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Beagon, Una; Kövesi, Klara; Tabas, Brad; Nørgaard, Bente; Lehtinen, Riitta; Bowe, Brian; Gillet, Christiane; Spliid, Claus Monrad – European Journal of Engineering Education, 2023
Despite the emerging discussions about the growing role of engineers in achieving the Sustainable Development Goals (SDGs), there is a lack of agreement on which competences should be prioritised to prepare engineering students to resolve future sustainability challenges. This study examined and compared the views of key stakeholders of…
Descriptors: Engineering Education, Barriers, Sustainable Development, Objectives
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Pratt, Kyle – Tech Directions, 2011
In Mr. Wood's technology class, students learned about many aspects of engineering, including design of a product, teamwork, testing hypotheses, and testing the final product. In this article, the author describes how his class, particularly his team, applied everything they learned about the process to their kayak design challenge using the IDEAL…
Descriptors: Problem Solving, Teamwork, Program Descriptions, Program Design
Hoelscher, H. E. – Journal of Engineering Education, 1972
Descriptors: College Science, Engineering Education, Problem Solving, Program Development
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Shelly, Richard W.; Cannaday, John E., Jr.; Weddle, D. Kenneth – NASSP Bulletin, 1997
Describes the development of product design engineering, a successful student-centered interdisciplinary elective that blends critical thinking with curriculum integration, authentic assessment, practical problem solving, and hands-on engagement in a Virginia high school. The goal is to analyze the meaning of engineering as a profession and…
Descriptors: Critical Thinking, Elective Courses, Engineering Education, Experiential Learning
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Van Kasteren, Johannes M. N. – European Journal of Engineering Education, 1996
Reports the development and implementation of a multi-disciplinary course on sustainable development within engineering education. Students from different disciplines cooperate with each other in a project that aims to find more sustainable solutions for an environmental issue or problem. (DDR)
Descriptors: College Curriculum, Course Content, Educational Strategies, Engineering Education
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Sidhu, S. Manjit; Selvanathan, N. – Campus-Wide Information Systems, 2005
Purpose: To expose engineering students to using modern technologies, such as multimedia packages, to learn, visualize and solve engineering problems, such as in mechanics dynamics. Design/methodology/approach: A multimedia problem-solving prototype package is developed to help students solve an engineering problem in a step-by-step approach. A…
Descriptors: Engineering Education, Mechanical Skills, Mechanics (Physics), Learning Modules
Walling, Derald D.; White, John T. – Gifted Child Today (GCT), 1988
The number of American versus foreign-born students studying mathematics, engineering, and physics in U.S. graduate schools is declining. A program developed at Texas Tech University's Department of Mathematics offers courses in these areas to high-ability secondary-school students, to acquaint them with career opportunities and exciting…
Descriptors: Academically Gifted, Advanced Courses, Career Exploration, College Programs