Êíèãà | Ñòðàíèöû äëÿ ïîèñêà |
Kadison R.V., Ringrose J.R. — Fundamentals of the theory of operator algebras (vol. 1) Elementary Theory | see Operator, Unbounded operator |
Kedlaya K.S., Poonen B., Vakil R. — The William Lowell Putnam Mathematical Competition 1985–2000: Problems, Solutions, and Commentary | 191, 192, 277 |
Nevanlinna R., Paatero V. — Introduction to Complex Analysis | 4, 37—45, 144 |
Heinbockel J.H. — Introduction to tensor calculus and continuum mechanics | 86 |
Apostol T.M. — Calculus (vol 1) | 578 |
Rudin W. — Principles of Mathematical Analysis | 206 |
Reed M., Simon B. — Methods of Modern mathematical physics (vol. 1) Functional analysis | 2 |
Apostol T.M. — Calculus (vol 2) | 31 |
Falconer K. — Fractal Geometry. Mathematical Foundations and applications | 7 |
Dummit D.S., Foote R.M. — Abstract algebra | 34Qff, 346, 408 |
Falconer K. — Fractal Geometry: Mathematical Foundations and Applications | 8 |
Yale P.B. — Geometry and Symmetry | 132 |
Haerdle W., Simar L. — Applied multivariate statistical analysis | 94 |
Ben-Israel A., Greville T. — Generalized inverses: Theory and applications | 9 |
Olver P.J. — Equivalence, Invariants and Symmetry | 33 |
Oprea J. — Differential Geometry and Its Applications | 74 |
Wesseling P. — Principles of computational fluid dynamics | 487, 488 |
Rawlings J.O., Pantula S.G., Dickey D.A. — Applied Regression Analysis: A Research Tool | 83 |
Coxeter H.S.M. — Non-Euclidean Geometry | 75, 82, 90, 124, 285 |
Messer R. — Linear Algebra: Gateway to Mathematics | 213 |
Kuttler K. — Introduction to linear algebra for mathematicians | 175 |
Dickson L.E. — Algebraic invariants | 3, 9, 22, 33, 34 |
Hewitt E., Ross K.A. — Abstract Harmonic Analysis (Vol. 1) | 452 |
de Branges L., Rovnyak J. — Square summable power series | 2 |
Porter D., Stirling D.S.G. — Integral equations: a practical treatment, from spectral theory to applications | 55 |
Abell M.L., Braselton J.P. — Mathematica by Example | 322 |
Hewitt E., Ross K.A. — Abstract Harmonic Analysis (Vol. 2) | 452 I |
Buss S.R. — 3-D computer graphics. A mathematical introduction with openGL | 17, 19, 24, 35 |
Weinberger H.F. — First course in partial defferential equations with complex variables and transform methods | 246 |
Millman R.S., Parker G.D. — Elements of Differential Geometry | 4 |
Lee J.M. — Introduction to Topological Manifolds | 20 |
Nayfeh A.H., Mook D.T. — Nonlinear Oscillations | 111 |
Ahlfors L.V. — Complex analysis | 76—89 |
Barnsley M. — Fractals Everywhere | 52—53, 55, 58, 79 |
Fletcher R. — Practical methods of optimization. Volume 1: unconstrained optimization | 45, 59 |
Fletcher R. — Practical methods of optimization. Volume 2: constrained optimization | 84 |
Artin M. — Algebra | 109 |
Loeve M. — Probability Theory (part 2) | 107 |
Hahn L.Sh. — Complex Numbers and Geometry ( Spectrum Series) | 32 |
Debnath L., Mikusinski P. — Introduction to Hilbert Spaces with Applications | 138 |
Dummit D.S., Foote R.M. — Abstract Algebra | 323, 335 |
Behnke H., Bachmann F., Fladt K. — Fundamentals of Mathematics, Volume I: Foundations of Mathematics: The Real Number System and Algebra | 246 |
