Toda Kohji | Departmemt Of Electronic Engineering National Defense Academy
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概要
関連著者
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Toda Kohji
Departmemt Of Electronic Engineering National Defense Academy
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TODA Kohji
Department of Electrical and Electronic Engineering, National Defense Academy
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MORITAKE Hiroshi
Department of Electrical and Electronic Engineering, National Defense Academy
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Toda K
Musashi Inst. Of Tech.
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Toda Kohji
Musashi Inst. of Tech.
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Yoshino Katsumi
Department Of Electrical Engineering Faculty Of Engineering Osaka University
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Inoue Masaru
Department Of Applied Science Faculty Of Engineering Kyushu University
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INOUE MASARU
Department of Pediatrics, Okayama Red Cross General Hospital
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Inoue M
Department Of Electrical Engineering Osaka Prefectural Technical College
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Inoue M
Nanomaterials Microdevices Research Center Osaka Institute Of Technology
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Moritake Hiroshi
Electrical And Electronic Engineering National Defense Academy
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Inoue M
Osaka Inst. Technol. Osaka Jpn
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Inoue M
Setsunan Univ. Osaka Jpn
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Toda K
Graduate School Of Science And Technology Niigata University
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Inoue Masami
Association Of Super-advanced Electronics Technologies (aset)
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Inoue M
Assoc. Super‐advanced Electronics Technol. (aset) Yokohama Jpn
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Inoue M
Kagoshima Univ. Kagoshima Jpn
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Inoue M
Kyoto Univ. Kyoto Jpn
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Inoue Masataka
Nanomaterials Microdevices Research Center Osaka Institute Of Technology
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Inoue M
Advanced Technology R&d Center Mitsubishi Electric Corp.
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MORITAKE Hiroshi
Electrical and Electronic Engineering, National Defense Academy
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Urabe Heijiro
Department Of Electrical Engineering The National Defense Academy
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Mizukami Hiroyoshi
Department Of Electronic Engineering Graduate School Of Engineering Osaka University
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YOSHINO Katsumi
Department of Electronic Engineering, Graduate School of Engineering, Osaka University
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Inoue Mitsuteru
Department Of Electrical & Electronic Engineering. Toyohashi University Of Technology
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Inoue Masumi
Department Of Quantum Engineering Nagoya University
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Ohki Michio
Department Of Applied Physics National Defense Academy
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Sawaguchi Akihiro
Department Of Electronic Engineering National Defense Academy
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INOUE Morio
Kyoto Research Laboratory, Matsushita Electronics Corporation
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Ieda M
Department Of Electrical Engineering Nagoya University
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Ieda M
Department Of Electrical Engineering Nagoya University:(present Address) Department Of Electrical En
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Motegi Kenji
Departmemt Of Electronic Engineering National Defense Academy
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Mizutani Koichi
Department Of Elcetrical Engineering The National Defense Academy
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Sakata K
Kyoto Univ. Kyoto Jpn
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Toda Kohji
Department Of Electrical Engineering The National Defense Academy
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MIZUTANI Koichi
Department of Elcetrical Engineering, The National Defense Academy
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Sakata Koichiro
Faculty Of Science And Technology Science University Of Tokyo
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Sakata Koichiro
Department Of Electrical Engineering Faculty Of Science And Technology Science University Of Tokyo
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Sakata Koichiro
Depart. Elect. Eng. Fac. Science And Technology Science University Of Tokyo
