Ishigure Kenkichi | Quantum Science And Energy Engineering Department Graduate School Of Engineering Tohoku University
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概要
- 同名の論文著者
- Quantum Science And Energy Engineering Department Graduate School Of Engineering Tohoku Universityの論文著者
関連著者
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Ishigure Kenkichi
Quantum Science And Energy Engineering Department Graduate School Of Engineering Tohoku University
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Ishigure K
Department Of Quantum Engineering And Systems Science The University Of Tokyo
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Iinuma Kouichi
Department Of Quantum Science And Energy Engineering Graduate School Of Engineering Tohoku Universit
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Ishida Kazushige
Energy And Environmental Systems Laboratory Hitachi Ltd.
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Ishida Kazushige
Power & Industrial Systems R&d Laboratory Hitachi Ltd.
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Wada Y
Energy And Environmental Systems Laboratory Hitachi Ltd.
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Wada Yoichi
Power And Industrial Systems R& D Division Hitachi Ltd.
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Wada Yoichi
Energy And Environmental Systems Laboratory Hitachi Ltd.
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Wada Yoichi
Power And Industrial Systems R&d Laboratory Hitachi Ltd.
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Tachibana Masahiko
Energy And Environmental Systems Laboratory Hitachi Ltd.
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Wada Yoichi
Power & Industrial Systems R&d Laboratory Hitachi Ltd.
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Wada Yoichi
Energy And Environmental Systems Lab. Hitachi Ltd.
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TACHIBANA Masahiko
Power and Industrial Systems R&D Laboratory, Hitachi, Ltd.
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Ishigure K
Saitama Inst. Of Technol. Saitama
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Fuse Motomasa
Hitachi Works, Hitachi-GE Nuclear Energy, Ltd.
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Uchida S
Tohoku Univ. Sendai
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Fuse Motomasa
Hitachi Works Hitachi-ge Nuclear Energy Ltd.
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Uchida Shunsuke
Department Of Quantum Science And Energy Engineering Graduate School Of Engineering Tohoku Universit
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Uchida S
Japan Atomic Energy Agency
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AIZAWA Motohiro
Hitachi-GE Nuclear Energy, Ltd.
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Uchida Shunsuke
Energy Research Laboratory Hitachi Ltd.
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Aizawa Motohiro
Hitachi-ge Nuclear Energy Ltd.
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ISHIDA Kazushige
Power and Industrial Systems R&D Laboratory, Hitachi, Ltd.
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Fuse Motomasa
Hitachi-ge Nuclear Energy Ltd.
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Ishida Kazushige
Power And Industrial Systems R&d Laboratory Hitachi Ltd.
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Satoh Y
Quantum Science And Energy Engineering Department Graduate School Of Engineering Tohoku University
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Kadoi Eiichi
The Japan Atomic Power Co.
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Satoh Yoshiyuki
Department Of Quantum Science And Energy Engineering Graduate School Of Engineering Tohoku Universit
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HIROSE Tatsuya
Quantum Science and Energy Engineering Department, Graduate School of Engineering, Tohoku University
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TAKIGUCHI Hideki
The Japan Atomic Power Co.
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SATOH Tomonori
Nuclear Science and Engineering Directorate, Japan Atomic Energy Agency
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Hirose Tatsuya
Quantum Science And Energy Engineering Department Graduate School Of Engineering Tohoku University
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Satoh Tomonori
Nuclear Science And Engineering Directorate Japan Atomic Energy Agency
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Morishima Yusuke
Department Of Quantum Science And Energy Engineering Graduate School Of Engineering Tohoku Universit
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UCHIDA Shunsuke
The Institute of Applied Energy
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Fuse Motomasa
Power Systems Nuclear Engineering And Product Division Hitachi-ge Nuclear Energy Ltd.
