Hatta Ichiro | Department Of Applied Physics Faculty Of Engineering Nagoya University
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概要
関連著者
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Hatta Ichiro
Department Of Applied Physics Faculty Of Engineering Nagoya University
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HATTA Ichiro
Department of Applied Physics, Nagoya University
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八田 一郎
名古屋大 大学院
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Hatta Ichiro
Liberal Arts Fukui University Of Technology
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八田 一郎
名古屋大学大学院工学研究科
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Takahashi Fumiaki
Nagoya Municipal Industrial Research Institute
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Hatta Ichiro
Department Of Applied Physics Nagoya University
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HAMADA Yukihiro
Nagoya Municipal Industrial Research Institute
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Hamada Yuji
New Materials Research Center Sanyo Electric Co. Ltd.
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八田 一郎
名古屋大学工学部
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Hamada Yuji
Department Of Materials Science And Technology Graduate School Of Engineering Sciences Kyushu Univer
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Takahashi F
Nagoya Municipal Industrial Research Institute
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Kato Ryozo
Sinku-riko Inc.
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MAESONO Akikazu
Sinku-Riko, Inc.
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Hatta Ichiro
Department Of Applied Physics School Of Engineering Nagoya University
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Yao Haruhiko
Department Of Applied Physics Nagoya University:(present Address)department Of Physics Tokyo Institu
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Hamano Katsumi
Department Of Physics College Of Science Tokyo Institute Of Technology
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Maesono A
Sinku‐riko Inc. Kanagawa‐ken Jpn
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Maesono Akikazu
Sinku-riko Inc.
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Imaizumi Shigeo
Department Of Applied Physics Faculty Of Engineering Nagoya University:suzuka College Of Technology
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Matsuda Takashi
Department Of Computer Science And Systems Engineering Kobe University
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MATSUDA Takashi
Department of Medicinal Chemistry, Kyoto Pharmaceutical University
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EMA Kenji
Department of Physics,Faculty of Science,Tokyo Institute of Technology
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Ema Kenji
Department Of Physics Faculty Of Science Tokyo Institute Of Technology
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Sawada Shozo
Department Of Applied Physics Chubu Institute Of Technology
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HIBINO Masahiro
Departtnent of Applied Physics, Nagoya University
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Asano Tsutomu
Department Of Applied Chemistry Faculty Of Engineering Oita University
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Ikeda Hironobu
Department Of Physics Faculty Of Science Ochanomizu University
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HAMANO Katsumi
Department of Physics,Faculty of Science,Tokyo Institute of Technology
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Tsuchida Kazuaki
Department Of Applied Chemistry Faculty Of Engineering Okayama University
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YAO Haruhiko
Department of Applied Physics, Nagoya University
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Takahashi Hiroshi
Department Of Cardiology Nihon University Surugadai Hospital
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Hatta Ichiro
Department Of Physics Tokyo Institute Of Technology
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Ema K
Graduate School Of Science And Engineering Tokyo Institute Of Technology
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Sumi A
Department Of Applied Physics School Of Engineering Nagoya University
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SUMI Akinori
Department of Applied Physics, Nagoya University
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Takahashi Hiroshi
Department of Cardiology, Nagoya Kyoritsu Hospital
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Fukumi K
National Inst. Advanced Industrial Sci. And Technol. Jpn
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ASANO Tsutomu
Department of Pediatrics, Graduate School of Medicine, Gifu University
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Georgiev Zdravko
Nagoya Municipal Industrial Research Institute
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Asano T
Tokyo Inst. Technol. Yokohama Jpn
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Asano T
Department Of Physics Faculty Of Science Shizuoka University
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Ikeda Hironobu
Department Of Physics Ochanomizu University
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YAMADA Yasusada
Department of Physics, Osaka University
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Kuroda Shin-ichi
Department Of Applied Physics Nagoya University
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Kato Terumasa
Nagoya Municipal Industrial Research Institute
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Gu Yuqin
A Research Fellow Of The Japan Society For The Promotion Of Science
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Kato T
Nagoya Municipal Industrial Research Institute
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Ikushima Akira