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Sakata Koichiro
Faculty Of Science Technology Science University Of Tokyo
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MOTEGI Kenji
Department of Electronic Engineering, National Defense Academy
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Fujita Takeshi
Department Of Applied Physics Osaka City University
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Takenaka Tadashi
Department of Electrical Engineering, Faculty of Science and Technology, Tokyo University of Science
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Takenaka Tadashi
Depart. Elect. Eng. Fac. Science And Technology Science University Of Tokyo
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Toda Kohji
Department Of Electronic Engineering National Defense Academy
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SAKATA Koichiro
Department of Electrical Engineering, Science University of Tokyo
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Sakata K
Faculty Of Science And Technology Science University Of Tokyo
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FUJITA Takeshi
Department of Dental and Biomedical Materials Science, Unit of Basic Medical Sciences, Graduate Scho
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Ohki Michio
Department of Applied Physics, National Defense Academy
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Toda Kohji
Department Of Electronic Engineering The National Defense Academy
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SUGIZAKI Goro
Department of Electrical Engineering, Science University of Tokyo
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SAWAGUCHI Akihiro
Department of Electronic Engineering, The National Defense Academy
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Sugizaki Goro
Department Of Electrical Engineering Science University Of Tokyo
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Motegi Kenji
Department Of Electronic Engineering National Defense Academy
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Ikeda Toshio
Department Electronic Engineering Faculty Of Engineering Tohoku University
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竹中 正
東京理科大学理工学部電気工学科
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KIM Jaeki
Department of Electrical and Electronic Engineering, National Defense Academy
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IKEDA TOSHIO
Department of Nephrology, Kantou-Teishin Hospital
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Takenaka Tadashi
Department Of Electrical Engineering Science University Of Tokyo
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Miyazaki Hisashi
Department Of Applied Physics Osaka City University
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Morimoto Jun
Department Of Applied Physics National Defense Academy
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Watanabe Kohji
Department Of Electrical Engineering The National Defense Academy
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SHINODA Yoshiaki
Department of Electrical Engineering, The National Defense Academy
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URABE Heijiro
Department of Electrical Engineerring, The National Defense Academy
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Ikeda Toshio
Department Of Hypertension And Cardiorenal Medicine Dokkyo Medical University
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Shinoda Yoshiaki
Department Of Electrical Engineering The National Defense Academy
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AKUTSU Yasuhiko
Department of Electronic Engineering, National Defense Academy
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Fujita Takeshi
Department Of Chemistry Graduate School Of Pure And Applied Sciences University Of Tsukuba
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Akutsu Yasuhiko
Department Of Electronic Engineering National Defense Academy
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Toda Kohji
Department of Electronic Engineering, National Defense Academy
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TAKENAKA Tadashi
Faculty of Science and Technology Tokyo University of Science
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吉野 勝美
Shimane Institute For Industrial Technology
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SAKATA Koichiro
Faculty of Science and Technology, Science University of Tokyo
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Ozaki Ryotaro
Department Of Electrical And Electronic Engineering National Defense Academy
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Haase Wolfgang
Institut Fur Physikalische Chemie Technische Hochschule Darmstadt
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Ikeda Toshiaki
Murata Mfg. Co. Ltd.
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Lee Kunyong
Department Of Materials Science And Engineering National Defense Academy
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Yasuda T
