Shigyo Nobuhiro | Department Of Applied Quantum Physics And Nuclear Engineering Kyushu University
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関連著者
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Shigyo Nobuhiro
Department Of Applied Quantum Physics And Nuclear Engineering Kyushu University
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Ishibashi Kenji
Department Of Applied Quantum Physics And Nuclear Engineering Faculty Of Engineering Kyushu Universi
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Ishibashi K
Department Of Applied Quantum Physics And Nuclear Engineering Kyushu University
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ISHIBASHI Kenji
Department of Applied Quantum Physics and Nuclear Engineering, Kyushu University
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SHIGYO Nobuhiro
Department of Nuclear Engineering, Kyushu University
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Nakamura T
High Energy Accelerator Research Organization
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Nakamoto Tatsushi
High Energy Accelerator Research Organization
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NUMAJIRI Masaharu
High Energy Accelerator Research Organization
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Nakamura T
Cyclotron And Radioisotope Center Tohoku University
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MEIGO Shin-ichirou
Japan Atomic Energy Research Institute
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MAEHATA Keisuke
Department of Applied Quantum Physics and Nuclear Engineering, Kyushu University
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TAKADA Hiroshi
Japan Atomic Energy Research Institute
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Takada H
Japan Atomic Energy Research Institute
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Maehata K
Department Of Applied Quantum Physics And Nuclear Engineering Kyushu University
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Maehata Keisuke
Department Of Nuclear Engineering Faculty Of Engineering Kyushu University
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Takada Hiroshi
Japan Atomic Energy Agency
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Chiba Satoshi
Japan Atomic Energy Agency
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Chiba S
Japan Atomic Energy Research Institute
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Chiba S
Japan Atomic Energy Res. Inst.
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Maehata Keisuke
Department Of Applied Quantum Physics And Nuclear Engineering Kyushu University
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Matsufuji N
National Institute Of Radiological Sciences
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MEIGO Shin-ichiro
Japan Atomic Energy Research Institute
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NAKAMOTO Tatsushi
Department of Nuclear Engineering, Kyushu University
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NAKAMURA Takashi
Cyclotron Radioisotope Center, Tohoku University
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IGA Kiminori
Department of Nuclear Engineering, Kyushu University
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MATSUFUJI Naruhiro
Department of Nuclear Engineering, Kyushu University
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WATANABE Yukinobu
Energy Conversion Engineering, Kyushu University
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ARIMA Hidehiko
Department of Applied Quantum Physics and Nuclear Engineering, Kyushu University
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Iga Kiminori
Department Of Applied Quantum Physics And Nuclear Engineering Kyushu University
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Arima Hidehiko
Department Of Applied Quantum Physics And Nuclear Engineering Kyushu University
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Arima Hidehiko
Department Of Applied Quantum Physics And Nuclear Engineering Faculty Of Engineering Kyushu Universi
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KITSUKI Hirohiko
Department of Nuclear Engineering, Kyushu University
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ISHIMOTO Shunsuke
Department of Applied Quantum Physics and Nuclear Engineering, Kyushu University
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TENZOU Hideki
Department of Applied Quantum Physics and Nuclear Engineering, Kyushu University
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Watanabe Yukinobu
Energy Conversion Engineering Kyushu University
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Kitsuki Hirohiko
Department Of Applied Quantum Physics And Engineering Kyushu University
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Matsufuji Naruhiro
Department Of Accelerator And Medical Physics Research Center For Charged Particle Therapy National
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Tenzou Hideki
Department Of Applied Quantum Physics And Nuclear Engineering Kyushu University
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Watanabe Y
Department Of Advanced Energy Engineering Science Kyushu University
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Nakamura Takashi
Cyclotron And Radioisotope Center Tohoku University
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Ishimoto Shunsuke
Department Of Applied Quantum Physics And Nuclear Engineering Faculty Of Engineering Kyushu Universi
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Iga Kiminori
Department of Applied Quantum Physics and Nuclear Engineering, Kyushu University
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CHIBA Satoshi
Japan Atomic Energy Research Institute
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NUMAJIRI Masaharu
National Laboratory for High Energy Physics
