Tanimura Shinji | Department Of Mechanical Engineering University Of Osaka Prefecture
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概要
- TANIMURA Shinjiの詳細を見る
- 同名の論文著者
- Department Of Mechanical Engineering University Of Osaka Prefectureの論文著者
関連著者
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Tanimura Shinji
Department Of Mechanical Engineering University Of Osaka Prefecture
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TANIMURA Shinji
Department of Mechanical Systems Engineering, University of Osaka Prefecture
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谷村 眞治
愛知工科大学工学部
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KAIZU Koichi
Department of Mechanical and System Engineering, University of Hyogo
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LIU Kaishin
Department of Mechanics and Engineering Science, Peking University
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谷村 眞治
Department Of Mechanical Systems Engineering Aichi University Of Technology
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Liu Kaishin
Department Of Mechanics And Engineering Science Peking University
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Tanimura Shinji
College Of Engineering Dept. Mech. Sys. Eng. University Of Osaka Prefecture
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Kaizu Koichi
Department Of Mechanical Systems Engineering Miyazaki University
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Liu Y
Peking Univ. Beijing Chn
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Kaizu K
Miyazaki Univ. Miyazaki Jpn
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Oka Fusao
Department Of Civil Engineering Division Of Geotechnical Engineering Graduate School Of Engineering
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Oka Fusao
Department Of Civil And Earth Resources Engineering Kyoto University
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Oka Fusao
Department Of Civil Engineering Gifu University
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NONAKA Taijiro
Disas, Prev. Res. Inst., Kyoto Univ.
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TOKUNAGA Satoshi
Sumitomo Metal Industries, Ltd.
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Mimura K
Osaka Prefecture Univ.
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Mimura Koji
Division Of Mechanical Engineering Graduate School Of Engineering Osaka Prefecture University
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Liu K
Peking Univ. Beijing Chn
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Liu Kaishin
State Key Laboratory For Turbulence And Complex Systems And Department Of Mechanics And Engineering
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Tokunaga Satoshi
Sumitomo Metal Industries Ltd.
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Nonaka T
Disaster Prevention Research Institute Kyoto University
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Liu Y
State Key Laboratory Of Saie Dalian University Of Technology
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LIU Ying
State Key Laboratory of SAIE, Dalian University of Technology
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Tanimura S
Univ. Osaka Prefecture Sakai‐shi
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Tanimura Shinji
Department Of Mechanical Systems Engineering University Of Osaka Prefecture
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KAIZU Kouichi
Osaka Prefectural Technical College
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MIMURA Koji
Department of Mechanical Systems Engineering, University of Osaka Prefecture
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GAO Lingtian
Department of Mechanics and Engineering Science, Peking University
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Aoto Tsuyoshi
Department of Mechanical Systems Engineering, University of Osaka Prefecture
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Gao Lingtian
Department Of Mechanics And Engineering Science Peking University
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Aoto Tsuyoshi
Department Of Mechanical Systems Engineering University Of Osaka Prefecture
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Liu Ying
State Key Laboratory Of Ophthalmology Zhongshan Ophthalmic Center Sun Yat-sen University
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LIU Tielin
State Key Laboratory for Turbulence and Complex Systems and Department of Mechanics and Engineering
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ZHANG Jinxiang
State Key Laboratory for Turbulence and Complex Systems and Department of Mechanics and Engineering
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Liu Tielin
State Key Laboratory For Turbulence And Complex Systems And Department Of Mechanics And Engineering
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Zhang Jinxiang
State Key Laboratory For Turbulence And Complex Systems And Department Of Mechanics And Engineering
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Liu Ying
State Key Laboratory Of Microbial Resources Institute Of Microbiology Chinese Academy Of Sciences
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YAMAMOTO Terumi
Department of Mechanical Systems Engineering, Aichi University of Technology
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HAYASHI Hiroyuki
Department of Mechanical Systems Engineering, Aichi University of Technology
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HAYASHI Hiroyuki
Department of Advanced Energy, University of Tokyo, Kashiwa, Chiba 277-8561, Japan
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KAIZU Koichi
Department of Mechanical and System Engineering, Graduate School of Engineering, University of Hyogo
著作論文
- Dynamic Behavior of Thick Plates Due to Oblique Impact : Numerical Analysis of Three-Dimensional Stress Waves in an Elastic/Viscoplastic Body
- Wave Propagation in Transversely Isotropic Fluid-Saturated Poroelastic Media(Solid Mechanics)
- Stress Wave Propagation in the Ground Containing a Spherical Cavity : Solid-Mechanisc, Strength of Materials
- A NOTE ON STRUCTURAL FAILURE DUE TO THE GREAT HANSHIN EARTHQUAKE
- Application of Discrete Element Method in Impact Problems
- Numerical Analysis of Two-Dimensional Stress Waves in Transverse Isotropic Cylinder due to Longitudinal Impact
- A Step-by-Step Time Integration Method Based on the Principle of Minimum Transformed Energy
- Dynamic Tensile Properties of Steels and Aluminum Alloys for a Wide Range of Strain Rates and Strain