Series Editor's Foreword |
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xi | |
About the authors |
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xiii | |
Preface |
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xv | |
Acknowledgements |
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xvii | |
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1 | (10) |
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1 | (2) |
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Emissive and nonemissive displays |
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3 | (1) |
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3 | (3) |
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3 | (2) |
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5 | (1) |
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5 | (1) |
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Spatial and temporal characteristics |
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5 | (1) |
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Efficiency and power consumption |
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6 | (1) |
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6 | (1) |
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Applications of flat panel displays |
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6 | (3) |
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7 | (1) |
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7 | (1) |
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8 | (1) |
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Organic light-emitting devices |
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8 | (1) |
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9 | (1) |
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9 | (2) |
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Color science and engineering |
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11 | (20) |
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11 | (1) |
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12 | (3) |
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15 | (12) |
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15 | (1) |
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CIE 1931 colorimetric observations |
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16 | (3) |
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CIE 1976 uniform color system |
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19 | (2) |
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Color saturation and color gamut |
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21 | (1) |
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22 | (1) |
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Sunlight and blackbody radiators |
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22 | (1) |
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Backlights of transmissive displays |
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23 | (1) |
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24 | (1) |
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25 | (2) |
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Production and reproduction of colors |
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27 | (1) |
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28 | (1) |
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28 | (3) |
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31 | (26) |
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31 | (1) |
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Basic concepts of crystallized semiconductor materials |
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31 | (7) |
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Band structure of crystallized semiconductors |
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32 | (4) |
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Intrinsic and extrinsic semiconductors |
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36 | (2) |
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Disordered semiconductors |
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38 | (5) |
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39 | (2) |
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41 | (2) |
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Thin-film transistor characteristics |
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43 | (4) |
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Passive matrix and active matrix driving schemes |
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47 | (6) |
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Non-silicon-based thin-film transistors |
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53 | (2) |
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55 | (1) |
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56 | (1) |
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57 | (52) |
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57 | (1) |
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Transmissive thin-film transistor liquid crystal displays |
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58 | (2) |
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60 | (10) |
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Phase transition temperatures |
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60 | (1) |
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61 | (1) |
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62 | (3) |
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65 | (1) |
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65 | (1) |
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66 | (1) |
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67 | (1) |
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67 | (1) |
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68 | (2) |
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70 | (1) |
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71 | (2) |
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72 | (1) |
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Voltage-dependent transmittance |
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73 | (1) |
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73 | (5) |
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74 | (1) |
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75 | (1) |
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Film-compensated TN cells |
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76 | (2) |
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78 | (3) |
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78 | (1) |
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Voltage-dependent transmittance |
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79 | (1) |
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79 | (1) |
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80 | (1) |
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81 | (2) |
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83 | (5) |
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Voltage-dependent transmittance |
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83 | (1) |
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83 | (2) |
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Overdrive and undershoot voltage method |
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85 | (1) |
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Multidomain vertical alignment |
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86 | (2) |
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Optically compensated bend cell |
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88 | (3) |
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Voltage-dependent transmittance |
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88 | (1) |
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Compensation films for OCB |
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89 | (2) |
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91 | (1) |
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Transflective liquid crystal displays |
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91 | (10) |
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91 | (2) |
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Dual cell gap transflective LCDs |
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93 | (2) |
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Single cell gap transflective LCDs |
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95 | (6) |
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101 | (1) |
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101 | (2) |
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103 | (6) |
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109 | (28) |
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109 | (1) |
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109 | (3) |
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110 | (1) |
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Penning reaction and Paschen curve |
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111 | (1) |
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112 | (1) |
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112 | (5) |
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112 | (1) |
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113 | (2) |
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115 | (2) |
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117 | (3) |
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118 | (1) |
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118 | (1) |
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119 | (1) |
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119 | (1) |
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120 | (6) |
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121 | (1) |
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121 | (1) |
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121 | (1) |
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122 | (2) |
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124 | (2) |
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Assembly and aging techniques |
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126 | (2) |
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Sealing layer formation and panel alignment |
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126 | (1) |
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Sealing, gas purging and display gas filling |
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127 | (1) |
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128 | (1) |
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128 | (4) |
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129 | (1) |
