Ishibashi Y | Takeda Pharmaceutical Company Ltd.
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概要
関連著者
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Ishibashi Y
九州大
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Ishibashi Yoshihiro
Business Communication Research Institute Aichi Shukutoku University
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岩田 真
名大院工
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岩田 真
名工大院工
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Itoh Masakazu
Department Of Energy Engineering And Science Nagoya University
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Iwata M
Meiji Seika Kaisha Ltd. Yokohama Jpn
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岩田 真
名工大
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Iwata Makoto
Department Of Applied Physics School Of Engineering Nagoya University
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安田 直彦
岐阜大工
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石橋 善弘
愛知淑徳大
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Yasuda Naoki
Advanced Tech. R/d Center Mitsubishi Electric Co. Ltd.
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折原 宏
名大・理工総研
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Ishibashi Yoshihiro
Faculty Of Business Aichi Shukutoku University
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前田 雅輝
名工大
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前田 雅輝
名工大・工
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大和 英弘
岐阜大工
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Orihara Hiroshi
Applied Physics Department Graduate School Of Engineering Nagoya University
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青柳 倫太郎
名工大
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Ishibashi Yoshihiro
Synthetic Crystal Research Laboratory School Of Engineering Nagoya University
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Ohwa Hidehiro
Electronic And Information Engineering Department Gifu University
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Yasuda Naoki
Department Of Electronic Engineering Faculty Of Engineering Osaka University
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Orihara Hiroshi
Synthetic Crystal Research Laboratory Faculty Of Engineering Nagoya University
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ISHIBASHI Yoshihiro
Department of Applied Physics, School of Engineering, Nagoya University
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IWATA Makoto
Department of Engineering Physics, Electronics and Mechanics, Graduate School of Engineering, Nagoya
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折原 宏
Hokkaido Univ. Sapporo
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岩田 真
名大工
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鈴木 〓雄
名工大
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寺内 暉
関学大理工
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寺内 暉
関西学院大・理
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寺内 暉
関西学院大
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折原 宏
北大院工
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Orihara Hiroshi
Nippon Soken Inc.
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YASUDA Naohiko
Electrical and Electronic Engineering Department, Gifu University
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OHWA Hidehiro
Electrical and Electronic Engineering Department, Gifu University
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ISHIBASHI Yoshihiro
Faculty of Business, Aichi Shukutoku University
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石橋 善弘
名大工
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Rahman Md.M.
岐阜大工
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山下 洋八
東芝
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折原 宏
名大院工
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折原 宏
名大工
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安田 直彦
岐阜大学
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鬘谷 浩平
名工大
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OHWA Hidehiro
Department of Electrical and Electronic Engineering, School of Engineering, Gifu University
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YASUDA Naohiko
Department of Electrical and Electronic Engineering, School of Engineering, Gifu University
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ORIHARA Hiroshi
Applied Physics Department, Graduate School of Engineering, Nagoya University
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加藤 貞治
名工大
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前田 雅輝
名工大工
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岩田 真
名工大工
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藤田 一彦
岐阜高専
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石橋 善弘
九州大
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鈴木 久男
静岡大学工学部物質工学科
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鈴木 久男
静岡大学 創造科学技術大学院
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ORIHARA Hiroshi
Department of Applied Physics, Hokkaido University
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趙 成華
名工大
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MAEDA Masaki
Department of Engineering Physics, Electronics and Mechanics, Graduate School of Engineering, Nagoya
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榊原 耕平
名工大
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森下 拓磨
名工大
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Maple M
Univ. California California Usa
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Maeda M
Department Of Engineering Physics Electronics And Mechanics Graduate School Of Engineering Nagoya In
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石橋 善弘
九州大理
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Yoshida Yoichi
The Institute Of Scientific And Industrial Research Osaka University
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IWATA Makoto
Applied Physics Department, Graduate School of Engineering, Nagoya University
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Yamada Yasusada
Advanced Research Institute Waseda University:advanced Science Research Center Japan Atomic Energy R
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Hosono Y
Toshiba Corp. Kawasaki Jpn
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Hosono Yasuharu
Corporate R&d Center Toshiba Corporation
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Hosono Yasuharu
Power Supply Materials And Devices Laboratories Research And Development Center Toshiba Corporation
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Yamashita Y
Power Supply Materials And Devices Laboratory Corporate R&d Center Toshiba Corporation
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Yamashita Yohachi
Corporate R&d Center Toshiba Corporation
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Yamashita Yohachi
Toshiba Materials & Devices Research Laboratories
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Terauchi H
Kwansei Gakuin Univ. Sanda Jpn
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Terauchi Hikaru
Advanced Research Center Of Science School Of Science And Technology Kwansei Gakuin University
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Terauchi Hikaru
Department Of Physics School Of Science Kwansei-gakuin University
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Terauchi Hikaru
Advanced Research Center Of Science Faculty Of Science And Technology Kwansei Gakuin University (arc
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Suzuki H
Research Institute For Electronic Science Hokkaido University
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Matsuda Masaaki
Department Of Physics Tohoku University
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ISHIBASHI Yoshihiro
Aichi Shttkutoku University
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Yamashita Yoshio
Sortec Corporation:(present Address) Oki Electric Industry Co. Ltd.
