Introduction |
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xv | |
Author's Preface |
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xvii | |
Acknowledgements |
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xix | |
Foreword |
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xxi | |
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1 | (48) |
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1 | (9) |
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4 | (1) |
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Realtime as Middle Ground |
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5 | (1) |
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6 | (3) |
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9 | (1) |
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10 | (35) |
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Spacecraft and the Deep Space Network |
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10 | (1) |
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11 | (2) |
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13 | (2) |
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15 | (1) |
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15 | (4) |
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Signal-to-Noise Ratio: SNR |
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19 | (2) |
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21 | (3) |
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The HEMT Low-Noise Amplifier |
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24 | (1) |
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The Maser Low-Noise Amplifier |
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24 | (2) |
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26 | (1) |
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26 | (1) |
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26 | (2) |
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28 | (1) |
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28 | (1) |
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29 | (1) |
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30 | (1) |
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Error Detection and Correction |
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31 | (3) |
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34 | (1) |
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35 | (1) |
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Pushing the Shannon Limit |
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36 | (1) |
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37 | (1) |
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Channelized Engineering data and Science data |
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38 | (2) |
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40 | (1) |
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41 | (2) |
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43 | (2) |
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45 | (4) |
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45 | (2) |
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47 | (2) |
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49 | (38) |
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49 | (2) |
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51 | (2) |
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Orbit Determination and Guidance |
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53 | (5) |
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Kepler; Newton and his Principia |
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53 | (2) |
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55 | (1) |
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56 | (1) |
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57 | (1) |
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58 | (13) |
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59 | (3) |
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Measuring the Doppler Shift |
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62 | (2) |
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64 | (2) |
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66 | (1) |
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VLBI --- Very Long Baseline Interferometry |
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67 | (3) |
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70 | (1) |
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Correction and Trim Maneuvers |
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71 | (7) |
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72 | (3) |
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75 | (3) |
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78 | (3) |
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79 | (1) |
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80 | (1) |
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A Familiar Connection Severed |
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81 | (6) |
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82 | (2) |
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84 | (3) |
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Spacecraft Attitude Control |
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87 | (32) |
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87 | (2) |
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The Attitude Control System |
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89 | (4) |
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93 | (3) |
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96 | (5) |
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96 | (3) |
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99 | (1) |
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100 | (1) |
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Attitude Control Peripherals |
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101 | (13) |
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101 | (5) |
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106 | (8) |
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Scientific Experiments with AACS |
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114 | (2) |
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AACS Faults and Protection |
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116 | (3) |
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117 | (1) |
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118 | (1) |
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119 | (24) |
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119 | (2) |
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121 | (4) |
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121 | (1) |
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122 | (1) |
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123 | (1) |
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124 | (1) |
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Interplanetary Travel Becomes Possible |
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125 | (2) |
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126 | (1) |
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Propulsion System Designs |
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127 | (12) |
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127 | (2) |
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Liquid Monopropellant Systems |
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129 | (3) |
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Liquid Bipropellant Systems |
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132 | (3) |
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135 | (1) |
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136 | (1) |
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136 | (3) |
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139 | (4) |
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139 | (2) |
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141 | (2) |
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143 | (38) |
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143 | (1) |
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143 | (1) |
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Electrical Power Subsystem |
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144 | (11) |
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144 | (1) |
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145 | (3) |
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148 | (2) |
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150 | (3) |
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Power Conditioning and Distribution |
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153 | (2) |
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155 | (1) |
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155 | (4) |
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155 | (1) |
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156 | (1) |
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156 | (1) |
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157 | (1) |
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Pre-Launch Structural Testing |
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158 | (1) |
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Command and Telemetry Subsystem |
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159 | (2) |
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159 | (1) |
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159 | (1) |
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160 | (1) |
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160 | (1) |
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161 | (1) |
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161 | (4) |
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162 | (1) |
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Fault-Tolerant Architecture |
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162 | (1) |
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Fault-Protection Monitors |
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163 | (1) |
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Fault-Protection Responses |
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164 | (1) |
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164 | (1) |
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165 | (1) |
