| Êíèãà | Ñòðàíèöû äëÿ ïîèñêà |
| Weintraub S. — Differential Forms. A complement to vector calculus | |
| Êîðìåí Ò., Ëåéçåðñîí ×., Ðèâåñò Ð. — Àëãîðèòìû: ïîñòðîåíèå è àíàëèç | 41, 95, 714 |
| Ãóäðè÷ Ì.Ò., Òàìàññèÿ Ð. — Ñòðóêòóðû äàííûõ è àëãîðèòìû â Java | 581, 586, 589, 592, 596, 627 |
| Ãîâîðóõèí Â., Öèáóëèí Á. — Êîìïüþòåð â ìàòåìàòè÷åñêîì èññëåäîâàíèè | 75 |
| Taylor M.E. — Partial Differential Equations. Basic theory (vol. 1) | 100, 105 |
| Bruce C.Berndt — Ramanujan's Notebooks (part 5) | 91,185 |
| Goldschmidt D.M. — Algebraic Functions and Projective Curves | 113 |
| Sertoz S. — Algebraic Geometry | 173 |
| Âîðîáüåâ Å.Ì. — Ââåäåíèå â ñèñòåìó "Ìàòåìàòèêà" | 248 |
| Evans L.C. — Partial Differential Equations | 487 |
| Diestel R. — Graph Theory | 5 |
| Dodge C.W. — Sets, logic & numbers | 217, 263 |
| Baker A. — Algebra and Number Theory | 13 |
| Olver P.J. — Equivalence, Invariants and Symmetry | 24, 26, 80 |
| Harris J. — Algebraic Geometry: a first course | 16, 166, 225, 226 |
| Dixon J.D. — Problems in Group theory | 11, 58, 64 |
| Cvetkovic D., Doob M., Sachs H. — Spectra of graphs. Theory and application | 14* |
| Donaldson K., Kronheimer P.B. — Geometry of Four-Manifolds | 208, 378, 386 |
| Fulton W. — Young tableaux: with applications to representation theory and geometry | 213 |
| Cameron P.J. — Polynomial aspects of codes, matroids, and permutation groups | 34 |
| Dickson L.E. — Algebraic invariants | 30 |
| Eisenbud D. — Commutative algebra with a view toward algebraic geometry | 44, 300 |
| Silverman J.H. — The arithmetic of elliptic curves | see also Inseparable degree; Local degree; Separable degree |
| Becker T., Weispfenning V. — Groebner bases and commutative algebra | 71 |
| Axler S., Bourdon p., Ramey W. — Harmonic function theory | 23, 80 |
| Matousek J. — Lectures on Discrete Geometry (some chapters) | 12 |
| Jacobson N. — Structure and Representations of Jordan Algebras | 209 |
| Conte R. — Painleve Property: One Century Later | 103 |
| Gromov M. — Metric Structures for Riemannian and Non-Riemannian Spaces | A. |
| Lueck W. — Basic introduction to surgery theory | 40 |
| Cuntz J., Skandalis G., Tsygan B. — Cyclic Homology in Non-Commutative Geometry | 7 |
| Deitel H.M. — Visual C# How to Program | |
| Maple 8. Learning guide | 62 |
| Newman M. — Integral Matrices | 43 |
| Davies E. — Spectral Theory and Differential Operators | 45 |
| Dodge C.W. — Foundations of algebra and analysis | 217, 263 |
| Behnke H., Bachmann F., Fladt K. — Fundamentals of Mathematics, Volume I: Foundations of Mathematics: The Real Number System and Algebra | 299 |
| Mahmoud H.M. — Evolution of random search trees | 1 |
| Diestel R. — Graph theory | 5 |
| Knapp A.W. — Elliptic Curves (MN-40) | 243, 249, 273, 317, 359, 360 |
| Kirwan F. — Complex algebraic curves | 30, 159 |
| Grotschel M., Lovasz L., Schrijver A. — Geometric Algorithms and Combinatorial Optimization | 17, 18 |
| Hazewinkel M. (ed.) — Handbook of Algebra, Volume 4 | 92, 292 |
| Lynch S. — Dynamical Systems with Applications Using Mathematica® | 218 |
| Estep D.J. — Practical Analysis in One Variable | 62 |
| Lawler E.L. — Combinatorial Optimization: Networks and Matroids | 24 |
| Miyanishi M. — Algebraic Geometry | 111, 159 |
| Ash R.B. — Abstract algebra: the basic graduate year | 2.5 |
| Engel K. — Sperner theory | 4 |
| Blessenohl D., Schocker M. — Noncommutative Character Theory of the Symmetric Group | see character |
