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Method of Moments for 2D Scattering Problems

for a Single Scatterer: Method of Moments and Rough Surfaces. 2. Validation of the Method of Moments for a Single Scatterer. 3. Scattering;

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Scattering By Obstacles And Potentials

things, it gives uniqueness theorems for inverse scattering problems when the data are non-over-determined, numerical method for solving inverse;

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The Method of Moments in Electromagnetics

Multipole Method (FMM), as well as the Multi-Level Fast Multipole Algorithm (MLFMA).;

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Electromagnetic Radiation, Scattering, and Diffraction

problems. Asymptotic High Frequency methods are developed for evaluating radiation Integrals to extract ray fields. Edge and surface diffracted;

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Sophisticated Electromagnetic Forward Scattering Solver via Deep Learning

solver. It is worth noting that the 2D and 3D scatterers in the scheme can be either lossless medium or metal, allowing the model to be more;

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The Nystrom Method in Electromagnetics

A comprehensive, step-by-step reference to the Nystroem Method for solving Electromagnetic problems using integral equations;

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Computing with hp-ADAPTIVE FINITE ELEMENTS

examples: 3D axisymmetric antenna problem for Maxwell equations (example of a complex-valued, indefinite problem) and 2D elasticity (example of an;

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Current Distribution on Linear Thin Wire Antenna

delta-function generator (DFG) in order to find current distribution along the antenna. For this purpose, Method of Moments (MoM), a powerful;

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Inverse Scattering Problems and Their Application to Nonlinear Integrable Equations

Inverse Scattering Problems and Their Application to Nonlinear Integrable Equations is devoted to inverse scattering problems (ISPs) for;

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Double-Grid Finite-Difference Frequency-Domain Method of Scattering from Chiral Objects

methods based on double-grid (DG-FDFD) approach for general bianisotropic materials. The validity of the derived formulations for different;

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Invariant Imbedding T-matrix Method for Light Scattering by Nonspherical and Inhomogeneous Particles

Invariant Imbedding T-matrix Method for Light Scattering by Nonspherical and Inhomogeneous Particles propels atmospheric research;

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Parallel Solution Of Integral Equation-Based Em Problems In The Frequency Domain

Method of Moments (MoM), the book covers: In-Core and Out-of-Core LU Factorization for Solving a Matrix Equation A Parallel MoM Code Using RWG;

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Field Computation by Moment Methods

the method of moments--the most popular method for the numerical solution of electromagnetic field problems. It presents a unified approach;

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2D and 3D Image Analysis by Moments

. 2D and 3D Image Analysis by Moments, is ideal for mathematicians, computer scientists, engineers, software developers, and Ph.D students;

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Radar Propagation and Scattering in a Complex Maritime Environment

the complexity and memory requirement for solving the linear system that results from the discretization of the boundary integral equations by;

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The Finite Element Method in Electromagnetics

, scattering, and radiation in periodic structures * The time-domain finite element method for analysis of wideband antennas and transient;

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Global Regularity for 2D Water Waves with Surface Tension

system), and prove global regularity and modified scattering for suitably small and localized perturbations of a flat interface. An important;

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Introduction To Spectral Theory And Inverse Problem On Asymptotically Hyperbolic Manifolds

on the asymptotically hyperbolic manifolds by adopting, for the considered case, the boundary control method for inverse problems.The;

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Solitons, Nonlinear Evolution Equations and Inverse Scattering

includes inverse scattering in multi-dimensions, integrable nonlinear evolution equations in multi-dimensions and the method. Thus, this book will;

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Green's Function Integral Equation Methods in Nano-Optics

This book gives a comprehensive introduction to Green's function integral equation methods (GFIEMs) for scattering problems in the field;

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Introduction To The Statistical Physics Of Integrable Many-B

Including topics not traditionally covered in literature, such as (1+1)-dimensional QFT and classical 2D Coulomb gases, this book considers;

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The Boundary Element Method in Geophysics

The boundary element method (BEM) divides only the boundaries of the region under investigation into elements, so it diminishes the;

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Inverse Acoustic and Electromagnetic Scattering Theory

. The second edition includes material on Newton's method for the inverse obstacle problem, an elegant proof of uniqueness for the inverse;

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Computational Methods for Electromagnetic Inverse Scattering

A comprehensive and updated overview of the theory, algorithms and applications of for electromagnetic inverse scattering problems;

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Inverse Problems in Quantum Scattering Theory

, particle, and subparticle physics is gathered from scattering experiments. Exact and approximate methods of investigating scattering theory;

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