A realistic real-time sound simulation usable in games and other interactive applications. The codes can be run under UNIX and Windows operating systems. Here you can find parallel FDTD codes developed by Zsolt Szabó. The manual is organized into fourteen sections: introduction, description of the FDTD method, operation, resource requirements, Version C code capabilities, a brief description of the default scattering geometry, a brief description of each subroutine, a description of the include file (COMMONC.FOR), a section briefly discussing Radar Cross Section (RCS) computations, a section discussing some scattering results, a sample problem setup section, a new problem checklist, references and figure titles. The Finite Difference Time Domain (FDTD) method is a powerfull numerical technique to solve the Maxwell equations. This manual provides a description of the code and corresponding results for several scattering problems. Works well for free-form scatterers with constant permittivities, permeabilities and conductivities. Total Field/Scattered field (TF/SF) interface for plane EM-waves scattering problems investigations. Uniaxial PML absorbing border conditions, 3. The supplied version of the code is one version of our current three dimensional FDTD code set. 2D FDTD algorithm for simultaneously TE and TM modes calculation, 2. User's manual for three dimensional FDTD version C code for scattering from frequency-independent dielectric and magnetic materials The Penn State Finite Difference Time Domain Electromagnetic Scattering Code Version C is a three dimensional numerical electromagnetic scattering code based upon the Finite Difference Time Domain Technique (FDTD).
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