Yagi Osami | Research Center For Water Environment Technology Graduate School Of Engineering The University Of To
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概要
- YAGI OSAMIの詳細を見る
- 同名の論文著者
- Research Center For Water Environment Technology Graduate School Of Engineering The University Of Toの論文著者
関連著者
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Yagi Osami
Research Center For Water Environment Technology Graduate School Of Engineering The University Of To
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Iwasaki K
Laboratory Of Biochemistry Department Of Bioscience And Biotechnology Faculty Of Agriculture Graduat
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Yagi O
Univ. Tokyo Tokyo Jpn
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Iwasaki K
National Inst. For Environmental Studies Ibaraki Jpn
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Yagi Osami
Water And Soil Environmental Studies
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IWASAKI KAZUHIRO
National Institute for Environmental Studies
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YAGI OSAMI
Research Center for Water Environment Technology, Graduate School of Engineering, The University of
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Saitoh Satoshi
Research Center for Water Environment Technology, School of Engineering, The University of Tokyo
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Saitoh Satoshi
Research Center For Water Environment Technology Graduate School Of Engineering The University Of To
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Hashimoto Akiko
National Institute For Environmental Studies And Crest Japan Science And Technology Corporation
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Takamura Y
Department Of Bioresources Sciences School Of Agriculture Ibaraki University
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Takamura Yoshichika
Department Of Agricultural Chemistry Faculty Of Agriculture Ibaraki University
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NAKAJIMA Mutsuyasu
College of Bioresource Sciences, Nihon University
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Nakajima M
College Of Bioresource Sciences Nihon University
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Yamada Takashi
Department of Molecular Biotechnology, Graduate School of Advanced Sciences of Matter, Hiroshima Uni
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NISHIHARA HIROFUMI
Department of Agricultural Chemistry, The University of Tokyo
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Yamada Takashi
Department Of Chemistry Faculty Of Science And Engineering Konan University
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Nishihara Hirofumi
Department Of Applied Biological Resource Science Ibaraki University
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Yamada Takashi
Department Of Molecular Biotechnology Graduate School Of Advanced Sciences Of Matter Hiroshima Unive
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Yagi O
Research Center For Water Environment Technology Graduate School Of Engineering The University Of To
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TAKAMURA YOSHICHIKA
Department of Bioresource Science, Faculty of Agriculture, Ibaraki University
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KIMOTO AKIKO
Department of Bioresources Sciences, School of Agriculture, Ibaraki University
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KANEHAMA NAOMI
Department of Bioresources Sciences, School of Agriculture, Ibaraki University
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TANAKA TETSUYA
Mechanical Engineering Research Laboratory and Power & Industrial Systems, Hitachi Ltd., Tsuchiura D
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NAKADAIRA SHIRO
Mechanical Engineering Research Laboratory and Power & Industrial Systems, Hitachi Ltd., Tsuchiura D
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Kimoto Akiko
Department Of Bioresources Sciences School Of Agriculture Ibaraki University
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Kanehama Naomi
Department Of Bioresources Sciences School Of Agriculture Ibaraki University
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Nakadaira Shiro
Mechanical Engineering Research Laboratory And Power & Industrial Systems Hitachi Ltd. Tsuchiura
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KIKUCHI Takeshi
Department of Materials Science, Kurashiki University of Science and the Arts
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Nishihara H
Department Of Bioresource Sciences School Of Agriculture Ibaraki University
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Yamada T
Department Of Molecular Biotechnology Graduate School Of Advanced Sciences Of Matter Hiroshima Unive
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NAKASUGI Naou
National Institute for Environmental Studies and CREST, Japan Science and Technology Corporation
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IWASAKI Kazuhiro
Biotechnology Risk Assessment Team, Biodiversity Conservation Research Project, National Institute f
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Nakasugi Naou
National Institute For Environmental Studies And Crest Japan Science And Technology Corporation
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Tanaka Tetsuya
Mechanical Engineering Research Laboratory And Power & Industrial Systems Hitachi Ltd. Tsuchiura
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Kikuchi Takeshi
Department Of Bioresource Sciences School Of Agriculture Ibaraki University
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Yamada Takashi
Department Of Animal Science Graduate School Of Agricultural Science Kobe University
著作論文
- Growth Inhibition of Microcystis Cyanobacteria by L-Lysine and Disappearance of Natural Microcystis Blooms with Spraying
- Development of a Most-probable-number Method for Enumerating Denitrifying Bacteria by Using 96-Well Microtiter Plates and an Anaerobic Culture System
- Development of a New Most-probable-number Method for Enumerating Methanotrophs, Using 48-well Microtiter Plates
- Degradation Pathways of Trichloroethylene and 1,1,1-Trichloroethane by Mycobacterium sp. TA27(Microbiology & Fermentation Technology)
- Quantitative and Specific Detection of a Trichloroethylene-degrading Methanotroph, Methylocystis sp. Strain M, by a Most Probable Number-Polymerase Chain Reaction Method(Microbiology & Fermentation Technology)
- Quantitative Detection of Trichloroethylene-Degrading Mycobacterium sp. TA27 with a Real-time PCR Product Detection System