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1 | (1) |
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2 | (27) |
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29 | (26) |
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55 | (10) |
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65 | (38) |
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Structural Integrity and Durability |
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103 | (21) |
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Comprehensive Example of Using Mechanics of Solids Methods |
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124 | |
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Engineering Thermodynamics |
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2 | (11) |
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Control Volume Applications |
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13 | (8) |
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Property Relations and Data |
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21 | (34) |
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55 | (10) |
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65 | (9) |
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Vapor and Gas Power Cycles |
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74 | (7) |
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Guidelines for Improving Thermodynamic Effectiveness |
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81 | |
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2 | (7) |
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Equations of Motion and Potential Flow |
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9 | (16) |
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Similitude: Dimensional Analysis and Data Correlation |
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25 | (15) |
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Hydraulics of Pipe Systems |
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40 | (26) |
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66 | (8) |
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External Incompressible Flows |
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74 | (10) |
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84 | (17) |
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101 | (15) |
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116 | (13) |
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Tribology, Lubrication, and Bearing Design |
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129 | (41) |
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170 | (12) |
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Liquid Atomization and Spraying |
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182 | (9) |
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191 | (27) |
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218 | (4) |
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222 | |
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2 | (11) |
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13 | (42) |
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55 | (26) |
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81 | (35) |
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116 | (58) |
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Temperature and Heat Transfer Measurements |
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174 | (25) |
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199 | (32) |
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231 | (38) |
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Non-Newtonian Fluids --- Heat Transfer |
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269 | (9) |
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278 | |
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2 | (1) |
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Fundamentals of Electric Circuits |
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2 | (14) |
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Resistive Network Analysis |
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16 | (7) |
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23 | (14) |
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37 | (15) |
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Frequency Response, Filters, and Transient Analysis |
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52 | (11) |
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63 | (24) |
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87 | (12) |
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99 | (17) |
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116 | (32) |
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Measurements and Instrumentation |
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148 | (30) |
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Electromechanical Systems |
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178 | |
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Mechanical System Controls |
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Human-Machine Interaction |
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1 | (13) |
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The Need for Control of Mechanical Systems |
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14 | (3) |
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17 | (4) |
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Control System Design and Application |
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21 | (7) |
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28 | (14) |
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Control of Distributed Generation Technologies |
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42 | |
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2 | (1) |
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3 | (2) |
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5 | (23) |
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28 | (16) |
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44 | (2) |
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46 | (8) |
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54 | (6) |
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60 | |
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2 | (16) |
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18 | (12) |
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Internal Combustion Engines |
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30 | (24) |
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54 | (17) |
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71 | (10) |
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Advanced Fossil Fuel Power Systems |
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81 | (27) |
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108 | (6) |
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114 | (7) |
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121 | (4) |
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Solar Thermal Energy Conversion |
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125 | (10) |
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135 | (15) |
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Energy Conversion of the Geothermal Resource |
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150 | (7) |
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157 | (37) |
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194 | (3) |
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Combined-Cycle Power Plants |
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197 | |
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Air-Conditioning and Refrigeration |
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2 | (7) |
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9 | (6) |
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Air-Conditioning Processes and Cycles |
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15 | (15) |
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Refrigerants and Refrigeration Cycles |
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30 | (14) |
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Outdoor Design Conditions and Indoor Design Criteria |
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44 | (4) |
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Principles of Load Calculations |
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48 | (17) |
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Air Handling Units and Packaged Units |
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65 | (10) |
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Refrigeration Components and Evaporative Coolers |
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75 | (11) |
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86 | (4) |
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90 | (6) |
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96 | (11) |
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107 | (3) |
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110 | (8) |
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118 | (4) |
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Air-Conditioning Systems and Selection |
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122 | (13) |
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Desiccant Dehumidification and Air-Conditioning |
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135 | |
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2 | (7) |
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Design of Transportation Facilities |
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9 | (9) |
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Operations and Environmental Impacts |
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18 | (6) |
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24 | (10) |
