Kobayashi Tsuguyuki | Japan Atomic Energy Agency
スポンサーリンク
概要
関連著者
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Kobayashi Tsuguyuki
Japan Atomic Energy Agency
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Kobayashi Tsuguyuki
Komae Laboratory Central Research Institute Of Electric Power Industry
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Ukai S
Japan Atomic Energy Agency
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UKAI Shigeharu
Materials Science and Engineering, Faculty of Engineering, Hokkaido University
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Kaito T
Japan Atomic Energy Agency
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OHTSUKA Satoshi
Advanced Nuclear System Research and Development Directorate, Japan Atomic Energy Agency
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Narita Takeshi
Japan Atomic Energy Agency
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OHTSUKA Satoshi
Japan Atomic Energy Agency
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Kobayashi T
Sumitomo Metal Technology Ltd
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Ukai Shigeharu
O-arai Engineering Center Japan Nuclear Cycle Development Institute
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KOBAYASHI Toshimi
Sumitomo Metal Technology, Inc.
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Fujiwara Masayuki
Kobelco Research Institute Inc.
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Fujiwara Masayuki
Oarai Engineering Center Japan Nuclear Cycle Development Institute
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Fujiwara M
Oarai Engineering Center Japan Nuclear Cycle Development Institute
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FUJIWARA Masayuki
Kobelco, Ltd.
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KOBAYASHI Tsuguyuki
Japan Nuclear Cycle Development Institute
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Fujiwara Masayuki
Kobelco Ltd.
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Fujita R
Nuclear Engineering Laboratory Toshiba Corporation
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Kaito Takeji
O-arai Engineering Center Japan Nuclear Cycle Development Institute
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FUJITA Reiko
Nuclear Engineering Laboratory, Toshiba Corporation
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Mizuta Syunji
O-arai Engineering Center Japan Nuclear Cycle Development Institute
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OHTSUKA Satoshi
O-arai Engineering Center, Japan Nuclear Cycle Development Institute (JNC)
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Mizuta Shunji
O-arai Engineering Center Japan Nuclear Cycle Development Institute
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Fujita Reiko
Nuclear Engineering Laboratory Toshiba Corp.
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Ukai Shigeharu
Japan Atomic Energy Agency
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KAITO Takeji
Japan Atomic Energy Agency
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Okuda Takanari
Kobe Special Tube Co. Ltd.
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FUJII Keiji
Japan Atomic Power Company
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OMORI Ryota
Department of Quantum Engineering and Systems Science, The University of Tokyo
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KOBAYASHI Tamiki
Department of Quantum Engineering and Systems Science, The University of Tokyo
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SUZUKI Atsuyuki
Department of Quantum Engineering and Systems Science, The University of Tokyo
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Omori R
Department Of Quantum Engineering And Systems Science School Of Engineering University Of Tokyo
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Omori Ryota
Department Of Quantum Engineering And Systems Science University Of Tokyo
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MIZUTA Syunji
O-arai Engineering Center, Japan Nuclear Cycle Development Institute
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KOBAYASHI Tsuguyuki
Advanced Reactor Engineering Department, Toshiba Corporation
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NAKAMURA Hitoshi
Nuclear Engineering Laboratory, Toshiba Corporation
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KOYAMA Tadafumi
Komae Laboratory, Central Research Institute of Electric Power Industry
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NARITA Takeshi
O-arai Engineering Center, Japan Nuclear Cycle Development Institute (JNC)
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LENG Bin
Material Science and Engineering, Faculty of Engineering, Hokkaido University
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Suzuki A
Department Of Quantum Engineering And Systems Science School Of Engineering University Of Tokyo
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Suzuki Atsuyuki
Department Of Computer Science Faculty Of Engineering Shizuoka University
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Iizuka M
Japan Atomic Energy Res. Inst. Ibaraki
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Leng Bin
Material Science And Engineering Faculty Of Engineering Hokkaido University
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Nakamura H
Nuclear Engineering Laboratory Toshiba Corporation
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Hayashi Shigenari
Division Of Materials Science And Engineering Graduate School Of Engineering Hokkaido University
