R., Sun Ch.-T., Muzutani E. — Neuro-Fuzzy and Soft Computing | 100, 161, 467 |
Coffin D. — Calculus on the HP-48G/GX | 252—254 |
Thomas A.D. — Zeta-functions | 82, 85, 145 |
Bapat R.B., Raghavan T.E., Rota G.C. (Ed) — Nonnegative Matrices and Applications | 302 |
Hirzebruch F. — Topological Methods in Algebraic Geometry | 66, 67 |
Hansen G.A., Zardecki A., Douglass R.A. — Mesh Enhancement: Selected Elliptic Methods, Foundations and Applications | 224 |
Connell E.H. — Elements of abstract and linear algebra | 91 |
Cooper J. — A Matlab Companion for Multivariable Calculus | 131, 181 |
Samelson R.M., Wiggins S. — Lagrangian Transport in Geophysical Jets and Waves: The Dynamical Systems Approach | 5 |
Schenk C.A., Schueller G.I. — Uncertainty Assessment of Large Finite Element Systems | 22 |
Wall C.T., Bruce J.W. (Ed) — Singular Points of Plane Curves | 10 |
Ott E. — Chaos in dynamical systems | 115 |
Bhatti M. — Practical Optimization Methods | 100, 622 |
Johnston R. — Numerical methods, a software approach | 185, 257 |
Delves L.M. (ed.), Walsh J. (ed.) — Numerical Solution of Integral Equations | 227, 234 |
Arvo J. — Graphics gems (vol. 2) | 184 |
Kirk D. — Graphics gems (Vol. 3) | 155, 158 |
Intriligator M.D., Arrow K.J. — Handbook of Mathematical Economics (vol. 4) | 1986, 2059, 2070 |
Liu Q., Erne R. — Algebraic Geometry and Arithmetic Curves | 130 |
Fulton W. — Algebraic curves | 69 |
Rall D. — Computational Solution to Nonlinear Operator Equations | 93 |
Ito K. — Encyclopedic Dictionary of Mathematics | 208.B |
Hale J.K., Kocak H. — Dynamics and Bifurcations | 267, 454 |
Morita S. — Geometry of differential forms | 5 |
Jahne B. — Digital Image Processing | 86, 336 |
Lay D.C. — Linear Algebra And Its Applications | 314 |
Kress R., Gehring F.W. — Numerical Analysis | 99 |
Giorgi G., Thierfelder J. — Mathematics of Optimization: Smooth and Nonsmooth Case | 18 |
Morita Sh. — Geometry of Differential Forms | 5 |
Thevenin D. (Ed), Janiga G. (Ed) — Optimisation in Computational Fluid Dynamics | 40, 75, 87, 93, 97 |
O'Neill B. — Elementary differential geometry | 37 |
Sheil-Small T. — Complex polynomials | 61 |
Aubin T. — Nonlinear Analysis on Manifolds: Monge-Ampere Equations | 71 |
Hilborn R.C. — Chaos and nonlinear dynamics | 97—100, 131 |
Weir A.J. — Lebesgue Integration and Measure | 155 |
Brocker Th., Dieck T.T. — Representations of Compact Lie Groups | 14 |
Intriligator M.D., Arrow K.J. — Handbook of Mathematical Economics (vol. 1) | 61, 64 |
O'Neill B. — Semi-Riemannian Geometry: With Applications to Relativity | 10 |
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, 104 |
Stuwe K. — Geodynamics of the Lithosphere: An Introduction | 141 |
Aoki K. — Nonlinear dynamics and chaos in semiconductors | 157, 181, 282 |
Munkres J.R. — Analysis on manifolds | 47 |
Reutenauer Ch. — Free Lie Algebras | 46, 47 |
Eschenauer H., Olhoff N., Schnell W. — Applied structural mechanics : fundamentals of elasticity, load-bearing structures, structural optimization | 199 |
Mattheij R.M.M., Molenaar J. — Ordinary Differential Equations in Theory and Practice (Classics in Applied Mathematics) (No. 43) | 4 |
Lichtenberg A.J., Liebermen M.A. — Regular and Chaotic Dynamics | 20, 203, 271, 459, 461, 509—510, 562—563 |
Duda R.O., Hart P.E., Stork D.G. — Pattern Classification | see Matrix, Jacobian |
Silverman J.H. — Advanced Topics in the Arithmetic of Elliptic Curves | 330, 401 |
