Modeling and computations in electromagnetics is a quite novel and growing discipline, expanding as a result of the steadily increasing demand for designing electrical devices, modeling electromagnetic materials, and simulating electromagnetic fields in nanoscale structures. The aim of this volume is to bring together prominent worldwide experts to review state-of-the-art developments and future trends of modeling and computations in electromagnetics. This volume is devoted to merging the expertise of scientists working in this dynamic discipline, and to raising interest for challenging…mehr
Modeling and computations in electromagnetics is a quite novel and growing discipline, expanding as a result of the steadily increasing demand for designing electrical devices, modeling electromagnetic materials, and simulating electromagnetic fields in nanoscale structures. The aim of this volume is to bring together prominent worldwide experts to review state-of-the-art developments and future trends of modeling and computations in electromagnetics. This volume is devoted to merging the expertise of scientists working in this dynamic discipline, and to raising interest for challenging issues. The most significant advances in computational techniques have been made only in the last few years, and several challenging technological applications are presented in this volume.
Produktdetails
Produktdetails
Lecture Notes in Computational Science and Engineering 59
Stabilized FEM-BEM Coupling for Maxwell Transmission Problems.- A Posteriori Error Analysis and Adaptive Finite Element Methods for Electromagnetic and Acoustic Problems.- Time Domain Adaptive Integral Method for Surface Integral Equations.- Local and Nonlocal Nonreflecting Boundary Conditions for Electromagnetic Scattering.- High-Order Methods for High-Frequency Scattering Applications.- Recent Studies on Inverse Medium Scattering Problems.- Time Reversal of Electromagnetic Waves.- Addition Theorem.
Stabilized FEM–BEM Coupling for Maxwell Transmission Problems.- A Posteriori Error Analysis and Adaptive Finite Element Methods for Electromagnetic and Acoustic Problems.- Time Domain Adaptive Integral Method for Surface Integral Equations.- Local and Nonlocal Nonreflecting Boundary Conditions for Electromagnetic Scattering.- High-Order Methods for High-Frequency Scattering Applications.- Recent Studies on Inverse Medium Scattering Problems.- Time Reversal of Electromagnetic Waves.- Addition Theorem.
Stabilized FEM-BEM Coupling for Maxwell Transmission Problems.- A Posteriori Error Analysis and Adaptive Finite Element Methods for Electromagnetic and Acoustic Problems.- Time Domain Adaptive Integral Method for Surface Integral Equations.- Local and Nonlocal Nonreflecting Boundary Conditions for Electromagnetic Scattering.- High-Order Methods for High-Frequency Scattering Applications.- Recent Studies on Inverse Medium Scattering Problems.- Time Reversal of Electromagnetic Waves.- Addition Theorem.
Stabilized FEM–BEM Coupling for Maxwell Transmission Problems.- A Posteriori Error Analysis and Adaptive Finite Element Methods for Electromagnetic and Acoustic Problems.- Time Domain Adaptive Integral Method for Surface Integral Equations.- Local and Nonlocal Nonreflecting Boundary Conditions for Electromagnetic Scattering.- High-Order Methods for High-Frequency Scattering Applications.- Recent Studies on Inverse Medium Scattering Problems.- Time Reversal of Electromagnetic Waves.- Addition Theorem.
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