Êíèãà | Ñòðàíèöû äëÿ ïîèñêà |
Kadison R.V., Ringrose J.R. — Fundamentals of the theory of operator algebras (vol. 1) Elementary Theory | 3 |
Bartle R.G. — The Elements of Real Analysis | 66 |
Apostol T.M. — Calculus (vol 1) | 112 |
Hunter J.K., Nachtergaele B. — Applied Analysis | 4 |
Rudin W. — Principles of Mathematical Analysis | 31 |
Reed M., Simon B. — Methods of Modern mathematical physics (vol. 1) Functional analysis | 109 |
Apostol T.M. — Calculus (vol 2) | 344 |
Graham R.L., Grotschel M., Lovasz L. — Handbook of combinatorics (vol. 1) | 392 |
de Berg M., van Kreveld M., Overmars M. — Computational Geometry : Algorithms and applications | 2 |
Zeidler E. — Nonlinear Functional Analysis and its Applications IV: Applications to Mathematical Physic | III245 |
Yale P.B. — Geometry and Symmetry | 188 |
Wall H.S. — Analytic Theory of Continued Fractions | 113, 137, 237 |
Apostol T.M. — Mathematical Analysis | 66 (Ex. 3.14) |
Lipschutz Seymour — Schaum's Outline of Theory and Problems of Linear Algebra (Schaum's Outlines) | 342, 407 |
Schinzel A. — Polynomials with special regard to reducibility | 512 |
Schenck H. — Computational algebraic geometry | 2 |
Silverman J.H. — The arithmetic of elliptic curves | 231 |
Kreuzer M., Robbiano L. — Computational commutative algebra 1 | 67 |
Hewitt E., Ross K.A. — Abstract Harmonic Analysis (Vol. 1) | 452 |
Rudin W. — Real and Complex Analysis | 78 |
de Branges L., Rovnyak J. — Square summable power series | 8 |
Matousek J. — Lectures on Discrete Geometry (some chapters) | 17 (1.2.1) |
Lee J.M. — Riemannian Manifolds: an Introduction to Curvature | 112 |
Graham R.L., Grotschel M., Lovasz L. — Handbook of combinatorics (vol. 2) | Ç92 |
Hochstadt H. — Integral Equations (Pure & Applied Mathematics Monograph) | 265 |
Graves L.M. — Theory of Functions of Real Variables | 47 |
Conway J.B. — Functions of One Complex Variable | 89, 134 |
Hewitt E., Ross K.A. — Abstract Harmonic Analysis (Vol. 2) | 452 I |
Buss S.R. — 3-D computer graphics. A mathematical introduction with openGL | 9, 10, 117—119 |
Webster R. — Convexity | 49, 335 |
Schneider R. — Convex Bodies: The Brunn-Minkowski Theory | 1 |
Alekseevskij D.V., Vinberg E.B., Solodovnikov A.S. — Geometry of Spaces of Constant Curvature | 23 |
Parr R., Yang W. — Density-functional theory of atoms and molecules | 32, 43 |
Borevich Z.I., Shafarevich I.R. — Number Theory | 110 |
Murdock J. — Perturbations: Theory and Methods | 496 |
Fletcher R. — Practical methods of optimization. Volume 2: constrained optimization | 63 |
Artin M. — Algebra | 427 |
Ferguson T.S. — Mathematical Statistics. A Decision Theoretic Approach | 35 |
Grotschel M., Lovasz L., Schrijver A. — Geometric Algorithms and Combinatorial Optimization | 3, 46—132 |
Liao X., Wang L., Yu P. — Stability of Dynamical Systems, Vol. 5 | 384, 565 |
Kaczynski T., Mischaikow K.M. — Computational Homology | 378 |
Sagan H. — Advanced Calculus of Real-Valued Functions of a Real Variable and Vector-Valued Functions of a Vector Variable | (257) |
Bapat R.B., Raghavan T.E., Rota G.C. (Ed) — Nonnegative Matrices and Applications | 4, 5, 53, 59, 60, 98, 165, 166, 193, 293 |
Dacorogna B. — Direct Methods in the Calculus of Variations | 32, 33, 35—37, 42, 44, 45, 64, 68, 70, 318, 320, 335, 337, 357, 442, 550 |
Ramirez Alfonsin J.L. — Diophantine Frobenius Problem | 91 |
Searcid M. — Metric Spaces | 79 |
Araki H. — Mathematical Theory of Quantum Fields | 10 |
Hensley D. — Continued Fractions | 117, 119 |
Wise G.L., Hall E.B. — Counterexamples in Probability and Real Analysis | 18, 21, 126, 127, 142 |
Gohberg I., Goldberg S. — Basic Operator Theory | 19 |
Aliprantis Ch.D. — Positive Operators | 24, 128 |