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SUGINO Yoshito
Material Science and Engineering, Faculty of Engineering, Hokkaido University
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Sugino Yoshito
Material Science And Engineering Faculty Of Engineering Hokkaido University
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Kobayashi Tsuguyuki
Advanced Nuclear System Research And Development Directorate Japan Atomic Energy Agency
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LENG Bin
Materials Science and Engineering, Faculty of Engineering, Hokkaido University
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TOKIWAI Moriyasu
Komae Lab., Central Research Institute of Electric Power Industry (CRIEPI)
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Ukai Shigeharu
Hokkaido University
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MIYAMOTO Shinji
Department of Laboratory Medicine, National Defense Medical College
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Miyamoto Shinji
Department Of Cardiovascular Surgery Oita University Faculty Of Medicine
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IIZUKA Masatoshi
Nuclear Fuel Cycle Department, Central Research Institute of Electric Power Industry
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Miyamoto Shinji
Department Of Quantum Engineering And Systems Science The University Of Tokyo
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Vavilov Sergei
Japan Nuclear Cycle Development Institute
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Namba Takashi
Japan Atomic Power Company
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Ukai Shigeharu
Oarai Engineering Center Japan Nuclear Cycle Development Institute
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SATO Fuminori
Japan Atomic Energy Agency
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MYOCHIN Munetaka
Japan Atomic Energy Agency
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Myochin Munetaka
Japan Nuclear Cycle Development Institute
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FUKUSHIMA Mineo
Japan Atomic Energy Agency (JAEA)
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Fukushima Mineo
Japan Atomic Energy Agency
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GAY Eddie
Chemical Technology Division, Argonne National Laboratory
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NAKASHIMA Hideharu
Graduate School of Engineering Science, Kyushu University
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YOSHITAKE Tsunemitsu
Japan Nuclear Cycle Development Institute
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MIZUTA Syunji
Japan Nuclear Cycle Development Institute
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MATSUDAIRA Yukihiko
Japan Nuclear Cycle Development Institute
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HAGI Shigeki
Sumitomo Metal Industries Ltd.
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IIZUKA Masatoshi
Komae Laboratory, Central Research Institute of Electric Power Industry
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KOYAMA Tadafumi
Nuclear Fuel Cycle Department, Central Research Institute of Electric Power industry
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SHOJI Yuichi
Nuclea4r Engineering Laboratory, Toshiba Corporation
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TANAKA Hiroshi
Nuclear Fuel Cycle Department, Central Research Institute of Electric Power industry
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KOBAYASHI Tsuguyuki
Isogo Engineering Center, Toshiba Corporation
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TOKIWAI Moriyasu
Nuclear Fuel Cycle Department, Central Research Institute of Electric Power industry
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Shoji Yuichi
Nuclea4r Engineering Laboratory Toshiba Corporation
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MATSUDA Yasuji
Sumitomo Metal Technology, Inc.
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OHTSUKA Satoshi
Oarai Engineering Center, Japan Nuclear Cycle Development Institute
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FUJIWARA Masayuki
Oarai Engineering Center, Japan Nuclear Cycle Development Institute
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KAITO Takeji
Oarai Engineering Center, Japan Nuclear Cycle Development Institute
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NARITA Takeshi
Oarai Engineering Center, Japan Nuclear Cycle Development Institute
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NARITA Tsuyoshi
O-arai Engineering Center, Japan Nuclear Cycle Development Institute
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MIZUTA Shunji
O-arai Engineering Center, Japan Nuclear Cycle Development Institute
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Gay Eddie
Chemical Technology Division Argonne National Laboratory
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KAITO Takeji
Advanced Nuclear System Research and Development Directorate, Japan Atomic Energy Agency
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Matsuda Yasuji
Sumitomo Metal Technology Inc.
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SAWADA Kenji
Department of Quantum Engineering and Systems Science, University of Tokyo
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Sato F
Kyushu Univ. Fukuoka Jpn
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Tokiwai M
Central Res. Inst. Electric Power Ind.
