Êíèãà | Ñòðàíèöû äëÿ ïîèñêà |
Nevanlinna R., Paatero V. — Introduction to Complex Analysis | 52, 62 |
Sertoz S. — Algebraic Geometry | 105 |
Ito K. — Encyclopedic Dictionary of Mathematics. Vol. 2 | 74.D |
Becker K.H., Dörfler M. — Dynamical Systems and Fractals : Computer Graphics Experiments with Pascal | 192 |
Apostol T.M. — Mathematical Analysis | 17 |
Olver P.J. — Equivalence, Invariants and Symmetry | 10, 36, 46 |
Lee J.M. — Differential and Physical Geometry | 285 |
Miranker W.L. — Numerical Methods for Stiff Equations and Singular Perturbation Problems | 23 |
Felsager B. — Geometry, particles and fields | 560 |
Eisenbud D. — Commutative algebra with a view toward algebraic geometry | 215 |
Goldberg S.I. — Curvature and homology | 149 |
Henrici P. — Applied and Computational Complex Analysis (Vol. 2) | 145 |
Rudin W. — Real and Complex Analysis | 252 |
Farkas H., Kra I. — Riemann Surfaces | 10, 198 |
Miranda R. — Graduate studies in mathematics (vol.5). Algebraic curves and Riemann surfaces | 4 |
Isham J. — Modern Differential Geometry for Physics | 188 |
Ward R.S., Wells R.O. — Twistor geometry and field theory | 10, 62, 377, 380, 383, 384, 426 |
Ahlfors L.V. — Complex analysis | 19 |
Barnsley M. — Fractals Everywhere | 8, 43, 258, 272, 275, 280 |
Naber G.L. — The geometry of Minkowski spacetime: an introduction to the mathematics of the special theory of relativity | 79—81 |
Brin M., Stuck G. — Introdution to dynamical system | 191 |
Cherry W., Ye Z. — Nevanlinna's Theory of Value Distribution: The Second Main Theorem and Its Error Terms | 6 |
Baker G.A., Graves-Morris P. — Pade approximants (vol. 2) | I: 257 |
Lorentzen L., Waadeland — Continued fractions and applications | 62 |
Baker G.A., Graves-Morris P. — Pade approximants (vol. 1) | I:257 |
Clarkson P.A. — Applications of Analytic and Geometric Methods to Nonlinear Differential Equations | 10, 19, 20, 28 |
Behnke H., Bachmann F., Fladt K. — Fundamentals of Mathematics, Volume III: Analysis | 230, 263, 271 |
Lojasiewicz S. — Introduction to Complex Analytic Geometry | 128 |
Kirwan F. — Complex algebraic curves | 7, 38, 133 |
Gracia-Bondia J.M., Varilly J.C., Figueroa H. — Elements of Noncommutative Geometry | 75, 292,408, 515 |
Brieskorn E., Knorrer H. — Plane Algebraic Curves | I 141 |
Shafarevich I.R., Shokurov V.V., Danilov V.I. — Algebraic geometry I: Algebraic curves algebraic. Manifolds and schemes | 5, 20, 68 |
Lando S.K., Zvonkin A.K. — Graphs on Surfaces and Their Applications | 69 |
Brünjes L. — Forms of Fermat Equations and Their Zeta Functions | 136 |
Ueno K. — An Introduction to Algebraic Geometry (Translations of Mathematical Monographs) | 23, 49 |
Jones G.A., Singerman D. — Complex Functions: An Algebraic and Geometric Viewpoint | 3, 169 |
Hirzebruch F. — Topological Methods in Algebraic Geometry | 62 |
Reid M. — Undergraduate algebraic geometry | 43 |
Hertrich-Jeromin U. — Introduction to Mobius Differential Geometry | 292 |
Keen L., Lakic N. — Table of Contents Hyperbolic Geometry from a Local Viewpoint | 12 |
O'Donnel P. — Introduction to 2-Spinors in General Relativity | 6—8 |
Ratcliffe J.G. — Foundations of Hyperbolic Manifolds | 108 |