Joint Research Center For Atom Technology (jrcat)
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Yasuda Tetsuji
Joint Research Center For Atom Technology(jrcat):national Institute For Advanced Interdisciplinary R
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Kikuchi T
Department Of Applied Chemistry Faculty Of Science Science University Of Tokyo
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OHKUBO Hiroshi
Department of Precision Mechanics School of Engineering, Tokai University
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HASHIMOTO Takayuki
Department of Radiation Oncology, Graduate School of Comprehensive Human Sciences, University of Tsu
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WATANABE KOHJI
Department of Pediatrics, Shimane Medical School
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ISHIHARA Toyohiko
Department of Communication Engineering National Defense Academy
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Yasuda T
Joint Research Center For Atom Technology(jrcat):national Institute For Advanced Interdisciplinary R
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Yoshino K
Osaka Univ. Suita Jpn
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Kikuchi Tsuneo
Faculty Of Engineering Tokyo Institute Of Technology
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Takenaka Tadashi
Faculty Of Science And Technology Science University Of Tokyo
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Inoue Masaru
Department Of Electronic Engineering National Defense Academy
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NOMURA Tooru
Department of Electrical Communication, Shibaura Institute of Technology
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YASUDA Tsutomu
Department of Electrical Communication, Shibaura Institute of Technology
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MORIIZUMI Toyosaka
Department of Electrical and Electronics Engineering, Tokyo Institute of Technology
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Nakata Atsushi
Department Of Electrical Engineering The National Defense Academy
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KIKUCHI Tsuneo
Department of Electrical and Electronics Engineering, Tokyo Institute of Technology
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Toda K
National Defense Acad. Yokosuka Jpn
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Toda Kohji
Department Of Electrical And Electronic Engineering National Defense Academy
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Ohki Michio
Department Of Applied Physics. National Defense Academy
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Ikeda T
Univ. Tsukuba Ibaraki Jpn
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Ohkubo Hiroshi
Department Of Electrical Engineering The National Defense Academy
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Watabe K
National Defense Academy Yokosuka Jpn
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Yasuda Takeshi
Department Of Applied Science For Electronics And Materials Graduate School Of Engineering Sciences
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Okamoto Yoichi
Department Of Applied Physics National Defense Academy
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Kikuchi T
Department Of Applied Physics National Defense Academy (nda)
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Kikuchi Toshiaki
Yokohama Institute For Earth Sciences Japan Agency For Marine-earth Science And Technology
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Toda Kohji
Department Of Elcetrical Engineering The National Defense Academy
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Toda Kohji
Department Of Electrical Engineerring The National Defense Academy
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Toda Kohji
Department Of Electronic Engineering National Defense Acadenny
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Tokumaru Hiroshi
Department Of Electronic Engineering National Defense Academy
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FURUSAWA Masami
Department of Electronic Engineering, The National Defense Academy
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Yasuda Tsutomu
Faculty Of Engineering Tokyo Institute Of Technology
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Yasuda Tsutomu
Department Of Electrical And Electronics Engineering Tokyo Institute Of Technology
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Ozaki Masanori
Department Of Electrical Electronic And Informational Engineering Osaka University
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Nomura Tooru
Department Of Communication Engineering Faculty Of Engineering Shibaura Institute Of Technology
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Urabe H
Department Of Electronic Engineering The National Defense Academy
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Urabe Heijiro
Department Of Electronic Engineering The National Defense Academy