The Institute For Solid State Physics The University Of Tokyo
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Fujii Kazuhiko
Department Of Respiratory Medicine Graduate School Of Medical Sciences Kumamoto University
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MINA Md.Forhad
Department of Physics,Faculty of Science,Shizuoka University
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Mori Takatoshi
Department Of Applied Physics Graduate School Of Engineering Nagoya University
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ASAO Yohko
Department of Physics, Tokyo Institute of Technology
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Uchiyama Yasuhiro
Department Of Applied Physics Faculty Of Engineering Nagoya University
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Marumoto Kazuhiro
Department Of Applied Physics Nagoya University
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Sugimoto Norihiro
Department Of Applied Physics Faculty Of Engineering Nagoya University:department Of Physics Faculty
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Yamada Yasusada
Department Of Physics College Of General Education Osaka University
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Mori Takashi
Department Of Biochemistry And Cell Biology Institute Of Development And Aging Sciences Graduate Sch
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Mina M
Shizuoka Univ. Shizuoka Jpn
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Hatta Ichiro
Department Of Physics Faculty Of Science Tokyo Institute Of Technology
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Ito Hiroshi
Department Neurosurgery Tokyo Medical College
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藤井 研一
阪大院理
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Kato Satoru
Department Of Neurophysiology Neuroinformation Research Institute University Of Kanazawa School Of M
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MORI Takashi
Department of Chemistry, Graduate School of Science, The University of Tokyo
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Nuryadi Ratno
Research Institute Of Electronics Shizuoka University
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Nuryadi Ratno
Department Of Physics Faculty Of Science Shizuoka University
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Nuryadi Ratno
Shizuoka Univ. Hamamatsu Jpn
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IKEDA Hironobu
Neutron Science Laboratory, Institute of Materials Structure Science, High Energy Accelerator Resear
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Sugiura K
Department Of Chemistry Graduate School Of Science Tokyo Metropolitan University
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Tang Xiaowei
Department Of Engineering Mechanics Tsinghua University
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SAWADA SHOZO
Department of Radiation Biology, Research Institute for Radiation Biology and Medicine, Hiroshima Un
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HARADA Jimpei
Department of Applied Physics, Nagoya University
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MATSUSHITA Tadashi
Photon Factory, National Laboratory for High Energy Physics (KEK)
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Gu Y
National Laboratory On High Power Laser And Physics
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Fujii K
Osaka Univ. Osaka
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Ito Kazuki
The Graduate University For Advanced Studies
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Sumi Satoshi
Department Of Applied Physics Faculty Of Engineering Nagoya University
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Adachi Tomohiro
Neutron Science Laboratory Institute Of Materials Structure Science High Energy Accelerator Research
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KANEDA Yukio
Department of Applied Physics,Faculty of Engineering,Nagoya University
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Kaneda Yukio
Department Of Computational Science And Engineering Graduate School Of Engineering Nagoya University
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Takeshita K
Photon Factory National Laboratory For High Energy Physics
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Takeshita Kunikazu
Photon Factory National Laboratory For High Energy Physics
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Kato Satoru
Department Of Molecular Neurobiology Graduate School Of Medicine Kanazawa University:crest
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IKUSHIMA Akira
The Institute for Solid State Physics, The University of Tokyo
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Kuroda Shin‐ichi
Department Of Applied Physics Nagoya University
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日比野 政裕
室蘭工大・工学部・応用化学
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SUGIURA Ken-ichi
Department of Chemistry, Graduate School of Science, Tokyo Metropolitan University
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Hirakawa Kinshiro
The Institute For Solid State Physics The University Of Tokyo
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Hirakawa Kinshiro
Department Of Electronics Faculty Of Engineering Kyushu University:(present Address) The Institute F
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TSUCHIDA Kazuaki
Department of Applied Chemistry, Faculty of Engineering, Okayama University
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Tsuchida Kazuaki
Department Of Physics Suzuka College Of Technology
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Tsuchida K
Department Of Physics Suzuka College Of Technology
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KASHIDA Shoji
Department of Physics,Faculry of Sciense,Niigata University
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MINA Mohammad
Department of Physics, Faculty of Science, Shizuoka University