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130 | (1) |
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130 | (2) |
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132 | (1) |
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132 | (1) |
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132 | (5) |
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137 | (40) |
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137 | (3) |
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140 | (7) |
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AlGaAs and AlGaInP material systems for red and yellow LEDs |
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142 | (1) |
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GaN-based systems for green, blue and UV LEDs |
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143 | (2) |
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145 | (2) |
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147 | (14) |
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148 | (1) |
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149 | (3) |
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152 | (1) |
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Heterojunction structures |
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153 | (1) |
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Quantum well, quantum wire and quantum dot structures |
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154 | (1) |
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Light-emitting characteristics |
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155 | (1) |
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156 | (1) |
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157 | (1) |
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158 | (3) |
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161 | (7) |
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161 | (3) |
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Process flow and device structure design |
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164 | (1) |
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Extraction efficiency improvement |
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165 | (2) |
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167 | (1) |
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168 | (5) |
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Traffic signals, electronic signage and huge displays |
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169 | (1) |
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169 | (3) |
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172 | (1) |
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173 | (1) |
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174 | (3) |
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Organic light-emitting devices |
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177 | (56) |
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177 | (1) |
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Energy states in organic materials |
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178 | (1) |
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179 | (10) |
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180 | (2) |
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Fluorescence and phosphorescence |
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182 | (1) |
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183 | (1) |
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184 | (1) |
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184 | (1) |
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Excimer and exciplex formation |
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185 | (2) |
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187 | (1) |
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Quantum yield calculation |
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187 | (2) |
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Carrier injection, transport and recombination |
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189 | (6) |
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Richardson-Schottky thermionic emission |
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190 | (2) |
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SCLC, TCLC and PF mobility |
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192 | (1) |
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193 | (1) |
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Electromagnetic wave radiation |
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193 | (2) |
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Structure, fabrication and characterization |
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195 | (23) |
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196 | (1) |
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197 | (1) |
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Dopant in the matrix as the EML |
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198 | (2) |
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HIL, EIL and p-i-n structure |
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200 | (3) |
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Top-emission and transparent OLEDs |
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203 | (1) |
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204 | (1) |
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205 | (1) |
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206 | (3) |
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Encapsulation and passivation |
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209 | (1) |
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Device structures for AM driving |
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210 | (1) |
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Electrical and optical characteristics |
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211 | (2) |
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213 | (5) |
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Improvement of internal quantum efficiency |
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218 | (6) |
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218 | (2) |
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220 | (2) |
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222 | (2) |
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Improvement of extraction efficiency |
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224 | (1) |
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225 | (1) |
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226 | (7) |
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233 | (26) |
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233 | (1) |
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Physics of field emission |
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233 | (4) |
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Work Junction and field enhancement |
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233 | (3) |
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236 | (1) |
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FED structure and display mechanism |
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237 | (1) |
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238 | (6) |
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239 | (1) |
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240 | (3) |
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Surface conduction emitter |
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243 | (1) |
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244 | (3) |
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Field emission array plate techniques |
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247 | (1) |
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Phosphor plate techniques |
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248 | (1) |
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Assembly and aging techniques |
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249 | (4) |
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251 | (1) |
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Sealing layer formation and panel alignment |
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251 | (1) |
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252 | (1) |
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Evacuation and sealing off |
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252 | (1) |
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253 | (1) |
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253 | (1) |
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254 | (1) |
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254 | (5) |
Index |
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259 | |
Foreword |
|
vi | |
Preface |
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viii | |
Acknowledgements |
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xiii | |
Introduction |
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1 | (10) |
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11 | (110) |
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The foundations: a framework for practice when using online counselling skills |
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13 | (17) |
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Establishing an online presence and online relationship |
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30 | (25) |
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55 | (21) |
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Online listening, attunement and attending to the client |
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76 | (23) |
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Establishing and maintaining an open dialogue |
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99 | (22) |
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PART II PROFESSIONAL CONSIDERATIONS |
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121 | (56) |
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Online assessment and contracting |
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123 | (20) |
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Professional considerations in online practice |
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143 | (16) |
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Professional guidelines for online practice |
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159 | (18) |
Conclusion |
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177 | (10) |
Index |
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187 | |