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Mueller, Jenna L.; Dotson, Mary Elizabeth; Dietzel, Jennifer; Peters, Jenna; Asturias, Gabriela; Cheatham, Amelia; Krieger, Marlee; Taylor, Baishakhi; Broverman, Sherryl; Ramanujam, Nirmala – Advances in Engineering Education, 2020
Background: Engineering design is widely recognized as a field that can generate key innovations for complex problems, such as those elucidated in the Sustainable Development Goals (SDGs). However, engineering design training is not widely accessible to the global community, particularly to people experiencing the challenges that the SDGs are…
Descriptors: Design, Human Factors Engineering, Engineering Education, Sustainable Development
Reddy, Gudur Raghavendra; McDonagh, Deana; Harris, Maurita T.; Rogers, Wendy A. – Design and Technology Education, 2021
There is an increasing interest in design and creative thinking processes in the Sciences, Technology, Engineering, and Mathematics (STEM) and health education disciplines. Many new degree programs are integrating design thinking into their syllabi, with the intention of bringing creative problem-solving methods to these disciplines. In reality,…
Descriptors: Design, Thinking Skills, Creative Thinking, Problem Solving
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
Bedny, Gregory Z.; Harris, Steven Robert – Mind, Culture, and Activity, 2005
This article offers an introduction to the central concepts and principles of the Systemic-Structural Theory of Activity (SSTA), an activity-theoretical approach specifically tailored to the analysis and design of human work. In activity theory, cognition is understood both as a process and as a structured system of actions. Building on the…
Descriptors: Human Factors Engineering, Design, Problem Solving, Man Machine Systems
Education Development Center, Inc., Newton, MA. – 1974
This USMES unit challenges students to find a way to design or make changes in things that they use or wear so that there will be a good fit. The teacher resource book for the Designing For Human Proportions unit contains five sections. The first section describes the USMES approach to student-initiated investigations of real problems, including a…
Descriptors: Curriculum, Design, Elementary Education, Elementary School Mathematics