| Fulton W., Pragacz P. — Schubert varieties and degeneracy loci | 2 |
| Michor P.W. — Topics in Differential Geometry | 119 |
| Borwein P., Choi S., Rooney B. — The Riemann Hypothesis | 17, 112 |
| Brown R.F., Gorniewicz L., Jiang B. — Handbook of Topological Fixed Point Theory | 871, 879 |
| van den Essen A. — Polynomial automorphisms and the Jacobian conjecture | 55, 91, 111, 145, 284, 289 |
| Leamer M.J. — Groebner finite path algebras | 20 |
| Hatcher A. — Algebraic Topology | 134, 258 |
| Simpson S.G. — Mathematical Logic | 3, 19 |
| Higson N., Roe J. — Analytic K-Homology | 378 |
| Brouwer A.E., Cohen A.M., Neumaier A. — Distance-Regular Graphs | 434 |
| Burris S., Sankappanavar H.P. — A Course in Universal Algebra | 228 |
| Brown K.S. — Cohomology of Groups | 4 |
| Ellis G. — Rings and Fields | 18, 35, 117, 135 |
| Ericson T. — Codes on Euclidean Spheres | 311 |
| Agarwal R.P., O'Regan D. — Fixed Point Theory and Applications | 144 |
| Szkelyhidi L. — Discrete Spectral Synthesis and Its Applications | 43 |
| Bollobas B. — Modern Graph Theory | 3 |
| Golumbic M.C., Trenk A. — Tolerance Graphs | 10 |
| Williamson S. — Combinatorics for computer science | 226, 228 |
| Jost J., Simha R.T. — Compact Riemann Surfaces: An Introduction to Contemporary Mathematics | 64, 66, 150, 189 |
| James G., Liebeck M.W. — Representations and Characters of Groups | 30, 122, 249 |
| Stillwell J. — Yearning for the Impossible: The Surprising Truths of Mathematics | 44 |
| Mitsumi S., Sturmfels B., Takayama N. — Groebner Deformations of Hypergeometric Differential Equations, Algorithms and Computation in Mathematics, Volume 6 | 29, 112, 152 |
| Naber G.L. — Topology, Geometry and Gauge Fields | 340 |
| Cohn P.M. — Algebraic numbers and algebraic functions | 85, 110, 115, 123 |
| Hein J.L. — Discrete Mathematics | 44 |
| Chrystal G. — Algebra. An Elementary Textbook, Vol. 1 | 30, 58 |
| Baez J.C., Segal I.E., Zhou Z. — Introduction to algebraic and constructive quantum field theory | 175 |
| Stewart I., Tall D. — Algebraic Number Theory and Fermat's Last Theorem | 14, 20 |
| Samet H. — Applications of Spatial Data Structures: Computer Graphics, Image Processing, and Other Areas | 3 |
| Intriligator M.D., Arrow K.J. — Handbook of Mathematical Economics (vol. 4) | 1552 |
| Lang S.A. — Undergraduate Analysis | 56, 201 |
| Marchette D.J. — Random Graphs for Statistical Pattern Recognition | 2 |
| Iwaniec H., Kowalski E. — Analytic number theory | 94 |
| Rockingham G.R. — Deducibility and Decidability | see “Sentence-form” |
| Altman A., Kleiman S. — Introduction to Grothendieck duality theory | VIII, 1.3 |
| Du D. (ed.), Pardalos P. (ed.) — Handbook of combinatorial optimization: supplement volume A | 310 |
| Cohen A.M., Cuypers H., Sterk H. — Some tapas of computer algebra | 185 |
| Jensen K. — Elements of KK-Theory | 25 |
| Glenn O.E. — A Treatise on the Theory of Invariants | 20 |
| Singer I.M., Thorpe J.A. — Lecture Notes on Elementary Topology and Geometry | 107 |
| Ionin Y.J., Shrikhande M.S. — Combinatorics of Symmetric Designs | 19 |
| Smullyan R.M. — Godel's incompleteness theorems | 16 |
| Samet H. — The design and analysis of spatial data structures | 3 |
| Fishbane P.M. — Physics For Scientists and Engineers with Modern Physics | A-1 |
| Lang S. — Abelian Varieties | I, § 2, p. 12; IV, § 3, p. 103 |
| Gray J. — Mastering Mathematica | 111 |
| Molloy M.S., Reed B. — Graph Colouring and the Probabilistic Method | 5 |
