Mixed Finite Element Technologies [electronic resource] / edited by Carsten Carstensen, Peter Wriggers.

Por: Carstensen, Carsten [editor.]Colaborador(es): Wriggers, Peter [editor.]Tipo de material: TextoTextoSeries CISM International Centre for Mechanical Sciences, 509Editor: Vienna : Springer Vienna, 2009Descripción: VII, 206 p. online resourceTipo de contenido: text Tipo de medio: computer Tipo de portador: online resourceISBN: 9783211990940Trabajos contenidos: SpringerLink (Online service)Tema(s): Engineering | Engineering mathematics | Engineering | Appl.Mathematics/Computational Methods of Engineering | Engineering Thermodynamics, Heat and Mass TransferFormatos físicos adicionales: Sin títuloClasificación CDD: 519 Clasificación LoC:TA329-348TA640-643Recursos en línea: de clik aquí para ver el libro electrónico
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Springer eBooksResumen: Mixed finite element methods are a tool to solve complex engineering problems of different nature. This subject is treated in the volume from the engineering and the mathematical point. Different applications are considered which depict the value of mixed formulations in engineering on one side. On the other side the mathematical background is provided including proofs of convergence and stability of these methods and adequate solvers for mixed problems are discussed. This broad spectrum yields an indepth treatment of mixed methods from different perspectives.
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Lectures on Adaptive Mixed Finite Element Methods -- Fast Solvers for Mixed Finite Element Methods -- Numerical Simulation of Charge Transport in Semiconductor Devices Using Mixed Finite Elements -- Numerical Simulation of Thermal Oxidation Process in Semiconductor Devices Using MixedHybrid Finite Elements -- Mixed Finite Element Methods - Theory and Discretization -- Stability of Some Finite Element Methods for Finite Elasticity Problems.

Mixed finite element methods are a tool to solve complex engineering problems of different nature. This subject is treated in the volume from the engineering and the mathematical point. Different applications are considered which depict the value of mixed formulations in engineering on one side. On the other side the mathematical background is provided including proofs of convergence and stability of these methods and adequate solvers for mixed problems are discussed. This broad spectrum yields an indepth treatment of mixed methods from different perspectives.

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