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Alternative Fuels for Motor Vehicles |
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34 | (4) |
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Electric and Hybrid Vehicles |
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38 | (9) |
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Intelligent Transportation Systems |
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47 | |
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1 | (1) |
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Elements of the Design Process |
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2 | (1) |
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2 | (24) |
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Structural Design Criteria |
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26 | (19) |
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45 | |
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1 | (17) |
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18 | (13) |
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31 | (10) |
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41 | (3) |
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44 | (16) |
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60 | (37) |
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97 | |
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2 | (1) |
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Unit Manufacturing and Assembly Processes |
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3 | (60) |
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Essential Elements in Manufacturing Processes and Equipment |
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63 | (16) |
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Design and Analysis Tools in Manufacturing |
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79 | (20) |
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99 | (10) |
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Underlying Paradigms in Manufacturing Systems and Enterprise Management for the 21st Century |
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109 | (5) |
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Electronics Manufacturing: Processes, Optimization, and Control |
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114 | |
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2 | (1) |
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Commercial Robot Manipulators |
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3 | (11) |
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14 | (8) |
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End Effectors and Tooling |
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22 | (8) |
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30 | (14) |
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Robot Programming Languages --- Robot Systems |
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44 | (6) |
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Robot Dynamics and Control |
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50 | (17) |
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Planning and Intelligent Control |
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67 | (7) |
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Design of Robotic Systems |
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74 | (7) |
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Robot Manufacturing Applications |
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81 | (5) |
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Industrial Material Handling and Process Applications of Robots |
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86 | (11) |
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Mobile, Flexible-Link, and Parallel-Link Robots |
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97 | |
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1 | (1) |
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MEMS Technology and Its Applications |
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2 | (4) |
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Microscale Manufacturing Processes |
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6 | (30) |
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36 | (32) |
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68 | (15) |
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Fluid Flow in Microdevices |
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83 | (37) |
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Solid Mechanics of Microdevices |
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120 | |
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Environmental Engineering |
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1 | (2) |
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Benchmarks and Reference Conditions |
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3 | (10) |
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Sources of Pollution and Regulations |
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13 | (6) |
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Regulations and Emission Standards |
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19 | (2) |
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Mitigation of Water and Air Pollution |
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21 | (8) |
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29 | (24) |
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53 | |
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Engineering Economics and Project Management |
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Engineering Economic Decisions |
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1 | (1) |
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Establishing Economic Equivalence |
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2 | (13) |
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Measures of Project Worth |
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15 | (11) |
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26 | (8) |
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Sensitivity and Risk Analysis |
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34 | (10) |
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44 | (5) |
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49 | |
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2 | (1) |
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Applications of Engineering Biomimetics in Nanomachines Prototyping |
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2 | (2) |
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Nanomachines Synthesis and Classification |
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4 | (2) |
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Synthesis, Design and Analysis of Nanomachines |
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6 | (1) |
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Synchronous Reluctance Nanomachines |
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7 | (3) |
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Permanent-Magnet Synchronous Nanomachines |
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10 | (4) |
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14 | (3) |
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17 | |
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2 | (31) |
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Linear Algebra and Matrices |
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33 | (6) |
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Vector Algebra and Calculus |
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39 | (4) |
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43 | (3) |
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46 | (10) |
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56 | (2) |
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58 | (2) |
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60 | (5) |
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65 | (2) |
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67 | (3) |
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70 | (11) |
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81 | (32) |
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Experimental Uncertainty Analysis |
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113 | (7) |
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120 | (9) |
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Fuzzy Sets and Fuzzy Logic |
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129 | |
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Patent Law and Miscellaneous Topics |
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Patents and Other Intellectual Property |
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2 | (9) |
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Product Liability and Safety |
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11 | (5) |
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16 | (12) |
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Mechanical Engineering Codes and Standards |
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28 | (5) |
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33 | (19) |
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52 | (17) |
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69 | (7) |
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76 | |
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A. Properties of Gases and Vapors |
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2 | (33) |
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35 | (3) |
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38 | (36) |
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74 | (1) |
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75 | |
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1 | |