Hori Teruo | Fiber Amenity Eng. Grad. Sch. Eng. Fukui Univ.
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概要
関連著者
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Hori Teruo
Fiber Amenity Eng. Grad. Sch. Eng. Fukui Univ.
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HORI Teruo
Fiber Amenity Engineering Course, Graduate School of Engineering, University of Fukui
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堀 照夫
福井大学大学院工学研究科
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HISADA Kenji
Fiber Amenity Engineering Course, Graduate School of Engineering, University of Fukui
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Hisada Kenji
Faculty Of Engineering Fukui University
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Hori Teruo
Fiber Amenity Eng. Grad. Sch. Eng. Univ. Fukui
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Tabata I
Graduate School Of Engineering University Of Fukui
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Hori Kazushige
Division Of Natural Science Osaka Kyoiku University
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SUYE SHIN-ICHIRO
Fiber Amenity Engineering Course, Graduate School of Engineering, University of Fukui
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Suye Shinichiro
Fiber Amenity Eng. Grad. Sch. Eng. Fukui Univ.
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Hisada K
Graduate School Of Engineering University Of Fukui
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Suye Shin-ichiro
Fiber Amenity Engineering Course Graduate School Of Engineering University Of Fukui
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Hirogaki Kazumasa
Fiber Amenity Engineering Course Graduate School Of Engineering University Of Fukui
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久田 研次
Graduate School Of Engineering University Of Fukui
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HIROGAKI Kazumasa
Fiber Amenity Engineering Course, Graduate School of Engineering, University of Fukui
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久田 研次
福井大 工
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田畑 功
福井大学大学院工学研究科
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堀 照夫
福井大学大学院工学研究科 ファイバーアメニティ工学専攻
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TABATA Isao
Technical Division, University of Fukui
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Xu Shichao
Department Of Applied Chemistry And Biotechnology Graduate School Of Engineering University Of Fukui
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廣垣 和正
福井大学大学院工学研究科
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TABATA Isao
Fiber Amenity Graduate School of Engineering, University of Fukui
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Okubayashi S
Venture Business Laboratory University Of Fukui
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Okubayashi Satoko
Graduate School Of Science And Technology Kyoto Institute Of Technology
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Okubayashi S
Faculty Of Engineering Fukui University
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Hori Teruo
Fiber Amenity Engineering Course Graduate School Of Engineering University Of Fukui
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Katayama Hideo
Daikin Environ. Lab.
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ZHENG Haitao
Fiber Amenity Eng., Grad. Sch. Eng., Fukui Univ.
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KIMURA Tomokazu
Fiber Amenity Eng., Grad. Sch. Eng., Fukui Univ.
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Yamashita Masaya
Fiber Amenity Eng. Grad. Sch. Eng. Univ. Fukui
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Hirogaki Kazumasa
Graduate School Of Science And Technology Kyoto Institute Of Technology
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Okubayashi S
Graduate School Of Engineering University Of Fukui
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XU Shichao
Fiber Amenity Engineering Course, Graduate School of Engineering, University of Fukui
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Zheng Haitao
Fiber Amenity Eng. Grad. Sch. Eng. Fukui Univ.
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Kimura Tomokazu
Fiber Amenity Eng. Grad. Sch. Eng. Fukui Univ.
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堀 照夫
福井大院・工・ファイバー
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堀 照夫
Graduate School Of Engineering University Of Fukui
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ISSHIKI Kenji
National Food Research Institute, Ministry of Agriculture, Forestry and Fisheries
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MORISAKI Manami
Fiber Amenity Engineering Course, Graduate School of Engineering, University of Fukui
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ENOMOTO Kazuki
Fiber Amenity Engineering Course, Graduate School of Engineering, University of Fukui
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ITO Tomoko
Fiber Amenity Engineering Course, Graduate School of Engineering, University of Fukui
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TABATA Isao
Department of Technology, Faculty of Engineering, University of Fukui
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ZHAO Xi
Fiber Amenity Engineering Course, Graduate School of Engineering, University of Fukui
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HISADA Kenji
Department of Applied Chemistry and Biotechnology, Faculty of Engineering, University of Fukui
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OKUBAYASHI Satoko
Venture Business Laboratory, University of Fukui
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EHRHARDT Anelise
Fiber Amenity Graduate School of Engineering, University of Fukui
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Ehrhardt Anelise
Fiber Amenity Graduate School Of Engineering University Of Fukui
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Zhao Xi
Fiber Amenity Engineering Course Graduate School Of Engineering University Of Fukui
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MA Wen-Xiao
Fiber Amenity Engineering Course, Graduate School of Engineering, Fiber Amenity Engineering, Univers
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OKUBAYASHI Satoko
Division of Advanced Fibro Science, Graduate School of Science and Technology, Kyoto Institute of Te
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Hori T
Graduate School Of Engineering University Of Fukui
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Isshiki Kenji
National Food Research Institute Ministry Of Agriculture Forestry And Fisheries
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Isshiki Kenji
National Food Research Institute
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Enomoto Kazuiki
Fiber Amenity Engineering Course Graduate School Of Engineering University Of Fukui
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Ma Wen-xiao
Fiber Amenity Engineering Course Graduate School Of Engineering Fiber Amenity Engineering University
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YAMASHITA Masamichi
Fiber Amenity Engineering Course, Graduate School of Engineering, University of Fukui
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KAMIHIRA Takuji
Fiber Amenity Engineering Course, Graduate School of Engineering, University of Fukui
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Morisaki Manami
Fiber Amenity Engineering Course Graduate School Of Engineering University Of Fukui
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Murakami Ayumi
Department Of Home Economy Faculty Of Teacher Education Fukui University
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NAMBO YUKIO
Fiber Amenity Engineering Course, Graduate School of Engineering, University of Fukui
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MATSUURA TAKANORI
Fiber Amenity Engineering Course, Graduate School of Engineering, University of Fukui
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Nambo Yukio
Fiber Amenity Engineering Course Graduate School Of Engineering University Of Fukui
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Hirose Yutaka
Fiber Amenity Eng. Grad. Sch. Eng. Fukui Univ.
