Êíèãà | Ñòðàíèöû äëÿ ïîèñêà |
Nagel R. — One-parameter semigroups of positive operators | 143 |
Guillemin V., Pollack A. — Differential topology | 134 |
Êîðìåí Ò., Ëåéçåðñîí ×., Ðèâåñò Ð. — Àëãîðèòìû: ïîñòðîåíèå è àíàëèç | 536 |
Ìàíçîí Á.Ì. — Maple V power edition | 215 |
Ïðîõîðîâ Ã.Â., Ëåäåíåâ Ì.À., Êîëáååâ Â.Â. — Ïàêåò ñèìâîëüíûõ âû÷èñëåíèé MAPLE 5 | 69 |
Taylor M.E. — Partial Differential Equations. Basic theory (vol. 1) | 32, 125 |
Hunter J.K., Nachtergaele B. — Applied Analysis | 113 |
Khosrowpour M. — Encyclopedia Of Information Science And Technology | 1161 |
Graham R.L., Grotschel M., Lovasz L. — Handbook of combinatorics (vol. 1) | 124, 599 |
Arrowsmith D.K., Place C.M. — Dynamical systems. Differential equations, maps and chaotic behaviour | 23 |
Diestel R. — Graph Theory | 123—146, 125—126 |
Olver P.J. — Equivalence, Invariants and Symmetry | 18, 36, 52, 55, 69, 129, 256, 422, 429 |
Lee J.M. — Differential and Physical Geometry | 166 |
Korsch H.J., Jodl H.-J. — Chaos: A Program Collection for the PC | 12, 14 |
Cameron P.J. — Combinatorics : Topics, Techniques, Algorithms | 173 |
Majid S. — Foundations of Quantum Group Theory | 216 |
Kern S., Lynd D., Penny D. — Lotus Notes and Domino 6 Development | |
Zienkiewicz O.C., Taylor L.R. — The finite element method (vol. 1, The basis) | 12 |
Agrachev A.A., Sachkov Yu.L. — Control theory from the geometric viewpoint | 25 |
Graham R.L., Grotschel M., Lovasz L. — Handbook of combinatorics (vol. 2) | 124, 599 |
Lee J.M. — Introduction to Smooth Manifolds | 313 |
Hurwicz M. — Using Macromedia Studio MX 2004 | |
Palade V., Jain L.C., Bocaniala C.D. — Computational Intelligence in Fault Diagnosis | 37, 51, 64, 74, 95, 96, 98, 100, 115—117, 180, 182, 197, 198, 251—262, 266—268, 318—322, 327 |
Chorin A., Marsden J. — A Mathematical Introduction to Fluid Mechanics | 14 |
Brin M., Stuck G. — Introdution to dynamical system | 2, 19 |
Grimmett G. — Percolation | 378 |
Dill K.A., Bromberg S. — Molecular Driving Forces: Statistical Thermodynamics in Chemistry and Biology | 40, 315 |
Adams R.A. — Sobolev Spaces | 169 |
Engel K.-J., Nagel R. — One-Parameter Semigroups for Linear Evolution Equations | 91 |
Diestel R. — Graph theory | 139—162, 141—142 |
Gonzalez-Miranda J.M. — Synchronization and Control of Chaos: An Introduction for Scientists and Engineers | 17, 18, 183 |
Grotschel M., Lovasz L., Schrijver A. — Geometric Algorithms and Combinatorial Optimization | 197, 197—201, 233—242 |
Lynch S. — Dynamical Systems with Applications Using Mathematica® | 89 |
Kaczynski T., Mischaikow K.M. — Computational Homology | 318 |
Engel K. — Sperner theory | 117 |
Cheban D.N. — Global Attractors of Non-Autonomous Dissipative Dynamical Systems (Interdisciplinary Mathematical Sciences Series, Vol. 1) | 1 |
Moerdijk I., Mrcun J. — Introduction to Foliations and Lie Groupoids | 16 |
Hall G.R., Lee — Continuous dynamical systems | 4 |
Borwein P., Choi S., Rooney B. — The Riemann Hypothesis | 52 |
Brown R.F., Gorniewicz L., Jiang B. — Handbook of Topological Fixed Point Theory | 906 |