Szkelyhidi L. — Discrete Spectral Synthesis and Its Applications | 10 |
Alaca S., Williams K.S. — Introductory Algebraic Number Theory | 301 |
Dugunji J. — Topology | 411 |
Sahoo P.K., Riedel T. — Mean Value Theorems and Functional Equations | 157 |
Bhatti M. — Practical Optimization Methods | 117 |
Kemeny T., Snell J.L., Thompson G. — Introduction to finite mathematics | 319 |
Lange K. — Optimization | 94 |
Rockafellar R.T. — Convex analysis | 10 |
Ratcliffe J.G. — Foundations of Hyperbolic Manifolds | 24, 194 |
Reed M., Simon B. — Methods of Functional Analysis (in 4 volumes). Volume 1: Functional Analysis | 109 |
Atkinson K.E., Han W. — Theoretical Numerical Analysis: A Functional Analysis Framework | 129 |
Khuri A.I. — Advanced calculus with applications in statistics | 79 |
Franklin J., Daoud A. — Introduction to Proofs in Mathematics | 73 |
Royden H.L. — Real Analysis | 203 |
Reed M., Simon B. — Methods of Modern mathematical physics (vol. 4) Analysis of operators | $109^1$ |
Rudin W. — Functional analysis | 6 |
Rall D. — Computational Solution to Nonlinear Operator Equations | 21 |
Eidelman Y., Milman V., Tsolomitis A. — Functional Analysis. An Introduction | 13 |
Royden H.L. — Real Analysis | 203 |
Steenrod N.E. — First Concepts of Topology | 50 |
Taylor J.C. — An Introduction to Measure and Probability | 214 |
Rudin W. — Real and complex analysis | 79 |
Carmo M.P. — Differential geometry of curves and surfaces | 48 (Ex. 9) |
Kress R., Gehring F.W. — Numerical Analysis | 98 |
Lin I.H. — Geometric Linear Algebra. Vol. 1 | 653 |
Giorgi G., Thierfelder J. — Mathematics of Optimization: Smooth and Nonsmooth Case | 23 |
Pedregal P. — Introduction to Optimization | 88 |
Berger M., Pansu P., Berry J.-P. — Problems in Geometry | 11.A |
Gallier J. — Geometric Methods and Applications: For Computer Science and Engineering | viii, 30, 62, 270 |
Kato G., Struppa D.C. — Fundamentals of algebraic microlocal analysis | 56, 124 |
Apostol T.M. — Calculus: One-Variable Calculus with an Introduction to Linear Algebra, Vol. 1 | 112 |
Naniewicz Z., Panagiotopoulos P.D. — Mathematical Theory of Hemivariational Inequalities and Applications | 1 |
Sheil-Small T. — Complex polynomials | 24 |
Stakgold I. — Green's Functions and Boundary Value Problems | 268, 555 |
Ayoub R. — An Introduction to the Analytic Theory of Numbers | 279 |
Aubin T. — Nonlinear Analysis on Manifolds: Monge-Ampere Equations | 157 |
Helemskii A.Ya. — Lectures and Exercises on Functional Analysis, Vol. 233 | 3 |
Kadison R.V., Ringrose J.R. — Fundamentals of the Theory of Operator Algebras (vol. 2) Advanced Theory | 3 |
Sack J.R., Urrutia J. (Ed) — Handbook of Computational Geometry | 980 |
Klerk de E. — Aspects of Semidefinite Programming | 237 |
Weir A.J. — Lebesgue Integration and Measure | 176 |
Intriligator M.D., Arrow K.J. — Handbook of Mathematical Economics (vol. 1) | 37—40, 51, 56, 207 |
Kolmogorov A.N., Fomin S.V. — Introductory real analysis | 129 |
Bhattacharya R.N., Rao R.R. — Normal Approximation and Asymptotic Expansions | 20 |
Rourke C.P., Sanderson B.J. — Introduction to Piecewise-Linear Topology | 13 |
Papadimitriou C.H., Steiglitz K. — Combinatorial Optimization: Algorithms and Complexity | 10—13 |
Berinde V. — Iterative Approximation of Fixed Points | 8, 16—18, 62—65, 67—70, 73, 78, 80, 81, 83—91, 93—98, 100, 102, 104, 107, 109, 112, 114, 115, 117, 120—122, 125, 128, 129, 131, 132, 134, 136—140, 143—149, 152, 153, 155, 160, 188, 202, 207, 210, 212—214 |
Murota K. — Discrete convex analysis | 2, 78 |
Rushing T.B. — Topological Embeddings | 5 |
Grünbaum B. — Convex Polytopes | 8 (see also “Convex body”) |
