XU Jun | Institute of Advanced Materials, Fudan University
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概要
関連著者
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XU Jun
Institute of Advanced Materials, Fudan University
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TORIYAMA Kazuhisa
Faculty of Media Science, Saitama College
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Xu J
Institute Of Advanced Materials Fudan University
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ONNAGAWA Hiroyoshi
Faculty of Engineering, University of Toyama
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OKADA Hiroyuki
Faculty of Engineering, University of Toyama
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SUGIMORI Sigeru
Toyama National College of Technology
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MA Heng
Faculty of Engineering, Toyama University
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SUGIMORI Shigeru
Toyama National College of Technology
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Xu J
Akita Univ. Akita Jpn
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Xu J
National Inst. Advanced Industrial Sci. And Technol. (aist) Ibaraki Jpn
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Okada H
Faculty Of Engineering University Of Toyama
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Onnagawa Hiroyoshi
Faculty Of Engineering Toyama University
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Okada Hiroyuki
Faculty Of Engineering Toyama University
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Okada H
Univ. Toyama Toyama Jpn
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Chen Guo-qiang
Department Of Biological Sciences And Biotechnology Tsinghua University
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MA Heng
Department of Physics, Henan Normal University
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Xu Jun
Institute Of Polymer Science And Engineering Department Of Chemical Engineering School Of Materials
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Ma Heng
Department Of Pathology Jinling Hospital
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Ma H
Department Of Physics Henan Normal University
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Guo Bao-hua
Institute Of Polymer Science And Engineering Department Of Chemical Engineering School Of Materials
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Zhang Zeng-min
Institute Of Polymer Science And Engineering Department Of Chemical Engineering School Of Materials
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Fang Huajun
Institute Of Geographic Sciences And Natural Resources Research Chinese Academy Of Sciences
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Onnagawa Hiroyoshi
Faculty of Engineering, University of Toyama, Toyama 930-8555, Japan
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Sugimori Sigeru
Toyama National College of Technology, Toyama 939-8630, Japan
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Ma Heng
Department of Physics, Henan Normal University, Henan 453007, China
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Ma Heng
Faculty of Engineering, Toyama University, 3190 Gofuku, Toyama 930-8555, Japan
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Okada Hiroyuki
Faculty of Engineering, University of Toyama, Toyama 930-8555, Japan
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Zhao Xiao
Institute of Microelectronics, Tsinghua University
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Xu Jun
Institute of Microelectronics, Tsinghua University
著作論文
- Mechanical Model of Rotation Frame for Phase Stability and Molecular Conformation in Liquid Crystal System
- Mechanical Rotor Model for Fluorinated Terphenyl Liquid Crystals
- New Growth Features of Poly(3-hydroxybutyrate-co-3-hydroxyhexanoate) Banded Spherulites
- Mechanical Model of Rotation Frame for Phase Stability and Molecular Conformation in Liquid Crystal System
- Mechanical Rotor Model for Fluorinated Terphenyl Liquid Crystals
- DC gain enhancement method for recycling folded cascode amplifier in deep submicron CMOS technology