Abhyankar S.S. — Local Analytic Geometry | 16, 17 |
Tamura I. — Topology of lie groups, I and II | 45 |
Searle S.R. — Matrix algebra useful for statistics | 338 |
Aczel J., Dhombres J. — Functional equations in several variables with applications to mathematics, information theory and to the natural and social sciences | 39 |
Hazewinkel M. — Handbook of Algebra (part 2) | 323 |
Kincaid D., Cheney W. — Numerical analysis: mathematics of scientific computing | 70, 544, 570 |
Dijkstra H.A. — Nonlinear physical oceanography | 63, 146 |
Nagata M. — Field Theory | 107 |
Eberly D.H. — 3D Game Engine Design. A Practical Approach to Real-Time Computer Graphics | 350 |
Wawrzynczyk A. — Group representations and special functions | 18 |
Clemens C.H. — Scrapbook of Complex Curve Theory | 65, 153 |
Butcher J. — Numerical Methods for Ordinary Differential Equations | xii, 28, 243, 254, 296 |
Holmes P., Lumley J.L., Berkooz G. — Turbulence, Coherent Structures, Dynamical Systems and Symmetry | 160 |
Mac Lane S., Birkhoff G.D. — Algebra | 527 |
Oprea J. — Differential Geometry and Its Applications | 400, 401 |
Paeth A.W. (ed.) — Graphics gems (volume 5) | III.84, III.155, III.158 |
Bellman R., Kalaba R. — Quasilinearization and nonlinear boundary-value problems | 77 |
Stewart G.W., Sun J. — Matrix perturbation theory | 134 |
Bishop R.L., Crittenden R.J. — Geometry of manifolds | 10 |
Bazaraa M.S., Sherali H.D., Shetty C.M. — Nonlinear Programming: Theory and Algorithms | 184, 191, 763 |
Blanchard P., Devaney R.L. — Differential Equations | 460 |
Bjoerck A., Dahlquist G. — Numerical mathematics and scientific computation | 387 |
Owen D.R.J., Fawkes A.J. — Engineering Fracture Mechanics: Numerical Methods and Applications | 39, 63 |
Browder A. — Mathematical Analysis: An Introduction | 196 |
Press W.H., Teukolsky S.A., Vetterling W.T. — Numerical recipes in Fortran 90 | 374, 376, 379, 382, 731, 1197f., 1309 |
Morita S. — Geometry of Differential Forms | 5 |
Goffman C. — Calculus of several variables | 41 |
Saul'yev V.K. — Integration of Equations of Parabolic Type By the Method of Nets | 7, 11, 308 |
Toro E.F. — Riemann Solvers and Numerical Methods for Fluid Dynamics: A Practical Introduction | 43, 61, 64, 88, 103, 105, 107, 270, 271, 275, 350, 388, 534 |
Ortega J. M. — Iterative Solution of Nonlinear Equations in Several Variables | 60 |
Novikov S.P., Fomenko A.T. — Basic elements of differential geometry and topology | 19 |
Ralston A., Wilf H.S. — Mathematical methods for digital computers | 181 |
Hermann R. — Differential geometry and the calculus of variations | 25 |
Villareal R.H. — Monomial algebras | 91 |
Thomas A.D. — Zeta functions, introduction to algebraic geometry | 82, 85, 145 |
Bapat R.B., Raghavan T.E.S. — Nonnegative Matrices and Applications | 302 |
David O.Tall — Advanced Mathematical Thinking | 173, 180, 186 |
Gloub G.H., Ortega J.M. — Scientific Computing and Differential Equations | 168 |
Aliprantis C. — Principles of real analysis | 386 |
Antsaklis P.S., Michel A.N. — Linear Systems | 48, 447 |
Choquet-Bruhat Y., DeWitt-Morette C., Dillard-Bleick M. — Analysis, manifolds and physics. Part I. | 72 |
Fulton W. — Algebraic Curves. An Introduction to Algebraic Geometry | 69 |
IItaka S. — Algebraic Geometry: An Introduction to Birational Geometry of Algebraic Varieties | 192 |
Krose B., van der Smagt P. — An introduction to neural networks | 88, 90 |