| Normann D. — Recursion on the Countable Functionals | 81 |
| Simon B. — Representations of Finite and Compact Groups | 21 |
| Sack J.R., Urrutia J. (Ed) — Handbook of Computational Geometry | 705 |
| Watt D.A. — Java collections: an introduction to abstract data types, data structures, and algorithms | 403 |
| Rowan-Robinson M. — Nine Numbers of the Cosmos | 25 |
| Soule C. — Lectures on Arakelov Geometry | 68, 70 |
| Strichartz R.S. — The way of analysis | 390 |
| Sanders J.A., Verhulst F. — Averaging methods in nonlinear dynamical systems | 219 |
| R.D.Carmichael — Introduction to the Theory of Groups of Finite Order | 5, 19 |
| Spivak M. — A Comprehensive Introduction to Differential Geometry (Vol.1) | 275 |
| Hein J.L. — Discrete Structures, Logic, and Computability | 45 |
| Passman D.S. — Permutation groups | 2 |
| Chung F.R.K. — Spectral Graph Theory | 2 |
| Reutenauer Ch. — Free Lie Algebras | 5, 16 |
| Papadimitriou C.H., Steiglitz K. — Combinatorial Optimization: Algorithms and Complexity | 21 |
| Bollobás B. — Combinatorics: Set Systems, Hypergraphs, Families of Vectors and Combinatorial Probability | 81 112 |
| Nishizeki T., Chiba N. — Planar Graphs: Theory and Algorithms (North-Holland Mathematics Studies) | 3, 11 |
| Dong F.M., Teo K.L., Koh K.M. — Chromatic Polynomials And Chromaticity Of Graphs | XVI |
| Luck W. — Transformation Groups and Algebraic K-Theory | 394 |
| Berger M., Cole M. (translator) — Geometry I (Universitext) | 18.2.5.2 |
| McCoy N.H. — Rings and ideals | 33, 47, 48 |
| Granas A., Dugundji J. — Fixed Point Theory | 253, 258, 490, 586, 612 |
| Hußmann H. — Formal Foundations for Software Engineeing Methods | 78 |
| Hu S.-T. — Elements of general topology | 196 |
| Ullman J.D. — Principles of database systems | see “Arity” |
| Barrels R.H., Beatty J.C. — An Introduction to Splines for use in Computer Graphics and Geometric Modeling | 211, 333 |
| Kozen D.C. — The Design And Analysis Of Algorithms | 211 |
| Fuhrmann P.A. — A Polynomial Approach to Linear Algebra | 11 |
| Nagata M. — Field Theory | 11, 32, 55, 91, 142, 179 |
| Olver P.J., Shakiban C. — Applied linear. algebra | 80, 100, 157, 173, 225, 263, 403 |
| Hein J.L. — Theory of Computation: An Introduction | 19 |
| Burger E.B. — Exploring the Number Jungle: A Journey into Diophantine Analysis | 56 |
| Holz M., Podewski K.-P., Steffens K. — Injective Choice Functions | 33 |
| Smullyan R.M., Fitting M. — Set theory and the continuum problem | 130 |
| Kreher D.L., Stinson D.R. — Combinatorial Algorithms: Generation, Enumeration and Search | 4 |
| Ore O., Wilson R.J. — Graphs and Their Uses | 19, 70, 148 |
| Christofides N. — Graph-Theory: an Algorithmic Approach | 7 |
| Bonar D.D., Khoury M.J. — Real Infinite Series | 31 |
| Prestel A., Delzell C.N. — Positive Polynomials: From Hilbert's 17th Problem to Real Algebra (Springer Monographs in Mathematics) | see bound on |
| Herzog B. — Kodaira-Spencer Maps in Local Algebra | 1 |
| Anderson G.A., Granas A. — Fixed Point Theory | 253, 258, 490, 586, 612 |
| Lemmermeyer F. — Reciprocity Laws: From Euler to Eisenstein | 248 |
| Cantu-Paz E. — Efficient and accurate parallel genetic algorithms | 76, 80, 82, 92 |
| Lang S. — Introduction to Algebraic and Abelian Functions | 6 |
| Neumann M., Berman A., Stern R.J. — Nonnegative matrices in dynamic systems | 10 |
| Conte R. — The Painlevé property: One century later | 103 |
| Bouscaren E. — Model Theory and Algebraic Geometry | see "Morley degree" |
