MATSUSAKA SHUJI | Department of Chemical Engineering, Kyoto University
スポンサーリンク
概要
関連著者
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MATSUSAKA SHUJI
Department of Chemical Engineering, Kyoto University
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Matsusaka Shuji
Department Of Chemical Engineering Kyoto University
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Masuda Hiroaki
Department Of Cardiovascular Medicine Graduate School Of Medicine University Of Tokyo
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Matsusaka S
Kyoto Univ. Kyoto Jpn
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Masuda Hiroaki
Kobe Gakuin Univ. Kobe Jpn
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Masuda H
Kyoto Univ. Kyoto Jpn
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Masuda Hiroaki
Department Of Medicine Osaka Medical Center For Cancer And Cardiovascular Diseases
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Masuda Hiroaki
Department Of Nuclear Engineering Faculty Of Engineering Kyoto University
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YOKOYAMA TOYOKAZU
Hosokawa Powder Technology Research Institute
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Adhiwidjaja Indra
Department Of Chemical Engineering Kyoto University
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Yokoyama Toyokazu
Hosokawa Micron Corp.
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JIANG YANBIN
Department of Chemical Engineering, Kyoto University
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THEERACHAISUPAKIJ WORAPORN
Department of Chemical Engineering, Kyoto University
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Theerachaisupakij Woraporn
Department Of Chemical Engineering Kyoto University
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Matsusaka Shuji
Kyoto Univ. Kyoto Jpn
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Jiang Yanbin
Department Of Chemical Engineering Kyoto University
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MASUDA Hiroaki
Department of Nuclear Engineering, Faculty of Engineering Kyoto University
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MASUDA Hiroaki
Department of Nuclear Engineering, Faculty of Engineering, Kyoto University
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NISHIO Toshiyuki
Department of Pediatrics, Tohoku University Graduate School of Medicine
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Yamamoto Koji
Department of Internal Medicine, Hattori Memorial Hospital
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Shimomura Hiroaki
Department of Internal Medicine III, Osaka Medical College
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Masuda Hiroaki
Department Of Chemical Engineering Kyoto University
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TANOUE KEN-ICHIRO
Department of Chemical Engineering, Kyoto University
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Nishio Toshiyuki
Department Of Biological Chemistry College Of Bioresource Sciences Nihon University
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Nishio Toshiyuki
Department Of Chemical Engineering Kyoto University
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Tanoue Ken-ichiro
Department Of Chemical Engineering Kyoto University
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Kato Yoshiyuki
Department Of Chemical Engineering Nagoya University
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Tanoue K
Department Of Mechanical Engineering Yamaguchi University
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Kurita Tsutomu
Japan Atomic Energy Agency
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KATAOKA MASAHIKO
Department of Chemical Engineering, Kyoto University
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Yamamoto Takuma
Japan Atomic Energy Agency
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YABE SUSUMU
Department of Chemical Engineering, Kyoto University
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Kato Yoshiyuki
Japan Atomic Energy Agency
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Kataoka Masahiko
Department Of Chemical Engineering Kyoto University
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Kihara Yoshiyuki
Japan Atomic Energy Agency
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Yasuda Masatoshi
Imp
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Suzuki Masahiro
Japan National Agricultural Research Center For Tohoku Region National Agriculture And Food Research
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Yabe Susumu
Department Of Chemical Engineering Kyoto University
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URAKAWA MOTOHIRO
Department of Chemical Engineering, Kyoto University
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Oki Mitsuhiro
Department Of Chemical Engineering Kyoto University
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ISHII Katsunori
Japan Atomic Energy Agency
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YOSHIMOTO Katsunobu
Japan Atomic Energy Agency
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NISHIDA TOMONORI
Department of Chemical Engineering, Kyoto University
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GOTOH YOSHIAKI
Department of Chemical Engineering, Kyoto University
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Gotoh Yoshiaki
Department Of Chemical Engineering Kyoto University
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Nishida Tomonori
Department Of Chemical Engineering Kyoto University
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Suzuki Masahiro
Japan Atomic Energy Agency
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Shimomura Hiroaki
Department Of Chemical Engineering Kyoto University
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Urakawa Motohiro
Department Of Chemical Engineering Kyoto University
著作論文
- Flowability Measurement of Coarse Particles Using Vibrating Tube Method
- Characterizing the effect of surface morphology on particle-wall interaction by the airflow method
- Evaluation of Flowability of Composite Particles and Powder Mixtures by a Vibrating Capillary Method
- Effects of wall vibration on particle deposition and reentrainment in aerosol flow
- Numerical Simulation of Particle Trajectory in Relation to the Formation of a Striped Pattern Deposition Layer
- Simultaneous phenomenon of particle deposition and reentrainment in charged aerosol flow-effects of particle charge and external electric field on the deposition layer
- Formation of striped pattern deposition layers by an aerosol flow-analysis of thickness and interval of layers
- Micro-feeding of fine powders using a capillary tube with ultrasonic vibration
- Micro-feeding of a fine powder using a vibrating capillary tube
- Measurement of mass flow rate of polymer powder based on static electrification of particles
- Electrostatics of particles
- Control of electrostatic charge on particles by impact charging
- Electrification of fine particles by impact on a polymer film target