Êíèãà | Ñòðàíèöû äëÿ ïîèñêà |
Nevanlinna R., Paatero V. — Introduction to Complex Analysis | 48 |
Graham R.L., Grotschel M., Lovasz L. — Handbook of combinatorics (vol. 1) | 1751, 1777, 1778 |
Ito K. — Encyclopedic Dictionary of Mathematics. Vol. 2 | 285.A |
Zeidler E. — Nonlinear Functional Analysis and its Applications IV: Applications to Mathematical Physic | 656ff |
Olver P.J. — Equivalence, Invariants and Symmetry | 381 |
Coxeter H.S.M. — Non-Euclidean Geometry | 4—11, 157, 178, 187—210, 213—223, 243—247, 252—258, 260—266, 300 |
Kneebone G.T. — Mathematical Logic and the Foundation of Mathematics | 183, 227 |
Graham R.L., Grotschel M., Lovasz L. — Handbook of combinatorics (vol. 2) | 1751, 1777, 1778 |
Liddle A. — An Introduction to Modern Cosmology | 28 |
Behnke H., Bachmann F., Fladt K. — Fundamentals of Mathematics, Volume II: Geometry | 167—168, 197, 497—498, 506—514 |
Marchisotto E.A., Smith J.T. — Legacy of Mario Pieri in Geometry and Arithmetic | See under geometry |
Hazewinkel M. (ed.) — Handbook of Algebra, Volume 4 | 389 |
Devlin K.J. — Language of Mathematics: Making the Invisible Visible | 165 |
Reid M., Szendroi B. — Geometry and Topology | 4, 20, 34, 36, 41—167 |
Jones G.A., Singerman D. — Complex Functions: An Algebraic and Geometric Viewpoint | 221 |
Hertrich-Jeromin U. — Introduction to Mobius Differential Geometry | 52 |
Akivis M., Goldberg V. — Differential Geometry of Varieties with Degenerate Gauss Maps | 27, 176 |
Rockmore D. — Stalking the Riemann Hypothesis: The Quest to Find the Hidden Law of Prime Numbers | 200—202, 205—212 |
Ratcliffe J.G. — Foundations of Hyperbolic Manifolds | 3 |
Jost J., Simha R.T. — Compact Riemann Surfaces: An Introduction to Contemporary Mathematics | 26, 33 |
Stillwell J. — Yearning for the Impossible: The Surprising Truths of Mathematics | 116, 195 |
Wapner L. — The Pea and the Sun: A Mathematical Paradox | 41 |
Mumford D., Wright D., Series C. — Indra's Pearls: The Vision of Felix Klein | 314, 333, 373, 376 |
Newman J.R. — The World of Mathematics, Volume 1 | 158—159 |
Coxeter H.S.M. — Introduction to Geometry | 263—303, 375—378 |
Ito K. — Encyclopedic Dictionary of Mathematics | 285.A |
Berger M., Pansu P., Berry J.-P. — Problems in Geometry | 19.B |
Raine D.J., Thomas E.G. — An Introduction to the Science of Cosmology | 69 |
Eddington A.S. — Space Time and Gravitation | 47 |
Newman J.R. (ed.) — The World of Mathematics, Volume 4 | 158—159, 1639, 1640 |
Morgan F. — Riemannian geometry, a beginners guide | 49, 87 |
Adams C.C. — The Knot Book: An Elementary Introduction to the Mathematical Theory of Knots | 121 |
Coxeter H.S.M. — Regular Polytopes | xi, 109, 171 |
Guggenheimer H.W. — Differential Geometry | 275 |
Rockmore D. — Stalking the Riemann Hypothesis | 200—202, 205—212 |
Fomenko À.Ò., Mishehenko A.S. — A Short Course in Differential Geometry and Topology | 30 |
Berger M., Cole M. (translator) — Geometry I (Universitext) | 13.8.4, 1.8.6, 18.3.8.6 |
Aczel J., Dhombres J. — Functional equations in several variables with applications to mathematics, information theory and to the natural and social sciences | 108 |
Carrol B.W., Ostlie D.A. — An introduction to modern astrophysics | 1184, 1185 |
Clemens C.H. — Scrapbook of Complex Curve Theory | 21, 26, 32 |
Coxeter H.S.M., Greitzer S.L. — Geometry revisited | 126 |
Eddington A.S. — Nature of the Physical World | 136 |
Aczel A.D. — God's Equation: Einstein, Relativity, and the Expanding Universe | 52-54, 57-59, 100-101 |
Fuchs D., Tabachnikov S. — Mathematical omnibus: Thirty lectures on classical mathematics | 271 |
Bezdek A. — Discrete Geometry | 239 |
Weeks J.R. — The shape of space | 149—156, 213—218 |
Coxeter H. — Regular polytopes | xi, 109, 171 |
Tietze H. — Famous Problems of Mathematics Solved and Unsolved | 328 |
Sommerville D.M.Y. — The elements of non-Euclidean geometry | Chap. ii.; 25, 30 |
Audin M. — Geometry | 182 |
Prasolov V.V., Tikhomirov V.M. — Geometry | 83, 100 |
Audin M. — Geometry | 182 |
Katz V.J. — A History of Mathematics: An Introduction | 790 |
Moskowitz M.A. — Adventures in mathematics | 65 |
Lane S.M. — Mathematics, form and function | 70 |
Dorst L., Fontijne D., Mann S. — Geometric algebra for computer science | 480—481 |
Griffits D.J. — Introductions to electrodynamics | 505—506 |
Dash J. — Quantitative Finance and Risk Management: A Physicist's Approach | 297 |
Zeidler E. — Oxford User's Guide to Mathematics | 747 |
Collatz L. — Functional analysis and numerical mathematics | 61 |
Courant R., Robbins H. — What Is Mathematics?: An Elementary Approach to Ideas and Methods | 214—224 |
Gullberg J. — Mathematics: from the birth of numbers | 382 |
Zieschang S. — Finite Groups of Mapping Classes of Surfaces | 17—30 |
Cofman J. — What to Solve? Problems and Suggestions for Young Mathematicians | 145 |
Walser H., Pedersen J. — 99 Points of Intersection: Examples, Pictures, Proofs | 4 |
Heinonen J. — Lectures on Analysis on Metric Spaces | 88 |
Stillwell J. — Mathematics and its history | 259—266, 269—271, 285, 301, 311 |
Davies P. — The New Physics | 75 |
Mac Lane S. — Mathematics: Form and Function | 70 |