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Urabe Heijiro
Department Of Electrical Engineerring The National Defense Academy
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Furusawa Masami
Department Of Electronic Engineering The National Defense Academy
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Moritake Hiroshi
Department Of Electronic Engineering National Defense Academy
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TAKAHASHI Kuniaki
Department of Electronic Engineering, National Defense Academy
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Ishihara Toyohiko
Department Of Electrical Engineering The National Defense Academy
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Ohki Michio
Department Of Applied Physics National Defense Acadenny
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Shinoda Y
Department Of Electronic Engineering The National Defense Academy
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Ikeda Toshio
Department Of Electronic Engineering Faculty Of Engineering Tohoku University
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SEIKE Tadaaki
Department of Electronic Engineering, National Defense Academy
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Seike Tadaaki
Department Of Electronic Engineering National Defense Academy
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HAYAMA Masaru
Department of Electrical Engineering, The National Defense Academy
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KATAYAMA Kazumi
Department of Electrical Engineering, The National Defense Academy
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Motegi K
National Defense Acad. Yokosuka Jpn
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Ikeda Toshio
Department Of Chemistry Faculty Of Science Shizuoka University
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Sawaguchi A
National Defense Acad. Yokohama Jpn
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Sawaguchi Akihiro
Department Of Electronic Engineering The National Defense Academy
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Ishii Jun
Department Of Electronic Engineering National Defense Academy
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Ishii Jun
Department Of Biology Graduate School Of Science And Technology Kobe University
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Mizutani Koichi
Department Of Electrical Engineering The National Defense Academy
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Takahashi Kuniaki
Department Of Electronic Engineering National Defense Academy
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Hashimoto Takayuki
Department Of Electrical And Electronic Engineering National Defense Academy
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Katayama Kazumi
Department Of Electrical Engineering The National Defense Academy
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Ikeda Toshio
Department Of Electronic Engineering The National Defense Academy
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Moriizumi Toyosaka
Department Of Electrical And Electronic Engineering Faculty Of Engineering Tokyo Institute Of Techno
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Hayama Masaru
Department Of Electrical Engineering The National Defense Academy
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Yoshino Katsumi
The Department Of Electrical Engineering Osaka University
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Fujita Takeshi
Department Of Electrical And Electronic Engineering National Defense Academy
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Fujita Takeshi
Department Of Electronic Engineering National Defense Academy
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YAMAMOTO Yoshikiyo
Department of Electronic Engineering, National Defense Academy
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UCHIDA Tadaaki
Department of Electronic Engineering, The National Defense Academy
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Uchida Tadaaki
Department Of Electronic Engineering The National Defense Academy
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Toda Kohji
Department of Electrical and Electronic Engineering, National Defense Academy, Hashirimizu, Yokosuka 239-8686, Japan
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Toda Kohji
Department of Mechanical Systems Engineering, Tokyo City University, 1-28-1 Tamazutsumi, Setagaya, Tokyo 158-8557, Japan
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Toda Kohji
Department of Electronic Engineering, National Defense Academy, Hashirimizu,
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Aoki Masashi
Department of Electrical and Electronic Engineering, National Defense Academy, 1-10-20 Hashirimizu, Yokosuka, Kanagawa 239-8686, Japan
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Yoshino Katsumi
Research Project Promotion Institute, Shimane University, 2 Hokuryo-cho, Matsue 690-0816, Japan
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Ikeda Toshio