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SAWATARI Chie
Faculty of Education, Shizuoka University
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GEORGIEV Zdravko
Department of Applied Physics, Faculty of Engineering, Nagoya University
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Hatta Ichiro
Department Of Applied Physics Graduate School Of Engineering Nagoya University
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GU Yuqin
Department of Engineering Mechanics, Tsinghua University
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XU Yuan
Department of Engineering Mechanics, Tsinghua University
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Yanagi Taketoshi
Department Of Physics Faculty Of Science Tokyo Institute Of Technology
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Ishibashi Yoshihiro
Synthetic Crystal Research Laboratory
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Fukui Minoru
Department Of Applied Physics Faculty Of Engineering Nagoya University
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OHBA Shigeru
Department of Chemistry, Keio University
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Ohba Shigeru
Department Of Applied Physics Nagoya University:the Institute For Solid State Physics The University
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Ito Hiroshi
Department Of Cardiovascular And Respiratory Medicine Akita University Graduate School Of Medicine
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Kurihara Kazuo
Department Of Physics Faculty Of Science Tokyo Institute Of Technology
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Fujii Yasuhiko
Department Of Physics Faculty Of Science Osaka University
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Yamada Yasusada
Department Of Physics Faculty Of Science Osaka University
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Suzuki Koichi
Department Of Agro-bioscience Faculty Of Agriculture Iwate University
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Xu Yuan
Department Of Engineering Mechanics Tsinghua University
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Matsushita Tadashi
Photon Factory National Laboratory For High Energy Physics
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Gu Yuqin
Department Of Engineering Mechanics Tsinghua University
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Abe Ryuji
Department Of Applied Physics Faculty Of Engineering Nagoya University
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Kato Norio
Department Of Crystalline Materials Science Faculty Of Engineering Nagoya University
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Yao Haruhiko
Department Of Applied Physics School Of Engineering Nagoya University
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Yao Haruhiko
Department Of Crystalline Materials Science Faculty Of Engineering Nagoya University
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Kuroda S
Department Of Chemistry Graduate School Of Science Tokyo Metropolitan University
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Sawatari Chie
Faculty Of Education Shizuoka University
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Harada Jimpei
Department Of Applied Physics Faculty Of Engineering Nagoya University
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Harada Jimpei
Department Of Applied Physics Nagoya University
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Kashida Shoji
Department Of Environmental Science Niigata University
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Kashida Shoji
Department Of Physics Faculty Of Science Osaka University
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Wang Shenglong
Research And Development Center Osaka Gas Co. Ltd.
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Ikushima Akira
Institute For Solid State Physics University Of Tokyo
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Ikeda Hironobu
The Institute For Solid State Physics The University Of Tokyo
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MURASE Yasuyuki
Department of Applied Physics, School of Engineering, Nagoya University
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KURIHARA Kazue
Department of Applied Physics, School of Engineering, Nagoya University
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ARAKAWA Etsuo
Department of Physics, Tokyo Gakugei University
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Murase Yasuyuki
Department Of Applied Physics School Of Engineering Nagoya University
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Arakawa Etsuo
Department Of Physics Tokyo Gakugei University
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MORI Takatoshi
Department of Materials Science, Fatculty of Engineering, Tottori University
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HASEGAWA Masahiko
Department of Applied Physics, Nagoya University
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NAKAYAMA Hideo
Department of Applied Physics, Nagoya University
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TAMURA Youjirou
Department of Physics, Suzuka College of Technology
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SAKIBARA Atsushi
Department of Applied Physics, Graduate School of Engineering, Nagoya University
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TSUCHIDA Katsuhiko
Department of Physics, Division of Material Science, Nagoya University
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Kato S
Department Of Applied Physics Faculty Of Engineering Nagoya University
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Hatta Ichiro
Departtnent Of Applied Physics Nagoya University
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MATSUMURA Yuji
Carbon Materials Development Department, Osaka Gas Co., Ltd.
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SHINOHARA Kouji
Research and Development Center, Osaka Gas Co., Ltd.
