Kawaguchi Naoto | Department Of Applied Chemistry The University Of Tokyo
スポンサーリンク
概要
関連著者
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Kawaguchi Naoto
Department Of Applied Chemistry The University Of Tokyo
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KISHIO Kohji
Department of Superconductivity, Graduate School of Engineering, University of Tokyo
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Sato J
Hitachi Cable Ltd. Ibaraki Jpn
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Kitazawa K
Department Of Superconductivity University Of Tokyo
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Kishio Kohji
Department Of Applied Chemistry Faculty Of Engineering University Of Tokyo
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SHIMOYAMA Jun-ichi
Department of Industrial Chemistry, University of Tokyo
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OGINO Hiraku
Department of Applied Chemistry, University of Tokyo
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Shimoyama J
Department Of Applied Chemistry The University Of Tokyo
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Ogino Hiraku
Department Of Applied Chemistry The University Of Tokyo
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SHIMIZU Yasuaki
Department of Applied Chemistry, The University of Tokyo
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KAWAGUCHI Naoto
Department of Applied Chemistry, The University of Tokyo
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Shimoyama Jun-ichi
Department Of Applied Chemistry School Of Engineering University Of Tokyo
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Shimizu Yasuaki
Department Of Applied Chemistry The University Of Tokyo
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Miyagawa Masao
Department Of Cardiology Matsuyama Red Cross Hospital
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Kido Teruhito
Department Of Diagnostic And Therapeutic Radiology Ehime University Graduate School Of Medicine
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Mochizuki Teruhito
Department Of Cardiology Matsuyama Red Cross Hospital
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Ogimoto Akiyoshi
Department Of Cardiology Ehime National Hispital
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Kurata Akira
Department Of Cardiology Ehime University School Of Medicine
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Kido Tomoyuki
Department Of Pharmacological Sciences Faculty Of Pharmaceutical Sciences Kumamoto University
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USHIYAMA Koichi
Department of Applied Chemistry, The University of Tokyo
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Ushiyama Koichi
Department Of Applied Chemistry The University Of Tokyo
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Ogimoto Akiyoshi
Department of Cardiology, Ehime University Graduate School of Medicine
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Kurata Akira
Department of Radiology, Erasmus University Medical Center
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Nishiyama Yoshiko
Department of Radiology, Ehime University Graduate School of Medicine
著作論文
- Superconductivity Above 40K Observed in a New Iron Arsenide Oxide (Fe_2As_2)(Ca_4(Mg,Ti)_3O_y)
- New Iron Arsenide Oxides (Fe_2As_2)(Sr_4(Sc,Ti)_3O_8), (Fe_2As_2)(Ba_4Sc_3O_), and (Fe_2As_2)(Ba_3Sc_2O_5)
- Optimization of Coronary Attenuation in Coronary Computed Tomography Angiography Using Diluted Contrast Material