KOBAYASHI Yoshio | Faculty of Engineering, Saitama University
スポンサーリンク
概要
関連著者
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KOBAYASHI Yoshio
Faculty of Engineering, Saitama University
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Kobayashi Yoshio
Faculty Of Engineering Ibaraki University
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小林 禧夫
Faculty of Engineering, Saitama University
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Kobayashi Y
The Department Of Electrical And Electronic Systems Saitama University
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Kobayashi Yoshio
Faculty Of Engineering Saitama University
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KAWABATA Hirokazu
Faculty of Engineering, Saitama University
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TANPO Hiroshi
Faculty of Engineering, Saitama University
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Tanpo Hiroshi
Faculty Of Engineering Saitama University
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Kawabata Hirokazu
Faculty Of Engineering Saitama University
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Satoh Kei
Ntt Docomo Inc. Wireless Laboratories
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Suzuki Hideyuki
Faculty of Information and Computer Sciences, Toyohashi University of Technology
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NOJIMA TOSHIO
Radio Environment Technology Research Laboratory, NTT DoCoMo, Inc.
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MA Zhewang
Faculty of Engineering, Saitama University
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SATOH Kei
Wireless Laboratories, NTT DoCoMo, Inc.
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NARAHASHI Shoichi
Wireless Laboratories, NTT DoCoMo, Inc.
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NOJIMA Toshio
Wireless Laboratories, NTT DoCoMo, Inc.
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Nojima Toshio
Radio Environment Technology Research Laboratory Ntt Docomo Inc.
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Nojima Toshio
Wireless Laboratories Ntt Docomo Inc.
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Kobayashi Yoshio
Saitama Univ. Saitama‐shi Jpn
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Ma Zhewang
Faculty Of Engineering Saitama University
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Imai T
The Authors Are With Ntt Mobile Communications Network Inc.
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Nojima T
Graduate School Of Information Science And Technology Hokkaido University
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Imai Tadashi
Faculty of Engineering, Saitama University
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Narahashi Shoichi
Wireless Laboratories Ntt Docomo Inc.
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Imai Tadashi
Faculty Of Engineering Saitama University
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Suzuki Hideyuki
Faculty Of Engineering Saitama University
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馬 哲旺
Faculty of Engineering, Saitama University
著作論文
- A Low-Loss 5 GHz Bandpass Filter Using HTS Quarter-Wavelength Coplanar Waveguide Resonators(Special Issue on Superconductive Electronics)
- Analysis and Experiments of a TM_ Mode Cylindrical Cavity to Measure Accurate Complex Permittivity of Liquid(General Methods, Materials, and Passive Circuits)(Advances in Characterization and Measurement Technologies for Microwave an
- An Improvement of the Perturbation Method Using a TM_ Mode Cylindrical Cavity(Measurement)(Recent Trends on Microwave and Millimeter Wave Application Technology)
- Phenomenological Description of Temperature and Frequency Dependence of Surface Resistance of High-T_C Superconductors by Improved Three-Fluid Model