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Mantawy, Islam M.; Rusch, Conner; Ghimire, Sushil; Lantz, Lucas; Dhamala, Hari; Shrestha, Bipesh; Lampert, Anthony; Khadka, Mohit; Bista, Anima; Soni, Rhytham; Shaik, Abdulu Saleem; Lujan, Eric; Boyd, Mika; Pickings, Richard; Mabrich, Alexander – Education Sciences, 2019
Educational approaches in structural engineering have focused on classical methods for solving problems with manual calculations through assignments, quizzes, and exams. The use of computational software to apply the learned knowledge has been ignored for decades. This paper describes an educational approach to tackle the lack of applicable…
Descriptors: Engineering Education, Active Learning, Student Projects, Construction (Process)
Miranda, Constanza; Goñi, Julian; Hilliger, Isabel – International Journal of Technology and Design Education, 2021
While teamwork has been a central concern in engineering education, little research has systematically examined how conflict is managed in engineering teams of students. Socio-constructivism provides a solid base to explain how teamwork can foster innovation through the use of cultural artifacts, such as "boundary objects." The purpose…
Descriptors: Engineering Education, Teaching Methods, Teamwork, International Cooperation
Wang, Jennifer; Werner-Avidon, Maia; Newton, Lisa; Randol, Scott; Smith, Brooke; Walker, Gretchen – Journal of Pre-College Engineering Education Research, 2013
The Lawrence Hall of Science, a science center, seeks to replicate real-world engineering at the "Ingenuity in Action" exhibit, which consists of three open-ended challenges. These problems encourage children to engage in engineering design processes and problem-solving techniques through tinkering. We observed and interviewed 112…
Descriptors: Engineering Technology, Engineering Education, Design, Exhibits
Bacon, Christopher M.; Mulvaney, Dustin; Ball, Tamara B.; DuPuis, E. Melanie; Gliessman, Stephen R.; Lipschutz, Ronnie D.; Shakouri, Ali – International Journal of Sustainability in Higher Education, 2011
Purpose: The purpose of this paper is to share the content and early results from an interdisciplinary sustainability curriculum that integrates theory and practice (praxis). The curriculum links new topical courses concerning renewable energy, food, water, engineering and social change with specialized labs that enhance technological and…
Descriptors: Foreign Countries, Student Projects, Socialization, Teamwork