Behnke H., Bachmann F., Fladt K. — Fundamentals of Mathematics, Volume II: Geometry | 472—473, 527 |
Lawvere F.W., Rosebrugh R. — Sets for Mathematics | 24 |
Brieskorn E., Knorrer H. — Plane Algebraic Curves | 455 |
Lynch S. — Dynamical Systems with Applications Using Mathematica® | 147 |
Hughes D.R., Piper F.C. — Projective Planes | 13 |
Polyanin A., Manzhirov A.V. — Handbook of Mathematics for Engineers and Scientists | 656 |
Kohonen T. — Self-organizing maps | 8,9,15 |
Jacobson N. — The Theory of Rings | 21 |
Connell E.H. — Elements of abstract and linear algebra | 85 |
Shoup V.A. — Computational Introduction to Number Theory and Algebra | 440 |
Pugh C.C. — Real Mathematical Analysis | 267 |
Olds C.D., Davidoff G. — Geometry of Numbers | 85, 87 |
Shankar R. — Basic Training In Mathematics | 209 |
Rockmore D. — Stalking the Riemann Hypothesis: The Quest to Find the Hidden Law of Prime Numbers | 169 |
Jost J., Simha R.T. — Compact Riemann Surfaces: An Introduction to Contemporary Mathematics | 240 |
James G., Liebeck M.W. — Representations and Characters of Groups | 18 |
Reed M., Simon B. — Methods of Functional Analysis (in 4 volumes). Volume 1: Functional Analysis | 2 |
Khuri A.I. — Advanced calculus with applications in statistics | 25 |
Stone C.J.D. — Course in Probability and Statistics | 60—65, 258, 472 |
Andrews G.E. — The Theory of Partitions | 225 |
Royden H.L. — Real Analysis | 184 |
Dudgeon D.E., Mersereau R.M. — Multidimensional Digital Signal Processing | 24, 168, 182 |
Sinha S.M. — Mathematical Programming: Theory and Methods | 50 |
Planck M. — Introduction to Theoretical Physics | 115 |
Petrich M. — Rings and Semigroups | 2 |
Griffits D.J. — Introduction to quantum mechanics | 80, 97 |
Royden H.L. — Real Analysis | 184 |
Bowman K.O., Shenton L.R. — Continued Fractions in Statistical Applications | 68 |
Szekeres P. — A Course in Modern Mathematical Physics: Groups, Hilbert Space and Differential Geometry | 36, 65 |
Rudin W. — Real and complex analysis | 33 |
Sokolnikoff I.S. — Mathematics of Physics and Modern Engineering | 332 |
Robinson D.J.S. — A Course in Linear Algebra with Applications | 177 |
Apostol T.M. — Calculus: One-Variable Calculus with an Introduction to Linear Algebra, Vol. 1 | 578 |
Halmos P.R. — Finite-Dimensional Vector Spaces | 55, 57 |
von Neumann John, Morgenstern Oscar — Theory of games and economic behavior | 22, 23 |
Kadison R.V., Ringrose J.R. — Fundamentals of the Theory of Operator Algebras (vol. 2) Advanced Theory | see “Operator”, “Unbounded operator” |
Furui S. — Digital Speech Processing, Synthesis, and Recognition | 335 |
Sanders J.A., Verhulst F. — Averaging methods in nonlinear dynamical systems | 26, 124, 166, 169 |
Tung W.K. — Group Theory in Physics: An Introduction to Symmetry Principles, Group Representations, and Special Functions | 297 |
Unertl W.N. — Physical Structure | 27 |
Bamberg P.G., Sternberg Sh. — A Course in Mathematics for Students of Physics: Volume 1 | 18, 20 |
Strang G. — Linear Algebra and Its Applications | 117, 120, 305 |
Köthe G. — Topological vector spaces I | 59 |
Munkres J.R. — Analysis on manifolds | 6 |
Coxeter H.S.M. — Regular Polytopes | 213 |
Lai W.M., Rubin D., Krempl E. — Introduction to continuum mechanics | 11 |