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NECHEV George
Department of Applied Physics, Nagoya University
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IMAIZUMI Shigeo
Department of Physics,Suzuka College of Technology
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Sawada Akikatsu
Synthetic Crystal Research Laboratory
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Mina Mohammad
Department Of Physics Faculty Of Science Shizuoka University
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TOMIZAWA Khotaro
Department of Chemistry,Suzuka College of Technology
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TANAKA Mitsuru
The Institute for Solid State Physics, The University of Tokyo
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Akutsu Yasuhiro
Institute Of Physics College Of Arts And Sciences University Of Tokyo
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Ikeda Hironobu
Neutron Science Laboratory High Energy Accelerator Research Organization (kek)
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Gouhara Kazutoshi
Department Of Crystalline Materials Science Faculty Of Engineering Nagoya University
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Amemiya Y
Engineering Research Institute Faculty Of Engineering University Of Tokyo
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Marumoto K
Department Of Applied Physics Nagoya University
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Sakudo Tsunetaro
Tokyo And Electrotechnical Laboratory
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Yoshimitsu Koji
Department Of Physics Faculty Of Science Kyoto University
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Yoshimitsu Koji
Department Of Physics Kyoto University : Department Of Physics Tokyo Institute Of Technology
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Nakayama Hideo
Department Of Applied Physics Nagoya University
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MATSUURA Masahide
Department of Applied Physics,Faculty of Engineering,Nagoya University
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MURAMATSU Satoshi
Department of Applied Physics, School of Engineering, Nagoya University
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MINA Md.
Department of Physics, Faculty of Science, Shizuoka University
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AMEMIYA Yoshiyuki
Engineering Research Institute, Faculty of Engineering, University of Tokyo
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Tomizawa Khotaro
Department Of Chemistry Suzuka College Of Technology
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Sakibara Atsushi
Department Of Applied Physics Graduate School Of Engineering Nagoya University
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Hasegawa Masahiko
Department Of Applied Physics Nagoya University
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Sugimoto Norihiro
Department Of Applied Physics Nagoya University
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Matsuura Masahide
Department Of Applied Physics Faculty Of Engineering Nagoya University
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Sakakibara Kiyohiko
Department Of Applied Physics School Of Engineering Nagoya University
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Abe Tomoko
Department Of Physics Ochanomizu University
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Shimizu Yasuo
Department 4 Technology Research Division 2 Honda R&d Co. Ltd. Automobile R&d Center
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Ikeda Hironobu
Neutron Science Laboratory Institute Of Materials Structure Science High Energy Accelerator Research
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Imaizumi S
Massachusetts Inst. Technology Ma Usa
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Imaizumi Shigeo
Department Of Physics Suzuka College Of Technology
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Mori T
Department Of Applied Physics Faculty Of Engineering Nagoya University
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Kaneda Yukio
Department Of Applied Physics Faculty Of Engineering Nagoya University
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Tamura Youjirou
Department Of Physics Suzuka College Of Technology
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Nechev George
Department Of Applied Physics Nagoya University
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HOSHIZAKI Hiroki
Synthetic Crystal Research Laboratory
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SUZUKI Juji
Department of Applied Physics, School of Engineering, Nagoya University
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SHIRAI Yuzo
Department of Physics, Tokyo Institute of Technology
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Tomizawa K
Department Of Computer Science Meiji University
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Tomizawa Kohtaro
Department Of Chemistry And Biochemistry Suzuka National College Of Technology