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Thermal Control Subsystem |
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165 | (9) |
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166 | (2) |
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168 | (1) |
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168 | (1) |
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168 | (4) |
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172 | (1) |
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173 | (1) |
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Mechanical Devices Subsystem |
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174 | (3) |
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174 | (2) |
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176 | (1) |
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177 | (4) |
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177 | (1) |
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178 | (3) |
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Science Instruments and Experiments |
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181 | (60) |
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182 | (1) |
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183 | (1) |
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183 | (36) |
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183 | (1) |
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The Questions and the Instruments |
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184 | (2) |
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Imaging Science Instruments |
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186 | (14) |
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200 | (1) |
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Microwave Radiometers and Scatterometers |
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201 | (1) |
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Optical Spectroscopic Instruments |
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202 | (10) |
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212 | (2) |
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Atmospheric Analysis Instruments |
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214 | (1) |
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215 | (1) |
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216 | (1) |
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Radio and Plasma Wave Detectors |
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217 | (1) |
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Impact and Dust Detectors |
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217 | (1) |
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Charged Particle Detectors |
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218 | (1) |
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219 | (1) |
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In-Flight Science Experiments |
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219 | (8) |
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Solar and Stellar Occultations |
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219 | (1) |
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Radio Science Occultations |
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220 | (2) |
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Radio Science Celestial Mechanics Experiments |
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222 | (1) |
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Superior Conjunction Experiments |
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223 | (1) |
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Radio Science Gravitational Radiation Searches |
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224 | (1) |
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Bistatic Radio Science Observations |
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225 | (1) |
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225 | (1) |
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Calibrations and Ground Truth |
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226 | (1) |
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227 | (14) |
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Television, Radio, and Newspapers |
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228 | (1) |
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228 | (1) |
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229 | (1) |
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Meetings of Scientific Institutions |
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230 | (1) |
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231 | (1) |
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232 | (1) |
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232 | (2) |
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234 | (7) |
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Mission Formulation and Implementation |
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241 | (40) |
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Announcement of Opportunity |
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241 | (2) |
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242 | (1) |
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242 | (1) |
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242 | (1) |
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Spacecraft Classifications |
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243 | (3) |
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Engineering Demonstration Spacecraft |
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243 | (1) |
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244 | (1) |
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244 | (1) |
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245 | (1) |
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245 | (1) |
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Lander and Penetrator Spacecraft |
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245 | (1) |
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245 | (1) |
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Communications and Navigation Spacecraft |
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246 | (1) |
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246 | (1) |
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246 | (20) |
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247 | (1) |
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247 | (1) |
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248 | (1) |
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248 | (3) |
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251 | (1) |
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252 | (1) |
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Pre-phase A: Concept studies |
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253 | (6) |
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Phase A: Concept and Technology Development |
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259 | (1) |
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Phase B: Preliminary Design and Technology Completion |
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259 | (3) |
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Phase C: Final Design and Fabrication |
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262 | (1) |
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Phase D: Assembly, Integration and Test, Launch |
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262 | (4) |
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266 | (15) |
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Phase E: Flight Operations and Data Analysis |
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266 | (10) |
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276 | (2) |
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278 | (1) |
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278 | (3) |
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281 | (12) |
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Spacecraft Bus Technologies |
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281 | (4) |
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285 | (2) |
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Gravitational Wave Astronomy |
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285 | (1) |
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Earth-mass Exoplanet Discoveries |
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285 | (1) |
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286 | (1) |
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286 | (1) |
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Improving Sensor Capability |
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286 | (1) |
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Print and Electronic Media |
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287 | (1) |
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288 | (1) |
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Earth-Protective Measures |
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288 | (1) |
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289 | (4) |
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290 | (1) |
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291 | (2) |
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Appendix A: Typical Spacecraft |
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293 | (26) |
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Appendix B: Typical Instruments |
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319 | (14) |
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333 | (8) |
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334 | (7) |
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Appendix D: The Electromagnetic Spectrum |
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341 | (6) |
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341 | (6) |
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347 | (22) |
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368 | (1) |
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Appendix F: Units of Measure, Abbreviations, Greek Alphabet |
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369 | (10) |
Glossary |
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379 | (46) |
Index |
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425 | |