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Peter Oluwagbenga Odewole; Tolulope Oladimeji Sobowale; Festus Osarumwense Uzzi – Design and Technology Education, 2023
The Fourth Industrial Revolution (4IR) merges the physical, digital, and biological spheres, reshaping societies and individuals worldwide in unprecedented ways. With the fast-moving globalization and rapid rate of technological development of the 4IR, the world is also facing unprecedented social, economic, and environmental challenges. As the…
Descriptors: Design, Teaching Methods, Sustainability, Technological Advancement
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Grimal, Lou; Baudry, Jules; Charraud, Pelgrim; Céret, Rémi; Troussier, Nadège – Design and Technology Education, 2022
Humanity's entrance into the Anthropocene forces us to question the role of technology because of its impacts on the environment. The stake is the viability of the Earth system for humans. Engineers producing a large part of these impacting techniques are not trained in sustainable issues (environmental, social and economic ones - in a systemic…
Descriptors: Engineering Education, Educational Change, Sustainability, Climate
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Lehtonen, Miikka J. – Design and Technology Education, 2023
Since the beginning of the 21st century, design education has been gaining momentum across disciplines as a means to equip students with skills relevant in the job market as well as to tackle wicked problems. One of the core assumptions behind integrating design education to other disciplines focuses on the need for hands-on and experiential…
Descriptors: Blended Learning, Design, Thinking Skills, Cooperative Learning
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Gibson, Michael R. – Design and Technology Education, 2016
"Designing backwards" is presented here as a means to utilize human-centered processes in diverse educational settings to help teachers and students learn to formulate and operate design processes to achieve three sequential and interrelated goals. The first entails teaching them to effectively and empathetically identify, frame and…
Descriptors: Design, Teaching Methods, Social Problems, Problem Solving