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伊藤 文彦
名工大
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石橋 善弘
九大院理
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松下 三芳
Jfeミネラル:crest
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鈴木 里司
岐阜大工
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松下 三芳
川鉄工業
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石橋 善弘
名大 工
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脇谷 尚樹
静岡大学 工学部 物質工学科
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鈴木 久男
静岡大工
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Maeda M
Graduate School Of Information Science And Electrical Engineering Kyushu University
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前田 三男
久留米高等専門学校
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前田 三男
九州大学大学院システム情報科学研究院電子デバイス工学部門
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黒田 敬太
名工大工
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長谷川 祐介
名工大工
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鬘谷 浩平
名工大工
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Hlinka J.
チェコ物理研
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鈴木 〓雄
名工大工
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YAMASHITA Yohachi
Power Supply Materials and Devices Research Laboratories, Research and Development Center, Toshiba C
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Hlinka Jirka
Institute Of Physics Avcr
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Hlinka J.
チェコ物理学研究所
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Matsui Hideki
Pharmaceutical Discovery Research Division Takeda Chemical Industries Ltd.
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SUZUKI Ikuo
Department of Electronics,Nagoya Institute of Technology
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OHSAWA Tetsuya
Medicinal Safety Research Laboratories, Daiichi Sankyo Co., Ltd.
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飯島 直也
名工大
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Kitada C
Takeda Chemical Ind. Ltd. Ibaraki Jpn
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Kitada Chieko
Pharmaceutical Research Division Takeda Chemical Industries Ltd.
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HOSONO Yasuharu
Power Supply Materials and Device Laboratory Corporate R&D Center, Toshiba Corporation
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MATSUDA M.
Institute for Solid State Physics, University of Tokyo
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Yamashita Yohachi
Power Supply Materials And Devices Laboratory Corporate R&d Center Toshiba Corporation
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笠谷 祐史
静岡理工科大
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SUZUKI Sadafumi
Department of Physiology, Keio University School of Medicine
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寺内 暉
関学大・理
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辻見 裕史
北大電子研
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岩田 豊
京大原子炉
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岩田 豊
京大炉
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HASEGAWA Daisuke
Department of Pediatrics, St. Luke's International Hospital
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小谷野 信光
京大原子炉
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石橋 善弘
名大・工
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大塚 昌太
岐阜大工
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橋本 慎司
岐阜大工
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Rahman Md.