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ISHIGURE Kenkichi
Department of Quantum Engineering and Systems Science, The University of Tokyo
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MIYAZAWA Takahiro
Quantum Science and Energy Engineering Department, Graduate School of Engineering, Tohoku University
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UCHIDA Shunsuke
Quantum Science and Energy Engineering Department, Graduate School of Engineering, Tohoku University
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SATOH Tomonori
Quantum Science and Energy Engineering Department, Graduate School of Engineering, Tohoku University
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SATOH Yoshiyuki
Quantum Science and Energy Engineering Department, Graduate School of Engineering, Tohoku University
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IINUMA Koichi
Quantum Science and Energy Engineering Department, Graduate School of Engineering, Tohoku University
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YAMASHIRO Naoya
Quantum Science and Energy Engineering Department, Graduate School of Engineering, Tohoku University
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AIZAWA Motohiro
Power Systems, Hitachi Works, Hitachi, Ltd.
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Sugama Jun-ichi
Department Of Quantum Science And Energy Engineering Graduate School Of Engineering Tohoku Universit
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Uchida Shunsuke
Power And Industrial Systems R&d Division Hitachi Ltd.
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Murayama Yohei
Department Of Quantum Science And Energy Engineering Graduate School Of Engineering Tohoku Universit
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Ishigure Kenkichi
Department Of Quantum Engineering And System Science Faculty Of Engineering University Of Tokyo
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Miyazawa Takahiro
Quantum Science And Energy Engineering Department Graduate School Of Engineering Tohoku University
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Aizawa Motohiro
Hitachi Engineering Co. Ltd.
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Morishima Yusuke
Quantum Science And Energy Engineering Department Graduate School Of Engineering Tohoku University
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AIZAWA Motohiro
Hitachi Engineering Co.
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TAKIGUCHI Hideki
Japan Atomic Power Co.
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Ishigure Kenkichi
Saitama Institute Of Technology
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KAWAMURA Hirotaka
Central Research Institute of Electric Power Industry
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MORISHIMA Yusuke
Quantum Science and Energy Engineering Department, Graduate School of Engineering, Tohoku University
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SUGAMA Junichi
Quantum Science and Energy Engineering Department, Graduate School of Engineering, Tohoku University
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WATANABE Atsushi
Power and Industrial Systems R&D Laboratory, Hitachi, Ltd.
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UCHIDA Shunsuke
Power and Industrial Systems R&D Laboratory, Hitachi, Ltd.
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Uchida Shunsuke
Power & Industrial Systems R&d Division Hitachi Ltd.
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Fujiwara Kazutoshi
Central Research Institute Of Electric Power Industry
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KANBE Hiromi
Central Research Institute of the Electric Power Industry
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HIRANO Hideo
Central Research Institute of the Electric Power Industry
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YOSHINO Kouji
Hokkaido Electric Power Co., Inc.
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YAMAMOTO Shuuichi
Kyushu Electric Power Co., Inc.
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SHIBATA Toshio
Fukui University of Technology
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Yoshino Kouji
Hokkaido Electric Power Co. Inc.
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Takiguchi H
Japan Atomic Power Co. Tokyo
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Yamashiro Naoya
Department Of Quantum Science And Energy Engineering Graduate School Of Engineering Tohoku Universit
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Yamamoto Shuuichi
Kyushu Electric Power Co. Inc.
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Watanabe A
Power And Industrial Systems R&d Laboratory Hitachi Ltd.
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Watanabe Atsushi
Power And Industrial Systems R&d Laboratory Hitachi Ltd.
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Shibata Toshio
Fukui Univ. Of Technol.
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Hirano Hideo
Central Res. Inst. Of The Electric Power Ind.
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Fujiwara Kazutoshi
Central Research Institute of the Electric Power Industry
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Kawamura Hirotaka
Central Research Institute of the Electric Power Industry
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ISHIDA Kazushige
Energy and Environmental Systems Laboratory, Hitachi, Ltd.
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WADA Yoichi
Energy and Environmental Systems Laboratory, Hitachi, Ltd.
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TACHIBANA Masahiko
Energy and Environmental Systems Laboratory, Hitachi, Ltd.
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OHTA Nobuyuki
Hitachi-GE Nuclear Energy, Ltd.
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UCHIDA Shunsuke
Department of Bioengineering, Faculty of Engineering, Kagoshima University
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HOSOKAWA Hideyuki
Power and Industrial Systems R&D Laboratory, Hitachi, Ltd.