Goswami J.C., Chan A.K. — Fundamentals of Wavelets : Theory, Algorithms, and Applications | 18 |
Churchland P.S., Sejnowski T.J. — The computational brain | 78 |
Rockmore D. — Stalking the Riemann Hypothesis | 169 |
Baer R. — Linear Algebra and Projective Geometry | 42 |
Radjavi H., Rosenthal P. — Simultaneous Triangularization | 130 |
Hu S.-T. — Elements of real analysis | 246 |
Littlewood D.E. — The Theory of Group Characters and Matrix Representations of Groups | 1 |
O'Donnell C.J. — Incidence Algebras | 93—95, 122—125, 150, 151, 171 |
Betten J. — Creep Mechanics | 13, 54, 148 |
Abhyankar S.S. — Local Analytic Geometry | 3 |
Miller W. — Symmetry Groups and Their Applications | 17, 152 |
Searle S.R. — Matrix algebra useful for statistics | 157 |
Anatol Rapoport — Two-Person Game Theory. the Essential Ideas | 27, 31, 38, 116, 117, n217 |
Jagerman D.L. — Difference equations with applications to queues | 91 |
Bracewell R.N. — The Fourier Transform and its applications | 39, 213, 215 |
Kullback S. — Information theory and statistics | 385 |
Fuhrmann P.A. — A Polynomial Approach to Linear Algebra | 65 |
Olver P.J., Shakiban C. — Applied linear. algebra | 332, 346, 356, 428, 481 |
Bamberg P.G., Sternberg S. — A Course in Mathematics for Students of Physics, Vol. 1 | 18, 20 |
Kreyszig E. — Advanced engineering mathematics | 281, 327 |
Gilmore R. — Lie Groups, Lie Algebras and Some of Their Applications | 114, 218, 219, 237 |
Baker H.F. — Abel's Theorem and the Allied Theory Including The Theory of the Theta Functions | see Transformation. |
Marques de Sa J.P. — Pattern recognition: concepts, methods, and applications | 31 |
Dunn F., Parberry I. — 3D Math Primer for Graphics and Game Development | 91, 121 |
Conway J.B. — A Course in Functional Analysis | 26, 70, 376 |
Mac Lane S., Birkhoff G.D. — Algebra | 163, 195, 196, 207, 224, 313, 365, 496, 556 |
Oprea J. — Differential Geometry and Its Applications | 84 |
Hungerford T.W. — Algebra | 170, 355ff |
M.A.Akivis, V.V.Goldberg — Projective Differential Geometry of Submanifolds | 18 |
Moh T.T. — Algebra | 181 |
Carl D. Meyer — Matrix Analysis and Applied Linear Algebra Book and Solutions Manual | 238 |
C. Caratheodory, F. Steinhardt — Theory of Functions of a Complex Variable. 2 Volumes | 21 |
Simmons G.F. — Differential Equations with Applications and Historical Notes | 389 |
Herriot J.G. — Methods of mathematical analysis and computation | 57 |
Browder A. — Mathematical Analysis: An Introduction | 176, 240 |
Bracewell R. — The Fourier Transform and Its Applications | 39, 213, 215 |
Ford L. — Automorphic Functions | 1—32 |
Goursat E. — Functions of a complex variable. Part 1 of volume II | 59 |
Yaglom I.M. — Complex Numbers in Geometry | 131 |
Wilson E.B. — Molecular Vibrations. The Theory of Infrared and Raman Vibrational Spectra | 20, 91, 297 |
Hermann R. — Differential geometry and the calculus of variations | 83 |
Hu S.-T. — Introduction to contemporary mathematics | 152 |
McCoy N.H. — The theory of rings | 94 |
David O.Tall — Advanced Mathematical Thinking | 150 |
Dienes P. — The Taylor series: An introduction to the theory of functions of a complex variable | 119, 171 |
