TADAKI Teiriki | Department of Biochemistry and Engineering Tohoku University
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概要
関連著者
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TADAKI Teiriki
Department of Biochemistry and Engineering Tohoku University
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YONEMOTO Toshikuni
Department of Biochemistry and Engineering, Tohoku University
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TADAKI Teiriki
Department of Biochemistry and Engineering, Tohoku University
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CHIDA TADASHI
Department of Chemical Engineering, Tohoku University
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Zheng S
Department Of Biochemistry And Engineering Tohoku University
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ZHENG Shuang
Department of Biochemistry and Engineering, Tohoku University
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Zheng Shuang
Department Of Biochemistry And Engineering Tohoku University
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Sato Tsuneyuki
Department of Biochemistry and Engineering, Tohoku University
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Hanzawa Tamotsu
Department Of Food Engineering Tokyo University Of Fisheries
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Sakai Noboru
Department Of Food Engineering Tokyo University Of Fisheries
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Kato Kunio
Department Of Applied Quantum Physics And Nuclear Engineering Kyushu University
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Sato Kazuhisa
Department Of Astronomy Kyoto University
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Tadaki T
Department Of Biochemistry And Engineering Tohoku University
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Yonemoto T
Tohoku Univ. Miyagi Jpn
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TADAKI TEIRIKI
Department of Chemical Engineering, Gunma University
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SAKAUCHI KAZUO
Department of Chemical Engineering, Gunma University
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Hanzawa Tamotsu
Department of Chemical Engineering, Gunma University
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HANAI Taizo
Department of Biochemistry and Engineering, Tohoku University
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Egocheaga Julio
Department of Biochemistry and Engineering, Tohoku University
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Hanai Taizo
Department Of Biochemistry And Engineering Tohoku University
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Sato Kazuhisa
Department Of Biology Faculty Of Science Niigata University
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Kato Haruo
Department Of Neurosurgery Nara Emergency And Critical Care Center
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Sato Kazuhisa
Department Of Biochemistry And Engineering Tohoku University
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Fukuhara Chouji
Department of Biochemistry and Engineering, Tohoku University
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IMAISHI NOBUYUKI
Chemical Research Institute of Non-Aqueous Solutions, Tohoku Univ.
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FUJINAWA KATSUHIKO
Chemical Research Institute of Non-Aqueous Solutions, Tohoku Univ.
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Chida Tadashi
Department of Mining and Mineral Engineering, Tohoku University
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Sakairi Tetsuya
Department of Biochemistry and Engineering, Tohoku University
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YAMAMORI YOSHIYUKI
Department of Chemical Engineering, Tohoku University
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TOYODA ITSUO
Department of Chemical Engineering, Tohoku University
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KATO HARUO
Department of Chemical Engineering, Tohoku University
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SHIMOIIZAKA JUNZO
Department of Mining and Mineral Engineering, Tohoku University
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TADAKI TEIRIKI
Department of Chemical Engineering, Tohoku University
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Kato Kunio
Department of Chemical Engineering, Gunma University
著作論文
- SEPARATION OF AMINO ACIDS BY RECYCLING FREE-FLOW ELECTROPHORESIS
- Continuous-Flow Electrophoresis for Concentration of Protein
- Separation of Proteins by Continuous Isoelectric Focusing
- Numerical Simulation of a Continuous Flow Isoelectric Focusing for Concentration of Amino Acid
- Separation of Amino Acids by Continuous-Flow Electrophoresis
- MODELING OF IONIC TRANSPORT IN NEUTRALIZATION DIALYTIC DEIONIZATION
- CHEMICAL REACTION OF CARBON MONOXIDE WITH COPPER(I)-TETRACHLOROALUMINATE(III)-AROMATIC HYDROCARBON SOLUTIONS-EQUILIBRIUM AND KINETICS-
- Ionic transport in a continuous Donnan dialyzer with two parallel-plate channels.
- Ionic Transport in a Continuous Donnan Dialyzer with a Parallel Plate Channel and an Agitated Tank
- Modified structural model for solid-consuming reaction. A case of slab-like tablet.:A CASE OF SLAB-LIKE TABLET
- Kinetics of carbon deposition on nickel metal by decomposition of carbon monoxide.
- Reaction characteristics of the horizontal Epitaxial reactor.
- Mathematical analysis of kinetics of solid-consuming reaction.
- Temperature distribution and reaction characteristics of the horizontal epitaxial reactor in high flow rate range.
- Sublimation mass transfer from a cylinder to the gas flowing laminarly in a parallel-plate duct.
- Reduction of nickel oxide pellet by a H2-CO mixture accompanied by carbon deposition.
- The reaction order of solid concentration for volume reaction model.
- Velocity profile and temperature distribution in the horizontal epitaxial reactor.
- Effect of oscillatory instability on stability of two-fluid layers.
- Solid concentration dependence of reaction rate for volume reaction model in fluid-solid reactions.