Chang Liann-be | Department Of Electronic Engineering Chang-gung University
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概要
関連著者
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Chang L‐b
Chung Cheng Inst. Technol. Taoyuan Twn
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Chang Liann-be
Department Of Electronic Engineering Chang-gung University
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Chang Liann-be
Department Of Applied Physics Chung-cheng Institute Of Technology
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CHANG Liann-Be
Department of Electronic Engineering and Green Technology Research Center, Chang Gung University
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JENG Ming-Jer
Department of Electronic Engineering, St. John's & St. Mary's Institute of Technology
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Jeng Ming-jer
Department Of Electronic Engineering Chang-gung University
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Jeng Ming-jer
Department Of Electrical Engineering National Taiwan University
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Wang Hung-thung
Department Of Electrical Engineering Chung-cheng Institute Of Technology
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Hsieh Li-zen
Department Of Electrical Engineering Chung-cheng Institute Of Technology National Defense University
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Lee Cheng-min
Department Of Applied Physics Chung-cheng Institute Of Technology
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Lee Cheng-min
Department Of Applied Physics Chung Cheng Institute Of Technology
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Kuei Ping-yu
Department Of Electrical Engineering Chung-cheng Institute Of Technology National Defense University
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LIN Ray-Ming
Department of Electronic Engineering and Green Technology Research Center, Chang Gung University
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Lin R‐m
Chang Gung Univ. Tao‐yuan Twn
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Lin Ray-ming
Department Of Electrical Engineering National Central University
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Lee C‐m
National Tsing Hua Univ. Hsinchu Twn
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Liao C‐h
Chinese Military Acad. Kao‐hsiung Twn
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CHENG Yi-Chang
Department of Electrical Engineering, Chung Cheng Institute of Technology
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Cheng Yi-chang
Department Of Electrical Engineering Chung Cheng Institute Of Technology
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Cheng Yi-chang
Department Of Electronics Engineering Ming Hsin University Of Science And Technology
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Cheng Y‐c
Ming‐hsin Inst. Technol. Hsin‐chu Twn
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LIAO Chin-Hsiung
Department of Applied Physics, Chung-Cheng Institute of Technology
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Kuo Li-hsin
Uni Light Technology Inc.
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WANG Hung-Tsung
Department of Electrical Engineering, Chung-Cheng Institute of Technology
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Chiao Ting-liang
Department Of Applied Physics Chung-cheng Institute Of Technology
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YEH Der-Hwa
Department of Electrical Engineering, Chung-Cheng Institute of Technology, National Defense Universi
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CHANG Liann-Bie
Department of Electronic Engineering, Chang-Gung University
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CHANG Chia-Hwa
Department of Electrical Engineering, Chung Cheng Institute of Technology, National Defense Universi
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TSAI Jen-Hwan
Department of Applied Physics, Chung-Cheng Institute of Technology
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JIANG Gwo-Cherng
Department of Applied Physics, Chung Cheng Institute of Technology
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CHANG Yih
Department of Applied Physics, Chung Cheng Institute of Technology
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JUANG Yung-Der
Department of Physics and Mathematics Education, Tainan Normal College
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LU Su
Department of Applied Physics, Chung Cheng Institute of Technology
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Lu S
Wuhan Univ. Wuhan Chn
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Chang Y
Ritdisplay Corp. Hsinchu Twn
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Yeh Der-hwa
Department Of Electrical Engineering Chung-cheng Institute Of Technology National Defense University
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Tsai Jen-hwan
Department Of Applied Physics Chung-cheng Institute Of Technology
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Juang Yung-der
Department Of Physics And Mathematics Education Tainan Normal College
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Chang Chia-hwa
Department Of Electrical Engineering Chung Cheng Institute Of Technology National Defense University
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Chang Yih
Department Of Applied Physics Chung Cheng Institute Of Technology:(present Address) Department Of Me
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Jiang G‐c
Chinese Air Force Acad. Kaoshiung Twn
著作論文
- Surface Passivation Using P_2S_5/(NH_4)_2S_x and Hydrogen Fluoride Solutions on Ag/n-InAs and Ag/n-InSb Schottky Diodes
- Barrier Height Enhancement of Ni/n-Type InP Schottky Contact Using a Thin Praseodymium Interlayer
- Gettering Properties in Praseodymium-Added Crystal Growth
- Oxygen and Hydrogen Implanted Oxidation Enhancement of A1_Ga_As/A1_Ga_As Distributed Bragg Reflector Structure
- Palladium Diffusion Transport in n-Type GaAs
- Barrier Height Enhancement of AlGaN/GaN Schottky Diodes by P_2S_5/(NH_4)_2S_x Surface Treatments
- Effects of a Metal Film and Prism Dielectric on Properties of Surface Plasmon Resonance in a Multilayer System
- The Influence of Metal Film Thickness on Wave Properties of Surface Plasma Waves
- Near-Band-Edge Photoluminescence of Sulfur-Doped GaAs Prepared by Liquid Phase Epitaxy