Zung N.T. — Poisson Structures and their Normal Forms | 263 |
Bergh J., Teillaud M. (Ed) — Effective Computational Geometry for Curves and Surfaces | 244 |
Ruelle D. — Thermodynamic Formalism: The Mathematical Structure of Equilibrium Statistical Mechanics | 162 |
Bratteli O. — Derivations, Dissipations and Group Actions on C-Algebras | 32, 66 |
Bondy J.A., Murty U.S.R. — Graph theory with applications | 191 |
Falconer K.J. — Techniques in Fractal Geometry | 213 |
Pelz G. — Mechatronic Systems : Modelling and Simulation with HDLs | 52, 77 |
Bollobas B. — Modern Graph Theory | 68, 347 |
Ott E. — Chaos in dynamical systems | 6 |
Pugh C.C. — Real Mathematical Analysis | 233 |
Williamson S. — Combinatorics for computer science | 200, 202 |
Boothby W.M. — An introduction to differentiable manifolds and riemannian geometry | 127 |
Gleick J. — Chaos. Making a new science | 197—198, 199, 296—297 |
Weickert J. — Visualization and Processing of Tensor Fields: Proceedings of the Dagstuhl Workshop | 226 |
Berlekamp E.R., Conway J.H., Guy R.K. — Winning Ways for Your Mathematical Plays, Vol. 1 | 202, 204—206, 208, 209, 222 |
Engel K.-J., Nagel R. — Short Course on Operator Semigroups | 84, 85 |
Vick J.W. — Homology theory. An introduction to algebraic topology | 207 |
Bamberg P.G. — A Course in Mathematics for Students of Physics, Vol. 2 | 618 |
Engel K.-J., Nagel R. — One-Parameter Semigroups for Linear Evolution Equations (preliminary version of 10 September 1998) | 110 |
Poeschel J. — Inverse Spectral Theory | 147 |
Sleeman D., Brown J.S. — Intelligent tutoring systems | 132 |
Papadimitriou C.H. — Computational Complexity | 8 |
Lang S.A. — Undergraduate Analysis | 541 |
Sedgewick R. — Algorithms | 435 |
Szekeres P. — A Course in Modern Mathematical Physics: Groups, Hilbert Space and Differential Geometry | 433 |
Lang S. — Real Analysis | 133, 143, 500 |
Du D. (ed.), Pardalos P. (ed.) — Handbook of combinatorial optimization: supplement volume A | 81 |
Hale J.K., Kocak H. — Dynamics and Bifurcations | 7 |
Nagel R., Derdinger R., Günther P. — Ergodic theory in the perspective of functional analysis | II/16 |
Haas A.E. — Introduction to theoretical physics, Vol. 1 and 2 | 176 |
Kolman B., Busby R.C., Cutler S.C. — Discrete Mathematical Structures | 297 |
Kuczma M., Choczewski B., Ger R. — Iterative Functional Equations | 47 |
Haake F. — Quantum signatures of chaos | 15 |
Thirring W.E. — Classical Mathematical Physics: Dynamical Systems and Field Theories | 36, 39 |
Thirring W.E. — Course in Mathematical Physics: Classical Dynamical System, Vol. 1 by Walter E. Thirring | 32, 35 |
Truesdell C. — Essays in the History of Mechanics | see “Fluids” |
Munk M.M. — Fundamentals Of Fluid Dynamics For Aircraft Designers | (See also "Potential flow", "Two-dimensional flow") |
Brocker Th., Dieck T.T. — Representations of Compact Lie Groups | 16, 39 f |
O'Neill B. — Semi-Riemannian Geometry: With Applications to Relativity | 29 |
Kühnel W., Hunt B. — Differential Geometry: Curves - Surfaces - Manifolds | 235 |
Love A.E.H. — A Treatise on the Mathematical Theory of Elasticity | see “Plasticity” |