Katok S. — Fuchsian Groups | 6, see C |
Devaney R.L. — An introduction to chaotic dynamical systems | 265 |
Mumford D., Wright D., Series C. — Indra's Pearls: The Vision of Felix Klein | 57 |
Cohn P.M. — Algebraic numbers and algebraic functions | 24 |
Stewart I., Tall D. — Algebraic Number Theory and Fermat's Last Theorem | 251 |
Kohno T. — Conformal Field Theory and Topology | 42 |
Ito K. — Encyclopedic Dictionary of Mathematics | 74.D |
Rudin W. — Real and complex analysis | 266 |
Gong S., Gong Y. — Concise Complex Analysis | 10 |
Brocker Th., Dieck T.T. — Representations of Compact Lie Groups | 37, 63 |
Havin V.P., Nikolski N.K. (eds.) — Linear and Complex Analysis Problem Book 3 (part 2) | 2.15, 12.6, 12.22, 19.2, 19.3, 19.8 |
Vuorinen M. — Conformal geometry and quasiregular mappings | 4, 5 |
Kühnel W., Hunt B. — Differential Geometry: Curves - Surfaces - Manifolds | 209 |
Berger M., Cole M. (translator) — Geometry I (Universitext) | 6.8.8, 18.1.3.2, 4.2.5 |
Fenn R. — Geometry | 111 |
Driscoll T.A., Trefethen L.N. — Schwarz-Christoffel Mapping | 9, 108 |
Fine B., Rosenberger G. — Fundamental Theorem of Algebra | 179 |
Clemens C.H. — Scrapbook of Complex Curve Theory | 80 |
Kreyszig E. — Advanced engineering mathematics | 710 |
Simmons G.F. — Introduction to topology and modern analysis | 163 |
Hayman W.K. — Meromorphic functions | 13 |
Jerry Shurman — Geometry of the Quintic | 8 |
Hatfield B. — Quantum field theory of point particles and strings | 566 |
Schlichenmaier M. — An Introduction to Riemann Surfaces, Algebraic Curves and Moduli Spaces | 5, 42 |
Baker G.A. — Essentials of Padé Approximants in Theoretical Physics | 113—117 |
Lee J.M. — Differential and physical geometry | 285 |
Cohn P.M. — Algebraic Numbers and Algebraic Functions | 24 |
Mikhlin S.G., Prossdorf S. — Singular Integral Operators | 208 |
Koblitz N. — Introduction to Elliptic Curves and Modular Forms | 10, 21, 98, 105, 119, 120 |
Gleason A. — Fundamentals of Abstract Analysis | 178 |
Silverman J. — The arithmetic of dynamical systems | see projective line |
Lane S.M. — Mathematics, form and function | 117 |
Frankel T. — The geometry of physics: an introduction | 21 |
Andreotti A., Stoll W, — Analytic And Algebraic Dependence Of Meromorphic Functions | 75 |
Behnke H., Bachmann F., Fladt K. — Fundamentals of mathematics. Volume III. Analysis | 230, 263, 271 |
Cox D., Little J., O'Shea D. — Ideals, varieties, and algorithms | 361, 367 |
Penrose R., Rindler W. — Spinors and space-time. Spinor and twistor methods in space-time geometry | 1, 149, 153, 292 |
Zeidler E. — Oxford User's Guide to Mathematics | 555, 558, 591 |
Pier J.-P. — Mathematical Analysis during the 20th Century | 227 |
Rektorys K. — Survey of Applicable Mathematics.Volume 2. | II 243 |
Heinonen J. — Lectures on Analysis on Metric Spaces | 107 |
Fayolle G., Iasnogorodski R., Malyshev V. — Random Walks in the Quarter-Plane: Algebraic Methods, Boundary Value Problems and Applications (Stochastic Modelling and Applied Probability) | 33 |
Frankel T. — The geometry of physics: An introduction | 21 |
Isham C. — Modern Differential Geometry for Physicists | 188 |