岐阜大工
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Terauchi Hikaru
Department of Physics, Kwansei Gakuin University
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大野 智也
北見工業大学 マテリアル工学科
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脇谷 尚樹
静岡大工
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脇谷 尚樹
静大工
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鈴木 久男
静大工
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町田 光男
九大理
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河相 武利
阪女大基礎理
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Fujino M
Takeda Chemical Ind. Ltd. Ibaraki Jpn
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Fujino Masahiko
名古屋第一赤十字病院 脳神経外科
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岩田 豊
京大 原子炉実験所
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小林 宏至
九大理
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SAKAKIBARA Kohei
Department of Engineering Physics, Electronics and Mechanics, Graduate School of Engineering, Nagoya
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AOYAGI Rintaro
Department of Engineering Physics, Electronics and Mechanics, Graduate School of Engineering, Nagoya
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青柳 倫太郎
名工大工
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CHAN Helen
Department of Applied Physics, The Hong Kong Polytechnic University
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Aoyagi Rintaro
Department Of Engineering Physics Electronics And Mechanics Graduate School Of Engineering Nagoya In
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Sakakibara Kohei
Department Of Engineering Physics Electronics And Mechanics Graduate School Of Engineering Nagoya In
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SATO Yoshinobu
Department of Chemistry, Faculty of Science and Engineering, Sophia University
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宮下 晶
名大工
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Janssen T
Univ. Nijmegen Nijmegen Nld
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立崎 真輔
名工大工
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Kawai T
Tokyo Univ. Sci. Tokyo
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佐々木 茂男
九州大学院理
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小谷野 信光
京大炉
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KITADA Chieko
Discovery Research Laboratories I, Pharmaceutical Discovery Research Division, Takeda Chemical Indus
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前川 直紀
名工大
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石橋 善弘
九大理
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高橋 菜津美
岐阜大工
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TSURUMI Takaaki
Graduate School of Science and Engineering, Tokyo Institute of Technology
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Ohashi Naoki
Department of Inorganic Materials, Graduate School of Science and Engineering, Tokyo Institute of Te
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Tsurumi Takaaki
Department of Inorganic Materials, Graduate School of Science and Engineering, Tokyo Institute of Te
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ARAI Norio
Research Center for Advanced Energy Conversion, Nagoya University
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FUJINO Masahiko
Takeda Chemical industries
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鈴木 大輔
静岡大工
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Hlinka Jiri
Institute Of Physics As Cr
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Chan Helen
Department Of Applied Physics The Hong Kong Polytechnic University
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Chan Helen
Department Of Applied Physics And Materials Research Center Hong Kong Polytechnic University
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Hidaka Yoshiki
Department Of Applied Physics School Of Engineering Nagoya University
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Kumano Satoshi
Discovery Research Laboratories I Pharmaceutical Discovery Research Division Takeda Chemical Industr
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OHTAKI Tetsuya
Discovery Research Laboratories I, Pharmaceutical Discovery Research Division, Takeda Chemical Indus
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高尾 恵美
阪女大基礎理
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島貫 重孝
阪女大基礎理
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ISHIBASHI Yurika
Department of Inorganic Materials, Graduate School of Science and Engineering, Tokyo Institute of Te
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TERAUCHI Hikaru
Advanced Research Center of Science, School of Science and Technology, Kwansei Gakuin University
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Kitada Chieko
Discovery Research Division Takeda Chemical Industries Ltd
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ONDA Haruo
Discovery Research Laboratories I, Pharmaceutical Discovery Research Division, Takeda Chemical Indus
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ISHIBASHI Yoshihiro
Discovery Research Laboratories I, Pharmaceutical Discovery Research Division, Takeda Chemical Indus
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OGI Kazuhiro
Discovery Research Laboratories I, Pharmaceutical Discovery Research Division, Takeda Chemical Indus
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MATSUI Hideki
Discovery Research Laboratories I, Pharmaceutical Discovery Research Division, Takeda Chemical Indus
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HARADA Mioko
Discovery Research Laboratories I, Pharmaceutical Discovery Research Division, Takeda Chemical Indus
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KUROKAWA Tsutomu
Discovery Research Laboratories III, Pharmaceutical Discovery Research Division, Takeda Chemical Ind
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大野 智也
静岡大工
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鈴木 旻雄
名工大
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岩田 真
名大・工
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TARUI Naoki
Takeda Chemical Industiries, Ltd., Pharmaceutical Research Division
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ARAKI Takashi
Department of Botany, Graduate School of Science, Kyoto University
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NOMURA Kazushige
Department of physics,Tokyo Metropolitan University
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阪野 智一
岐阜大工
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YAMASHITA Yohachi
Corporate R&D Center, Toshiba Corporation
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MORI Noriaki
Department of Electrical & Electronic Engineering, Gifu University
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HOSONO Yasuharu
Corporate R&D Center, Toshiba Corporation
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IWATA Makoto
Deportment of Electrical and Computer Engineering, Nagoya Institute of Technology
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TOMISATO Nobuaki
Applied Physics Department, Graduate School of Engineering, Nagoya University
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TANAKA Nobuo
Applied Physics Department, Graduate School of Engineering, Nagoya University
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KUME Motoyuki
Department of Electrical and Electronic Engineering, Gifu University
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ISHINO Shinnichirou
Advanced Research Center of Science, School of Science, Kwansei-Gakuin University
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片桐 真史
名大院工
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Arai Norio
Research Center For Advanced Energy Conversion Nagoya University
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Tomisato Nobuaki
Applied Physics Department Graduate School Of Engineering Nagoya University
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Hosono Yasuharu
Corporate R&d Center Toshiba Corp.
