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Titlebook: Complementarity, Duality and Symmetry in Nonlinear Mechanics; Proceedings of the I David Y. Gao Conference proceedings 2004 Springer Scienc

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1571-8689 through the centuries, particularly in mathematics andscience. .The Proceedings of IUTAM Symposium on Complementarity, Duality, andSymmetry in Nonlinear Mechanics brings together some of world‘sleading researchers in both mathematics and mechanics to provide aninterdisciplinary but engineering flavo
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https://doi.org/10.1007/978-3-663-12376-7on index, for which it is shown that Newton’s impact law reduces to Moreau’s impact rule and that both of them coincide with Poisson’s law when a certain kinematic compatibility condition is met. A geometrical interpretation of this impact law is given for a tangentially regular boundary and then extended to re-entrant corners.
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Ziele einer Sponsoring-Politik,ased finite elements. Newton-like iterations are performed to give both upper and lower bounds of the load factor at every iteration, which converge rapidly to the accurate solution of shakedown limit.
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https://doi.org/10.1007/978-3-658-13313-9existence and uniqueness of solution for that problem; (.) to present a differential inclusion formulation and related mathematical results for the quasi-static evolution problem; (.) to present numerical results for a specific finite element example of (non-) uniqueness of solution for the quasi-static rate problem.
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https://doi.org/10.1057/9781137521071posed by the first author, is based on an extension of Auchmuty’s work on variational principles for non-potential operator equations. Having at our disposal the variational formulation, it is a simple matter to derive the bound theorems of limit analysis. It is found that for a non-associated flow rule the lower and the upper bound are coupled.
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Sponsoring als multifunktionales Instrument,itudes represents the class of transformations that preserves the potential form of a relationship. Next, we derive the conditions under which canonical similitudes preserve the convexity of the potential or change it into concavity. This new class of transformations provides a generalization of the Legendre-Fenchel transformation.
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