Êíèãà | Ñòðàíèöû äëÿ ïîèñêà |
Êîðìåí Ò., Ëåéçåðñîí ×., Ðèâåñò Ð. — Àëãîðèòìû: ïîñòðîåíèå è àíàëèç | 826 |
Êîðìåí Ò., Ëåéçåðñîí ×., Ðèâåñò Ð. — Àëãîðèòìû: ïîñòðîåíèå è àíàëèç | 673 |
Hunter J.K., Nachtergaele B. — Applied Analysis | 197 |
Apostol T.M. — Calculus (vol 2) | 124 |
Ito K. — Encyclopedic Dictionary of Mathematics. Vol. 2 | 269.B |
Lang S. — Algebra | 530 |
Bulirsch R., Stoer J. — Introduction to numerical analysis | 299 |
Brauer F., Nohel J.A. — The qualitative theory of ordinary differential equations | See Matrix |
Haerdle W., Simar L. — Applied multivariate statistical analysis | 59 |
Olver P.J. — Equivalence, Invariants and Symmetry | 43, 44, 282, 387 |
Hoffman J.D. — Numerical Methods for Engineers and Scientists | 24 |
Latrve D.R., Kreider D.L., Proctor T.G. — Hp-48G/Gx Investigations in Mathematics | 402, 510 |
Golub G.H., Ortega J.M. — Scientific Computing and Differential Equations : An Introduction to Numerical Methods | 74 |
Hoffman K., Kunze R. — Linear algebra | 35, 210 |
Messer R. — Linear Algebra: Gateway to Mathematics | 321 |
Lutkepohl H. — Handbook of Matrices | 11, 156, 278 |
Zienkiewicz O.C., Taylor L.R. — The finite element method (vol. 1, The basis) | 35, 61, 623 |
Bini D., Pan V.Y. — Polynomial and matrix computations. Fundamental algorithms. Vol.1 | 88 |
Shampine L.F., Allen R.C., Pruess Jr.S. — Fundamentals of numerical computing | 70 |
Roberts A.W., Varberg D.E. — Convex Functions | 68, 202, 206 |
Hewitt E., Ross K.A. — Abstract Harmonic Analysis (Vol. 1) | 7 |
Hewitt E., Ross K.A. — Abstract Harmonic Analysis (Vol. 2) | 7 I |
Lee J.M. — Introduction to Smooth Manifolds | 115, 412 |
Newman M. — Integral Matrices | 57 |
Watkins D. — Fundamentals of matrix computations | 32 |
Opechowski W. — Crystallographic and metacrystallographic groups | 76 |
Levine I.N. — Molecular Spectroscopy | 84 |
Leach A.R. — Molecular Modelling Principles and Applications | 13 |
Merris R. — Combinatorics | 388, 499 |
Grotschel M., Lovasz L., Schrijver A. — Geometric Algorithms and Combinatorial Optimization | 4 |
Lando S.K., Zvonkin A.K. — Graphs on Surfaces and Their Applications | 163 |
Borwein P., Choi S., Rooney B. — The Riemann Hypothesis | 437, 442 |
Polyanin A., Manzhirov A.V. — Handbook of Mathematics for Engineers and Scientists | 168 |
Kanatani K. — Statistical Optimization for Geometric Computation: Theory and Practice | 28 |
Connell E.H. — Elements of abstract and linear algebra | 103 |
Bhatti M. — Practical Optimization Methods | 76 |
Akivis M., Goldberg V. — Differential Geometry of Varieties with Degenerate Gauss Maps | 152 |
Duistermaat J.J., Kolk J.A.C. — Multidimensional Real Analysis II: Integration | 41 |
Duistermaat J.J., Kolk J.A.C. — Multidimensional Real Analysis I(Cambridge Studies in Advanced Mathematics #86), Vol. 1 | 41 |
Bronson R. — Schaum's Outline of Matrix Operations | see “Real symmetric matrix” |
Lang S. — Undergraduate Algebra | 191 |
Coxeter H.S.M. — Introduction to Geometry | 251 |
Ito K. — Encyclopedic Dictionary of Mathematics | 269.B |
Takezawa K. — Introduction to Nonparametric Regression | 40, 55, 98, 144, 240, 323, 417, 441,471 |
Lay D.C. — Linear Algebra And Its Applications | 310, 328, 405, 417, 421 |
Kolman B., Busby R.C., Cutler S.C. — Discrete Mathematical Structures | 34 |
