1 . Introduction Of Automobile Engineering
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2 . Transmission In Automobile
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3 . Types Of Automobiles
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4 . Function Of Clutch
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5 . History Of The Automobile Engineering
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6 . Functions Of A Brake
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7 . Components For Transmission In Automobiles
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8 . Layout Of An Automobile Chassis
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9 . Disc Brakes
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10 . Main Parts Of Clutch
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11 . Major Components Of An Automobile
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12 . Classification Of Brakes
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13 . Functions Of The Automobile Components
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14 . Types Of The Clutch
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15 . Shock Absorber Design
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16 . Universal Joint
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17 . Use Of The Engines
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18 . Power Brakes
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19 . Gearbox Operation
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20 . Classification Of Automobile Engines
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21 . Air Brake System
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22 . Front Axle
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23 . Gear Box
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24 . Hydraulic Brakes
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25 . Camber
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26 . Engine Construction
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27 . Floating Caliper Brake
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28 . Toe-in
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29 . Gear Shifting Mechanism
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30 . Types Of The Starting Motors
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31 . Shock Absorber Operation
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32 . Function Of Steering System
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33 . Types Of The Gear Box
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34 . Alternator
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35 . Strut Design, Front Suspension
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36 . Automatic Transmission: Introduction And Torque Converter
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37 . Cylinder Blocks
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38 . Generator
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39 . Macpherson Strut Front Suspension System Design
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40 . Clutch Actuating Mechanism
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41 . Piston
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42 . Ignition System
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43 . Frames And Unitized Bodies
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44 . On-car Wheel Balancing
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45 . Difference Between Two-stroke And Four-stroke Cycle Engines
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46 . Lighting System
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47 . Heavy-duty Shock Absorber Design
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48 . Types Of Clutch
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49 . Merits And Demerits Of Vertical And Horizontal Engines
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50 . Ignition Timing
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51 . Live-axle Rear Suspension Systems
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52 . Gears And Components
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53 . Flywheel
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54 . Spark Plugs
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55 . Torsion Bar Suspension
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56 . Caster Angle
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57 . Reasons For Using Single Cylinder Two Stroke Air-cooled Petrol Engine On Two Wheelers
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58 . Fuel Systems
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59 . Front Suspension System Components
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60 . Gear Change Mechanisms
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61 . Gaskets
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62 . Electronic Ignition System
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63 . Shock Absorber Ratios
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64 . Four-wheel Drive
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65 . Cylinder Liner
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66 . Automobile Battery
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67 . Independent Rear Suspension Systems
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68 . Direct Shift Gearbox
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69 . Port-timing Diagram
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70 . Common Rail System
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71 . Heavy-duty Shock Absorber Design
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72 . Ackerman Mechanism
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73 . Valves
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74 . Petrol Fuel Injection Systems
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75 . High-performance Front Suspension Systems
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76 . Automatic Transmission Components
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77 . Crankshaft
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78 . Electronic Control System
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79 . Rear Suspension Systems- Introduction
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80 . Tire Design
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81 . Reasons For Using Multi-cylinder Diesel Engine For Commercial Vehicles
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82 . Different Types Of Lubrication
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83 . Front Spring Sag, Curb Riding Height, And Caster Angle
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84 . Clutch Operation
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85 . Crank Case
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86 . Diesel Fuel Injection Systems
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87 . Semi-independent Rear Suspension Systems
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88 . Toe-out
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89 . Cylinder Head
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90 . Air Supply
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91 . Electronically Controlled Shock Absorbers And Struts
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92 . Wheel Bearings
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93 . Advantages Of A Multi-cylinder Engine For The Same Power
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94 . Ignition Advance
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95 . Modified Macpherson Strut Suspension
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96 . Wheel Rims
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97 . Manifolds
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98 . Fuel Supply
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99 . Shock Absorber And Strut Design, Rear Suspension
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100 . Caster Angle
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101 . Piston Rings
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102 . Horns
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103 . Short-and-long Arm Front Suspension Systems
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104 . Constantly Variable Transmission
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105 . Connecting Rod
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106 . Viscosity
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107 . Load-leveling Shock Absorbers
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108 . Static Wheel Balance Theory
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109 . Piston Pin
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110 . Rotary Pump System
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111 . Travel-sensitive Strut
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112 . Transmission Driveline- Propshafts And Driveshafts
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113 . Tractive Effort
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114 . Distributorless Ignition System (Dis)
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115 . Dynamic Wheel Balance Theory
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116 . Merits And Demerits Of Gear Box
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117 . Gasoline Direct Injection
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118 . Run-flat Tires
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119 . Air Resistance.
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120 . Coil On Plug (Cop) Direct Ignition System
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121 . Replacement Tires
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122 . Rolling Resistance
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123 . Low Maintenance And Maintenance-free Batteries
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124 . Tire Ply And Belt Design
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125 . Gradient Resistance
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126 . Hydrogen
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127 . Tire Tread Design
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128 . Ethanol
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129 . Tire Valves
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130 . Natural Gas
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131 . Specialty Tires
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132 . Biodiesel
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133 . Tire Pressure Monitoring Systems
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134 . Liquefied Petroleum Gas
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135 . Tire Ratings And Sidewall Information
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136 . Tire Contact Area
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137 . Compact Spare Tires
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138 . The Air-conditioning System
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139 . The Compressor
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140 . The Expansion Valve System
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141 . The Condenser
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142 . Additives For Lubricants
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143 . Oil Filters
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144 . The Fixed Orifice Valve System (Cycling Clutch Orifice Tube)
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145 . Oil Pumps
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146 . A/c System Leak Testing
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147 . The Evaporator
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148 . The Basic Theory Of Cooling
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149 . The Condenser
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150 . Functions Of Lubricating Oil
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151 . Basic Control Switches
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152 . Preventive Maintenance
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153 . Lubrication System
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154 . Properties Of Lubricants
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155 . Engine Cooling-introduction
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156 . Anti-frosting Devices
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157 . Breakdown Maintenance
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158 . Initial Vehicle Inspection
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159 . Methods Of Lubrication
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160 . System Operation
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161 . Visual Inspection
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162 . The Receiver-drier/accumulator
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163 . Sight Glass
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164 . Measurement Of Brake Power
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165 . Alternatives Cycles
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166 . Performance Of Si Engines
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167 . Corrective Maintenance
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168 . Pressure Gauge Readings
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169 . Temperature Measurements
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170 . Performance Of Ci Engines
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171 . Interior Heater
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172 . Supervision
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173 . The Expansion Valve/fixed Orifice Valve
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174 . Friction
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175 . Vapour Compression Refrigeration
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176 . Cycle Time Testing
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177 . Power And Mechanical Efficiency
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178 . Predictive Maintenance Techniques
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179 . Measurement Of Exhaust Emission
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180 . Global Warming
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181 . Mean Effective Pressure And Torque
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182 . Specific Output, Volumetric Efficiency And Fuel-air Ratio (F/a)
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183 . Bsfc, Thermal Efficiency And Heat Balance
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184 . Measurement Of Friction Horse Power
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185 . The Ozone Layer
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186 . Benefits Of Predictive Maintenance
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187 . Introduction To Transfer Of Heat And Mass To The Base Metal In Gas-metal Arc Welding
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188 . Financial Implications And Cost Justification
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