Kim Hyang | School Of Advanced Materials Engineering Chonbuk National University
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概要
- Kim Hyang Yulの詳細を見る
- 同名の論文著者
- School Of Advanced Materials Engineering Chonbuk National Universityの論文著者
関連著者
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Kim Hyang
School Of Advanced Materials Engineering Chonbuk National University
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Lee Seung
School Of Advanced Materials Engineering Chonbuk National University
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Kim Seung
School of Advanced Materials Engineering, Chonbuk National University, Chonju-si, Chonbuk 561-756, Korea
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JUNG Song
School of Advanced Materials Engineering, Chonbuk National University
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SONG Sung
BOE-HYDIS Co. LTD.
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Nam Sang-hee
Medical Imaging Research Center Inje University
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Jang Jin
Department Of Biochemistry School Of Medicine Kyungpook National University
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Kim Jae-hyung
Medical Imaging Research Center Inje University
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Lee Yong
Depart. Of Oncology Yonsei Univ. Wonju College Of Medicine
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Park Kyu
Department Of Agrobiology Kangweon National University
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Oh Sang
School of Advanced Materials Engineering, Chonbuk National University, Chonju-si, Chonbuk 561-756, Korea
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Eom Tae
School of Advanced Materials Engineering, Chonbuk National University, Chonju-si, Chonbuk 561-756, Korea
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Lee Yong
Department of Information Display, Kyunghee University, Seoul 130-701, Korea
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Lim Young
Panel Design Group, BOE-HYDIS Technology Co., Ltd., Ichon-si, Kyunggi-do 467-701, Korea
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Song Sung
BOE-HYDIS Co. LTD., San 136-1, Ami-ri, Bubal-eub, Ichon-si, Kyungki-do 467-701, Korea
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Jung Song
School of Advanced Materials Engineering, Chonbuk National University, Chonju-si, Chonbuk 561-756, Korea
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Kim Hyang
School of Advanced Materials Engineering, Chonbuk National University, Chonju-si, Chonbuk 561-756, Korea
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Jang Jin
Department of Information Display, Kyunghee University, Seoul 130-701, Korea
著作論文
- Dual Domain Effect on a Rubbing Mura in Liquid Crystal Displays Associated with In-Plane Rotation of LC Director
- Cell Gap-Dependent Transmittance Characteristic in a Fringe Field-Driven Homogeneously Aligned Liquid Crystal Cell with Positive Dielectric Anisotropy
- Analysis of Optimal Phase Retardation of a Fringe Field-Driven Homogeneously Aligned Nematic Liquid Crystal Cell