Kress R., Gehring F.W. — Numerical Analysis | 19 |
Robinson D.J.S. — A Course in Linear Algebra with Applications | 14 |
Gallier J. — Geometric Methods and Applications: For Computer Science and Engineering | 175, 188 |
Greenberg M.D. — Advanced engineering mathematics | 554 |
Strichartz R.S. — The way of analysis | 441, 522 |
Bamberg P.G., Sternberg Sh. — A Course in Mathematics for Students of Physics: Volume 1 | 133 |
Strang G. — Linear Algebra and Its Applications | 48, 290, 309, 327 |
Stewart G.W. — Matrix algorithms. Volume 2: Eigensystems | see “Hermitian matrix” |
Brualdi R.A., Ryser H.J. — Combinatorial Matrix Theory | 129—130 |
Fenn R. — Geometry | 245 |
Wan Z.-X. — Geometry of matrices | 37 |
Farin G., Hansford D. — Practical Linear Algebra: A Geometry Toolbox | 125, 282 |
Searle S.R. — Matrix algebra useful for statistics | 60, 308 |
Hamming R.W. — Numerical methods for scientists and engineers | 688 |
Barrels R.H., Beatty J.C. — An Introduction to Splines for use in Computer Graphics and Geometric Modeling | 244 |
Kincaid D., Cheney W. — Numerical analysis: mathematics of scientific computing | 117 |
Mclachlan D. — X-ray crystal structure | 252 |
Antia H.M. — Numerical Methods for Scientists and Engineers | 63, 110, 476, 494, 499, 613 |
Olver P.J., Shakiban C. — Applied linear. algebra | 49, 164, 416, 419, 423, 424, 426 |
Bamberg P.G., Sternberg S. — A Course in Mathematics for Students of Physics, Vol. 1 | 133 |
Kreyszig E. — Advanced engineering mathematics | 283, 345 |
Binmore K. — Fun and Games: A Text on Game Theory | 136 |
Gilmore R. — Lie Groups, Lie Algebras and Some of Their Applications | 9, 13, 338, 344, 350, 351, 356, 365 |
Sewell G. — Computational Methods of Linear Algebra | 88 |
Graybill F.A. — Matrices with Applications in Statistics | see Matrices, symmetric |
Mac Lane S., Birkhoff G.D. — Algebra | 342 |
Oprea J. — Differential Geometry and Its Applications | 88 |
Trefethen L.N., Bau D. — Numerical Linear Algebra | 11, 172 |
Hungerford T.W. — Algebra | 335 |
Curtis M.L. — Abstract Linear Algebra | 68 |
Marcus M., Minc H. — Survey of matrix theory and matrix inequalities | 63 |
Arya A.P. — Introduction to Classical Mechanics | 579 |
M.A.Akivis, V.V.Goldberg — Projective Differential Geometry of Submanifolds | 113, 138 |
Neter J., Kutner M.H., Wasserman W. — Applied Linear Regression Models | 196 |
Herriot J.G. — Methods of mathematical analysis and computation | 61 |
Bjoerck A., Dahlquist G. — Numerical mathematics and scientific computation | 28 |
Goertzel G. — Some Mathematical Methods of Physics | 8 |
Anderson T.W. (ed.), Fang K.T. (ed.), Olkin I. (ed.) — Multivariate Analysis and Its Applications | 111, 178 |
Wilson E.B. — Molecular Vibrations. The Theory of Infrared and Raman Vibrational Spectra | 290, 301 |
Wigner E.P. — Group Theory and Its Applicaion to the Quantum Mechanics of Atomic Spectra | see also Matrix |
Kreyszig E. — Introductory functional analysis with applications | 203 |
Hefferon J. — Linear algebra | 118, 139, 214, 221 |
Selig J.M. — Introductory robotics | 98, 146—147 |
Ortega J.M. — Numerical analysis: a second course | 7, 14, 21, 56 |
Gloub G.H., Ortega J.M. — Scientific Computing and Differential Equations | 74 |
Aliprantis C. — Principles of real analysis | 287 |
Bazaraa M.S., Jarvis J.J. — Linear Programming and Network Flows | 46 |
