Hirayama Hideo | High Energy Accelerator Research Organization
スポンサーリンク
概要
関連著者
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Hirayama Hideo
High Energy Accelerator Research Organization
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KUROSAWA Naohiro
Visible Information Center
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Hirayama H
High Energy Accelerator Research Organization
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HARIMA Yoshiko
CRC Solutions Corporation
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NEMOTO Makoto
Visible Information Center Inc.
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SHIN Kazuo
Department of Nuclear Engineering, Kyoto University
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SAKAMOTO Yukio
Japan Atomic Energy Research Institute
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NAKASHIMA Hiroshi
Japan Atomic Energy Research Institute
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Shin Kazuo
Department Of Applied Chemistry Osaka Prefecture University
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Sakamoto Y
Japan Atomic Energy Research Institute
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Tayama Ryuichi
Nuclear Systems Division Hitachi Ltd.
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Hayashi Katsumi
Nuclear Systems Division Hitachi Ltd.
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SHIMIZU Akinao
The Wakasa Wan Energy Research Center
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SASAMOTO Nobuo
Japan Atomic Energy Research Institute
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MASUKAWA Fumihiro
Japan Atomic Energy Research Institute
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HANDA Hiroyuki
Nuclear Systems Division, Hitachi, Ltd.
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Kurosawa Naohiro
Visible Information Center Inc.
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Abe Teruo
Startcom Ltd.
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Handa Hiroyuki
Nuclear Systems Division Hitachi Ltd.
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Mohammadi Akram
Cyclotron And Radioisotope Center Tohoku Univ.
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SAKAMOTO Yukio
Tokai Establishment, Japan Atomic Energy Research Institute
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Shin K
Kyoto Univ.
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Shin Kazuo
Department Of Nuclear Engineering Kyoto University
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Baba Mamoru
Cyclotron And Radioisotope Center
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ABE Teruo
Startcom, Ltd.
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HARIMA Yoshiko
CRC Research Institute, Inc.
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Nakashima H
Japan Atomic Energy Research Institute
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Mohammadi Akram
Cyclotron and Radioisotope Center
著作論文
- Application of the EGS4 Monte Carlo Code to a Study of Multilayer Gamma-Ray Exposure Buildup Factors of up to 40 mfp
- Description of Multilayered Gamma-Ray Exposure Buildup Factors up to 40 mfp by the Approximating Model
- Simulation of the Carrier Trapping Effect in a Schottky CdTe Detector by Considering a Nonuniform Electric Field
- Validity of the Four-Parameter Empirical Formula in Approximating the Response Functions for Gamma-ray, Neutron, and Secondary Gamma-ray Skyshine Analyses
- Calculation of Gamma-Ray Buildup Factors up to Depths of 100 mfp by the Method of Invariant Embedding, (II) : Improved Treatment of Bremsstrahlung
- Comparison of Line Beam Response Function for Gamma-ray Skyshine Analysis Based on Single Scattering Method with the Monte Carlo Calculations
- Validity of the Four-Parameter Empirical Formula in Approximating the Response Functions for Gamma-ray, Neutron, and Secondary Gamma-ray Skyshine Analyses
- Calculation of Gamma-Ray Buildup Factors up to Depths of 100 mfp by the Method of Invariant Embedding, (II) : Improved Treatment of Bremsstrahlung