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Shinohara Kouji
Research And Development Center Osaka Gas Co. Ltd.
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Shibuya Masato
Department Of Physics Tokyo Institute Of Technology:nippon Kogaku K.k.
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Shibuya Masato
Department Of Forest Science Faculty Of Agriculture Hokkaido University
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Kato Norio
Department Of Applied Physics Faculty Of Engineering Nagoya University
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NISHINO Junichiro
Department of Applied Physics, Nagoya University
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Ueda Takashi
Department Of Biochemistry And Molecular Biology Kyoto Pharmaceutical University
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Tanaka Mitsuru
The Institute For Solid State Physics The University Of Tokyo
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Terauchi Hikaru
Department Of Phisics Kwansei-gakuin University
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Terauchi Hikaru
Department Of Physics Faculty Of Science Kwansei-gakuin University
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Tamura Yohjiro
Department of Physics, Suzuka College of Technology
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Abe Ryuji
Department Fo Applied Physics Faculty Of Engineering Nagoya University
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Tamura Yohjiro
Department Of Physics Suzuka College Of Technology
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Suzuki Koichi
Department Of Applied Physics Nagoya University
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Matsubara Takeo
Department Of Applied Physics Okayama University Of Science
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Kato Satoru
Department Of Applied Chemistry Graduate School Of Engineering Nagoya University
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Shimizu Yasuo
Department Of Physics Tokyo Institute Of Technology:nippon Time Share Co. Shibuya Branch
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Nishino Junichiro
Department Of Applied Physics Nagoya University
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Ueda Takashi
Department Of Physics Faculty Of Science Kwansei-gakuin University
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Ueda Takashi
Department Of Applied Biology And Chemistry Tokyo University Of Agriculture
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Ikushima Akira
Institute For Solid State Physics The University Of Tokyo
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Muramatsu Satoshi
Department Of Applied Physics School Of Engineering Nagoya University
著作論文
- Development of AC Calorimetric Method for Thermal Diffusivity Measuremernt V. Modulated Laser Beam Irradiation
- Thermal Diffusivity Measurement of a Thirt Film in the Direction across the Film by AC Calorimetric Method
- Development of ac Calorimetric Method for Thermal Diffusivity Measurement III. Heat Loss in the Measurement of Fine Wires
- Development of ac Calorimetric Method for Thermal Diffusivity Measurement. II. : Sample Dimension Required for the Measurement
- Development of ac Calorimetric Method for Thermal Diffusivity Measurement I. Contribution of Thermocouple Attachment in a Thin Sample
- Effect of Homologous Impurity on the Solid-Solid Phase Transition of Normal-Alkane (Hexatriacontane) Crystal Studied by Time-Resolved X-Ray Measurements
- Phase Transition in a Phosphatidylcholine Membrane Induced by Halogenated Alcohol
- Frequency Modulation Device using Ultrasonic Bulk Waves : Piezoelectric Vibrators and Devices
- Frequency Modulator using Ultrasonic Vibrator : Ultrasonic Transduction
- Ingenious Method for Eliminating Effects of Heat Loss in Measurements of Thermal Diffusivity by ac Calorimetric Method
- Twin Formation Mechanism in the Solid-Solid Phase Transition of Normal Hexatriacontane (n-C_H_)
- Grazing Incidence X-Ray Diffraction Study of Dimyristoylphosphatidic Acid Monolayers on Aqueous Subphases in the Presence of Calcium or Magnesium Ions
- Ultrasonic Velocities in BaTiO_3
- Dielectric Relaxation Mechanism in NaNO_2
- Studies on Phase Transitions by AC Calorimetry
- An ac Microcalorimetric Method for Precise Heat Capacity Measurement in a Small Amount of Liquid : Techniques, Instrumentations and Measurement
- Study of Elastic Properties of Frog Striated Muscle by Scanning Laser Acoustic Microscopy : Medical Ultrasonics and Ultrasonic Measurements
- Ultrasonic Elastic Constants of Muscle : Physical Acoustics
- AC Calorimetric Thermal Diffusivity Measurement in Relatively Thick Samples by a Distance-Variation Method
- Two-Dimensional Effects on Measurement of Thermal Diffusivity by AC Calorimetric Method : III. Advantage of Double-Heating Method
- Thermal Diffusivity Measurement of Chemical-Vapor-Deposited Diamond by an AC Calorimetric Method
- Two-Dimensional Effects on Measurement of Thermal Diffusivity by AC Calorimetric Method : II. Effects of Heat Loss
