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1 Interactive Design: Then and Now |
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1 | (6) |
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1.1 Short History of Creation |
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1 | (1) |
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2 | (1) |
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1.3 Interactive Support to Decision Making: a Virtual Way |
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3 | (4) |
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2 Integrated Design and Manufacturing in Mechanical Engineering |
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7 | (38) |
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2.1 Product Design Process |
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7 | (2) |
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2.2 Multidisciplinary Approach |
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9 | (2) |
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11 | (2) |
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2.4 Collaborative Product Design and Manufacturing |
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13 | (3) |
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2.5 Knowledge in Engineering |
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16 | (3) |
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2.6 Advanced Manufacturing |
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19 | (7) |
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2.7 Inspection and Reverse Engineering Techniques |
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26 | (3) |
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2.8 Product Lifecycle Management |
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29 | (2) |
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31 | (2) |
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2.10 Tolerancing in Design and Manufacturing |
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33 | (3) |
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36 | (2) |
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2.12 Process and Production Management |
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38 | (3) |
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41 | (4) |
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3 Interactive Product Design |
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45 | (40) |
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45 | (8) |
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3.1.1 Interactive product design through the lifecycle |
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46 | (2) |
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3.1.2 Needed requirements for the interactive design |
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48 | (4) |
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3.1.3 Feedback of the industrial engineering support systems and outlooks |
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52 | (1) |
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3.2 Interactive Simulation for Design |
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53 | (2) |
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3.3 Interfaces for Interactive Design |
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55 | (2) |
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3.4 Team and Process Interactive Management |
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57 | (3) |
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3.5 Interactive Virtual Representation |
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60 | (3) |
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3.6 Virtual and Geometric Models |
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63 | (2) |
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65 | (3) |
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3.8 Models for Interactive Design: Techniques and Qualification |
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68 | (2) |
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3.9 Interactive Exploration of Design Spaces |
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70 | (3) |
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3.10 CAE, CAD and Virtual Reality |
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73 | (2) |
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3.11 Behavioural Simulation |
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75 | (2) |
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3.12 Assistance and Virtual Reality |
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77 | (3) |
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3.13 Robust Manufacturing |
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80 | (3) |
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83 | (2) |
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4 Green Engineering, Design and Innovation |
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85 | (8) |
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5 Global Design and Manufacturing |
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93 | (10) |
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93 | (2) |
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93 | (1) |
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5.1.2 Current academic and industrial solutions |
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94 | (1) |
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5.1.3 Design rationale issue and expected trends |
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94 | (1) |
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5.2 Global Design Tools, Methods and Techniques |
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95 | (3) |
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5.3 Extended and Virtual Factory |
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98 | (2) |
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5.4 Information Technology for Global Design and Manufacture |
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100 | (3) |
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6 Virtual environments and prototyping for human health and safety |
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103 | (10) |
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103 | (2) |
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6.2 Human Factors in Virtual Maintenance and Manufacturing |
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105 | (3) |
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6.3 Interactive Robotic Simulation in Cooperation Scenarios |
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108 | (2) |
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6.4 Virtual Prototyping in Medicine |
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110 | (3) |
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7 Product and Interaction Design Environments for the Future |
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113 | (10) |
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113 | (1) |
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7.2 Advanced Prototyping for Interaction Design |
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114 | (2) |
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7.3 Virtual and Mixed Reality for Design |
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116 | (2) |
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7.4 Advanced Tools for Early Product Design |
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118 | (5) |
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8 TRIZ and Intellectual Property Management |
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123 | (6) |
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123 | (2) |
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8.2 Developments on Creativity |
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125 | (4) |
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9 Methods and Simulation Tools for Assembly Design and Manufacturing |
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129 | (6) |
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129 | (1) |
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9.2 Developments on Tools for Assembly Design and Manufacturing |
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130 | (5) |
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10 European Qualification and Certification for the Lifelong Learning |
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135 | |
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135 | (1) |
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10.2 ECQA and EMIRAcle for Lifelong Learning |
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136 | (3) |
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136 | (1) |
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137 | (1) |
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10.2.3 The ECQA Qualification and Certification Schema |
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138 | (1) |
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10.3 Modern Job Roles in Innovative Product Development |
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139 | (3) |
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10.3.1 ECQA Certified Integrated Design Engineer |
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139 | (1) |
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10.3.2 ECQA Certified Lean Six Sigma Expert |
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140 | (1) |
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10.3.3 ECQA Certified EU Researcher-Entrepreneur |
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140 | (2) |
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10.4 Training and Certification System |
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142 | (3) |
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143 | (1) |
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144 | (1) |
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10.5 Involvement of AIP-PRIMECA Network |
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145 | (1) |
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146 | |