Transient Phenomenon of Electromagnetic Waves by Time-Department Resistive Screen in Waveguide
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概要
- 論文の詳細を見る
- 2003-11-01
著者
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Tretyakov Oleg
Theoretical Radio Physics Kharkov State University
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SHIMODA Michinari
Department of Electronic Engineering, Kumamoto National College of Technology
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IWAKI Ryuichi
Department of Electronic Engineering, Kumamoto National College of Technology
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MIYOSHI Masazumi
Department of Electronic Engineering, Kumamoto National College of Technology
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Iwaki Ryuichi
Department Of Electronic Engineering Kumamoto National College Of Technology
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Shimoda M
Department Of Electronic Engineering Kumamoto National College Of Technology
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Shimoda Michinari
Department Of Electronic Engineering Kumamoto National College Of Technology
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Miyoshi M
Department Of Electronic Engineering Kumamoto National College Of Technology
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Miyoshi Masazumi
Department Of Electronic Engineering Kumamoto National College Of Technology
関連論文
- Transient Phenomenon of Electromagnetic Waves by Time-Dependent Resistive Screen in Waveguide(Analytical and Simulation Methods for Electromagnetic Wave Problems)
- Transient Phenomenon of Electromagnetic Waves by Time-Department Resistive Screen in Waveguide
- Wiener-Hopf Analysis of Transient Phenomenon Caused by Time-Varying Resistive Screen in Waveguide
- Transient Phenomena of Electromagnetic Waves by the Abrupt Extinction of Interior Terminative Conducting Screen in Waveguide
- Estimation of Reflection Coefficient and Surface Impedance from Absolute Values of the Near Field with Periodic Change
- Scattering of Electromagnetic Plane Waves by a Perfectly Conducting Wedge : The Case of E Polarization
- Wiener-Hopf Analysis of the Diffraction by an Impedance Wedge : The Case of E Polarization
- Estimation of Surface Impedance for Inhomogeneous Half-Space Using Far Fields(EM Analysis, Wireless Technologies and Computational Electromagnetics)
- Scattering of an Electromagnetic Plane Wave by a Plane with Local Change of Surface Impedance(Electromagnetic Theory)
- Estimation of Surface Waves along a Metal Grating Using an Equivalent Impedance Model
- Estimation of Surface Waves along a Metal Grating Using an Equivalent Impedance Model