Department of Applied Chemistry, The University of Tokyo
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Kim Jaeki
Department of Electrical and Electronic Engineering, National Defense Academy, 1-10-20 Hashirimizu, Yokosuka, Kanagawa 239-8686, Japan
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Moritake Hiroshi
Institute of Physical Chemistry, Darmstadt University of Technology, Petersenstr. 20, 64287 Darmstadt, Germany
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Podgornov Fedor
Institute of Physical Chemistry, Darmstadt University of Technology, Petersenstr. 20, 64287 Darmstadt, Germany
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Pozhidaev Eugene
Institute of Physical Chemistry, Darmstadt University of Technology, Petersenstr. 20, 64287 Darmstadt, Germany
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Yasuda Tsutomu
Department of Electrical and Electronic Engineering, Tokyo Institute of Technology
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Fujita Takeshi
Department of Electrical and Electronic Engineering, National Defense Academy, 1-10-20 Hashirimizu, Yokosuka, Kanagawa 239-8686, Japan
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Haase Wolfgang
Institute of Physical Chemistry, Darmstadt University of Technology, Petersenstr. 20, 64287 Darmstadt, Germany
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Motegi Kenji
Department of Electronic Engineering, National Defense Academy, Hashirimizu,
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Ohshima Takeshi
Quantum Beam Science Directorate, Japan Atomic Energy Agency, Takasaki, Gunma 370-1292, Japan
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Onoda Shinobu
Quantum Beam Science Directorate, Japan Atomic Energy Agency, Takasaki, Gunma 370-1292, Japan
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TODA Kohji
Department of Electronic Engineering, The National Defense Academy
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Lee Kunyong
Department of Materials Science and Engineering, National Defense Academy, 1-10-20 Hashirimizu, Yokosuka, Kanagawa 239-8686, Japan
著作論文
- Analysis of Acoustic Streaming in Nematic Liquid-Crystal Cell
- Optical Properties of Domain Pattern Induced in Nematic Liquid-Crystal Cell by Elastic Wave Propagation : Optical Properties of Condensed Matter
- Propagation Characteristics of Lamb Wave in Nematic Liquid-Crystal Cell
- Influence of Liquid-Crystal Directors in an Electric Field on Elastic Wave Propagating in Liquid-Crystal Cell
- Viscosity Measurement of Nematic Liquid Crystal Using Shear Horizontal Wave Propagation in Liquid Crystal Cell
- Viscosity Measurement of Ferroelectric Liquid Crystal Using Shear Horizontal Wave Propagation in a Trilayer Structure
- Periodic Property of Domain in Nematic Liquid Crystal Induced by Elastic Wave
- Liquid Viscosity Measurement Using Plate Mode Shear Horizontal Waves on a Piezoelectric Ceramic Thin Plate
- Motion Characteristics Measurement of Rotating Object Using Surface Acoustic Wave Oscillator
- Lamb Wave Propagation Characteristics and Transducer Performances in Layered Substrate Composed of Piezoelectric Thin Plate and Glass Thin Plate
- Underwater Ultrasonic Wave Transducer Using Interdigital Electrodes : Non-Destructive Testing
- Role of Whispering Gallery Mode and Ray in Concave Boundary : Ultrasonic Propagation and Field
- Measurement of Leaky Lamb Wave Velocity Using Raman-Nath Diffraction
- Dependence of Transducer Performance of Lamb Wave Multiplexer on Terminal Condition : Communication Devices and Materials
- A Liquid Velocity Meter Using a Liquid Delay Line Oscillator : Acoustic Measurements
- Propagation Characteristics of SH-Waves in Piezoelectric Ceramic Plates : SAW and Communication Devices
- Propagation Characteristics of Lamb Waves in PbZrO_3-Based Ceramic Substrate
- Piezoelectric Characteristics of PbZrO_3-Based Ceramics around Ferroelectric Phase Transition Temperature : Ultrasonic Transduction
- Acoustic Wave Characteristics of Lead-Free (Bi_Na_)_Ca_TiO_3 Piezoelectric Ceramic : F: FERROELECTRIC MATERIALS
- Surface Acoustic Wave Characteristics of Grain-Oriented Bismuth Layer-Structured Ferroelectric Ceramics : SAW and Communication Devices
- Surface Acoustic Wave Binary Phase Shift Keying System for Time-Division Multiple Access
- Quadrature Phase Shift Keying Modulation and Demodulation System Using Rayleigh Wave Devices : SAW and Communication Devices
- An Acoustical Imaging System Using a Leaky Lamb Wave Transducer : SAW and Communication Devices
- Mathematical Treatment of Mode Coupling between Two Plane Waves Using Unitary Matrix and Neumann Series
- A Phase Shift Keying Communication System Using SAW Devices : SAW and Communication Devices
- Measurement of the Liquid Surface Level Using a Leaky Lamb Wave Transducer : F: FERROELECTRIC MATERIALS
- Measurement of Moving Speed Using a Leaky Lamb Wave Device
- Mechanical Displacement Measurement Using a Leaky Lamb Wave Delay Line Oscillator
- Measurement Technique for Mechanical Vibration Using a Thickness-Mode Piezoelectric Transducer with Two Comb-Shaped Electrodes