O'Donnell C.J. — Incidence Algebras | 4, 24, 174, 175, 192, 193, 219, 221 |
Courant R., Hilbert D. — Methods of Mathematical Physics, Vol. 2 | 404 |
Thomas L.C. — Games, Theory and Applications | 57, 92 |
Bogolubov N.N., Logunov A.A., Todorov I.T. — Introduction to Axiomatic Quantum Field Theory | 282 |
Reed M., Simon B. — Methods of Modern mathematical physics (vol. 2) Fourier analysis, self-adjointness | 109 |
Vanderbei R.J. — Linear Programming: Foundations and Extensions | 161 |
Kullback S. — Information theory and statistics | 98, 383 |
Bertsekas D.P. — Dynamic programming and optimal control (Vol. 1) | 337 |
Boroczky K. — Finite Packing and Covering | 325 |
Simmons G.F. — Introduction to topology and modern analysis | 148 |
Ash R.B., Doléans-Dade C.A. — Probability and Measure Theory | 133 |
Binmore K. — Fun and Games: A Text on Game Theory | 169, 171 |
Mcmullen P., Schulte E. — Abstract Regular Polytopes | 7 |
Zeidler E. — Nonlinear Functional Analysis and Its Applications: Part 1: Fixed-Point Theorems | 764 |
Conway J.B. — A Course in Functional Analysis | 8, 104 |
Steeb W.-H. — Problems and Solutions in theoretical and mathematical physics. Volume 1. Introductory level | 215 |
Anderson G.A., Granas A. — Fixed Point Theory | 599 |
Neumann M., Berman A., Stern R.J. — Nonnegative matrices in dynamic systems | 1 |
Tuy H. — Convex analysis and global optimization | 6 |
Sarfraz M. — Advances in geometric modeling | 122—125, 128 |
Farin G. — Curves and surfaces for computer aided geometric design | 15 |
Schinzel A. — Polynomials with Special Regard to Reducibility | 512 |
Drmota M., Tichy R.F. — Sequences, Discrepancies and Applications | 9, 213 |
Socha L. — Linearization Methods for Stochastic Dynamic Systems | 32 |
Haraux A. — Nonlinear Evolution Equations - Global Behavior of Solutions | 43—44, 52, 62, 219—221, 227 |
Johnson C. — Numerical solution of partial differential equations by the finite element method | 249 |
Bjoerck A., Dahlquist G. — Numerical mathematics and scientific computation | 427 |
Browder A. — Mathematical Analysis: An Introduction | 185, 250 |
Milnor J., Husemoller D. — Symmetric Bilinear Forms | 16 |
Cox D.A., Little J., O'Shea D. — Using Algebraic Geometry | 290, 291 |
Marks R.J.II. — The Joy of Fourier | 528, 529, 540, 546, 600, 613 |
Valentine F.A. — Convex Sets | 4 |
Kreyszig E. — Introductory functional analysis with applications | 65, 143, 331 |
Hefferon J. — Linear algebra | 183 |
Lefschetz S. — Introduction to topology | 37 |
Mikhlin S.G., Prossdorf S. — Singular Integral Operators | 32 |
Ortega J.M. — Numerical analysis: a second course | 142 |
Bapat R.B., Raghavan T.E.S. — Nonnegative Matrices and Applications | 4, 5, 53, 59, 60, 98, 165, 166, 193, 293 |
Massey W.S. — A basic course in algebraic topology | 46 |
Aliprantis C. — Principles of real analysis | 224 |
Bazaraa M.S., Jarvis J.J. — Linear Programming and Network Flows | 58 |
Semadini Z. — Banach Spaces of Continuous Functions. Vol. 1 | 80 |
Tietze H. — Famous Problems of Mathematics Solved and Unsolved | 88 |
Spanier E.H. — Algebraic Topology | 10 |
DeGroot M.H. — Optimal statistical decisions | 131 |
Prasolov V.V., Tikhomirov V.M. — Geometry | 27 |
Munkres J.R. — Topology: A First Course | 152, 325 |
Massey W.S. — Algebraic Topology: an introduction | 67 |
Murdock J.A. — Perturbations: Theory and Methods (Classics in Applied Mathematics) | 496 |
McShane E.J., Botts T.A. — Real Analysis | 222 |
Lefschetz S. — Introduction to Topology | 37 |
Gelbaum B.R. — Problems in Real and Complex Analysis | 2.3. 25 |
Alicki R., Lendi K. — Quantum Dynamical Semigroups And Applications | 2 |
Beckenbach E.F., Bellman R. — Introduction to Inequalities | 107 |