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Tokiwai Moriyasu
Komae Lab. Central Research Institute Of Electric Power Industry (criepi)
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Tokiwai Moriyasu
Nuclear Fuel Cycle Department Central Research Institute Of Electric Power Industry
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Nakashima Hideharu
Graduate School Of Engineering Science Kyushu University
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HAYASHI Shigenari
Hokkaido University
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Washiya Tadahiro
Japan Atomic Energy Agency (jaea)
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Sawada Kenji
Department Of Quantum Engineering And Systems Science University Of Tokyo
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Miyamoto Shinji
Department Of Cardiovascular Surgery Faculty Of Medicine Oita University
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Wan Farong
School Of Materials Science And Engineering University Of Science And Technology Beijing
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SUGINO Yoshito
Hokkaido University, Graduate School of Engineering, Materials Science and Engineering
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LENG Bin
Hokkaido University, Graduate School of Engineering, Materials Science and Engineering
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TANG Qingxin
Hokkaido University, Graduate School of Engineering, Materials Science and Engineering
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LENG Bin
Faculty of Engineering, Hokkaido University
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UKAI Shigeharu
Faculty of Engineering, Hokkaido University
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SUGINO Yoshito
Faculty of Engineering, Hokkaido University
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TANG Qingxin
Faculty of Engineering, Hokkaido University
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NARITA Takeshi
Faculty of Engineering, Hokkaido University
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HAYASHI Shigenari
Faculty of Engineering, Hokkaido University
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Ohtsuka Satoshi
Advanced Nuclear System Research And Development Directorate Japan Atomic Energy Agency
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KAITO Takeji
Advanced Nuclear System R&D Directorate, Japan Atomic Energy Agency (JAEA)
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Kobayashi Tsuguyuki
Japan Nuclear Fuel Cycle Development Institute
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OHTSUKA Satoshi
Advanced Nuclear System R&D Directorate, Japan Atomic Energy Agency (JAEA)
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SAWADA KENJI
Department of Chemical Engineering, Toyama University
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WASHIYA Tadahiro
Japan Atomic Energy Agency, Nuclear Cycle Engineering Department, Nuclear Fuel Cycle Engineering Laboratories
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HIGUCHI Hidetoshi
Japan Atomic Energy Agency, Nuclear Cycle Engineering Department, Nuclear Fuel Cycle Engineering Laboratories
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KOIZUMI Kenji
Japan Atomic Energy Agency, Nuclear Cycle Engineering Department, Nuclear Fuel Cycle Engineering Laboratories
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HIRANO Hiroyasu
Japan Atomic Energy Agency, Nuclear Cycle Engineering Department, Nuclear Fuel Cycle Engineering Laboratories
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TASAKA Masayuki
Japan Atomic Energy Agency, Nuclear Cycle Engineering Department, Nuclear Fuel Cycle Engineering Laboratories
著作論文
- Development of Short Stroke Shearing Technology For FBR Fuel Pin
- An Assessment of Multistage Counter Current Extraction of TRU from Spent Molten Salt into Liquid Metal II. Effect of Stage Efficiency, Scrub Stage, and TRU Concentration
- Plutonium Precipitation in the MOX Co-deposition Tests for the Oxide Electrowinning Process
- Measurements of Optical Trapping Efficiency for Micron-Sized Dielectric Particles in Various Surrounding Media
- An Assessment of the Multi-stage Counter Current Extraction of TRUs from Spent Molten Salt, into Liquid Metal
- Investigation of Cell Resistance for Molten Salt Electrorefining of Spent Nuclear Fuel
- Characterization of High Temperature Creep Properties in Recrystallized 12Cr-ODS Ferritic Steel Claddings
- Preliminary Tube Manufacturing of Oxide Dispersion Strengthened Ferritic Steels with Recrystallized Structure
- Electrorefining Experiments to Recover Uranium with a Cadmium-Lithium Anode and Their Theoretical Evaluation
- An Experimental Study of Molten Salt Electrorefining of Uranium Using Solid Iron Cathode and Liquid Cadmium Cathode for Development of Pyrometallurgical Reprocessing
- Evaluation of Cadmium Pool Potential in a Electrorefiner with Ceramic Partition for Spent Metallic Fuel
- Low Current Efficiency in MOX Deposition Tests
- Water Corrosion Resistance of ODS Ferritic-Martensitic Steel Tubes
- Development of Manufacturing Process of PNC-FMS Wrapper Tube with SUS316 Short Joint
- Improvement of Creep Strength of 9CrODS Martensitic Steel by Controlling Excess Oxygen and Titanium Concentrations
- Development of Two-Step Softening Heat Treatment for Manufacturing 12Cr-ODS Ferritic Steel Tubes
- Production and Properties of Nano-scale Oxide Dispersion Strengthened (ODS) 9Cr Martensitic Steel Claddings
- Development of 9Cr-ODS Martensitic Steel Claddings for Fuel Pins by means of Ferrite to Austenite Phase Transformation
- Optical Trappings of ThO_2 and UO_2 Particles Using Radiation Pressure of a Visible Laser Light
- Grain Boundary Deformation at High Temperature Tensile Tests in ODS Ferritic Steel
- Recrystallization Texture of Cold-rolled Oxide Dispersion Strengthened Ferritic Steel