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School of Advanced Materials Engineering, Chonbuk National University, Chonju-si, Chonbuk 561-756, Korea | 論文
- Hardware implementation of a tessellation accelerator for the OpenVG standard
- LABORATORY OBSERVATIONS OF TRIAD INTERACTION OF DEEP WATER WIND WAVES
- Extraction method of the interface and nitride trap density in nitride-based charge trapped flash memories using an optical response (Electron devices: 第15回先端半導体デバイスの基礎と応用に関するアジア・太平洋ワークショップ(AWAD2007))
- Extraction method of the interface and nitride trap density in nitride-based charge trapped flash memories using an optical response (Silicon devices and materials: 第15回先端半導体デバイスの基礎と応用に関するアジア・太平洋ワークショップ(AWAD2007))
- Dual Domain Effect on a Rubbing Mura in Liquid Crystal Displays Associated with In-Plane Rotation of LC Director
- Color Tracking Analysis of the Fringe-Field-Switching Cell Using a Liquid Crystal with Negative Dielectric Anisotropy
- Enhancement of Light Extraction from GaN-Based Light-Emitting Diodes by Coating Surface with Al2O3 Powder
- Dynamic Stability of the Fringe-Field Switching Liquid Crystal Cell Depending on Dielectric Anisotropy of a Liquid Crystal
- Contrast Ratio in Homogeneously Aligned Nematic Liquid Crystal Display Depending on Angle between Polarizer Axis and Optic Axis of a Liquid Crystal
- Structural Investigation of Hybrid Organic Photovoltaic Devices with Single-Walled Carbon Nanotubes
- Al2O3 Powder Coating and Surface Texturing for High Efficiency GaN-Based Light Emitting Diodes
- Improved Light Extraction of GaN-Based Light-Emitting Diodes by an Ion-Damaged Current Blocking Layer
- Cell Gap-Dependent Transmittance Characteristic in a Fringe Field-Driven Homogeneously Aligned Liquid Crystal Cell with Positive Dielectric Anisotropy
- Electrooptic Characteristics of a Fringe-Field Driven Hybrid Aligned Nematic Liquid Crystal Cell using a Liquid Crystal with Positive Dielectric Anisotropy
- Single Gap Transflective Liquid Crystal Display with Dual Orientation of Liquid Crystal
- Wide-Viewing-Angle Transflective Display Associated with a Fringe-Field Driven Homogeneously Aligned Nematic Liquid Crystal Display
- Analysis of Optimal Phase Retardation of a Fringe Field-Driven Homogeneously Aligned Nematic Liquid Crystal Cell
- GaN-Based Light-Emitting Diodes on Micro-Lens Patterned Sapphire Substrate
- Dynamic Stability of Liquid Crystal Depending on Shape of Pixel Edge in the Fringe Field Switching Mode
- Creation of a Voltage Controllable Micro-Liquid Crystal Domain Using the Atomic Force Microscope Rubbing for Surface Modification