Chung F.R.K. — Spectral Graph Theory | 55 |
Papadimitriou C.H., Steiglitz K. — Combinatorial Optimization: Algorithms and Complexity | see also “Max-flow problem” |
Nishizeki T., Chiba N. — Planar Graphs: Theory and Algorithms (North-Holland Mathematics Studies) | 185, 186 |
Bhatia N.P., Szego G.P. — Dynamical Systems: Stability Theory and Applications | 1.1.1 |
Sattinger D.H., Weaver O.L. — Lie groups and algebras with applications to physics, geometry, and mechanics | 58, 61 |
Allaire G. — Numerical Analysis and Optimization: An Introduction to Mathematical Modelling and Numerical Simulation | 368 |
Bartsch T. — Topological Methods for Variational Problems with Symmetries | 87 |
Saaty T.L. — Elements of Queueing theory with applications | 314 |
Murota K. — Discrete convex analysis | 53 |
Keller K. — Invariant Factors, Julia Equivalences and the (Abstract)Mandelbrot Set | 188 |
Plauger P.J. — The Standard C Library | see Control |
Aigner M. — Combinatorial Theory | 363 |
Hußmann H. — Formal Foundations for Software Engineeing Methods | 210 |
Kozen D.C. — The Design And Analysis Of Algorithms | 84, 90, 223, 254 |
Berge C. — Graphs and Hypergraphs | 76 |
Plauger P.J. — The standard C library | see “control” |
Cook W.J., Cunningham W.H., Pulleyblank W.R. — Combinatorial optimization | 38 |
Verona A. — Stratified Mappings - Structure and Triangulability | 12, 48 |
O'Neill B. — The Geometry of Kerr Black Holes | 6 |
Ash R.B., Doléans-Dade C.A. — Probability and Measure Theory | 345 |
Berge C. — The Theory of Graphs | p. 71 |
Binmore K. — Fun and Games: A Text on Game Theory | 401 |
Bertlmann R.A. — Anomalies in Quantum Field Theory | 78—81, 90, 93, 105 |
Christofides N. — Graph-Theory: an Algorithmic Approach | 282 |
Nijenhuis A., Wilf H.S. — Combinatorial Algorithms: For Computers and Calculators | 197 |
Lang S. — Real and Functional Analysis (Graduate Texts in Mathematics Series #142) | 366, 377 |
Boothby W.M. — An Introduction to Differentiable Manifolds and Riemannian Geometry | 127 |
Haller G. — Chaos Near Resonance | 1 |
Petersen K.E. — Ergodic theory | 1, 76, 150 |
Sone Y. — Molecular Gas Dynamics Theory, Techniques, and Applications | see "Condensation", "Evaporation", "Evaporation and condensation" |
Lee J.M. — Differential and physical geometry | 166 |
Baez J.C., Muniain J.P. — Gauge theories, knots, and gravity | 35 |
Alekseevskij D.V., Vinogradov A.M., Lychagin V.V. — Geometry I: Basic Ideas and Concepts of Differential Geometry | 62 |
Onishchik A.L. (ed.) — Lie Groups and Lie Algebras | 102 |
Guckenheimer J., Holmes Ph. — Nonlinear Oscillations, Dynamical Systems, and Bifurcations of Vector Fields, Vol. 42 | 2 |
Duistermaat J.J, Kolk J.A.C. — Distributions: theory and applications | 82 |
Yang W. — Fluidization, Solids Handling, and Processing: Industrial Applications | 115 |
Kinsey L.C. — Topology of surfaces | 223 |
Liu C.L. — Introduction to combinatorial mathematics | 260 |
Choquet-Bruhat Y., DeWitt-Morette C., Dillard-Bleick M. — Analysis, manifolds and physics. Part I. | 144 |