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TAKAYAMA Yasushi
Department of Applied Quantum Physics and Nuclear Engineering, Kyushu University
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IWAMOTO Yosuke
Department of Applied Quantum Physics and Nuclear Engineering, Kyushu University
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IWAMOTO Yousuke
Department of Applied Quantum Physics and Nuclear Engineering, Kyushu University
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Satoh Daiki
Department Of Applied Quantum Physics And Nuclear Engineering Kyushu University
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Iwamoto Yousuke
Department Of Applied Quantum Physics And Nuclear Engineering Kyushu University
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KUNIEDA Satoshi
Department of Applied Quantum Physics and Engineering, Kyushu University
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Takayama Yasushi
Department Of Applied Quantum Physics And Nuclear Engineering Kyushu University
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Kunieda Satoshi
Department Of Applied Quantum Physics And Engineering Kyushu University
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Ishimoto Shunsuke
Department Of Applied Quantum Physics And Nuclear Engineering Kyushu University
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ISHIBASHI Kenji
Devpartment of Nuclear Engineering, Kyushu University
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NAKAMOTO Tatsushi
Devpartment of Nuclear Engineering, Kyushu University
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SHIGYO Nobuhiro
Devpartment of Nuclear Engineering, Kyushu University
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MAEHATA Keisuke
Devpartment of Nuclear Engineering, Kyushu University
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MATSUFUJI Naruhiro
Devpartment of Nuclear Engineering, Kyushu University
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RAHMAN Abul
Department of Applied Quantum Physics and Nuclear Engineering, Kyushu University
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KATO Kunio
Department of Applied Quantum Physics and Nuclear Engineering, Kyushu University
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HORI Jun-ichi
Kyoto University Research Reactor Institute
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NAKAJIMA Ken
Kyoto University Research Reactor Institute
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Rahman Abul
Department Of Applied Quantum Physics And Nuclear Engineering Kyushu University
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Hori Jun-ichi
Kyoto Univ. Res. Reactor Inst.
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MATSUFUJI Naruhiro
National Inst. Radiological Sci. Res. Center of Charged Particle Therapy
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SATOH Daiki
Department of Applied Quantum Physics and Nuclear Engineering, Kyushu University
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WAKUTA Yoshihisa
Department of Nuclear Engineering, Faculty of Engineering, Kyushu University
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Shigyo Nobuhiro
Department Of Nuclear Engineering Faculty Of Engineering Kyushu University
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Wakuta Yoshihisa
Department Of Nuclear Engineering Faculty Of Engineering Kyushu University
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SAKAGUCHI Shouichirou
Department of Nuclear Engineering, Faculty of Engineering, Kyushu University
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Sakaguchi Shouichirou
Department Of Nuclear Engineering Faculty Of Engineering Kyushu University
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Ishibashi Kenji
Department Of Nuclear Engineering Faculty Of Engineering Kyushu University
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Kato Kunio
Department Of Applied Quantum Physics And Nuclear Engineering Kyushu University
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Nakajima Ken
Kyoto Univ. Res. Reactor Inst.
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SHIGYO Nobuhiro[et
Department of Nuclear Engineering,Faculty of Engineering,Kyushu University
著作論文
- Measurement of Gamma-Ray Production Double-Differential Cross Sections for the Spallation Reaction Induced by 0. 8, 1. 5 and 3. 0 GeV Protons
- Measurement of Neutron-Production Double-Differential Cross Sections for Nuclear Spallation Reaction Induced by 0. 8, 1. 5 and 3. 0 GeV Protons
- Study on Effective Average (γ, n) Cross Section for ^Y, ^Zr, ^Nb, and ^Cs and (γ, 3n) Cross Section for ^Tc
- Incorporation of the Fragmentation Process into High Energy Transport Code (HETC)
- Measurement of Gamma - Ray Production Double - Differential Cross Sections for 1.5 GeV π^+ Meson Incidence on Iron
- Experimental Neutron-Production Double-Differential Cross Section for the Nuclear Reaction by 1.5-GeV π^+ Mesons Incident on Iron
- Spallation Neutron Measurement by the Time-of-Flight Method with a Short Flight Path
- Neutron-Production Double-Differential Cross Sections of Iron and Lead by 0.8 and 1.5 GeV Protons in the Most-Forward Direction
- Measurement of Neutron-Production Double-Differential Cross Sections for Intermediate Energy Pion Incident Reaction
- Experiment on Neutron Production Differential Cross Sections Induced by 0.8, 1.5 and 3.0 GeV Protons
- Parameterization of Proton-induced Neutron Production Double Differential Cross Section up to 3 GeV in Terms of Moving Source Model
- Parameterization of Fragmentation Cross Section for Proton-Induced Spallation Reaction
- Nuclear Data Evaluations on Zirconium, Niobium and Tungsten for Neutron and Proton Incidence up to 200MeV
- Neutron-Production Double-Differential Cross Sections of Iron and Lead by 0.8 and 1.5 GeV Protons in the Most-Forward Direction