- An Ultrasonic Modulator for 16-Valued Frequency Shift Keying : SAW and Communication Devices
- Reaction on Electromechanical Characteristics due to Acoustic Radiation from Substrate with Energy Confinement and Interference in Interdigital Transducer
- Optical Modulation Using Mode Conversion from Surface Acoustic Wave to Bulk Wave : O: Optoelectronics
- Measurement of the Sound Velocity in Liquids Using a Leaky Lamb Wave Transducer Composed of a Layer-Structured Substrate
- An Ultrasonic Method of Construcuting a Differential Phase Shift Keying System : SAW and Communication Device
- Characterization of LiNbO3 Single-Crystal Substrates Irradiated with Electrons
- Nondestructive Testing Technique for Defect Detection in LiNbO3 Using Infrared Thermal Imaging Camera
- Viscosity Measurement of Ferroelectric Liquid Crystal Using Shear Horizontal Wave
- A Self-Oscillation-Type Ultrasonic Linear Actuator
- Model for Operation Mechanism of Acoustooptic Modulator with Two Interdigital Transducers
- Acoustooptic Modulator with Interdigital Transducers for Driving and Controlling on a Piezoelectric Substrate
- Measurement of Group Velocity Variation due to Temperature using Frequency Dependence of Interference Intensity of Acoustic Waves and its Fourier Analysis
- Frequency Characteristics of an Acoustooptic Modulator with Two Interdigital Transducers
- Optical Deflection Using a Leaky Surface Acoustic Wave Device : S: Surface Acoustic Wave
- A Leaky Rayleigh Wave Device for Two-Dimensional Optical Deflection : SAW and Communication Devices
- Frequency Modulation of Optical Beam Using Ultrasonic Diffraction Grating : Photoacoustic Spectroscopy
- Acoustooptic Effects of Nematic Liquid Crystals Induced by Elastic Wave Propagating in Glass Substrate
- Ultrasonic MODEM by Phase Shift Keying : SAW and BAW Materials, Devices and Theories
- Measurement of Sound Velocity Change in a Liquid Using a Liquid Delay Line Oscillator : Fundamentals
- Multi-Channel External Modulation Using Acousto-Optic Diffraction : Acousto-Optic Effect and Devices
- Measurement of Vibration Displacement Using a Layered-Structure Leaky Wave Interdigital Transducer
- An Acoustic Imaging System by Use of a Lamb Wave Device : V: PIZOELECTRIC VIBRATOR
- CW Measurement of Sound Velocity Difference in Two Liquids : ELASTIC SURFACE WAVES
- A Frequency Modulator Using a Lamb Wave Delay Line Oscillator : SAW and Communication Devices
- Velocity Curve Change of Leaky Lamb Waves in a Layered Substrate Induced by Liquid-Loading
- Analysis of Lamb Wave Propagation Characteristics in Piezoelectric Ceramic Plates : SAW and Communication Devices
- Acoustical Imaging Using a Leaky Wave Transducer Composed of a Piezoelectrie Ceramic Plate and an Acryl Plate
- Liquid Viscosity Measurement Using SH Wave Propagation Characteristics on Piezoelectric Ceramic Thin Plate
- Propagation Characteristics of Shear-Horizontal Plate Modes on Water-Loaded LiNbO_3
- A Differential Phase Shift Keying Demodulator Using a Shear Horizontal Wave Device : S: Surface Acoustic Wave
- Performance of a Leaky Wave Transducer in a Layered Substrate Composed of a Thin Piezoelectric Plate and a Thin Glass Plate
- Lamb Wave Propagation Characteristics on Water-Loaded LiNbO_3 Thin Plates
- Surface Acoustic Wave Transducer in a Layered Structure Composed of Thin Piezoelectric Cerarmic Plate and Glass
- Measurement of Sound Velocity in Liquid Using Frequency Sweeping-Interdigital Transducer : Ultrasonic Measurement
- Operation Performance of Self-Oscillation Ultrasonic Vibrating Device for Liquid Atomization
- Director Orientation Measurement of Nematic Liquid Crystal Using Velocity Change of Shear Horizontal Wave
- System for Measuring Sound Velocity in Liquid Using Leaky Lamb Wave Modes on 128゜ Rot. Y-X Cut LiNbO_3 Substrate : Fundamentals
- A Cascade Type Optical Algebraic Device Using Ultrasonic Diffraction Grating : Piezoelectric Vibrators and Devices
- Microdisplacement Measurement Using a Liquid-Delay-Line Oscillator
- Measurement of the Sound Velocity in Liquids Using a Leaky Lamb Wave Transducer Composed of a Layer-Structured Substrate
- Behavior of Director Orientation near Interface of Nematic Liquid-Crystal Cell Evaluated Using Shear Horizontal Wave Propagation
- Evaluation of Nematic Liquid Crystal Director Orientation in Vicinity of Glass Substrate Using Shear Horizontal Wave Propagation
- Spontaneous Polarization Influence of V-shaped Switching Ferroelectric Liquid Crystals on Pulse Driving Using Active Switch
- Operational Performance of A0-mode Lamb Wave Interdigital Transducers Under Water-Loaded Condition
- Measurement of Electrically Induced Vibration Profile in Freely Suspended Film of Ferroelectric Liquid Crystal
- Viscosity Measurement of Nematic Liquid Crystal Using Shear Horizontal Wave Propagation in Liquid Crystal Cell
- Transducer Performance for Leaky Wave in Layered Structure of Piezoelectric Ceramic Thin Plate and Acryl Plate ( FERROELECTRIC MATERIALS AND THEIR APPLICATIONS)