HORIKAWA Keitaro | Department of Mechanical Science and Bioengineering, School of Engineering Science, Osaka University
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概要
- Horikawa Keitaroの詳細を見る
- 同名の論文著者
- Department of Mechanical Science and Bioengineering, School of Engineering Science, Osaka Universityの論文著者
関連著者
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Kobayashi Hidetoshi
Department Of Mechanical Science And Bioengineering School Of Engineering Science Osaka University
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HORIKAWA Keitaro
Department of Mechanical Science and Bioengineering, School of Engineering Science, Osaka University
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Horikawa Keitaro
Dep. Of Mechanical Sci. And Bioengineering School Of Engineering Sci. Osaka Univ.
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Horikawa Keitaro
Department Of Mechanical Engineering Faculty Of Engineering The University Of Tokushima
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Kobayashi Hidetoshi
Department Of Materials Science Faculty Of Engineering Ibaraki University
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Kobayashi Hidetoshi
Department Of Internal Medicine Division Of Metabolism And Endocrinology St. Marianna University School Of Medicine
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Okada Hiroaki
Department of Chemistry, Faculty of Science, Kyoto University
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Okada Hiroaki
Department Of Mechanical Science And Bioengineering School Of Engineering Science Osaka University
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Okada Hiroaki
Department Of Chemistry Faculty Of Science Kyoto University
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Kobayashi Hidetoshi
Department of Radiology, Nagoya University School of Medicine
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URUSHIHARA Wataru
Surface Design & Corrosion Research Section, Materials Research Laboratory
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Urushihara Wataru
Surface Design & Corrosion Research Section Materials Research Laboratory Kobe Steel Ltd.
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Kobayashi Hidetoshi
Department Of Mechanical Science And Bioengineering Faculty Of Engineering Science Osaka University
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Ogawa Kinya
Department Of Aeronautics And Astronautics Faculty Of Engineering Kyoto University
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Kobayashi Hidetoshi
Dep. Of Mechanical Sci. And Bioengineering School Of Engineering Sci. Osaka Univ.
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SUGIYAMA Fumiko
Department of Aeronautics and Astronautics, Faculty of Engineering, Kyoto University
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Sugiyama Fumiko
Department Of Aeronautics And Astronautics Faculty Of Engineering Kyoto University
著作論文
- Visualization of Diffusive Hydrogen in Low Alloy Steel by means of Hydrogen Microprint Technique at Elevated Temperatures
- Detection of Hydrogen Evolution during Tensile Deformation and Fracture in Carbon Steel
- Hydrogen Permeation Estimated by HMT in Carbon Steel Exposed to Gaseous Hydrogen
- Prediction of Mechanical Behaviour of Low Carbon Steel at High Strain Rate Using Thermal Activation Theory and Static Data(Recent Advances in Materials and Processing (I))