Êíèãà | Ñòðàíèöû äëÿ ïîèñêà |
Fritz J. — Lectures on advanced numerical analysis | 12 |
Apostol T.M. — Calculus (vol 2) | 122 |
Bulirsch R., Stoer J. — Introduction to numerical analysis | 181, 331, 345ff, 417 |
Conte S.D., de Boor C. — Elementary numerical analysis - an algorithmic approach | 142, 206 |
Cvetkovic D., Doob M., Sachs H. — Spectra of graphs. Theory and application | 19 |
Saad Y. — Iterative Methods for Sparse Linear Systems | 4, 21, 24 |
Nash J.C., Nash M.M. — Scientific Computing with PCs | 7.8 |
Rao R.C. — Linear Statistical Inference and Its Applications | 17,42 |
Cvitanovic P. — Group theory (Lie and other) | 19 |
Wedderburn J.H.M. — Lectures on Matrices | 88 |
Lutkepohl H. — Handbook of Matrices | 10, 131, 250 |
Bini D., Pan V.Y. — Polynomial and matrix computations. Fundamental algorithms. Vol.1 | 88 |
Biglieri E. — Coding For Wireless Channels (Information Technology Series: Transmission, Processing, and Storage) | 402 |
Artin M. — Algebra | 251 |
Hand L.N., Finch J.D. — Analytical Mechanics | See Hermitian matrix |
Lando S.K., Zvonkin A.K. — Graphs on Surfaces and Their Applications | 161 |
Le Bruyn L. — Noncommutative geometry | 329 |
Borwein P., Choi S., Rooney B. — The Riemann Hypothesis | 130, 131, 437, 442, 443 |
Polyanin A., Manzhirov A.V. — Handbook of Mathematics for Engineers and Scientists | 168 |
Ferrar W.L. — Algebra | 129 |
Cvetkovic D., Rowlinson P., Simic S. — Eigenspaces of Graphs | 37 |
Bollobas B. — Modern Graph Theory | 262 |
Shankar R. — Basic Training In Mathematics | 221 |
O'Donnel P. — Introduction to 2-Spinors in General Relativity | 24 |
Duistermaat J.J., Kolk J.A.C. — Multidimensional Real Analysis II: Integration | 385 |
Duistermaat J.J., Kolk J.A.C. — Multidimensional Real Analysis I(Cambridge Studies in Advanced Mathematics #86), Vol. 1 | 385 |
Turnbull H.W. — An Introduction to the Theory of Canonical Matrices | 32—33 |
Griffits D.J. — Introduction to quantum mechanics | 83 |
Kress R., Gehring F.W. — Numerical Analysis | 37 |
Sokolnikoff I.S. — Mathematics of Physics and Modern Engineering | 349 |
Gruenberg K.W. — Linear Geometry | 124 |
Robinson D.J.S. — A Course in Linear Algebra with Applications | 335 |
Gallier J. — Geometric Methods and Applications: For Computer Science and Engineering | 304, 327 |
Greenberg M.D. — Advanced engineering mathematics | 604 |
Strang G. — Linear Algebra and Its Applications | 294, 300, 309 |
Stewart G.W. — Matrix algorithms. Volume 2: Eigensystems | 423 |
Guggenheimer H.W. — Differential Geometry | 109 |
Ascher U.M., Russell R.D., Mattheij R.M. — Numerical Solution of Boundary Value Problems for Ordinary Differential Equations | 43 |
Saad Y. — Iterative methods for sparse linear systems | 4, 20, 23 |
Frazer R.A., Duncan W.J., Collar A.R. — Elementary Matrices | 33, 155 |
Kenzel W., Reents G., Clajus M. — Physics by Computer | 61 |
Aldrovandi R. — Special matrices of mathematical physics (stochastic, circulant and bell matrices) | 5 |
Searle S.R. — Matrix algebra useful for statistics | 341 |
Kay S.M. — Fundamentals of statistical signal processing, volume 1: estimation theory | 501 |
Kozen D.C. — The Design And Analysis Of Algorithms | 177 |
Mirsky L. — An introduction to linear algebra | 209, 301, 304 |
Mclachlan D. — X-ray crystal structure | 252 |
Bayfield J.E. — Quantum Evolution: An Introduction to Time-Dependent Quantum Mechanics | 228 |
Antia H.M. — Numerical Methods for Scientists and Engineers | 63, 476, 486, 497, 501 |
Kompaneyets A.S., Yankovsky G. — Theoretical Physics | 357 |
Kreyszig E. — Advanced engineering mathematics | 357 |
Gilmore R. — Lie Groups, Lie Algebras and Some of Their Applications | 16, 22 |
Miller K.S. — Complex stochastic processes | 32 |
Trefethen L.N., Bau D. — Numerical Linear Algebra | 11, 15, 34, 44, 162, 172, 187 |
Margenau H., Murphy G.M. — The mathematics of physics and chemistry | 310, 329, 371 |
