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外国人开发的电磁时域有限差分方法工具包
Electromagnetic Finite-Difference Time-Domain (EmFDTD)
is a basic two-dimensional FDTD code developed at the
School of Electrical Engineering, Sharif University of
Technology.
This code has been written based on th
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fdtd一维算法,模拟电磁波空间反射散射过程-fdtd one-dimensional algorithm, simulated the process of scattering of electromagnetic waves in space reflection
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非同心圓的奈米粒子之Mie電磁波散射,可計算金屬,介電質等,並可修改成殼狀包覆的非同心圓的奈米粒子-Non-concentric circles of the nano-particle Mie scattering of electromagnetic waves, calculation of metal, dielectric, etc., can be modified into a shell-like concentric circles of non-coated nanopart
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电磁波散射。本书介绍了电磁波在不同海况下的散射反射特性,通过matlab仿真了具体的电磁波散射情况。-Electromagnetic scattering. This book describes the electromagnetic waves in different sea scattering reflective properties, through the matlab simulation of electromagnetic wave scattering specific
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MATLAB programs related to electromagnetic wave scattering with special emphasis on wave scattering by random rough surfaces and discrete random media.-Detailed descr iptions of the theories and formulations behind these codes can be found in the thr
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时域有限差分方法,一维电磁波在色散介质中的传播和散射3D分析方法,fdtd-Finite difference time domain method, one-dimensional propagation and scattering of electromagnetic waves in dispersive media 3D analysis methods, fdtd
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计算光散射的DDA算法的优化算法,十分可靠-calculate scattering and absorption of electromagnetic waves by particles of arbitrary shape and composition using the discrete dipole approximation
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Mie solutions (infinite series) to scattering, absorption and phase function of electromagnetic waves by a homogeneous sphere.-Mie solutions (infinite series) to scattering, absorption and phase function of electromagnetic waves by a homogeneous sph
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Mie solutions (infinite series) to scattering, absorption and phase function of electromagnetic waves by a homogeneous sphere.-Mie solutions (infinite series) to scattering, absorption and phase function of electromagnetic waves by a homogeneous sph
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This code has been written based on the standard
transfer matrix method. Applications include propagation,
scattering, and diffraction of electromagnetic waves and find the type of electromagnetic wave in homogeneous isotropic plasma photonic cr
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