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Systematic Creative Thinking: Tools for Success
#Creativity
Creativity is a widely acclaimed attribute. A range of creativity tools are available that rely on creativity principles to enable systematic idea generation. This module builds on the first module where various types of brainstorming were introduced along with the creativity diamond framework which provides a guide to which type of creative approach to use. Here we will introduce systematic creativity tools that can be used to provoke a wide range of ideas that might not normally arise and can be used to augment your innate creativity. WHAT YOU WILL LEARN • Familiarity with a range of approaches to creativity • The principles of morphological analysis for generating ideas • the principles of invention • To be able to identify the recommended principles of invention for a given scenario of improving and worsening features • How to use the SCAMPER creative idea provocation tool • Use of the creativity diamond framework to guid what approach to creativity to use SKILLS YOU WILL GAIN • Familiarity with a range of approaches applied to creativity • Systematic idea generation and creativity • Being able to use a morphological chart to develop a range of solutions • How to produce a morphological chart • use of the TRIZ contradiction matrix in identifying principles of invention for resolving contradictions in problem solving • Application of the SCAMPER creative idea provocation tool
Coursera
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Англійська
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16
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Peter Childs
Head of the School of Design Engineering
Dyson School of Design Engineering
Peter Childs is Head of the Dyson School of Design Engineering and the Professorial Lead in Engineering Design at Imperial College London. His general interests include: creativity tools and innovation; design process and design rationale; fluid flow and heat transfer, particularly rotating flow; sustainable energy component, concept and system design; robotics. Prior to his current post at Imperial he was director of the Rolls-Royce supported University Technology Centre for Aero-Thermal Systems, director of InQbate and professor at the University of Sussex. He has contributed to over 180 refereed journal and conference papers, and several books including the Handbook on Mechanical Design Engineering (Elsevier, 2013, 2018) as well as co-authoring books on rural urban migration, inclusive sports and sports technology. He has been principal or co-investigator on contracts totalling over £30 million. His roles at Imperial include joint course director for the Innovation Design Engineering double master degree run jointly by Imperial and the Royal College of Art, and Design Lead for the Manufacturing Futures Lab. He is also Founder Director and Chief Scientific Officer at QBot Ltd.
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