| Wilkinson L., Wills G., Rope D. — The Grammar aof Graphics | 377 |
| Sarfraz M. — Advances in geometric modeling | 20, 21, 29, 40, 42, 46, 72—74, 82, 133, 134, 186, 207, 231, 263, 300, 301, 302 |
| Monod N. — Continuous Bounded Cohomology of Locally Compact Groups | 67 |
| Ore O. — Theory of Graphs | 10 |
| Kreig A. — Modular Forms on Half-Spaces of Quaternions | 46, 78 |
| Moh T.T. — Algebra | 110 |
| Metsch K. — Linear Spaces with Few Lines | 1 |
| Beth T., Jungnickel D., Lenz H. — Design Theory (vol. 2) | 2 |
| Perrin D., Pin J.-E. — Infinite Words: Automata, Semigroups, Logic abd Games | 253 |
| Moerdijk I., Reyes G.E. — Models for smooth infinitesimal analysis | 280 |
| Fantechi B., Gottsche L., Illusie L. — Fundamental Algebraic Geometry. Grothendieck's FGA Explained MAg | 317 |
| Baez J.C., Muniain J.P. — Gauge theories, knots, and gravity | 57 |
| Nicholson W.K. — Linear Algebra with Applications | 191 |
| Rice J.R. — The approximation of functions. Nonlinear and multivariate theory | 2, 4, 56, 69 |
| Krizek M., Somer L., Luca F. — 17 Lectures on Fermat Numbers: From Number Theory to Geometry | 183 |
| Lang S. — Introduction to Algebraic and Abelian functions | 6 |
| Ralston A., Wilf H.S. — Mathematical methods for digital computers | 145 |
| Cohn P.M. — Algebraic Numbers and Algebraic Functions | 85, 110, 115, 123 |
| Akbar-Zadeh H. — Initiation To Global Finslerian Geometry | 5, 10, 23, 27—30, 33, 34, 35, 46, 51, 96, 99, 108, 112, 114, 134, 144, 147, 150, 154, 163, 202, 206, 210, 225, 235, 242 |
| Aigner M. — Graph theory | 7 |
| Hu S.-T. — Introduction to contemporary mathematics | 123 |
| Ince E.L. — Integration of ordinary differential equations | 2, 40 |
| Liu B., Lai H.-J. — Matrices in Combinatorics and Graph Theory (Network Theory and Applications Volume 3) | 279 |
| Schremmer A. — Reasonable basic algebra | 46 |
| Kinsey L.C. — Topology of surfaces | 225 |
| Choquet-Bruhat Y., DeWitt-Morette C., Dillard-Bleick M. — Analysis, manifolds and physics. Part I. | 556, 557 |
| Knus M.-A. — Quadratic and hermitian forms over rings | 392 |
| Spanier E.H. — Algebraic Topology | 157 |
| Birkhoff G., Mac Lane S. — A Survey of Modern Algebra | 62, 66 |
| Kells L.M. — Plane and Spherical Trigonometry | 48, 265 |
| Devaney R.L., Keen L. — Chaos and Fractals: The Mathematics Behind the Computer Graphics | 58 |
| Fantechi B., Kleiman S.L., Illusie L. — Fundamental Algebraic Geometry | 317 |
| Humphreys J.E. — Introduction To Lie Algebras And Representation Theory | 139 |
| Gelbaum B.R. — Problems in Real and Complex Analysis | 2.3. 23 |
| Diestel R. — Graph Theory | 5 |
| Copeland A.H. — Geometry, algebra, and trigonometry by vector methods | 168 |
| Roberts F. S. — Graph theory and its applications to problems of society | 65 |
| Wen-tsun W. — Rational Homotopy Type: A Constructive Study Via the Theory of the I*-Measure | 20 |
| Rudin W. — Function theory in polydiscs | 100 |
| Lenstra H.W. — Development of the Number Field Sieve | 13, 15, 32, 58, 63, 71, 98, 104, 124 |
| Vasil'ev V. A., Sossinski A. — Introduction to Topology | 75 |
| Carroll R.W. — Mathematical physics | 256, 257 |
| Lang S. — Undergraduate analysis | 56, 201 |
| Griess R.L.Jr. — Twelve sporadic groups | 5 |
| Iverson K.E. — A Programming Language | 47 |
| Moskowitz M.A. — Adventures in mathematics | 14 |
| Moh T.T. — Algebra | 110 |
| Dicks W., Dunwoody M.J. — Groups acting on graphs | 141 |
