Uetsuka Hiroshi | Japan Atomic Energy Research Institute
スポンサーリンク
概要
関連著者
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Uetsuka Hiroshi
Surface Chemistry Laboratory Kanagawa Academy Of Science And Technology Ksp East 404
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Uetsuka Hiroshi
Japan Atomic Energy Research Institute
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Uetsuka Hiroshi
Institute Of Materials Science University Of Tsukuba
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Uetsuka Hiroshi
Department Of Reactor Safety Research Japan Atomic Energy Research Institute
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Uetsuka H
Department Of Reactor Safety Research Japan Atomic Energy Research Institute
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NAKAMURA Takehiko
Department of Reactor Safety Research, Japan Atomic Energy Research Institute
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Nakamura Takehiko
Department Of Reactor Safety Research Japan Atomic Energy Research Institute
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NAGASE Fumihisa
Japan Atomic Energy Agency
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SASAJIMA Hideo
Japan Atomic Energy Agency
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Hidaka A
Japan Atomic Energy Res. Inst. Ibaraki
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Hidaka Akihide
Department Of Reactor Safety Research Japan Atomic Energy Researth Institute
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Kudo Tamotsu
Japan Atomic Energy Research Institute
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Otomo Takashi
Japan Atomic Energy Research Institute
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Nakamura Takehiko
Japan Atomic Energy Research Institute
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Nakamura Takehiko
Department Of Dermatology Kumamoto National Hospital
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NAKAMURA Takehiko
Japan Atomic Energy Agency
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大西 洋
財団法人神奈川科学技術アカデミー
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Hidaka Akihide
Japan Atomic Energy Research Institute
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大西 洋
(財)神奈川科学技術アカデミー・極限表面反応プロジェクト
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Nakamura T
Japan Atomic Energy Res. Inst. (jaeri) Ibaraki
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Sasahara Akira
Surface Chemistry Laboratory Kanagawa Academy Of Science And Technology Ksp East 404
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Kudo Tamotsu
Japan Atomic Energy Agency
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KUNIMORI Kimio
Institute of Materials Science, University of Tsukuba
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Nagase F
Japan Atomic Energy Res. Inst. Ibaraki
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Nagase Fumihisa
Japan Atomic Energy Research Institute
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Nakamura Jinichi
Department Of Reactor Safety Research Japan Atomic Energy Research Institute
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Watanabe K
Univ. Tokyo Tokyo
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Kunimori K
Univ. Tsukuba Ibaraki
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Kunimori Kimio
Institute Of Materials Science University Of Tsukuba
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SASAJIMA Hideo
Department of Reactor Safety Research, Japan Atomic Energy Research Institute
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Hidaka Akihide
Japan Atomic Energy Agency
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SASAHARA Akira
kanagawa Academy of Science and Technolgy
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UETSUKA Hiroshi
kanagawa Academy of Science and Technolgy
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ONISHI Hiroshi
kanagawa Academy of Science and Technolgy
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WATANABE Koji
Institute of Materials Science, University of Tsukuba
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Watanabe Koji
Institute For Materials Research Tohoku University
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UETSUKA Hiroshi
Department of Fuel Safety Research, Japan Atomic Energy Research Institute
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FUKETA Toyoshi
Japan Atomic Energy Agency
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KUDO Tamotsu
Department of Reactor Safety Research, Japan Atomic Energy Researth Institute
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YAMASHITA Toshiyuki
Department of Hygienic Chemistry, Faculty of Pharmaceutical Sciences Hokkaido University
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Kudo Tamotsu
Department Of Reactor Safety Research Japan Atomic Energy Researth Institute
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Fuketa T
Japan Atomic Energy Agency
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KUSAGAYA Kazuyuki
Global Nuclear Fuel-Japan Co. , Ltd.
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Yamashita Toshiyuki
Department Of Nuclear Energy System Japan Atomic Energy Research Institute
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OHNUMA Hisashi
Institute of Materials Science, University of Tsukuba
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NAKAMURA Jinichi
Japan Atomic Energy Research Institute
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Ohnuma Hisashi
Institute Of Materials Science University Of Tsukuba
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Kusagaya Kazuyuki
Global Nuclear Fuel-japan Co. Ltd.
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Yamashita Toshiyuki
Department Of Hygienic Chemistry Faculty Of Pharmaceutical Sciences Hokkaido University
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Nakamura Junichi
Japan Atomic Energy Research Institute
著作論文
- Irradiated Fuel Behavior under Power Oscillation Conditions
- Behavior of YSZ based Rock-Like Oxide Fuels under Simulated RIA Conditions
- Decrease of Cesium Release from Irradiated UO_2 Fuel in Helium Atmosphere under Elevated Pressure of 1.0 MPa at Temperature up to 2,773K
- Enhancement of Cesium Release from Irradiated Fuel at Temperature above 2,800 K
- Influence of Pressure on Cesium Release from Irradiated Fuel at Temperatures up to 2,773K
- Noncontact-Mode Atomic Force Microscopy Observation of α-Al_2O_3(0001) Surface
- Scanning Tunneling Microscopy Study of Surface Reconstructions of Rutile TiO_2(111)
- Structure-sensitivity of the Dynamics of CO Oxidation on Pd (111), Pd (110) and Polycrystalline Pd Surfaces : Infraed Chemiluminescence Study of the Product CO_2
- Infrared Chemiluminescence Study of Excited CO_2 Produced by Molecular - Beam CO Oxidation on Pt(111)
- Fission Gas Release Behavior of High Burnup UO_2 Fuel under Reactivity Initiated Accident Conditions
- Oxidation kinetics of Low-Sn Zircaloy-4 at the Temperature Range from 773 to 1, 573 K
- B_4C/Zircaloy Reaction at Temperatures from 1, 173 to 1, 953 K
- Oxidation kinetics of Low-Sn Zircaloy-4 at the Temperature Range from 773 to 1, 573 K