Watanabe Rikiya | The Institute Of Sci. And Indust. Research Osaka Univ
スポンサーリンク
概要
関連著者
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Yoshida Masasuke
Atp-synthesis Regulation Project Icorp Jst:dept Of Molecular Bioscience Kyoto Sangyo Univ
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Yoshida Masasuke
Chemical Resources Lab Tokyo Institute Of Technology
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Yoshida Masasuke
Tokyo Inst Of Technology
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Yoshida Masasuke
Tokyo Institute Of Technology
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Yoshida Masasuke
Chemical Resources Laboratory Tokyo Institue Of Technology:atp System Project Exploratory Research F
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Miyasaka Yoshiyuki
Atp-synthesis Regulation Project Icorp:jstcrl Tokyo Inst. Of Tech.
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Yoshida Masasuke
Japan Science And Technology Agency (jst) Atp Synthesis Regulation Projectkyoto Sangyo University De
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Yoshida Masasuke
Kyoto Sangyo Univ.
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Watanabe Rikiya
The Institute Of Sci. And Indust. Research Osaka Univ
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Yoshida Masasuke
Chemical Resources Laboratory Tokyo Institute Of Technology:icorp Atp Synthesis Regulation Project J
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Noji Hiroyuki
The Institute Of Sci. And Indust. Research Osaka Univ
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Shimabukuro Katsuya
Florida State University
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Yoshida Masasuke
Japan Science And Technology Agency (jst) Atp Synthesis Regulation Projectkyoto Sangyo University De
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Shimabukuro Katsuya
Florida State Univ.
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Noji Hiroyuki
ISIR, Osaka Univ.
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Yoshida Masasuke
Chemical Resources Laboratory, Tokyo Institute of Technology
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Yoshida Masasuke
Tokyo Institute of Technology.
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Okuno Daichi
Isir Osaka Univ.
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Okuno Daichi
ISIR, Osaka Univ.
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Watanabe Rikiya
Department of Mechanical Engineering, The University of Tokyo
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Sakakihara Shouichi
ISIR, Osaka Univ.
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Noji Hiroyuki
Institute Of Scientific And Industrial Research Osaka University
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Noji Hiroyuki
The Institute Of Industrial And Scientific Research Osaka University
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Yoshida Masasuke
Chemical Research Laboratory Tokyo Institute Of Technology
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Noji Hiroyuki
Department Of Applied Chemistry School Of Engineering The University Of Tokyo:graduate School Of Fro
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Watanabe Rikiya
Department Of Applied Chem. Univ. Tokyo
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Noji Hiroyuki
University Of Tokyo Department Of Applied Chemistry
著作論文
- 3P-147 F1-ATPaseによる基質加水分解機構の解明(分子モーター(3),第46回日本生物物理学会年会)
- 2P211 Mechanical Modulation of ATP binding affinity and ATP hydrolysis/synthesis equilibrium of F_1-ATPase(37. Molecular motor (II),Poster Session,Abstract,Meeting Program of EABS & BSJ 2006)