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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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Discontinuous Galerkin Methods for Solving Elliptic and Parabolic Equations

assembling of the global matrix. Computational examples and applications to important engineering problems are also included. Discontinuous Galerkin;

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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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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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Advances in Discontinuous Numerical Methods and Applications in Geomechanics and Geoengineering

distinct element method (DEM) and the discontinuous deformation analysis (DDA), are associated with geomechanics and geoengineering. Discontinuous;

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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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Numerical Methods and Applications (1994)

elliptic problems encountered in problems of composite material mechanics, Navier-Stokes systems, and nonstationary problems with discontinuous;

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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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Parallel Processing and Applied Mathematics

analysis and scheduling in HPC systems; environments and frameworks for parallel/distributed/cloud computing; applications of parallel computing;

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Finite Element and Discontinuous Galerkin Methods for Transient Wave Equations

discontinuous Galerkin methods and study their accuracy by plane wave techniques and a priori error estimates. A chapter is devoted to the Maxwell's;

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Parallel Processing and Applied Mathematics

analysis and scheduling in HPC systems; environments and frameworks for parallel/distributed/cloud computing; applications of parallel computing;

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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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Adaptive High-order Methods In Computational Fluid Dynamics

). It covers several widely used, and still intensively researched methods, including the discontinuous Galerkin, residual distribution, finite;

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Modeling Shallow Water Flows Using the Discontinuous Galerkin Method

. As new techniques are considered, the process continues to change and evolve. Modeling Shallow Water Flows Using the Discontinuous Galerkin;

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Modeling Shallow Water Flows Using the Discontinuous Galerkin Method

. As new techniques are considered, the process continues to change and evolve. Modeling Shallow Water Flows Using the Discontinuous Galerkin;

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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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Optimal Modified Continuous Galerkin CFD

unified perspective * Focuses on Galerkin methods for CFD beneficial for engineering graduate students and engineering professionals * Accompanied;

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Recent Trends in Computational Photonics

in techniques such as the Discontinuous Galerkin Time Domain method, Finite Element Time Domain method, Finite Difference Time Domain method as well as;

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Modeling in Engineering Using Innovative Numerical Methods for Solids and Fluids

volume schemes; hybridizable discontinuous Galerkin methods; and non-intrusive coupling methods for structural models.;

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Modeling in Engineering Using Innovative Numerical Methods for Solids and Fluids

volume schemes; hybridizable discontinuous Galerkin methods; and non-intrusive coupling methods for structural models.;

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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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Genetic and Evolutionary Methods

Algorithms and Applications + Agent-Based Algorithms Evolutionay Algorithms and Applications + ANN + Forcasting and Time Series Analysis Genetic;

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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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Error Estimates for Advanced Galerkin Methods

employing Galerkin methods in finite and linearized hyperelasticity. The Galerkin methods introduced are considered advanced methods because they;

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