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Fujino M
Nagoya Univ. School Of Medicine Nagoya Jpn
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Fujino Masahiko
Takeda Chemical Industiries
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Fujino Masahiko
First Department Of Pathology Nagoya University School Of Medicine
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Yamashita Yohachi
Corporate R&d Center Toshiba Corp.
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Terauchi Hikaru
Department Of Physics Kwansei-gakuin University
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Terauchi Hikaru
School Of Science Kwansei-gakuin University
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Ishino Shin-ichirou
Advanced Research Center Of Science School Of Science Kwansei-gakuin University
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MATSUDA Masao
Department of Applied Physics,School of Engineering,Nagoya University
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YAGI Kinechiro
Department of Physics,Kwansei-Gakuin University
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冨里 信彰
名大院工
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亀井 隆一
名大工
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JANSSEN Ted
Institute of Theoretical Physics, University of Nijmegen
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石橋 善弘
淑徳大
著作論文
- 20pHS-8 Pb(Zn_Nb_)-8%PbTiO_3混晶の電場相図(20pHS 誘電体(リラクサー),領域10(誘電体,格子欠陥,X線・粒子線,フォノン))
- Structural Refinement of X-Ray Diffraction Profile for Artificial Superlattices
- 28aYJ-5 TGS劈開面のAFM観察II(誘電体(TGS・硫安系),領域10,誘電体,格子欠陥,X線・粒子線,フォノン物性)
- 20pHS-7 ブリジマン法で作製されたBi-O格子欠陥によるrandom fieldに基づくリラクサ固溶体Na_Bi_TiO_3-BaTiO_3単結晶の圧電特性(20pHS 誘電体(リラクサー),領域10(誘電体,格子欠陥,X線・粒子線,フォノン))
- 27aYJ-12 リラクサ強誘電体固溶体NBTBTに於ける格子欠陥に基ずく誘電・圧電特性(誘電体(リラクサー),領域10,誘電体,格子欠陥,X線・粒子線,フォノン物性)
- 30aRF-5 リラクサ強誘電体固溶体の圧電応答に於けるナノツインドメインの電界誘起分極反転(30aRF 誘電体(リラクサー),領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- 23pYE-6 MPB近傍でのリラクサ強誘電体固溶体PMNTの圧電・誘電応答に及ぼす圧力誘起自由エネルギ変化の影響(誘電体(リラクサー関連),領域10,誘電体,格子欠陥,X線・粒子線,フォノン物性)
- 19pXA-8 MPB近傍のリラクサ強誘電体固溶体の圧電応答への外力の効果(誘電体(リラクサー),領域10,誘導体,格子欠陥,X線・粒子線,フォノン物性)
- 24aTE-4 Pb(Zn_Nb_)O_3-PbTiO_3混晶のラマン散乱II(誘電体(リラクサー),領域10,誘電体,格子欠陥,X線・粒子線,フォノン物性)
- 21aXA-1 Bi_La_xTi_3O_の相図II(誘電体(ペロブスカイト),領域10,誘導体,格子欠陥,X線・粒子線,フォノン物性)
- Dielectric study of phase transitions in Pb(Zn_Nb_)O_3-PbTiO_3
