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Результат поиска |
Поиск книг, содержащих: Stability, asymptotic
Книга | Страницы для поиска | Arrowsmith D.K., Place C.M. — Dynamical systems. Differential equations, maps and chaotic behaviour | 84 | Meyn S.P., Tweedie R.L. — Markov Chains and Stochastic Stability | 20 | Brauer F., Nohel J.A. — The qualitative theory of ordinary differential equations | See Asymptotic stability | Tao G. — Adaptive control design and analysis | 51, 55, 56 | Drazin P. — Introduction to Hydrodynamic Stability | 29 | Hartman P. — Ordinary Differential Equations | 38, 40, 537 | Gonzalez-Miranda J.M. — Synchronization and Control of Chaos: An Introduction for Scientists and Engineers | 83, 90, 93, 95 | Polyanin A., Manzhirov A.V. — Handbook of Mathematics for Engineers and Scientists | 546 | Holmes M.H. — Introduction to Perturbation Methods | 257 | Quoc N.S. — Stability and nonlinear solid mechanics | 92, 280 | Elberly D.H., Shoemake K. — Game Physics | 453, 454 | Ascher U.M., Russell R.D., Mattheij R.M. — Numerical Solution of Boundary Value Problems for Ordinary Differential Equations | 100 | Mattheij R.M.M., Molenaar J. — Ordinary Differential Equations in Theory and Practice (Classics in Applied Mathematics) (No. 43) | 109 | Lurie J.B., Enright P.J. — Classical Feedback Control With Matlab | 270 | Dijkstra H.A. — Nonlinear physical oceanography | 51 | Andrzejewski R., Awrejcewicz J. — Nonlinear Dynamics Of A Wheeled Vehicle | 30, 46 | Lefschetz S. — Differential Equations: Geometric Theory | 78, 83 | Ortega J.M. — Numerical analysis: a second course | 65, 71, 119 | Antsaklis P.S., Michel A.N. — Linear Systems | 159, 189, 449, 491, 494, 497, 504, 563, see also "Equilibrium" | Ghosh S. — Algorithm design for networked information technology systems | 327 | Cloud M.J., Drachman B.C. — Inequalities: with applications to engineering | 103 | Bhatia N.P., Hajek O. — Local Semi-Dynamical Systems | 8.16 | Silhavy M. — The Mechanics and Thermodynamics of Continuous Media | 243, 244, 464, 473 | Braun M. — Differential Equations and Their Applications: An Introduction to Applied Mathematics | 379 | Greiner W. — Classical mechanics. Systems of particles and hamiltonian dynamics | 427, 442 | Arnold V.I. — Ordinary Differential Equations | 156, 201n | Bibikov Y.N. — Local Theory of Nonlinear Analytic Ordinary Differential Equations | 48, 53, 139 | Driver R.D. — Ordinary and delay differential equations | 363 | Lee A. — Mathematics Applied to Continuum Mechanics | 534 | Hino Y., Murakami S., Naito T. — Functional Differential Equations with Infinite Delay | 192 | Bolotin V.V. — Stability problems in fracture mechanics | 27 | Bolotin V.V. — Stability problems in fracture mechanics | 27 | Davies P. — The New Physics | 317, 322, 331—332, 334—335 | Samarskii A.A. — The Theory of Difference Schemes | 329 | Prigogine I. (ed.) — Advances in Chemical Physics. Volume XIX | 224 | Logan J. — Applied Mathematics: A Contemporary Approach | 359 | Gripenberg G., Londen S.O., Staffans O. — Volterra integral and functional equations | 426 |
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