- Two-Dimensional Effects on Measurement of Thermal Diffusivity by AC Calorimetric Method : I. Conditions for Precise Measurement
- A. C. Calorimetric Investigations of Specific Heat Anomaly in Ferroelectric TGSe
- Determination of Elastic Constants of K_2[PtCl_4] by Ultrasonic Measurements and Confirmation of Angular Dependence of Their Component by X-Ray Diffuse Scattering
- Thermal Conductivity of Ribbonlike Carbon Films
- Defects in Langmuir-Blodgett Film of Cadmium Arachidate Detected with Atomic Force Microscopy
- Dynamic Investigation of the Solid-Solid Phase Transition of Normal-Alkane (Hexatriacontane) by Simultaneous Measurements with Differential Scanning Calorimetry, Small-Angle X-Ray Scattering and X-Ray Television Detector
- Effect of Sample Edge in ac Calorimetric Method for Measuring Thermal Diffusivity of Thin Films with High Thermal Diffusivity
- ^2H NMR Study on Two Motional States of Acyl Chains in P'_β Phase of Phospholipid
- High-Resolution AC Calorimeter for Measuring the Heat Capacity of Small Amounts of Liquid Samples
- Observation of the Difference between T_N and the Temperature of Dielectric Constant Maximum in Antiferroelectric NaNO_2
- Study of Thermal Expansion of NaNO_2 with Special Emphasis on the Vicinity of the Transition Points
- Dielectric Relaxation in NaNO_2
- Heat Capacity in α-β Phase Transition of Quartz
- J-Aggregate Formation of 6-Methyl-Merocyanine Dye in Mixed Langmuir-Blodgett Films with Arachidic Acid in a Wide Range of Mixing Ratio
- High Precision Heat Capacity Measurement by Dynamic Differential Scanning Calorimetry
- Experimental Study of Dynamic Specific Heat Capacity of Protein Aqueous Solutions
- Measurement of Dynamic Specific Heat Capacity of Lysozyme Crystals
- Pseudo-Critical Heat Capacity of Single Lipid Bilayers
- Binary Mixtures of Phospholipids and Cholesterol Studied by Dynamic Heat Capacity Measurements
- Evidence for Weak First-Order Nature of Lipid Bilayer Phase Transition from the Analysis of Pseudo-Critical Specific Heat
- Ultrasonic Study of K_2SeO_4 in the Temperature Range of the Incommensurate Phase Transition
- Dielectric Constant of Antiferromagnet K_2CoF_4 near Its Neel Temperature
- Crossing-over from the 2d-Ising to the 2d-Heisenberg System
- Observation of a Symmetric Logarithmic Singularity in the Specific Heat of K_2CoF_4
- Critical Amplitude of Specifi Heat Capacity in the Antiferromagnets of K_2NiF_4 Family Belonging to Two-Dimensional Ising Universality Class
- Specific Heat Capacity of Pb_Ge_xTe at Their Structural Phase Transitions
- A New Evidence in the ESR Spectra of the Incommensurate Phase of Bis(p-Toluene Sulfonate) Ester of 2,4-Hexadiyne-1,6-Diol
- Phase Transitions in Two-Dimensional Random Antiferromagnets Rb_2Co_cNi_F_4
- Development of ac Calorimetric Method for Thermal Diffusivity Measurement IV : Films with Low Thermal Diffusivity and Very Thin Films
- Acoustic Waves in Soft Biological Tissues
- An ac Calorimetric Method for Measuring Thermal Diffusivity of Liquids : Techniques, Instrumentations and Measurement
- Ultrasonic Study of NaNO_2.III.Critical Behavior of Elastic Stiffness Constants at the Normal-to-Incommensurate Phase Transition
- Compatibility of Differential Scanning Calorimetry and ac Calorimetry
- Quasi-Static Switching Current in NaNO_2
- Ferroelectric Polarization Switching in Sodium Nitrite
- Experimental Study on the Critical Dynamics of the Order-Disorder Transition in Binary Alloys
- Ultrasonic Study of NaNO_2.I. Anisotropic Character of Elastic Constants and Attenuation Coefficients
- Ordered Structure Formed by Biologically Related Molecules
- Molecular Arrangements of Fatty Acids and Cholesterol at Liquid/Graphite Interface Observed by Scanning Tunneling Microscopy
- Atomic Images of Saturated and Unsaturated Fatty Acids at Liquid/Graphite Interface and Difference of Tunneling Currents between Them Observed by Scanning Tunneling Microscopy
- ESR Study on Two Motional States of Acyl Chains in P_ Phase of Phospholipid
- X-Ray Diffraction Study on Phase Transition in Bis-(p-Toluene Sulfonate) Ester of 2,4-Hexadiyne-1,6-diol (TSHD)
- A Note on a Distribution of Relaxation Time in Ferroelectrics near the Curie Temperature
- Partitioning of Stearic Acid Spin Labels into Phospholipid Bilayers with Different Fluidities
- A Direct Observation of Temperature Dependence of Domain Reversal in NaNO_2
- Experimental Study on Dielectric Relaxation in NaNO_2
- Critical Behavior of Electric Susceptibility in NaNO_2
- Ultrasonic Study of NaNO_2. II. Dynamics of Amplitude Mode in Incommensurate Phase
- Critical Behavior of Rb_2ZnCl_4 at the Normal-Incommensurate Phase Transition
- Static Electric Susceptibility and Dielectric Relaxation Time near the Transition Points in NaNO_2
- J-Aggregate Formation of 6-Methyl-Merocyanine Dye in Mixed Langmuir–Blodgett Films with Arachidic Acid in a Wide Range of Mixing Ratio
- Switching Transient in NaNO_2
- AC Calorimetric Thermal Diffusivity Measurement in Relatively Thick Samples by a Distance-Variation Method