Applied Computational Electromagnetics Society Journal. Volume 10, Number 3. Special Issue on Advances in the Application of the Method of Moments to Electromagnetic Radiation and Scattering Problems

Applied Computational Electromagnetics Society Journal. Volume 10, Number 3. Special Issue on Advances in the Application of the Method of Moments to Electromagnetic Radiation and Scattering Problems
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Total Pages : 162
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ISBN-10 : OCLC:227845455
ISBN-13 :
Rating : 4/5 ( Downloads)

Book Synopsis Applied Computational Electromagnetics Society Journal. Volume 10, Number 3. Special Issue on Advances in the Application of the Method of Moments to Electromagnetic Radiation and Scattering Problems by : A. W. Glisson

Download or read book Applied Computational Electromagnetics Society Journal. Volume 10, Number 3. Special Issue on Advances in the Application of the Method of Moments to Electromagnetic Radiation and Scattering Problems written by A. W. Glisson and published by . This book was released on 1995 with total page 162 pages. Available in PDF, EPUB and Kindle. Book excerpt: Contents: Model Based Parameter Estimation in Electromagnetics: III--Applications to EM Integral Equations; An Examination of the Effect of Mechanical Deformation on the Input Impedance of HF LPDA's Using MBPE; Current Based Hybrid Moment Method Analysis of Electromagnetic Radiation and Scattering Problems; Hybrid Method of Moments Solution for a Perturbed Dielectric Circular Cylinder; A Low Frequency Formulation of the Method of Moments via Surface Charges; A Study of a Recent, Moment Method Algorithm that is Accurate to Very Low Frequencies; A Study of Two Numerical Solution Procedures for the Electric Field Integral Equation at Low Frequency; Electromagnetic Scattering from Two Dimensional Anisotropic Impedance Objects under Oblique Plane Wave Incidence; Electromagnetic Scattering by an Arbitrarily Shaped Surface with an Anisotropic Impedance Boundary Condition; Parametric Mapping of Vector Basis Functions for Surface Integral Equation Formulations; and A Technique for Avoiding the EFIE 'Interior Resonance' Problem Applied to an MM Solution of Electromagnetic Radiation from Bodies of Revolution.


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