About the Author |
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xv | |
Foreword |
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xvii | |
Preface |
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xix | |
Acknowledgements |
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xxi | |
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1 | (2) |
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Chapter 2 Origin of the Universe |
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3 | (38) |
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Verse from the Ancient India |
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3 | (2) |
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5 | (1) |
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Great Indian Saints (Scientists) |
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6 | (2) |
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Emerging New Scientific Thoughts on the Universe |
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8 | (12) |
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General Theory of Relativity |
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9 | (1) |
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10 | (2) |
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Proving Einstein's Theory |
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12 | (1) |
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Proved Einstein's Theories |
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12 | (1) |
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13 | (1) |
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13 | (1) |
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13 | (1) |
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14 | (1) |
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CERN - Finding the GOD Particle |
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14 | (1) |
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15 | (1) |
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The Redshift - Our Expanding Universe |
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16 | (1) |
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Fundamental Physical Forces |
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17 | (1) |
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18 | (1) |
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18 | (1) |
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19 | (1) |
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19 | (1) |
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19 | (1) |
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20 | (1) |
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20 | (11) |
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20 | (1) |
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Stellar Evolution - Lifecycle of a Star |
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21 | (1) |
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22 | (3) |
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Dark Energy and Dark Matter |
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25 | (1) |
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What the Universe Is Made Of |
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25 | (1) |
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25 | (1) |
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Background to Dark Energy |
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26 | (1) |
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26 | (2) |
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The Dynamics of Universe - It Will Never Shrink |
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28 | (1) |
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28 | (1) |
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28 | (2) |
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30 | (1) |
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Milky way and Solar System |
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31 | (1) |
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32 | (3) |
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KEPLER'S LAWS - Orbits of Planets |
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32 | (2) |
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34 | (1) |
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35 | (4) |
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37 | (2) |
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39 | (1) |
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40 | (1) |
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40 | (1) |
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Chapter 3 Brief History of Rockets |
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41 | (22) |
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41 | (1) |
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42 | (1) |
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First Metal Rockets from India |
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42 | (2) |
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44 | (1) |
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Pioneer of Cosmonautics: Equation |
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44 | (1) |
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44 | (1) |
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Tsiolkovsky, the Father of Astronautics |
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45 | (2) |
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Tsiolkovsky's Rocket Equation |
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45 | (2) |
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Robert H Goddard (1882-1945) |
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47 | (2) |
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Hermann Oberth (1894-1989) |
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49 | (2) |
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51 | (3) |
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51 | (2) |
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53 | (1) |
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54 | (1) |
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55 | (1) |
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55 | (1) |
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China's Tiangong Space Station |
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56 | (1) |
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Satellites in Brief (Details in Separate Chapter) |
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56 | (1) |
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Earth Observation Satellites |
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56 | (1) |
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Communication, Navigation |
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56 | (1) |
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Satellite Launch Vehicles |
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57 | (1) |
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57 | (1) |
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Launch Vehicles of the World |
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58 | (3) |
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World Rockets at a Glance |
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61 | (2) |
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Chapter 4 Rocket Principles |
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63 | (18) |
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What Is a Rocket? Basic Rocket Science |
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63 | (1) |
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63 | (2) |
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65 | (3) |
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Newton's First Law - "The Law of Inertia" |
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65 | (1) |
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Newton's Second Law - "F = ma" |
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66 | (2) |
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Newton's Third Law - "The Law of Action and Reaction" |
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68 | (1) |
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Forces on a Rocket during Initial Flight |
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68 | (2) |
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Centre of Gravity and Centre of Pressure |
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69 | (1) |
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70 | (8) |
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70 | (2) |
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72 | (1) |
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73 | (1) |
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73 | (1) |
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Incremental Velocity - The Ideal Rocket Equation (ref. NASA) |
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74 | (3) |
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Valid Assumptions for an Ideal Rocket |
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77 | (1) |
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Staging/Multistage Rockets |
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78 | (3) |
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Chapter 5 Rocket Systems Development |
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81 | (34) |
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Rocket Subsystems and Components |
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81 | (2) |
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83 | (7) |
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83 | (1) |
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Large Solid Propellant Booster |
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83 | (2) |
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85 | (2) |
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Liquid Propellant Rockets |
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87 | (1) |
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88 | (1) |
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Types of Liquid Propulsion |
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89 | (1) |
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Cryogenic Rocket Engines (LOX +LH2) |
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90 | (6) |
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Semi-cryogenic Rocket Engines |
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92 | (1) |
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ISRO Semi-cryogenic Engine (SCE-200) |
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93 | (3) |
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96 | (4) |
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Supersonic-Combustion Ramjet (Scramjet) |
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98 | (1) |
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99 | (1) |
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Mach Number vs. Specific Impulse |
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100 | (1) |
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100 | (1) |
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101 | (1) |
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101 | (2) |
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103 | (1) |
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104 | (1) |
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Casing for Liquid Propellant Stages |
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105 | (1) |
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Aluminam-Lithium Casing for Falcon 9 (2010) |
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105 | (1) |
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105 | (2) |
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106 | (1) |
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Different Types of Controls |
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107 | (2) |
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109 | (1) |
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Satellite Attitude Control |
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109 | (1) |
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109 | (1) |
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110 | (1) |
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111 | (1) |
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111 | (1) |
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SINS (Stabilised Platform INS) |
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111 | (3) |
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Guidance Sensors Accuracy and Applications |
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114 | (1) |
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Chapter 6 Rocket Design Methodology, Test and Evaluation, World Launch Sites |
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115 | (14) |
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Launch Vehicle Design Methodology |
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115 | (1) |
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116 | (4) |
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Launch Vehicle Design - A Simplified Form |
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116 | (1) |
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117 | (1) |