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KAWAKAMI Ryushi
Dept. Biol. Sci. Tech., Fac. Eng., Univ. Tokushima
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OHSHIMA Toshihisa
Dept. Biol. Sci. Tech., Fac. Eng., Univ. Tokushima
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Nojima Syu
Fiber Amenity Eng. Grad. Sch. Eng. Fukui Univ.
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Amano Yoshihisa
Daikin Environ. Lab.
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Ohshima Toshihisa
Dept. Biol. Sci. Tech. Fac. Eng. Univ. Tokushima
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Kawakami Ryushi
Dept. Biol. Sci. Tech. Fac. Eng. Univ. Tokushima
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Kamihira Takuji
Fiber Amenity Engineering Course Graduate School Of Engineering University Of Fukui
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Matsuura Takanori
Fiber Amenity Engineering Course Graduate School Of Engineering University Of Fukui
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Teramura Yoshiyuki
Fiber Amenity Eng. Grad. Sch. Eng. Univ. Fukui
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YAMAGUCHI Takeshi
Fiber Amenity Engineering Course, Graduate School of Engineering, University of Fukui
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XY Shichao
Fiber Amenity Eng., Grad. Sch. Eng., Univ. Fukui
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EDO Tamami
Fiber Amenity Eng., Grad. Sch. Eng., Univ. Fukui
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YU Junlin
Mat. Sci., Tianjin Polytech. Univ.
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Yu Junlin
Mat. Sci. Tianjin Polytech. Univ.
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Edo Tamami
Fiber Amenity Eng. Grad. Sch. Eng. Univ. Fukui
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Yamaguchi Takeshi
Department Of Applied Chemistry And Biotechnology Graduate School Of Engineering University Of Fukui
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Ito Tomoko
Fiber Amenity Engineering Course Graduate School Of Engineering University Of Fukui
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Yamashita Masamichi
Fiber Amenity Engineering Course Graduate School Of Engineering University Of Fukui
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堀 照夫
福井大学
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Takaku Shinji
Fiber Amenity Engineering Course Graduate School Of Engineering University Of Fukui
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OHNUKI Hidebumi
Fiber Amenity Engineering Course, Graduate School of Engineering, University of Fukui
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SUMI Shinji
Guangzhou Meadville Electronics Co., Ltd.
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Sumi Shinji
Guangzhou Meadville Electronics Co. Ltd.
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Ohnuki Hidebumi
Fiber Amenity Engineering Course Graduate School Of Engineering University Of Fukui
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Takagi Tsutomu
Fiber Amenity Engineering Course Graduate School Of Engineering University Of Fukui
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MIZUNO Mitsuru
Fiber Amenity Engineering Course, Graduate School of Engineering, University of Fukui
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CHAYA Yuri
Hokuriku Environment Service Co., Ltd.
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Mizuno Mitsuru
Fiber Amenity Engineering Course Graduate School Of Engineering University Of Fukui
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Chaya Yuri
Hokuriku Environment Service Co. Ltd.
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KITAGAWA Norie
Fiber Amenity Engineering Course, Graduate School of Engineering, University of Fukui
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FUJITA Takashi
Fiber Amenity Engineering Course, Graduate School of Engineering, University of Fukui
著作論文
- A Photoinduced Hydrogen Evolution System Using Polymer-Supported Tin Porphyrin
- Structural Changes in Poly(ethylene terephthalate) Induced by Supercritical Carbon Dioxide Containing a Cosolvent as a Modifier
- Impregnation of Hydroxy-Anthraquinone Compounds into Polypropylene Fabrics by scCO_2 and the Sorption Ability for Metal Ions
- Impregnation of Cyanuric Chloride into Synthetic Fabrics (PET and PP) by Supercritical Carbon Dioxide and its Application in Immobilizing Natural Biomacromolecules
- A Study of Solubility of an Organic EL Compound by Means of Supercritical Carbon Dioxide
- A Rapid and Simple Determination of Food-Borne Salmonella Strains by Using Multi-Channel Oxygen Electrodes
- 3J09-2 Multilayer assembly of dye-linked L-proline dehydrogenase and poly(allylamine)ferrocene by layer-by-layer adsorption method
- 3H09-1 Gold electrode modified with polymeric mediator and diaphorase by layer-by-layer adsorption technique for electrochemical oxidation of NADH
- Microbial Degradation of Ethylene Glycol Dibenzoate by Rhodococcus sp. 2Cb
- 3B11-5 Purification and characterization of protocatechuic acid degrading enzyme from Rhodococcus sp. 9-003
- 2E15-4 Biodegradation of disodium terephthalate by Rhodococcus sp. strain 9-003
- Super High Water-Repellent Treatments of Various Kinds of Cloths Using Sol/Gel Method
- Increased Peel Strength of Copper Plating Using Supercritical Fluid Methods for Epoxy Printed Circuit Boards
- Improvement of Dyeability of Para-Aramid Fibers Using Electron-Beam-Induced Graft Polymerization