- 30pRF-1 (1-x)Pb(In_Nb_)O_PbTiO_3混晶の濃度相境界(30pRF 誘電体(ペロブスカイト),領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- 21aVE-5 Pb(Zn_Nb_)O_3-PbTiO_3混晶のポーリングされた結晶の相図(21aVE 誘電体(マルチフェロ・リラクサー),領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- 24aYE-8 TGS劈開面のAFM観察(誘電体(水素結合),領域10,誘電体,格子欠陥,X線・粒子線,フォノン物性)
- 24aTE-1 電場下におけるPMNの誘電特性(誘電体(リラクサー),領域10,誘電体,格子欠陥,X線・粒子線,フォノン物性)
- 24aTE-3 (1-x)Pb(In_Nb_)O_3-xPbTiO_3混晶の相転移(誘電体(リラクサー),領域10,誘電体,格子欠陥,X線・粒子線,フォノン物性)
- 24aTE-7 リラクサ強誘電体固溶体の圧電特性に於ける品質係数Qからのドメインスイッチング(誘電体(リラクサー),領域10,誘電体,格子欠陥,X線・粒子線,フォノン物性)
- 21aXA-2 Bi_4Ti_3O_の分極反転II(誘電体(ペロブスカイト),領域10,誘導体,格子欠陥,X線・粒子線,フォノン物性)
- 23pZD-5 Bi_4Ti_3O_の分極反転(23pZD 誘電体,領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- 28aXD-8 PZN-PT混晶の誘電異方性(28aXD 誘電体,領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- 20pYM-9 電場下におけるPZNの誘電特性(誘電体,領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- 28aXK-3 AFMによるPZN-PT混晶のドメインウォール観察(誘電体)(領域10)
- 30pXJ-3 AFM によるリラクサー Pb(Zn_Nb_)O_3-PbTiO_3 混晶のドメイン観察
- 23pZD-6 Bi_La_xTi_3O_の相図(23pZD 誘電体,領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- 31a-M-7 強誘電体(CH_3NH_3)_3X_2Br_9(X=Bi, Sb)の結晶構造
- 24aPS-134 ポーリングしたBaTiO_3単結晶の誘電異方性(24aPS 領域10ポスターセッション,領域10(誘電体格子欠陥,X線・粒子線フォノン))
- 23pWY-11 リラクサ強誘電体固溶体NBTBTでのドメイン構造と誘電特性(23pWY マルチフェロイック・リラクサー,領域10(誘電体格子欠陥,X線・粒子線フォノン))
- 24aPS-133 Pb(Zn_Nb_)O_3-PbTiO_3の電場誘起菱面体-正方晶相転移(24aPS 領域10ポスターセッション,領域10(誘電体格子欠陥,X線・粒子線フォノン))
- 24aPS-132 Pb(Zn_Nb_)O_3-PbTiO_3混晶の電場誘起臨界点(24aPS 領域10ポスターセッション,領域10(誘電体格子欠陥,X線・粒子線フォノン))
- 2p-YM-6 (CH_3NH_3)_3M_2Br_9(M:Sb,Bi)誘電体の光学特性
- GALP, a Novel Galanin-like Peptide Found in Porcine Hypothalamus : Isolation and cDNA Cloning
- 27aYR-6 PZN-PT混晶のラマン散乱(誘電体,領域10(誘電体, 格子欠陥, X線・粒子線, フォノン物性))
- 26p-A-12 C_nADP結晶の室温構造と偶奇性
- 28aXD-9 リラクサ強誘電体固溶体PZNT,PMNTの圧電特性への圧力効果(28aXD 誘電体,領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- Crystal Growth and Some Properties of Lead Indium Niobate-Lead Titanate Single Crystals Produced by Solution Bridgman Method
- Domain Observation in Pb[(Zn_Nb_)O_3-PbTiO_3 Mixed Crystals
- Raman Scattering In (1 - X)Pb(Zn_Nb_)O_PbTiO_3 Mixed Crystal System II
- Crystal Growth and Dielectric Properties of Solid Solutions of Pb(Yb_Nb_)O_3-PbTiO_3 with a High Curie Temperature near a Morphotropic Phase Boundary
- 19aWE-10 リラクサ強誘電体Pb(In_Nb_)O_3のアニール効果
- Dielectric Study of the Disordered System in KBr_(NO_2)_x Mixed Crystals
- 23aYQ-10 (1-x)Pb(Mg_Nb_)O_3-xPbTiO_3のラマン散乱
- 23aYQ-9 (1-X)Pb(Zn_Nb_)O_3-xPbTiO_3混晶のラマン散乱II
- 26a-A-2 リラクサー(1-x)Pb(Mg_W_)O_3-xPbTiO_3の誘電特性
- A Discrete Four-Sublattice Model of the Lattice Instability in A_2BX_4-type Crystals : Condensed Matter: Structure, etc.