| Geddes K., Czapor S., Labahn G. — Algorithms for computer algebra | 38, 40, 49 |
| Magnus W., Karrass A., Solitar D. — Combinatorial Group Theory: Presentations of Groups in Terms of Generators and Relations | 299 |
| Chandler B., Magnus W. — The history of combinatorial group theory: a case study in the history of ideas | 149 |
| Lane S.M. — Mathematics, form and function | 139, 324 |
| Naber G.L. — Topology, Geometry and Gauge Fields | 340 |
| Andreotti A., Stoll W, — Analytic And Algebraic Dependence Of Meromorphic Functions | 107 |
| Du D.-Z., Ko K.-I. — Theory of computational complexity | 276 |
| Hartmann A.K., Rieger H. — Optimization Algorithms in Physics | 37 |
| Bahturin Y.A., Mikhalev A.A., Petrogradsky V.M. — Infinite dimensional lie superalgebras | 5 |
| Zeidler E. — Oxford User's Guide to Mathematics | 5 |
| Pier J.-P. — Mathematical Analysis during the 20th Century | 231, 286 |
| Grimaldi R.P., Rothman D.J. — Discrete and Combinatorial Mathematics: An Applied Introduction | 0, 800 |
| Lemm J.M., Meurant G. — Computer Solution of Large Linear Systems | 36, 141, 142, 146—149, 151, 153—155 |
| Di Battista G. — Graph Drawing: Algorithms for the Visualization of Graphs | 4 |
| Margolis H.R. — Spectra and the Steenrod Algebra | 442 |
| Von Grudzinski O. — Quasihomogeneous distributions | 13, 25, 77, 93 |
| Wang D. (ed.), Zheng Z. (ed.) — Differential Equations with Symbolic Computations | 2, 95 |
| Klee V., Wagon S. — Old and New Unsolved Problems in Plane Geometry and Number Theory (Dolciani Mathematical Expositions Series #11) | 145—146 |
| Childs L. — A concrete introduction to higher algebra | 126, 129 |
| Foulds L.R. — Combinatorial optimization for undergraduates | see "Vertex" |
| Kushkuley A., Balanov Z. — Geometric Methods in Degree Theory for Equivariant Maps | 17 |
| Chen B.-y. — Geometry of submanifolds and its applications | 29 |
| Fenstad J.E. — General recursion theory: An axiomatic approach | 140, 150, 157 |
| Maclane S. — Homology | 175 |
| George A., Liu J. — Computer solution of large sparse positive definite systems | 37 |
| Brown K. — Cohomology of Groups (Graduate Texts in Mathematics) | 4 |
| Canuto C., Tabacco A. — Mathematical analysis | 50, 52 |
| Cohn P.M. — Free Rings and Their Relations (London Mathematical Society Monographs) | 60, 100, 111, 344, 349 |
| Fritsch R., Piccinini R. — Cellular Structures in Topology (Cambridge Studies in Advanced Mathematics 19) | 90 |
| Choquet-Bruhat Y., Dewitt-Morette C. — Analysis, manifolds and physics | 556, 557 |
| Joyner D. — Adventures in group theory: Rubik's cube, Merlin's machine, and other mathematical toys | 144 |
| Mac Lane S. — Mathematics: Form and Function | 139, 324 |
| Beth T., Jungnickel D., Lenz H. — Design Theory (Vol. 1) | 2 |
| Ãîâîðóõèí Â., Öèáóëèí Á. — Êîìïüþòåð â ìàòåìàòè÷åñêîì èññëåäîâàíèè | 75 |
| Ãîâîðóõèí Â., Öèáóëèí Á. — Êîìïüþòåð â ìàòåìàòè÷åñêîì èññëåäîâàíèè - Maple, Matlab, LaTex | 75 |
| Shoenfield J.R. — Mathematical Logic | 169 |
| Neusel M.D. — Invariant Theory of Finite Groups | 203 |
| Jost J. — Bosonic Strings: A mathematical treatment | 54 |
| Truss J.K. — Foundations of Mathematical Analysis | 88, 178 |
| Adámek J. — Foundations of Coding | 141, 162 |
| Geddes K.O., Czapor S.R., Labahn G. — Algorithms for computer algebra | 38, 40, 49 |
| Lundell A., Weingram S. — The topology of CW complexes | 165 |
| Truss J. — Foundations of mathematical analysis | 88, 178 |
| J. K. Truss — Foundations of mathematical analysis MCet | 88, 178 |