Stakgold I. — Green's functions and boundary value problems | 268, 555 |
Beckenbach E.F., Bellman R. — Inequalities | 39, 99, 103—106, 108, 119, 126 |
Hewitt E., Stromberg K. — Real and abstract analysis: a modern treatment of the theory of functions of a real variable | 252 |
Fenchel W. — Elementary geometry in hyperbolic space | 29 |
Hadley G. — Linear programming | 18, 58, 61 |
Hsiung C.-C. — A first course in differential geometry | 137 |
Loomis L.H., Sternberg S. — Advanced calculus | 125 |
Lane S.M. — Mathematics, form and function | 332 |
Hirsch M.W., Smale S. — Differential Equations, Dynamical Systems, and Linear Algebra | 164 |
Dunford N., Schwartz J., Bade W.G. — Linear operators. Part 2 | II.4.1 (70) |
Villarreal R.H. — Monomial Algebras | 210 |
Berger J.O. — Statistical decision theory and bayesian analysis | 38 |
Silhavy M. — The Mechanics and Thermodynamics of Continuous Media | 255 |
Robinson S.M. — Convexity and Monotonicity in Finite-Dimensional Spaces | 16 |
Intriligator M.D. — Mathematical optimization and economic theory | 460 |
Daepp U., Gorkin P. — Reading, writing and proving. Close look at mathematics | 218 |
Lang S. — Linear Algebra | 113, 365 |
Apostol T.M. — Calculus (Volume 2): Multi-Variable Calculus and Linear Algebra with Applications | 344 |
Schott J.R. — Matrix Analysis for Statistics | 70—74 |
Collatz L. — Functional analysis and numerical mathematics | 28 |
Rektorys K. — Survey of Applicable Mathematics.Volume 2. | II 320 |
Andersson M., Passare M., Sigurdsson R. — Complex convexity and analytic functionals | 1, 6 |
Treves F. — Topological Vector Spaces, Distributions And Kernels | 30, 57 |
Gossett E. — Discrete Math with Proof | 16 |
John F. — Partial Differential Equations | 66 |
Klee V., Wagon S. — Old and New Unsolved Problems in Plane Geometry and Number Theory (Dolciani Mathematical Expositions Series #11) | 1, 12 |
Bruno A.D., Fen L.S. — Power geometry in algebraic and differential equations | 10 |
Berman A., Shaked-Monderer N. — Completely Positive Matrices | 41 |
Anthony M. — Discrete Mathematics Of Neural Networks | 25 |
Burden R.L., Faires J.D. — Numerical analysis | 234 |
Magaril-Il'yaev G.G., Tikhomirov V.M. — Convex Analysis: Theory and Applications | 1, 30, 31, 80 |
Owen D. — A First Course in the Mathematical Foundations of Thermodynamics (Undergraduate Texts in Mathematics) | 84, 100 |
Dunford N., Schwartz J.T., Bade W.G. — Linear Operators, Part II: Spectral Theory. Self Adjoint Operators in Hilbert Space (Pure and Applied Mathematics: A Series of Texts and Monographs) | II.4.1 70 |
Lions J-L., Dautray R. — Mathematical Analysis and Numerical Methods for Science and Technology: Volume 2: Functional and Variational Methods | 285 |
Cheney W. — Analysis for Applied Mathematics | 6 |
Fuchssteiner B., Lusky W. — Convex Cones (North-Holland Mathematics Studies) | 8, 33, 90, 102, 125, 253, 311, 335 |
Azcarraga J., Izquierdo J. — Lie groups, Lie algebras, cohomology and some applications in physics | 332 |
Mac Lane S. — Mathematics: Form and Function | 332 |
Apostol T. — Mathematical Analysis, Second Edition | 66 |
Morrey C. — Multiple integrals in the calculus of variations | 21 |
Klein E. — Mathematical methods in theoretical economics | 72 |
Beckenbach E., Bellman R. — Inequalities (Ergebnisse der Mathematik und ihrer Grenzgebiete. 2. Folge) | 39, 99, 103—106, 108, 119, 126 |
Mangasarian O. — Nonlinear programming | 39 |
Chvatal V. — Linear programming | 263 |
Proskuryakov I.V. — Problems in Linear Algebra | 205 |
Giorgi G., Guerraggio A., Thierfelder J. — Mathematics of optimization | 23 |
J. M. Borwein, Qi.Zhu — Techniques of Variational Analysis (CMS Books in Mathematics) | 111 |