- 25aYK-5 (CH_3NH_3)_3Bi_2Br_9のNMR
- 25aX-11 (1-x)Pb(Zn_Nb_)O_3-xPbTiO_3混晶のラマン散乱
- 26aYJ-7 リラクサPb(Mg_Nb_)O_3の電機光学応答
- 26aYJ-6 PbIn_Nb_O_3の相転移温度分布の観察
- 26aYJ-5 (1-x)Pb(Zn_Nb_)O_3-xPbTiO_3混晶の濃度温度相図
- Comments on the Critical End Point in Relaxor Ferroelectrics under the Applied Field
- Theoretical Analysis of the Temperature-Field Phase Diagrams of Perovskite-Type Ferroelectrics(Condensed matter: electronic structure and electrical, magnetic, and optical properties)
- Theory of Interface Structures in Double-Layer Ferroelectrics
- 20pYM-6 Bi_4Ti_3O_の相転移(誘電体,領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- Raman Scattering in(1 - x)Pb(Zn_Nb_)O_3-XPbTiO_3 Mixed Crystal System
- Temperature Dependence of Piezoelectric Properties of a High Curie Temperature Pb(In_Nb_)O_3-PbTiO_3 Binary System Single Crystal near a Morphotropic Phase Boundary
- Observation of the Distribution of the Transition Temperature in PbIn_Nb_O_3 : Condensed Matter: Electronic Properties, etc.
- Dielectric Properties of Solid Solutions (1-x)Pb(Sc_Ta_)O_PbZrO_3 (0 < x < 1)
- Theory of Morphotropic Phase Boundary in Solid Solution Systems of Perovskite-Type Oxide Ferroelectrics: Engineered Domain Configurations II
- Direct Observation of the Orientational Fluctuations in a Tilted Smectic Liquid Crystal with a High-Speed TV Camera
- The Temperature and Pressure Dependence of the Dielectric Properties of Disordered and Ordered Pb (In_Nb_)O_3 Single Crystals
- Effect of Phase Transition on the Optical Absorption Edge and Electronic States in Ferroelectric Materials of (CH_3NH_3)_3M_2Br_9(M:Sb,Bi)
- A Lattice Model for Ferroelectric Superlattices(Condensed matter: electronic structure and electrical, magnetic, and optical properties)
- Growth of Cholesteric Finger under the Magnetic Field
- Dispersion Relation of the Third Order Nonlinear Dielectric Susceptibility in Poly-dispersive System(Condensed Matter : Electronic Structure, Electrical, Magnetic and Optical Properties)
- 25pTM-1 Pb(Zn_Nb_)O_3-PbTiO_3の臨界点近傍のPNR(25pTM リラクサー,酸化物系,ペロブスカイト,領域10(誘電体,格子欠陥,X線・粒子線,フォノン))
- リラクサー強誘電体Pb(Zn1/3Nb2/3)O3-xPbTiO3混晶系の光散乱と誘電特性
- 誘電的性質強誘電性セラミックスの相転移
- Synthesis and Biological Evaluation of a Novel Nonapeptide KISS1R Agonist with Testosterone-Suppressive Activity
- Phenomenology of Elastic Properties in Martensite Alloys : II. Temperature Dependence of the Elastic Constant and Hysteresis Loop
- Phenomenology of Elastic Properties in Martensite Alloys (Condensed Matter: Structure, Mechanical and Thermal Properties)
- A Theory of Ferroelectric 90 Degree Domain Wall(Condensed Matter : Electronic Structure, Electrical, Magnetic and Optical Properties)
- 強誘電体のドメイン (特集 強誘電体におけるドメインエンジニアリングの最新動向)
- DC Field Dependence of the Dielectric Dispersion in the 2/7 Phase of Betaine Calcium Chloride Dihydrate : Condensed Matter: Electronic Properties, etc.
- 23aPS-126 Pb(Zn_Nb_)O_3-9%PbTiO_3混晶の温度-電場相図(23aPS 領域10ポスターセッション,領域10(誘電体,格子欠陥,X線・粒子線,フォノン))
- 21pGN-1 Pb(Zn_Nb_)O_3-PbTiO_3混晶の相図(21pGN リラクサー・光散乱,領域10(誘電体,格子欠陥,X線・粒子線,フォノン))
- Theory of Morphotropic Phase Boundary in Solid Solution Systems of Perovskite-Type Oxide Ferroelectrics : Engineered Domain Configurations
- A Microscopic Model of a Negative Poisson's Ratio in Some Crystals
- Rippled Commensurate Phases in DIFFOUR Model : Continuum Approximation
- Phenomenological Theory of the Linear and Nonlinear Dielectric Susceptibilities in the Type-II Incommensurate Phase
- Mobility of Phase Solitons in Polar Commensurate Phase
- Structure of Interfaces in Layered Ferroelectrics of First and/or Second Order Transition(Condensed matter : Electronic Structure, Electrical, Magnetic and Optical Properties)
- 29a-Q-4 ペロブスカイト酸化物混晶の濃度相境界における弾性異常