Книга | Страницы для поиска |
Bell W.W. — Special Functions for scientists and engineers | 203 |
Bruce C.Berndt — Ramanujan's Notebooks (part 5) | 523 |
Lee J.S., Miller L.E. — CDMA systems engineering handbook | 164, 991—92 |
Press W.H., Teukolsky S.A., Vetterling W.T. — Numerical recipes in FORTRAN77 | 204, 239 |
Morse P., Feshbach H. — Methods of Theoretical Physics (part 1) | 551—555, 604—619 |
Morse P., Feshbach H. — Methods of Theoretical Physics (part 2) | 551—555, 604—619 |
Hayek S.I. — Advanced mathematical methods in science and engineering | 618 |
Schweizer W. — Numerical quantum dynamics | 181 |
Jones D.S. — Introduction to Asymptotics: A Treatment Using Nonstandard Analysis | 21, 61 |
Szego G. — Orthogonal polynomials | 104 |
Govindarajulu Z. — Sequential Statistics | 65, 76 |
Mukamel S. — Principles of Nonlinear Optical Spectroscopy | 245 |
Pugovecki E. — Quantum mechanics in hilbert space | 165 |
Chaudhry M.A., Zubair S.M. — On a Class of Incomplete Gamma Functions with Applications | 38, 53, 81, 86 |
Balser W. — Formal power series and linear systems of meromorphic ordinary differential equations | 23 |
Lorentzen L., Waadeland — Continued fractions and applications | 311 |
Prugovecki E. — Quantum Mechanics in Hilbert Space | 165 |
Khovanskii A.N, — The application of continued fractions and their generalizations to problems in approximation theory | 138 |
Greiner W. — Quantum mechanics. An introduction | 161 |
Thaller B. — Visual quantum mechanics | 223 |
Duistermaat J.J., Kolk J.A.C. — Multidimensional Real Analysis II: Integration | 639 |
Rainville E.D. — Special Functions | 106, 123—128 |
Galindo A., Pascual P. — Quantum Mechanics Two | I 317 |
Mukamel S. — Principles of nonlinear spectroscopy | 245 |
Schiff L.I. — Quantum mechanics | 115—116 |
Galindo A., Pascual P. — Quantum Mechanics One | 317 |
Bethe H.A., Salpeter E.E. — Quantum Mechanics of One-and-Two-Electron Atoms | 12 |
Panchishkin A.A. — Non-Archimedean L-Functions of Siegel and Hilbert Modular Forms | 60, 64 |
Wong K. — Asymptotic Approximations of Integrals | 46 |
Wawrzynczyk A. — Group representations and special functions | 649 |
Bates D.R. — Quantum Theory | 142, 165, 241 |
van der Giessen E., Wu Theodore Y.-T. — Advances in Applied Mechanics, Volume 37 | 102, 112 |
Luke Y.L. — The special functions and their approximations (volume 1) | see Hypergeometric function (confluent) |
Haight F.A. — Handbook of the Poisson Distribution | 41, 61 |
Simmons G.F. — Differential Equations with Applications and Historical Notes | 183 |
Bertotti G. — Hysteresis in Magnetism: For Physicists, Materials Scientists, and Engineers | 275 |
Press W.H., Teukolsky S.A., Vetterling W.T. — Numerical recipes in Fortran 90 | 204, 239 |
Marks R.J.II. — The Joy of Fourier | 201, 207, 208, 728, 737 |
Smith P.A., Eilenberg S. — Pure and Applied Mathematics | 154 |
Anderson T.W. (ed.), Fang K.T. (ed.), Olkin I. (ed.) — Multivariate Analysis and Its Applications | 144 |
Peebbles P.Z. — Radar Principles | 524 |
Morse P.M. — Methods of theoretical physics | 551—555, 604—619 |
Dunford N., Schwartz J., Bade W.G. — Linear operators. Part 2 | XIII.8 (1526) |
Neuenschwander D. — Probabilistic and Statistical Methods in Cryptology: An Introduction by Selected Topics | 94 |
Virchenko N. — Generalized Associated Legendre Functions and Their Applications | 148 |
Hildebrand F.B. — Advanced Calculus for Applications | 141, 169, 174 (8) |
Wong R. — Asymptotic approximations of integrals | 46 |
Jeffreys H. — Methods Of Mathematical Physics | 607 |
Miller W. — Symmetry and Separation of Variables | 119, 140, 152, 153, 155, 167, 258, 268, 269 |
Bates D.R. — Quantum Theory. I. Elements | 142, 165, 241 |
Schiff L.I. — Quantum Mechanics | 140 |
Hassani S. — Mathematical Methods: for Students of Physics and Related Fields | 332—333 |
Snygg J. — Clifford algebra: a computational tool for physicists | 208—211 |
Constantinescu F., Magyari E. — Problems in quantum mechanics | 403 |
Farina J.E.G. — Quantum theory of scattering processes | 14, 41 |
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) | XIII.8 1526 |
Hejhal D.A. — The Selberg Trace Formula for PSL(2,R) (volume 2) | 343 |
Snygg J. — Clifford algebra: a computational tool for physicists | 208—211 |
Balser W. — Formal Power Series and Linear Systems of Meromorphic Ordinary Differential Equations | 23 |
Sommerfeld A. — Partial Differential Equations in Physics | 154 |
Dennery P., Krzywicki A. — Mathematics for Physicists | 317 |
Mathai A.M., Saxena R.K. — Generalized Hypergeometric Functions with Applications in Statistics and Physical Sciences | 43 |
Mathai A.M., Saxena R.K. — Generalized Hypergeometric Functions With Applications In Statistics And Physical Sciences | 43 |