Porteous I.R. — Clifford Algebras and the Classical Groups | 205 |
Tzenov S.I. — Contemporary Accelerator Physics | 279 |
Hairer E., Lyubich Ch., Roche M. — The Numerical Solution of Differential-Algebraic Systems by Runge-Kutta Methods | 92 |
Ercolani N.M., Gabitov I.R., Levermore C.D. — Singular limits of dispersive waves | 332 |
de Leon M., Rodrigues P.R. — Methods of differential geometry in analytical mechanics | 4 |
Hsiung C.-C. — A first course in differential geometry | 42 |
Loomis L.H., Sternberg S. — Advanced calculus | 158f |
Reithmeier E. — Periodic Solutions of Nonlinear Dynamical Systems: Numerical Computation, Stability, Bifurcation and Transition to Chaos | 33, 51, 73, 138 |
Wait R. — The numerical solution of algebraic equations | 71 |
Hartshorne R. — Algebraic Geometry | 32 |
Cvitanovic P., Artuso R., Dahlqvist P. — Classical and quantum chaos | 14, 74, 621 |
Intriligator M.D. — Mathematical optimization and economic theory | 499 |
Lasota A., Mackey M.C. — Probabilistic Properties of Deterministic Systems | 41 |
Apostol T.M. — Calculus (Volume 2): Multi-Variable Calculus and Linear Algebra with Applications | 271 |
Horn R.A. — Matrix Analysis | 218 |
Schott J.R. — Matrix Analysis for Statistics | 327 |
Arnold V.I. — Ordinary Differential Equations | 38 |
Hamilton J.D. — Time Series Analysis | 737 |
Hodge W.V.D., Pedoe D. — Methods of Algebraic Geometry: Volume 1 | 133 |
Jahne B., Haubecker H. — Computer vision and applications | 334 |
Vidyasagar M. — Nonlinear systems analysis | 377 |
Hassani S. — Mathematical Methods: for Students of Physics and Related Fields | 208 |
Lemaitre J., Desmorat R. — Engineering Damage Mechanics: Ductile, Creep, Fatigue and Brittle Failures | 100, 107 |
Spivak M. — Calculus on Manifolds: A Modern Approach to Classical Theorems of Advanced Calculus | 17 |
Wait R. — Numerical solution of algebraic equations | 71 |
Abhyankar S.S. — Lectures on Algebra Volume 1 | 650 |
Burden R.L., Faires J.D. — Numerical analysis | 555 |
Ivanov O.A. — Easy as Pi?: An Introduction to Higher Mathematics | 108, 143, 145 |
Hammerlin G., Hoffmann K.-H., Schumaker L.L. — Numerical Mathematics | 334 |
Ascher U., Petzold L. — Computer Methods for Ordinary Differential Equations and Differential-Algebraic Equations | 9, 18 |
Santalo L., Kac M. — Integral geometry and geometric probability | 149 |
Schutz B. — Geometrical Methods in Mathematical Physics | 9, 35, 63 |
Petzold L. — Computer Methods for Ordinary Differential Equations and Differential-Algebraic Equations | 7, 17 |
Klingenberg W. — A Course in Differential Geometry (Graduate Texts in Mathematics) | 5 |
Sagle A. A. — Introduction to Lie groups and Lie algebras | 15 |
Choquet-Bruhat Y., Dewitt-Morette C. — Analysis, manifolds and physics | 72 |
A. du Plessis, Wall T. — The Geometry of Topological Stability (London Mathematical Society Monographs New Series) | 22 |
Isham C. — Modern Differential Geometry for Physicists | 88 |
Nash C., Sen S. — Topology and geometry for physicists | 150—151 |
Morita S. — Geometry of Differential Forms (Translations of Mathematical Monographs, Vol. 201) | 5 |
Mangasarian O. — Nonlinear programming | 202 |
Giorgi G., Guerraggio A., Thierfelder J. — Mathematics of optimization | 18 |
De Witt L. Sumners — New Scientific Applications of Geometry and Topology (Proceedings of Symposia in Applied Mathematics, V. 45) | 211 |