Watano Satoru | Department Of Chemical Engineering Osaka Prefecture University
スポンサーリンク
概要
関連著者
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Watano Satoru
Department Of Chemical Engineering Osaka Prefecture University
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Watano S
Osaka Prefecture University
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Watano Satoru
Department Of Chemical Engineering Graduate School Of Engineering Osaka Prefecture University
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MIYANAMI KEI
Department of Chemical Engineering, Osaka Prefecture University
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Miyanami Kei
Department Of Chemical Engineering Osaka Prefecture University
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Miyanami K
Department Of Chemical Engineering Osaka Prefecture University
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Watano Satoru
Department of Chemical Engineering, Graduate School of Engineering, Osaka Prefecture University
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佐藤 美洋
北海道大学大学院薬学研究院
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Sato Y
Osaka Prefecture University
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Sato Y
(present Address)tsukuba Research Institute Banyu Pharmaceutical Co. Ltd.
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Ohnishi Yasuharu
Department Of Pathogenic Biochemistry Institute Of Natural Medicine Toyama Medical And Pharmaceutica
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佐藤 嘉信
Department Of Chemical Engineering University Of Osaka Prefecture
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Ohnishi Y
Pharmaceutical Research Lab. Taiho Pharmaceutical Co. Ltd.
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SATO Yoshinobu
Department of Chemistry, Faculty of Science and Engineering, Sophia University
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Sato Yoshinobu
Department Of Chemical Engineering Osaka Prefecture University
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Sato Yoshinobu
Department of Applied Physics,School of Engineering,Nagoya University
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関川 善夫
Department Of Pharmaceutical Sciences National Institute Of Public Health
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Sato Y
Kyoritsu College Of Pharmacy
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OKAMOTO Takumi
Osaka Prefecture University
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WATANO Satoru
Osaka Prefecture University
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YASUTOMO Teruhito
Taiho Pharmaceutical Co., Ltd.
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Yasutomo Teruhito
Control Department Taiho Pharmaceutical Co. Ltd.
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Takashima Hideo
Department Of Chemical Engineering Osaka Prefecture University
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Takashima Hideo
Department Of Cardiology Fukuoka University Hospital School Of Medicine
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OSAKO Yoshifumi
Fuji Paudal Co., Ltd.
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OSAKO Yoshifumi
Research and Development Department, Fuji Paudal Co., Ltd.
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Takashima Hideo
Department Of Cardiology Fukuoka University
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TSUHARI Masamitsu
Research and Development Department, Fuji Paudal Co., Ltd.
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takashima hideo
Department of Cardiology, Fukuoka University School of Medicine
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SATO YOSHINOBU
Osaka University
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YOSHIKAWA Tomoko
Department of Industrial Chemistry, Faculty of Engineering, Seikei University
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Morikawa Takashi
Department Of Chemical Engineering University Of Osaka Prefecture
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Yoshikawa T
Institute For Medicinal Resources University Of Tokushima
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Fukushima T
Faculty Of Pharmacy And Parmaceutical Sciences Fukuyama University
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Fukushima Toru
Department Of Urology Kanazawa University School Of Medicine.
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FURUKAWA JYUNPEI
Department of Chemical Engineering, Osaka Prefecture University
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Yoshikawa T
Kitasato Univ. Kanagawa Jpn
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Yoshikawa Tomoko
Department Of Biology University Of Virginia
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Furukawa Jyunpei
Department Of Chemical Engineering Osaka Prefecture University
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Tsuhari Masamitsu
Research And Development Department Fuji Paudal Co. Ltd.
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Morikawa Takashi
Department Of Biochemistry & Immunochemistry Research Division Panapharm Laboratories Co. Ltd.
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Yoshikawa Tetsushi
Laboratory Of Virology Research Institute For Disease Mechanism And Control Nagoya University Graduate School Of Medicine
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Fukushima Toru
Department of Chemical Engineering, University of Osaka Prefecture
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Pfeffer R
New Jersey Inst. Technol. Nj Usa
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IMADA Yasushi
Department of Chemistry, Graduate School of Engineering Science, Osaka University
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SATO Yoshinobu
Ono Pharmaceutical Co., Ltd.
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OHNISHI Yoshito
Taiho Pharmaceutical Co., Ltd.
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Imada Yasushi
Department Of Chemical Engineering Osaka Prefecture University
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Ohnishi Yoshito
Pharmaceutical Research Laboratory Taiho Pharmaceutical Co. Ltd.
