Akamine Kazuhiko | Nuclear Engineering Department Hitachi Ltd.
スポンサーリンク
概要
関連著者
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Uchida S
Tohoku Univ. Sendai
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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 Lab. Hitachi Ltd.
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Wada Yoichi
Energy And Environmental Systems Laboratory Hitachi Ltd.
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AKAMINE Kazuhiko
Nuclear Engineering Department, Hitachi, 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 Shunsuke
Energy Research Laboratory Hitachi Ltd.
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Akamine Kazuhiko
Nuclear Engineering Department Hitachi Ltd.
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Wada Yoichi
Power & Industrial Systems R&d Laboratory Hitachi Ltd.
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Uchida S
Japan Atomic Energy Agency
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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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TACHIBANA Masahiko
Power and Industrial Systems R&D Laboratory, Hitachi, Ltd.
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AKAMINE Kazuhiko
Hitachi Works, Hitachi, Ltd.
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Tachibana Masahiko
Energy And Environmental Systems Laboratory Hitachi Ltd.
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AKAMINE Kazuhiko
Hitachi Ltd.
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Wada Yoichi
Power And Industrial Systems R&d Laboratory Hitachi Ltd.
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UETAKE Naohito
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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NAKAMURA Masato
Nuclear Systems Division, Power and Industrial Systems, Hitachi, Ltd.
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SAKAI Masanori
Hitachi Research Laboratory, Hitachi, Ltd.
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Sakai Masanori
Hitachi Research 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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Nakamura Masato
Nuclear Systems Division Power And Industrial Systems Hitachi Ltd.
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Nakamura Masato
Power Systems Hitachi Works Hitachi Ltd.
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TAKIGUCHI Hideki
Japan Atomic Power Co.
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Abe Ayumi
The Japan Atomic Power Co.
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ISHIGURE Kenkichi
Department of Quantum Engineering and Systems Science, The University of Tokyo
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Ishigure K
Saitama Inst. Of Technol. Saitama
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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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UCHIDA Shunsuke
Department of Bioengineering, Faculty of Engineering, Kagoshima University
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WATANABE Atsushi
Power and Industrial Systems R&D Laboratory, Hitachi, Ltd.
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ISHIDA Kazushige
Power and Industrial Systems R&D Laboratory, 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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TAKIGUCHI Hideki
The Japan Atomic Power Co.
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Iinuma Kouichi
Department Of Quantum Science And Energy Engineering Graduate School Of Engineering Tohoku Universit
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Uchida Shunsuke
Department Of Bioengineering Faculty Of Engineering Kagoshima University
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SEKIGUCHI Masahiko
The Japan Atomic Power Co.
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NAKAMURA Masato
Hitachi Works, Hitachi, Ltd.
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OHSUMI Katsumi
Hitachi Works, Hitachi, Ltd.
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Ohsumi Katsumi
Hitachi Works Hitachi Ltd.
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Takiguchi H
Japan Atomic Power Co. Tokyo
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Ishigure Kenkichi
Department Of Quantum Engineering And System Science Faculty Of Engineering University Of Tokyo
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Ishida Kazushige
Power And Industrial Systems R&d Laboratory 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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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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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.
著作論文
- 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
- Mitigation Effect of Alkaline Water Chemistry upon Intergranular Stress Corrosion Cracking of Sensitized 304 Stainless Steel
- Evaluation of Effectiveness of Hydrogen Water Chemistry for Different Types of Boiling Water Reactors
- Empirical Understanding of the Dependency of Hydrogen Water Chemistry Effectiveness on BWR Designs
- Effects of Hydrogen Peroxide on Intergranular Stress Corrosion Cracking of Stainless Steel in High Temperature Water, (I), Effects of Hydrogen Peroxide on Electrochemical Corrosion Potential of Stainless Steel