Chase R.B., Jacobs E.R. — Operations management for competitive advantage | 218 |
Spanier E.H. — Algebraic Topology | 197 |
Onishchik A.L. (ed.) — Lie Groups and Lie Algebras (volume 1) | 102 |
van Lint J.H., Wilson R.M. — Course in Combinatorics | 49 |
Belotserkovsky S.M., Lifanov I.K. — Method of Discrete Vortices | see also "Circulation" |
Gorbatsevich V.V., Vinberg E.B., Onishchik A.L. — Foundations of Lie theory and Lie transformation groups | 102 |
Diestel R. — Graph Theory | 123—146, 125—126 |
Vogel S. — Vital Circuits: On Pumps, Pipes, and the Working of Circulatory Systems | see also "Flow speeds", "Fluids" |
Carroll R.W. — Mathematical physics | 218 |
Stinson D.R. — Cryptography: Theory and practice | 357 |
Lang S. — Undergraduate analysis | 541 |
Loomis L.H., Sternberg S. — Advanced calculus | 381 |
Tuynman G.M. — Supermanifolds and Supergroups: Basic Theory | 228 |
Hirsch M.W., Smale S. — Differential Equations, Dynamical Systems, and Linear Algebra | 6, 175 |
Aldous J.M., Wilson R. — Graphs and Applications: An Introductory Approach | 18 |
Blaszak M. — Multi-Hamiltonian Theory of Dynamical Systems | 2, 32, 54 |
Soardi P.M — Potential Theory On Infinite Networks | 12 |
David A. Mooney — Introduction to Thermodynamics and Heat Transfer | 64—79, 265—305 |
Ahrens T.J. — A Handbook of Physical Constants: Rock Physics and Phase Relations | see also "Diffusion flow", "Dislocation flow", "Fluid flow" |
Guyon E., Hulin J., Petit L. — Physical Hydrodynamics | see also "Couette flow", "Instabilities", "Poiseuille flow", "Potential flow" |
Cvitanovic P., Artuso R., Dahlqvist P. — Classical and quantum chaos | 34, 37 |
Hartmann A.K., Rieger H. — Optimization Algorithms in Physics | 42, 102, 105, 133 |
Muller H.K., Nau B. — Fluid Sealing Technology: Principles and Applications | see also "Lubrication", "Fluid mechanics" |
Fritjof Capra — The Tao of physics | 95, 105, 189f, 192, 203f, 281ff |
Di Battista G. — Graph Drawing: Algorithms for the Visualization of Graphs | 145, 189 |
Meyer K.R. — Periodic Solutions of the N-Body Problem | 20 |
Ruelle D. — Elements of Differentiable Dynamics and Bifurcation Theory | 5 |
Berlekamp E., Conway J., Guy R. — Winning Ways for your mathematical plays.Volume 2. | 202, 204—206, 208, 209, 222 |
Singh R., Manhas J. — Composition Operators on Function Spaces (North-Holland Mathematics Studies) | 209 |
Berlekamp E.R., Conway J.H., Guy R.K. — Winning Ways for your mathematical plays | 202, 204—206, 208, 209, 222 |
Choquet-Bruhat Y., Dewitt-Morette C. — Analysis, manifolds and physics | 144 |
Thirring W., Harrell E.M. — Classical mathematical physics. Dynamical systems and field theory | 36, 39 |
Badii R., Politi A. — Complexity: Hierarchical structures and scaling in physics | 38 |
A. du Plessis, Wall T. — The Geometry of Topological Stability (London Mathematical Society Monographs New Series) | 34 |
Nijenhuis A., Wilf H.S. — Combinatorial algorithms for computers and calculators | 197 |
Chvatal V. — Linear programming | 369 |
Wells D. G. — You are a mathematician: a wise and witty introduction to the joy of numbers | 220—222 |