Abramovich Y.A., Aliprantis C.D. — An Invitation to Operator Theory | 317 |
Birkhoff G., Mac Lane S. — A Survey of Modern Algebra | 283 |
DeGroot M.H. — Optimal statistical decisions | 22 |
John Strikwerda — Finite difference schemes and partial differential equations | 408 |
Audin M. — Geometry | 225, 233 |
Hildebrand F.B. — Methods of Applied Mathematics | 30 |
Audin M. — Geometry | 225, 233 |
Borodich F. — Theory of Elasticity | 363 |
Graham A. — Kronecker products and matrix calculus: with applications | 54, 57, 58, 79, 95, 97 |
Copeland A.H. — Geometry, algebra, and trigonometry by vector methods | 190, 204 |
Beckenbach E.F., Bellman R. — Inequalities | 57 |
Richards P.I. — Manual of Mathematical Physics | 309 |
Tzenov S.I. — Contemporary Accelerator Physics | 138 |
Hadley G. — Linear programming | 28 |
Mathews J., Walker R.L. — Mathematical methods of physics | 145 |
Luenberger D.G. — Introduction to dynamic systems | 88, 352 |
Lane S.M. — Mathematics, form and function | 202 |
Hirsch M.W., Smale S. — Differential Equations, Dynamical Systems, and Linear Algebra | 46, 207 |
Barry Steven, Davis Stephen — Essential Mathematical Skills: For Students of Engineering, Science and Applied Mathematics | 74 |
Lipschutz S., Lipson M.L. — Schaum's outline of theory and problems of discrete mathematics | 121 |
Lang S. — Linear Algebra | 62 |
Dieudonne J. — Linear Algebra and Geometry. | 4.2.4, 6.2.3 |
Apostol T.M. — Calculus (Volume 2): Multi-Variable Calculus and Linear Algebra with Applications | 124 |
Herstein I.N. — Topics in algebra | 317 |
Horn R.A. — Matrix Analysis | 167, 397 |
Schott J.R. — Matrix Analysis for Statistics | 4 |
Hodge W.V.D., Pedoe D. — Methods of Algebraic Geometry: Volume 1 | 86 |
Mcdonald B.R. — Linear algebra over commutative rings | 12 |
Dineen S. — Complex Analysis of Infinite Dimensional Spaces | 5, 307 |
Hassani S. — Mathematical Methods: for Students of Physics and Related Fields | 182 |
Gullberg J. — Mathematics: from the birth of numbers | 654 |
Rao S.S. — Mechanical Vibrations | 694 |
Rice J. — Matrix computations and mathematical software | 28, 48 |
Burden R.L., Faires J.D. — Numerical analysis | 353 |
Hammerlin G., Hoffmann K.-H., Schumaker L.L. — Numerical Mathematics | 61, 355 |
Shirley P., Ashikhmin M, Gleicher M. — Fundamentals of computer graphics | 123 |
Davis P.J. — Mathematics of Matrices | 20 |
Marcus M., Minc H. — Introduction to Linear Algebra | 56 |
Young D.M., Gregory R.T. — A Survey of Numerical Mathematics, Volume 2 | 720, 957 |
Kolman B., Busby R.C., Ross S. — Discrete Mathematical Structures | 34 |
Golan J.S. — The Linear Algebra a Beginning Graduate Student Ought to Know (Texts in the Mathematical Sciences) | 134 |
Abramovich Y., Aliprantis C. — An Invitation to Operator Theory (Graduate Studies in Mathematics, V. 50) | 317 |
Mathews J., Walker R.L. — Mathematical Methods of Physics | 145 |
Kupferschmid M. — Classical FORTRAN: Programming for Engineering and Scientific Applications | 274—276, Ex 7.4.9, 172 |
Bhatia R. — Matrix Analysis | 241 |
Klein E. — Mathematical methods in theoretical economics | 223 |
Beckenbach E., Bellman R. — Inequalities (Ergebnisse der Mathematik und ihrer Grenzgebiete. 2. Folge) | 57 |
Daniels R.W. — Introduction to numerical methods and optimization techniques | 18 |