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SATOH Tomonori
Department of Quantum Science and Energy Engineering, Graduate School of Engineering, Tohoku Univers
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UETAKE Naohito
Power and Industrial Systems R&D Laboratory, Hitachi, Ltd.
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Uchida Shunsuke
Department Of Bioengineering Faculty Of Engineering Kagoshima University
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Hosokawa Hideyuki
Power And Industrial Systems R&d Laboratory Hitachi Ltd.
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Uetake N
Power And Industrial Systems R&d Laboratory Hitachi Ltd.
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Uetake Naohito
Power & Industrial Systems R&d Division Hitachi Ltd.
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Iinuma Koichi
Department Of Quantum Science And Energy Engineering Graduate School Of Engineering Tohoku Universit
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Hosokawa Hideyuki
Energy and Environmental Systems Laboratory, Hitachi Ltd.
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Watanabe Takashi
Department of Chemistry, Graduate School of Science, Kyoto University
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森田 隆二
北海道大学大学院工学研究科応用物理学専攻
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重川 秀実
筑波大学物理工学系
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MORITA Ryuji
Department of Applied Physics, Hokkaido University
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YAMASHITA Mikio
Department of Applied Physics, Hokkaido University
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FURUKAWA Kiyoshi
Department of Aquatic Biosciences, Graduate School of Agricultural and Life Sciences, The University
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Zhou H‐s
National Inst. Advanced Industrial Sci. And Technol. (aist) Ibaraki
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ZHOU Haoshen
Energy Electronics Institute, National Institute of Advanced Industrial Science and Technology (AIST
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HONMA Itaru
Energy Electronics Institute, National Institute of Advanced Industrial Science and Technology (AIST
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ASAI Keisuke
Department of Quantum Engineering and System Science, Graduate School of Engineering, The University
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MURAKAMI Hidetoshi
Department of Applied Physics, Hokkaido University
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SHIGEKAWA Hidemi
Institute of Applied Physics, University of Tsukuba
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Honma I
National Inst. Of Advanced Industrial Sci. And Technol. (aist) Ibaraki
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重川 秀実
Univ. Tsukuba Tsukuba
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Shigekawa Hidemi
Institute Of Applied Physics University Of Tsukuba
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Shigekawa Hidemi
Institute Of Applied Physics And Crest Japan Science And Technology Corporation (jst) University Of
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Murakami Hidetoshi
Department Of Applied Physics Hokkaido University
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Zhou Hao-shen
National Laboratory Of Solid State Microstructures And Department Of Physics Nanjing University
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森田 隆二
北大 大学院工学研究科
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USUI Naoshi
Nuclear System Division, Hitachi, Ltd.
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SUGAMA Jun-ichi
Department of Quantum Science and Energy Engineering, Graduate School of Engineering, Tohoku Univers
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YAMASHIRO Naoya
Department of Quantum Science and Energy Engineering, Graduate School of Engineering, Tohoku Univers
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HIROSE Tatsuya
Department of Quantum Science and Energy Engineering, Graduate School of Engineering, Tohoku Univers
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MORISHIMA Yusuke
Department of Quantum Science and Energy Engineering, Graduate School of Engineering, Tohoku Univers
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IINUMA Kouichi
Department of Quantum Science and Energy Engineering, Graduate School of Engineering, Tohoku Univers
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IINUMA Koichi
Department of Quantum Science and Energy Engineering, Graduate School of Engineering, Tohoku Univers
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AKAMINE Kazuhiko
Nuclear Engineering Department, Hitachi, Ltd.
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SAMBONGI Mitsuru
Power Engineering R&D Center, Tokyo Electric Power Co.
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SUZUKI Shunichi
Power Engineering R&D Center, Tokyo Electric Power Co.
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SHIGENAKA Naoto
Power and Industrial Systems R & D Laboratory, Hitachi. Ltd.
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KARASAWA Hidetoshi
Power & Industrial Systems R&D Laboratory, Hitachi Ltd.
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ENDOU Masao
Power & Industrial Systems R&D Laboratory, Hitachi Ltd.
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NISHINO Yoshitaka
Power & Industrial Systems R&D Laboratory, Hitachi Ltd.