Bell E.T. — The Development of Mathematics | 308 |
Martin J Buerger — Crystal Structure Analysis | 566 |
Kotz S. — Breakthroughs in Statistics (volume 3) | 151 |
Katznelson I., KatznelsonY.R. — A (Terse) Introduction to Linear Algebra (Student Mathematical Library) | 113 |
Beth T., Jungnickel D., Lenz H. — Design Theory (vol. 2) | 579 |
Rektorys K. — Survey of applicable mathematics | 106 |
Herriot J.G. — Methods of mathematical analysis and computation | 89 |
Bjoerck A., Dahlquist G. — Numerical mathematics and scientific computation | 190 |
Nicholson W.K. — Linear Algebra with Applications | 305 |
Postnikov M. — Lectures in Geometry. Semestr V. Lie Groups and Lie Algebras | 322 |
Press W.H., Teukolsky S.A., Vetterling W.T. — Numerical recipes in Fortran 90 | 450, 454, 475 |
L Sirovich — Techniques of Asymptotic Analysis With 23 Illustrations | 193, 203 |
Goertzel G. — Some Mathematical Methods of Physics | 64 |
Harman T.L., Dabney J.B., Richert N.J. — Advanced Engineering Mathematicas with MATLAB | 190, 192 |
Ortega J.M. — Numerical analysis: a second course | 7, 21 |
Liu B., Lai H.-J. — Matrices in Combinatorics and Graph Theory (Network Theory and Applications Volume 3) | 249 |
Kay S.M. — Fundamentals of statistical signal processing: estimation theory | 501 |
Antsaklis P.S., Michel A.N. — Linear Systems | 648 |
Finkbeiner D.T. — Introduction to Matrices and Linear Transformations | 190—191 |
Abramovich Y.A., Aliprantis C.D. — An Invitation to Operator Theory | 317 |
Birkhoff G., Mac Lane S. — A Survey of Modern Algebra | 300ff. |
Goswami J., Chan A. — Fundamentals of Wavelets. Theory, Algorithms, and Applications | 22 |
Atkins P. — Molecular Quantum Mechanics | 520 |
Hille E. — Methods in classical and functional analysis | 24 |
Hildebrand F.B. — Methods of Applied Mathematics | 31, 42, 47 |
Ferrar W.L. — Algebra: a textbook of determinants, matrices, and algebraic forms | 129 |
McShane E.J., Botts T.A. — Real Analysis | 241 |
Beckenbach E.F., Bellman R. — Inequalities | 55—57 |
Richards P.I. — Manual of Mathematical Physics | 309 |
Atkins P.W., Friedman R.S. — Molecular Quantum Mechanics | 520 |
Dunford N., Schwartz J., Bade W.G. — Linear operators. Part 2 | (561) |
Cloud M.J., Drachman B.C. — Inequalities: with applications to engineering | 93 |
Fuzhen Zhang — Matrix theory: basic results and techniques | 7, 65, 208 |
Gruenberg K.W., Weir A.J. — Linear Geometry | 124 (ex. 2) |
Synge J.L. — Relativity: The Special Theory | 114ff, 129 |
Bates D.R. — Quantum Theory. I. Elements | 21, 26 |
Schiff L.I. — Quantum Mechanics | 151 |
Apostol T.M. — Calculus (Volume 2): Multi-Variable Calculus and Linear Algebra with Applications | 122 |
Usmani R.A. — Applied Linear Algebra | 58, 128 |
Cohen G.L. — A Course in Modern Analysis and Its Applications | 287 |
Horn R.A. — Matrix Analysis | 109, 167, 169 |
Schott J.R. — Matrix Analysis for Statistics | 18 |
Ma Z.-Q., Gu X.-Y. — Problems and Solutions in Group Theory for Physicists | 2, 5 |
Higham D.J., Higham N.J. — MATLAB guide | 121 |
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) | 561 |
Landau L.D., Lifshitz E.M. — Course of Theoretical Physics (vol.3). Quantum Mechanics. Non-relativistic Theory | 32 |
Marcus M., Minc H. — Introduction to Linear Algebra | 56 |
Young D.M., Gregory R.T. — A Survey of Numerical Mathematics, Volume 2 | 720 |
Golan J.S. — The Linear Algebra a Beginning Graduate Student Ought to Know (Texts in the Mathematical Sciences) | 351 |
Abramovich Y., Aliprantis C. — An Invitation to Operator Theory (Graduate Studies in Mathematics, V. 50) | 317 |
Beth T., Jungnickel D., Lenz H. — Design Theory (Vol. 1) | 579 |
Sima V. — Algorithms for Linear-Quadratic Optimization | 55, 106, 110, 120, 162, 172, 213 |
Beckenbach E., Bellman R. — Inequalities (Ergebnisse der Mathematik und ihrer Grenzgebiete. 2. Folge) | 55—-57 |
Dennery P., Krzywicki A. — Mathematics for Physicists | 141, see also "Hermitian matrices" |