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Finite Element and Discontinuous Galerkin Methods for Transient Wave Equations

overview of continuous and discontinuous finite element methods for these equations, including their implementation in physical models, an;

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Nodal Discontinuous Galerkin Methods: Algorithms, Analysis, and Applications

This book offers an introduction to the key ideas, basic analysis, and efficient implementation of discontinuous Galerkin finite element;

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An Introduction to Element-Based Galerkin Methods on Tensor-Product Bases

elements), discontinuous Galerkin methods, and hybridized discontinuous Galerkin methods using both nodal and modal basis functions. In addition;

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An Introduction to Element-Based Galerkin Methods on Tensor-Product Bases

elements), discontinuous Galerkin methods, and hybridized discontinuous Galerkin methods using both nodal and modal basis functions. In addition;

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Symmetric Discontinuous Galerkin Methods for 1-D Waves

, in particular to quadratic finite elements, local discontinuous Galerkin methods and a version of the SIPG method adding penalization on the normal;

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Wave Propagation in Fluids

waves. Finite difference-, finite volume- and finite element-based numerical methods (including discontinuous Galerkin techniques) are covered;

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Advanced Finite Element Methods and Applications

. Topics cover the analysis of domain decomposition and multilevel methods, including hp finite elements, hybrid discontinuous Galerkin methods;

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Computational Acoustics

, non-conforming grid techniques, discontinuous Galerkin approaches and boundary element methods are discussed. Main applications will be;

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Modeling Shallow Water Flows Using the Discontinuous Galerkin Method

Galerkin (DG) method, also known as the discontinuous finite element method, in depth. It introduces the DG method and its application to shallow;

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Modeling Shallow Water Flows Using the Discontinuous Galerkin Method

Galerkin (DG) method, also known as the discontinuous finite element method, in depth. It introduces the DG method and its application to shallow;

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Computational Methods For Electromagnetic Phenomena

boundary conditions * High-order hierarchical Nedelec edge elements * High-order discontinuous Galerkin (DG) and Yee finite difference time;

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Recent Advances In Computational Sciences

), finite volume method and Spline theory, such as Moving Mesh Methods, Galerkin and Discontinuous Galerkin Schemes, Shape Gradient Methods, Mixed;

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Pragmatic Introduction To The Finite Element Method For Thermal And Stress Analysis, A

This textbook provides an accessible and self-contained description of the Galerkin finite element method for the two important models;

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Pragmatic Introduction To The Finite Element Method For Thermal And Stress Analysis, A

This textbook provides an accessible and self-contained description of the Galerkin finite element method for the two important models;

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Discontinuous Galerkin Methods for Solving Elliptic and Parabolic Equations

Discontinuous Galerkin (DG) methods for solving partial differential equations, developed in the late 1990s, have become popular among;

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Efficient High-Order Discretizations for Computational Fluid Dynamics

like to gain an overview of discontinuous Galerkin methods, modern algorithmic realizations, and high-performance implementations.;

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Error Estimates for Advanced Galerkin Methods

. In addition, it introduces the element-free Galerkin and reproducing kernel particle methods as representatives of a class of Galerkin meshfree;

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Gas-Kinetic Methods for Viscous Flows

also covers in detail the following extensions of the method: the high order gas-kinetic Runge-Kutta discontinuous Galerkin finite element;

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Finite Element Methods and Their Applications

unnecessarily abstract. Contains unique recent developments of various finite elements such as nonconforming, mixed, discontinuous, characteristic;

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Computational Seismology

-element method; 5) the finite-volume method; and 6) the discontinuous Galerkin method. Each chapter contains comprehension questions, theoretical;

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Computational Seismology

-element method; 5) the finite-volume method; and 6) the discontinuous Galerkin method. Each chapter contains comprehension questions, theoretical;

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Discontinuous Galerkin Methods

A class of finite element methods, the Discontinuous Galerkin Methods (DGM), has been under rapid development recently and has found its;

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Finite Element Method for Engineers: From Theory to Practice

, explains the theory in four fundamental steps with a flow chart to develop equations for the finite element models and the associated computer;

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Wavelet Based Approximation Schemes for Singular Integral Equations

include: Finite Difference Method (FDM), Finite Element Method (FEM), Finite Volume Method (FVM) and Galerkin Method (GM). Unfortunately, none;

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Wavelet Based Approximation Schemes for Singular Integral Equations

include: Finite Difference Method (FDM), Finite Element Method (FEM), Finite Volume Method (FVM) and Galerkin Method (GM). Unfortunately, none;

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The Finite Element Method for Boundary Value Problems

Written by two well-respected experts in the field, The Finite Element Method for Boundary Value Problems: Mathematics and Computations;

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Efficient Implementation of High-Order Accurate Numerical Methods on Unstructured Grids

This thesis focuses on the development of high-order finite volume methods and discontinuous Galerkin methods, and presents possible;

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