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NAKAMURA Masato
Power Systems, Hitachi Works, Hitachi, Ltd.
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NAKAMURA Masato
Nuclear Systems Division, Power and Industrial Systems, Hitachi, Ltd.
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USUI Naoshi
Power Systems, Nuclear Engineering and Product Division, Hitachi-GE Nuclear Energy, Ltd.
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Yamashita Mikio
Department Of Applied Physics Hokkaido University
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Zhou Haoshen
Energy Division Electrotechnical Laboratory (etl)
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Murakami H
Nhk Sci. And Technical Res. Lab. Tokyo Jpn
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Murakami H
Department Of Applied Chemistry Graduate School Of Engineering Tokyo University Of Agriculture And T
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Endou Masao
Power & Industrial Systems R&d Laboratory Hitachi Ltd.
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Usui Naoshi
Power Systems Nuclear Engineering And Product Division Hitachi-ge Nuclear Energy Ltd.
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Shigekawa Hidemi
Institute Of Applied Physics And 21st Coe University Of Tsukuba
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Honma Itaru
Energy Division Electrotechnical Laboratory (etl)
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Morita Ryuji
Department Of Applied Physics Faculty Of Engineering University Of Tokyo
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Asai Keisuke
Department Of Applied Chemistry Graduate School Of Engineering Tohoku University
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Furukawa Kiyoshi
Department Of Aquatic Bioscience Graduate School Of Agricultural And Life Sciences The University Of
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Furukawa K
Department Of Quantum Science And Energy Engineering Graduate School Of Engineering Tohoku Universit
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Ohta Nobuyuki
Hitachi-ge Nuclear Energy Ltd.
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Murakami H
Department Of Applied Physics Hokkaido University
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Asai K
Department Of Quantum Engineering And System Science Graduate School Of Engineering The University O
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Hosokawa Hideyuki
Energy And Environmental Systems Laboratory Hitachi Ltd.
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Akamine Kazuhiko
Nuclear Engineering Department Hitachi Ltd.
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Sambongi Mitsuru
Power Engineering R&d Center Tokyo Electric Power Co.
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Nishino Yoshitaka
Power & Industrial Systems R&d Laboratory Hitachi Ltd.
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Karasawa Hidetoshi
Power & Industrial Systems R&d Laboratory Hitachi Ltd.
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Asai Keisuke
Department Of Aerospace Engineering Tohoku University
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Suzuki Shunichi
Power Engineering R&d Center Tokyo Electric Power Co.
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Shigenaka Naoto
Power And Industrial Systems R & D Laboratory Hitachi. Ltd.
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Nakamura Masato
Power Systems Hitachi Works Hitachi Ltd.
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Watanabe Takashi
Department Of Cardiothoracic Surgery Nagoya University School Of Medicine
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Tachibana Masahiko
Hitachi Research Laboratory Hitachi Ltd.
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ISHIDA Kazushige
Hitachi Research Laboratory, Hitachi, Ltd.
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WADA Yoichi
Hitachi Research Laboratory, Hitachi, Ltd.
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SHIMIZU Ryosuke
Hitachi-GE Nuclear Energy, Ltd.
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OTA Nobuyuki
Hitachi-GE Nuclear Energy, Ltd.
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HARA Nobuyoshi
Graduate School of Engineering, Tohoku University
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Hara Nobuyoshi
Graduate School Of Engineering Tohoku University
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Shimizu Ryosuke
Hitachi-ge Nuclear Energy Ltd.