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118 | (1) |
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118 | (1) |
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118 | (1) |
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118 | (1) |
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Sequence of Tasks Before Flight |
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118 | (1) |
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Development of Design and Operations Software for SLV-3 |
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119 | (1) |
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Trajectory Design of ISRO's Mars Mission |
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120 | (2) |
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120 | (1) |
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120 | (1) |
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121 | (1) |
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Human Mission to Mars (Inter Planetary Travel) |
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122 | (2) |
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Wind Tunnel Testing and CFD |
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123 | (1) |
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The Final Choice is Space Launch System (SLS) for Moon, Mars |
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123 | (1) |
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Van Allen Radiation Belts |
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124 | (1) |
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124 | (5) |
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Chapter 7 Satellites, Orbits and Missions |
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129 | (20) |
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129 | (1) |
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SPUTNIK-1 and the Dawn of the Space Age |
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129 | (1) |
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130 | (1) |
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130 | (2) |
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Orbital Velocity of Satellite |
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131 | (1) |
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Minimum Orbit - First Cosmic Velocity |
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131 | (1) |
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132 | (5) |
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132 | (1) |
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133 | (1) |
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133 | (1) |
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Geo Stationary Orbit (Arthur C. Clarke Orbit) |
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133 | (3) |
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Velocity Requirement for Orbits and Escape from Earth |
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136 | (1) |
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137 | (1) |
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137 | (1) |
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138 | (1) |
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Earth Observation Satellites |
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139 | (1) |
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140 | (1) |
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Indian Regional Navigation Satellite Systems (IRNSS)-NavIC |
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140 | (1) |
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141 | (1) |
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Space Environment Hazards |
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142 | (1) |
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142 | (1) |
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142 | (1) |
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142 | (1) |
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143 | (1) |
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143 | (3) |
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Other Types of Satellites |
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143 | (3) |
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146 | (3) |
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Chapter 8 Advances in Space Technologies |
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149 | (28) |
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Can We Travel Faster than Light? |
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149 | (1) |
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150 | (1) |
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150 | (1) |
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Types of Electric Propulsion |
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151 | (1) |
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151 | (1) |
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152 | (10) |
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Electromagnetic/Plasma Engine |
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153 | (1) |
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153 | (1) |
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153 | (1) |
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154 | (1) |
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155 | (1) |
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HET Principle of Operation |
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156 | (1) |
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157 | (1) |
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157 | (1) |
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157 | (1) |
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Cylindrical Hall Thrusters |
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158 | (1) |
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External Discharge Hall Thruster |
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158 | (1) |
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Nanotechnology in Electric Propulsion Thrusters |
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159 | (1) |
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Magneto Plasma Rocket Propulsion (NASA) |
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160 | (2) |
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Nuclear Propulsion Rockets for Space Missions |
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162 | (3) |
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A NERVA Solid-core Design |
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162 | (2) |
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164 | (1) |
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Gas Core - Closed Cycle and Open Cycle Figure 8.9 |
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164 | (1) |
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Bimodal Nuclear Thermal Rockets |
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165 | (1) |
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Solar Electric Propulsion (SEP) |
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165 | (2) |
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167 | (1) |
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Solar and Laser Powered Interstellar Sail |
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167 | (7) |
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Hypersonic Transportation |
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168 | (2) |
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170 | (1) |
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Clean Energy Through Space |
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171 | (1) |
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Artificial Intelligence and Robotic Spacecraft Development |
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172 | (1) |
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172 | (1) |
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NASA's Autonomous Science Experiment |
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173 | (1) |
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Artificial Intelligence Flight Adviser |
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173 | (1) |
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Stereo Vision for Collision Avoidance |
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173 | (1) |
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174 | (1) |
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Robotic Spacecraft Development |
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174 | (1) |
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Radioisotope Thermoelectric Generators |
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174 | (1) |
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174 | (2) |
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176 | (1) |
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Chapter 9 Environment: Protection of Earth and Sustainable Development |
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177 | (22) |
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Challenges for the Space Community |
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177 | (1) |
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178 | (5) |
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Protection of Earth from Risky Asteroids |
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179 | (1) |
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Asteroids Collision Avoidance Strategies |
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179 | (1) |
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Clearing the Space Debris |
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180 | (3) |
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183 | (1) |
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Space Systems Awareness and Comprehensive Space Security |
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183 | (1) |
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184 | (1) |
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Man-Contributed Threats on Land |
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184 | (7) |
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184 | (1) |
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185 | (2) |
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Consequences of Global Warming |
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187 | (1) |
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187 | (1) |
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188 | (1) |
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189 | (1) |
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190 | (1) |
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190 | (1) |
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Geospatial Technologies for Sustainable Development and Empowerment |
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191 | (8) |
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191 | (1) |
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192 | (1) |
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Basic Technologies Used in Precision Farming |
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193 | (1) |
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Information on Growth Stages |
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194 | (1) |
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Field Zoning Based on the Productivity Level |
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194 | (1) |
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194 | (1) |
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Geographic Information Systems |
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194 | (1) |
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195 | (1) |
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196 | (1) |
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Bhuvan - A Unique Gateway to Indian Earth Observation Data and Services |
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196 | (1) |
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197 | (1) |
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197 | (2) |
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Chapter 10 Exoplanets, Earth 2.0 |
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199 | (10) |
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Exoplanets in Liveable Zones |
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199 | (7) |
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199 | (1) |
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200 | (1) |
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201 | (1) |
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202 | (1) |
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202 | (1) |
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203 | (3) |
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206 | (3) |
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206 | (1) |
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207 | (1) |
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208 | (1) |
Epilogue |
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209 | (2) |
Glossary |
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211 | (4) |
References |
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215 | (8) |
Index |
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223 | |