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The Finite-Difference Time-domain (FDTD) method allows you to compute electromagnetic interaction for complex problem geometries with ease;
Vergelijkbare producten zoals The Finite Difference Time Domain Method for Electromagnetics
The Finite-Difference Time-domain (FDTD) method allows you to compute electromagnetic interaction for complex problem geometries with ease;
Vergelijkbare producten zoals The Finite Difference Time Domain Method for Electromagnetics
This book introduces the powerful Finite-Difference Time-Domain method to students and interested researchers and readers. An effective;
Vergelijkbare producten zoals The Finite-Difference Time-Domain Method for Electromagnetics With MATLAB Simulations
The Finite Difference Time Domain (FDTD) method is an essential tool in modeling inhomogeneous, anisotropic, and dispersive media with;
Vergelijkbare producten zoals Computational Nanotechnology Using Finite Difference Time Domain
The Finite Difference Time Domain (FDTD) method is an essential tool in modeling inhomogeneous, anisotropic, and dispersive media with;
Vergelijkbare producten zoals Computational Nanotechnology Using Finite Difference Time Domain
are mainly three numerical methods for electromagnetic problems: the finite-difference time-domain (FDTD), finite element method (FEM), and;
Vergelijkbare producten zoals The Nystrom Method in Electromagnetics
Maxwell equations with such finite methods as the finite difference time domain (FDTD) method or the finite element method. The frequency domain;
Vergelijkbare producten zoals Perfectly Matched Layer (PML) for Computational Electromagnetics
Maxwell equations with such finite methods as the finite difference time domain (FDTD) method or the finite element method. The frequency domain;
Vergelijkbare producten zoals Perfectly Matched Layer (PML) for Computational Electromagnetics
, scattering, and radiation in periodic structures * The time-domain finite element method for analysis of wideband antennas and transient;
Vergelijkbare producten zoals The Finite Element Method in Electromagnetics
In this book, a general frequency domain numerical method similar to the finite difference frequency domain (FDFD) technique is presented;
Vergelijkbare producten zoals Multiresolution Frequency Domain Technique for Electromagnetics
The finite-difference time-domain (FDTD) method has revolutionized antenna design and electromagnetics engineering. Here's a cutting-edge;
Vergelijkbare producten zoals Advanced FDTD Method
the primary unknown variable in the element domain. A set of linear equations is obtained for each element in the discretized domain. A global;
Vergelijkbare producten zoals Introduction to the Finite Element Method in Electromagnetics
Differences, Moment Method, Finite Element method and Finite Difference Time Domain method. Hand-computed simple examples and MATLAB-coded simple;
Vergelijkbare producten zoals Electromagnetic Waves, Materials, and Computation with MATLAB (R), Second Edition, Two Volume Set
> Open-region finite-element formulations based on the scalar and vector Helmholtz equations Finite difference time-domain methods;
Vergelijkbare producten zoals Computational Methods For Electromagnetics
open and closed domain problems. Worked out examples are included to aid the reader with the fine features of the method and the implementation;
Vergelijkbare producten zoals Finite Element Method Electromagnetics
advances and refinements made in recent years. Most notable among these are the improvements made to the standard algorithm for the finite;
Vergelijkbare producten zoals Computational Electromagnetics with MATLAB, Fourth Edition
advances and refinements made in recent years. Most notable among these are the improvements made to the standard algorithm for the finite;
Vergelijkbare producten zoals Computational Electromagnetics with MATLAB, Fourth Edition
time-domain periodic boundary condition (FDTD/PBC) method. A new FDTD/PBC-based algorithm is introduced to analyze general skewed grid periodic;
Vergelijkbare producten zoals Scattering Analysis of Periodic Structures Using Finite-difference Time-domain
, waveguide discontinuities, both frequency and time domain solutions; boundary methods as well as domain methods will be considered The text focuses;
Vergelijkbare producten zoals Postmodern Electromagnetics
This book provides a brief overview of the popular Finite Element Method (FEM) and its hybrid versions for electromagnetics with;
Vergelijkbare producten zoals Frequency Domain Hybrid Finite Element Methods in Electromagnetics
notable among these are the improvements made to the standard algorithm for the finite-difference time-domain (FDTD) method and treatment;
Vergelijkbare producten zoals Numerical Techniques in Electromagnetics with MATLAB
second part of the book covers the major computational methods for numerical analysis of electromagnetic fields for engineering applications;
Vergelijkbare producten zoals Theory and Computation of Electromagnetic Fields
in techniques such as the Discontinuous Galerkin Time Domain method, Finite Element Time Domain method, Finite Difference Time Domain method as well as;
Vergelijkbare producten zoals Recent Trends in Computational Photonics
numerical method the most popular. The features of the finite element method gained worldwide popularity due to its flexibility for simulating not;
Vergelijkbare producten zoals Electromagnetics through the Finite Element Method
time-domain (FDTD) method. The application of FDTD method to lightning protection studies is a topic that has matured through many practical;
Vergelijkbare producten zoals Electromagnetic Computation Methods for Lightning Surge Protection Studies
-boundary conditions. Among the various methods, boundary integral equation method (BIEM) is probably the most effective. It's main advantage;
Vergelijkbare producten zoals Wavelet Based Approximation Schemes for Singular Integral Equations
-boundary conditions. Among the various methods, boundary integral equation method (BIEM) is probably the most effective. It's main advantage;
Vergelijkbare producten zoals Wavelet Based Approximation Schemes for Singular Integral Equations
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