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Watanabe Takashi
Department Of Quantum Engineering And Systems Science The University Of Tokyo
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Watanabe Takashi
Department Of Applied Physics Tohoku University
著作論文
- Effects of Flow Rate on Dissolution of Monocrystal Alumina and Monocrystal Yttria-Stabilized Zirconia in High-Temperature Pure Water
- Determination of Third-Order Optical Nonlinearity Dispersion of 1-Methyl-1'-Octadecyl-2, 2'-Cyanine Perchlorate Langmuir-Blodgett Films Using Electroabsorption Spectroscopy
- Effects of Hydrogen Peroxide on Corrosion of Stainless Steel, (IV) : Determination of Oxide Film Properties with Multilateral Surface Analyses
- Effects of Hydrogen Peroxide on Corrosion of Stainless Steel, (III) : Evaluation of Electric Resistance of Oxide Film by Equivalent Circuit Analysis for Frequency Dependent Complex Impedances
- Effects of Hydrogen Peroxide on Corrosion of Stainless Steel, (II) : Evaluation of Oxide Film Properties by Complex Impedance Measurement
- Effects of Hydrogen Peroxide on Corrosion of Stainless Steel, (I) : Improved Control of Hydrogen Peroxide Remaining in a High Temperature High Pressure Hydrogen Peroxide Loop
- Water Chemistry in a Crack Tip under Irradiation, (I) Evaluation of Gamma-ray Energy Deposition in a Crack Tip
- Effects of Hydrogen Peroxide on Intergranular Stress Corrosion Cracking of Stainless Steel in High Temperature Water, (IV) Effects of Oxide Film on Electrochemical Corrosion Potential
- Effects of Hydrogen Peroxide on Intergranular Stress Corrosion Cracking of Stainless Steel in High Temperature Water, (III)Crack Growth Rates in Corrosive Environment Determined by Hydrogen Peroxide
- Effcts of Hydrogen Peroxide on Intergranular Stress Corrosion Cracking of Stainless Steel in High Temperature Water, ( II ) Optimization of Crack Propagation Rate Measurement System
- Study of Polarization Curve Measurement Method for Type 304 Stainless Steel in BWR High Temperature-High Purity Water
- Hydrogen and Hydrazine Co-injection to Mitigate Stress Corrosion Cracking of Structural Materials in Boiling Water Reactors, (VI) The Effect of Ammonia on Intergranular Stress Corrosion Cracking
- Hydrazine and Hydrogen Co-injection to Mitigate Stress Corrosion Cracking of Structural Materials in Boiling Water Reactors (IV) : Reaction Mechanism and Plant Feasibility Analysis
- Hydrazine and Hydrogen Co-injection to Mitigate Stress Corrosion Cracking of Structural Materials in Boiling Water Reactors (V) Effects of Hydrazine and Dissolved Oxygen on Flow Accelerated Corrosion of Carbon Steel
- Hydrazine and Hydrogen Co-injection to Mitigate Stress Corrosion Cracking of Structural Materials in Boiling Water Reactors, (III) Effects of Adding Hydrazine on Zircaloy-2 Corrosion
- Hydrazine and Hydrogen Co-injection to Mitigate Stress Corrosion Cracking of Structural Materials in Boiling Water Reactors, (II) : Reactivity of Hydrazine with Oxidant in High Temperature Water under Gamma-irradiation
- Effects of Noble Metal Deposition upon Corrosion Behavior of Structural Materials in Nuclear Power Plants, (I) : Effect of Noble Metal Deposition with an Oxide Film on Type 304 Stainless Steel under Simulated Hydrogen Water Chemistry Condition
- Applicability of Chemical Cleaning Process to Steam Generator Secondary Side, (III) : Effect of Chemical Cleaning on Long Term Integrity of Steam Generator Tube after Chemical Cleaning Process
- Applicability of Chemical Cleaning Process to Steam Generator Secondary Side, (II) : Effect of Chemical Cleaning on Integrity of SG Tubing under Accelerated IGSCC Conditions
- Applicability of Chemical Cleaning Process to Steam Generator Secondary Side, (I) Outline of the Investigation and Cleaning Effectiveness
- Cathodic polarization curves of the oxygen reduction reaction on various structural materials of boiling water reactors in high temperature-high purity water
- Hydrazine and Hydrogen Co-injection to Mitigate Stress Corrosion Cracking of Structural Materials in Boiling Water Reactors, (I) : Temperature Dependence of Hydrazine Reactions
- Effects of Hydrogen Peroxide on Corrosion of Stainless Steel, (II) : Evaluation of Oxide Film Properties by Complex Impedance Measurement
- Hydrazine and Hydrogen Coinjection to Mitigate Stress Corrosion Cracking of Structural Materials in Boiling Water Reactors (VII) : Effects of Bulk Water Chemistry on ECP Distribution inside a Crack