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WU Chang-Yu
Department of Environmental Engineering Sciences, University of Florida
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DAVE Rejesh
Particle Processing Research Center, New Jersey Institute of Technology
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PFEFFER Robert
Particle Processing Research Center, New Jersey Institute of Technology
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YOSHIDA Taizo
Tokuju Corporation
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Dave R
Univ. Heights Nj Usa
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Wu Chang-yu
Department Of Environmental Engineering Sciences University Of Florida
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NUMA Tetsuya
Osaka Prefecture University
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MIYANAMI Kei
Osaka Prefecture University
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UCHIGAMI Masafumi
Department of Chemical Engineering, University of Osaka Prefecture
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OKAMOTO Takumi
Pharmaceutical Research Lab., Taiho Pharmaceutical Co., Ltd.
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TSUHARI Masamitsu
Fuji Paudal Co., Ltd.
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KOIZUMI Ichiro
Fuji Paudal Co., Ltd.
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Uchigami Masafumi
Department Of Chemical Engineering University Of Osaka Prefecture
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YASUTOMO Teruhito
Control Department, Taiho Pharmaceutical Co., Ltd.
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Yeh Nan
Department Of Chemical Engineering Osaka Prefecture University
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Koizumi I
Fuji Paudal Co. Ltd.
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EBIHARA FUKUJI
Research and Development Department, Procter and Gamble Far East, Inc.
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Ebihara F
Procter & Gamble Far East Inc. Kobe Jpn
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Ebihara Fukuji
Research And Development Department Procter & Gamble Far East Inc.
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Ebihara Fukuji
Research & Development Department, Procter & Gamble Far East, Inc.
著作論文
- Scale-Up of High Shear Granulation Based on Agitation Power
- Scale-Up of High Shear Granulation Based on the Internal Stress Measurement
- Scale-Up of Wet Kneading in a Novel Vertical High Shear Kneader
- Optimization and validation of an image processing system in fluidized bed granulation
- IR absorption characteristics of an IR moisture sensor and mechanism of water transfer in fluidized bed granulation
- Control Granule Growth in Fluidized Bed Granulation by an Image Processing System
- Measurement of Moisture Content by IR Sensor in Fluidized Bed Granulation. Effects of Operating Variables on the Relationship between Granule Moisture Content and Absorbance of IR Spectra
- Control of moisture content by adaptive fuzzy control in agitation fluidized bed granulation
- APPLICATION OF FUZZY LOGIC TO MOISTURE CONTROL IN FLUIDIZED BED GRANULATION
- Heat Transfer and the Mechanism of Drying in Agitation Fluidized Bed
- Development of a Novel Compression Tester and Rheo-Mechanical Properties of Wet-Mass Powder.II : Effect of Moisture Content on the Rheo-Mechanical Properties
- Development of a Novel Compression Tester and Rheo-Mechanical Properties of Wet-Mass Powder.I : Effect of Kneading Time on the Rheo-Mechanical Properties
- Surface Modification of Food Fiber by Dry Particle Coating
- Scale-Up of Agitation Fluidized Bed Granulation by Neural Network
- Scale-Up of Agitation Fluidized Bed Granulation. V. Effect of Moisture Content on Scale-Up Characteristics
- Quantitative evaluation of kneading and extrusion processes by pressure transmission characteristics of wet kneaded masses
- On-line Monitoring of Granule Growth in High Shear Granulation by an Image Processing System
- Modeling of Agitation Fluidized Bed Granulation by Random Coalescence Model
- Heat Transfer and Granule Growth Rate in Fluidized Bed Granulation
- Mathematical Model in the Kinetics of Agitation Fluidized Bed Granulation. Effects of MOisture Content, Damping Speed and Operation Time on Granule Growth Rate
- COMPUTER SIMULATION OF AGITATION FLUIDIZED BED GRANULATION BY A TWO-DIMENSIONAL RANDOM ADDITION MODEL
- COMPUTER SIMULATION OF FLUIDIZED BED GRANULATION BY A TWO-DIMENSIONAL RANDOM COALESCENCE MODEL
- Determination of Optimal Formulation for Extrusion Granulation by Compression Test of Wet Kneaded Mass
- Development of a Novel Vertical High Shear Kneader and Its Performance in Wet Kneading of Pharmaceutical Powders
- Quantitative Analysis of Water Dispersion Conditions and Pressure Transmission Characteristics of a Wet Kneaded Mass
- Development of a Novel Granular Detergent with an Interspersion Particle Comprising an Anionic Surfactant and a Polymeric Polycarboxalate