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Titlebook: Computational Reality; Solving Nonlinear an Bilen Emek Abali Book 2017 Springer Nature Singapore Pte Ltd. 2017 Solvers in FEniCS.Euler-Alma

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https://doi.org/10.1007/978-981-10-2444-3Solvers in FEniCS; Euler-Almansi strain; Hamel‘s strain tensor; Piola-Kirchhoff stress tensor; Piezoelec
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Richard Davies,Chris D. Nugent,Mark Donnelly, deformation and stress occur in the continuum body. If the stress lies below the yield limit, the deformation is recoverable upon unloading. This behavior is called an . response. This elastic response is instantaneous, i.e., rate of loading does not matter. In order to bring in the effect of the
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https://doi.org/10.1007/978-1-84882-551-2tudy this approach for macroscopic and microscopic systems. The difference between macroscopic and microscopic systems relies on the used constitutive equation. The theoretical thermodynamics has the goal of defining constitutive (material) equations that close the balance equations. By using thermo
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Electromagnetism,pling. Then we include plasticity. Moreover, a piezoelectric sensor is discussed by deriving the constitutive equations in a thermodynamically consistent way. A magnetohydrodynamical problem is presented in the last section. All applications are discussed theoretically and implemented by using open-
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Richard Davies,Chris D. Nugent,Mark Donnellyg to a continuum body. We start with linear elasticity, then solve a problem with . nonlinearities, and finally incorporate . nonlinearities. All of these computations belong to elasto.. By including time rate in the equations, we start off with .; examples of linear and fractional rheology are pres
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