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Результат поиска |
Поиск книг, содержащих: Reproducing kernel
Книга | Страницы для поиска | Reed M., Simon B. — Methods of Modern mathematical physics (vol. 1) Functional analysis | 347 | Ito K. — Encyclopedic Dictionary of Mathematics. Vol. 2 | 188.G | Hedenmalm H., Korenblum B., Zhu K. — Theory of Bergman spaces | 57, 242 | Miranker W.L. — Numerical Methods for Stiff Equations and Singular Perturbation Problems | 152 | Axler S., Bourdon p., Ramey W. — Harmonic function theory | 172 | Nikolskii N.K. — Treatise on the Shift Operator: Spectral Function Theory | 121, 197 | Landsman N.P. — Mathematical topics between classical and quantum mechanics | 123 | Loeve M. — Probability Theory (part 2) | 156 | Bergman S., Schiffer M. — Kernel Functions and Elliptic Differential Equations in Mathematical Physics | 397; see also Kernel function, reproducing property | Gracia-Bondia J.M., Varilly J.C., Figueroa H. — Elements of Noncommutative Geometry | 113 | Sepanski R.M. — Compact Lie Groups | 45 | Halmos P.R. — Hilbert Space Problem Book | 37 | Carmona R. — Practical Time-Frequency Analysis | 103, 173, 241 | Borwein P, Erdelyi T — Polynomials and polynomial inequalities | 47, 132 | Young R.M. — An Introduction to Non-Harmonic Fourier Series, Revised Edition | 15—19, 206 | Tarkhanov N.N. — Cauchy Problem for Solutions of Elliptic Equations | 387, 439 | Reed M., Simon B. — Methods of Functional Analysis (in 4 volumes). Volume 1: Functional Analysis | 347 | Suykens J.A.K., Horvath G., Basu S. — Advances in learning theory: methods, models and applications | 102 | Baez J.C., Segal I.E., Zhou Z. — Introduction to algebraic and constructive quantum field theory | 68 | Ito K. — Encyclopedic Dictionary of Mathematics | 188.G | Fukushima M. — Dirichlet forms and markov process | 82 | Dieudonne J. — Foundation of Modern Analysis | 6.3, prob. 4 | Havin V.P., Nikolski N.K. (eds.) — Linear and Complex Analysis Problem Book 3 (part 2) | 1.7, 5.4, 14.2, 15.3, 15.12 | Young R.M. — An Introduction to Nonharmonic Fourier Series | 15—19, 206 | Fuhrmann P.A. — A Polynomial Approach to Linear Algebra | 122 | Meyer Y. — Wavelets and Operators | 48 | Exner P. — Open quantum systems and Feynman integrals | 239, 274, 321 | Faraut J., Korányi A. — Analysis on symmetric cones | 164 | Kaiser D. — A Friendly Guide to Wavelets | 70, 228-233 | Buhmann M.D. — Radial Basis Functions : Theory and Implementations | 108, 119 | Dieudonne J. — Foundation of Modern Analysis | 6.3, prob. 4 | Mangiarotti L., Sardanashvily G. — Connections in Classical and Quantum Field Theory | 359 | Perina J., Hradil Z., Jurco B. — Quantum optics and fundamentals of physics | 117 | Kaiser G. — Friendly Guide to Wavelets | 70, 228—233 | Guichardet A. — Symmetric Hilbert Spaces and Related Topics | 95 | Suykens J.A.K., Horvath G. — Advanced learning theory: methods, moduls and applications | 102 | Rice J.R. — The approximation of functions. Nonlinear and multivariate theory | 157, 168 | Goffman C., Pedrick G. — First course in functional analysis | 186 | Itzykson C., Drouffe J-M. — Statistical field theory. Vol. 1 | 684 | Beckenbach E.F., Bellman R. — Inequalities | 115, 128, 129, 149 | Dunkl C.F., Xu Y. — Orthogonal Polynomials of Several Variables | 106 | Anderssen R.S., de Hoog F.R., Lukas M.A. — The application and numerical solution of integral equations | 169 | Biedenharn L.C., Louck J.D. — Angular momentum in quantum physics | 211 | Pan G.W. — Wavelets in Electromagnetics and Device Modeling | 19, 207, 208 | Donoghue Jr.W.F. — Monotone Matrix Functions and Analytic Continuation | 89 | Gohberg I., Goldberg S., Kaashoek M. — Classes of linear operators. (volume 2) | 496 | Singh R., Manhas J. — Composition Operators on Function Spaces (North-Holland Mathematics Studies) | 6 | Kaiser G. — Quantum physics, relativity, and complex spacetime: Towards a new synthesis | 22, 29ff, 49, 193, 287, 298 | Beckenbach E., Bellman R. — Inequalities (Ergebnisse der Mathematik und ihrer Grenzgebiete. 2. Folge) | 115, 128, 129, 149 |
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