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                    | Результат поиска |  
                    | Поиск книг, содержащих: Poisson's ratio
 
 | Книга | Страницы для поиска |  | Heinbockel J.H. — Introduction to tensor calculus and continuum mechanics | 212 |  | Zienkiewicz O.C., Taylor L.R. — The finite element method (vol. 1, The basis) | 78, 272 |  | Zienkiewicz O.C., Taylor L.R. — The finite element method (vol. 2, Solid mechanics) | 67, 73, 114, 118, 272 |  | Weinstock R. — Calculus of variations with applications to physics & engineering | 203—204 |  | Benson D. — Mathematics and music | 122 |  | Nayfeh A.H., Mook D.T. — Nonlinear Oscillations | 502 |  | Murnaghan F.D. — Finite deformation of an elastic solid | 31, 103, 111 |  | Sadd M.H. — Elasticity: theory, applications, and numerics | 74, 77 |  | Miklowitz J. — The theory of elastic waves and waveguides | 41 |  | Becker A.A. — The Boundary Element Method in Engineering. A complete course | 9, 28, 64, 69, 99, 203 |  | Bergman S., Schiffer M. — Kernel Functions and Elliptic Differential Equations in Mathematical Physics | 214 |  | Planck M. — Introduction to Theoretical Physics | 182 |  | Antman S.S. — Nonlinear Problems of Elasticity | 592 |  | Rubinstein M., Colby R.H. — Polymer Physics | 296 |  | Ewald P.P. — The physics of solids and fluids | 5, 6, 59 - |  | Iesan D. — Saint-Venant's Problem | 7 |  | Fishbane P.M. — Physics For Scientists and Engineers with Modern Physics | 326, 327 |  | Cleland A.N. — Foundations of nanomechanics | 187, 191 |  | Structure Property Relationships in Polimers | 39, 67 |  | Feodosiev V.I. — Advanced Stress and  Stability Analysis | 39, 395 |  | Libai A., Simmonds J.G. — The Nonlinear Theory of Elastic Shells | 83, 85, 180, 191, 202, 204, 218, 234, 434, 485, 506, 514 |  | Barber J.R. — Elasticity | 18 |  | Peiser H.S, (ed.), Rooksby H.P. (ed.), Wilson A.J.C. (ed.) — X-Ray Diffraction by Polycrystalline Materials. Physics in Industry | 608 |  | Eschenauer H., Olhoff N., Schnell W. — Applied structural mechanics : fundamentals of elasticity, load-bearing structures, structural optimization | 32ff, 37, 38 , 94 |  | Oden J.T. — Finite Elements: An Introduction (Vol. 1) | 242, 246 |  | Freund L.B. — Dynamic Fracture Mechanics | 24 |  | Roskam J. — Airplane flight dynamics and automatic flight controls (part 1) | 727 |  | Zory P.S. — Quantum well lasers | 340, 373 |  | Ding H., Chen W., Zhang L. — Elasticity of Transversely Isotropic Materials | 21, 98, 157, 220, 242, 274, 324, 338 |  | Mattheij R.M.M. — Partial differential equations: modeling, analysis, computation | 121 |  | Adachi S. — Physical Properties of  III-V Semiconductor  Compounds  InP, InAs, GaAs, GaP, InGaAs, and  InGaAsP | 24, 265 |  | Bassin M.G., Brodsky S.M., Wolkoff H. — Statics and strength of materials | 156, 157 |  | Beutler G. — Methods of Celestial Mechanics: Volume I: Physical, Mathematical, and Numerical Principles | II 67 |  | Arya A.P. — Introduction to Classical Mechanics | 371 |  | Eringen A.C., Suhubi E.S. — Elastodynamics (vol.1) Finite motions | 63 |  | Амензаде Ю.А. — Теория упругости | 70, 78 |  | Sokolnikoff I.S. — Mathematical Theory of Elasticity | 68 |  | Azaroff L.V. — Introduction to Solids | 128 |  | Brandt D.A., Warner J.C. — Metallurgy Fundamentals | 58 |  | Riley, Hobson — Mathematical Methods for Physics and Engineering | 802 |  | Accetta J.S. (ed.), Shumaker D.L. (ed.), Rogatto W.D. (ed.) — The Infrared & Electro-Optical Systems Handbook. Volume 3: Electro-Optical Components | 10—11 |  | Patnaik S., Hopkins D. — Strength of Materials: A New Unified Theory for the 21st Century | xvii, 29, 33—34, 154 |  | McEvily A.J. — Metal Failures: Mechanisms, Analysis, Prevention | 21, 23, 33 |  | Marder M.P. — Condensed matter physics | 293 |  | Hobbie R., Roth B. — Intermediate Physics for Medicine and Biology, | 27 |  | Callen H.B. — Thermodynamics | 230 |  | Hearn E.J. — Mechanics of Materials (vol. 1) An Introduction to the Mechanics of Elastic and Plastic Deformation of Solids and Structural Materials | 9—11 |  | Langhaar H.R. — Energy Methods in Applied Mechanics | 125 |  | Langhaar H.R. — Energy Methods in Applied Mechanics | 125 |  | Lee A. — Mathematics Applied to Continuum Mechanics | 164 |  | Popov E.P. — Engineering Mechanics of Solids | 82 |  | Zory P.S. (ed.), Kelley P. (ed.), Liao P.F. (ed.) — Quantum Well Lasers | 340, 373 |  | Fung Y. — A First Course in Continuum Mechanics: for Physical and Biological Engineers and Scientists | 138, 159 |  | Villaggio P. — Mathematical models for elastic structures | 31 |  | Slater J., Frank N. — Introduction to Theoretical Physics | 182 |  | Seitz F. (ed.), Turnbull D. (ed.) — Solid State Physics. Advances in Research and Applications. Volume 16 | 280 |  | Mattheij R.M. — Partial differential equations | 121 |  | Shu-Ang Zhou — Electrodynamics of solids and microwave superconductivity | 158 |  | Feynman R., Leighton R., Sands M. — Lectures on Physics 2 | II-38-2 |  | Necas J., Hlavacek I. — Mathematical Theory  of Elastic and  Elastico-Plastic Bodies: An Introduction | 49 |  | Campbell S.A. — The Science and Engineering of Microelectronic Fabrication | 517 |  | Synge J. L. — Tensor Calculus | 212 | 
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