Nehari Z. — Conformal mapping | 155—165 |
Bazaraa M.S., Jarvis J.J. — Linear Programming and Network Flows | 504 |
Antsaklis P.S., Michel A.N. — Linear Systems | 40, 100 |
B.M. Stewart — Theory of Numbers | 232 |
Coxeter H. — Regular polytopes | 213 |
Finkbeiner D.T. — Introduction to Matrices and Linear Transformations | 44—62 |
IItaka S. — Algebraic Geometry: An Introduction to Birational Geometry of Algebraic Varieties | 289 |
Goswami J., Chan A. — Fundamentals of Wavelets. Theory, Algorithms, and Applications | 18 |
Hildebrand F.B. — Methods of Applied Mathematics | 4 |
Ferrar W.L. — Algebra: a textbook of determinants, matrices, and algebraic forms | 122 |
Collatz L. — The numerical treatment of differential equations | 514 |
Greub W.H. — Linear Algebra | 17 |
Stinson D.R. — Cryptography: Theory and practice | 14 |
Hewitt E., Stromberg K. — Real and abstract analysis: a modern treatment of the theory of functions of a real variable | 210 |
Kestelman H. — Modern theories of integration | 87 |
Moskowitz M.A. — Adventures in mathematics | 62 |
Moh T.T. — Algebra | 181 |
Hadley G. — Linear programming | 55 |
Hsiung C.-C. — A first course in differential geometry | 36, 47 |
Loomis L.H., Sternberg S. — Advanced calculus | 30 |
Lane S.M. — Mathematics, form and function | 108, 186 |
Hirsch M.W., Smale S. — Differential Equations, Dynamical Systems, and Linear Algebra | 5 |
Boerner H. — Representations of Groups | 3 |
Dunford N., Schwartz J., Bade W.G. — Linear operators. Part 2 | (36), see also "Operator" |
Howes N.R — Modern Analysis and Topology | 340 |
Fuzhen Zhang — Matrix theory: basic results and techniques | 14 |
Richter-Gebert J. — Realization Spaces of Polytopes, Vol. 164 | 13 |
Intriligator M.D. — Mathematical optimization and economic theory | 459 |
Laurens Jansen — Theory of Finite Groups. Applications in Physics | 64 |
Apostol T.M. — Calculus (Volume 2): Multi-Variable Calculus and Linear Algebra with Applications | 31 |
Usmani R.A. — Applied Linear Algebra | 101f |
Horn R.A. — Matrix Analysis | 5 |
Schott J.R. — Matrix Analysis for Statistics | 60—67 |
Hassani S. — Mathematical Methods: for Students of Physics and Related Fields | 216—218 |
Abhyankar S.S. — Lectures on Algebra Volume 1 | 62 |
Slater J., Frank N. — Introduction to Theoretical Physics | 115 |
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) | 36, see also "Operator" |
Ivanov O.A. — Easy as Pi?: An Introduction to Higher Mathematics | 37, 121, 124 |
Schutz B. — Geometrical Methods in Mathematical Physics | 16
Linear transformation, components of |
Davis P.J. — Mathematics of Matrices | 61, 125, 132, 237 |
Marcus M., Minc H. — Introduction to Linear Algebra | 16 |
Zorich V.A., Cooke R. — Mathematical analysis II | 49 |
Cheney W. — Analysis for Applied Mathematics | 24 |
Zorich V. — Mathematical Analysis | 49 |
Young D.M., Gregory R.T. — A Survey of Numerical Mathematics, Volume 2 | 667, 690—693 |
Falconer K. — Fractal geometry: mathematical foundations and applications | 8 |
Golan J.S. — The Linear Algebra a Beginning Graduate Student Ought to Know (Texts in the Mathematical Sciences) | 79 |
Lindstrum A.O. — Abstract algebra | 165 |