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Yimin Zhu; Amirhosein Jafari; Amir H. Behzadan; Raja R. A. Issa – Journal of Civil Engineering Education, 2024
The architecture, engineering, and construction (AEC) education communities are increasingly facing challenges caused by social, technological, economic, environmental, and political changes. Addressing these issues requires AEC educators and practitioners to systematically rethink and reform many of their current practices. Anecdotal evidence in…
Descriptors: Architectural Education, Engineering Education, Vocational Education, Construction Industry
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Niever, Manuel; Richter, Thilo; Duehr, Katharina; Wilmsen, Miriam; Lanz, Laura; Walter, Benjamin; Albers, Albert; Hahn, Carsten – Athens Journal of Education, 2020
The working environment of future university graduates is characterized by highly dynamic and complex product development processes. In addition to disciplinary competence, it is essential to build up methodical and social competence as well as to foster the elaboration and creativity potential of students. In order to meet industrial requirements…
Descriptors: Foreign Countries, Case Method (Teaching Technique), Active Learning, Engineering Education
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Cargnin-Stieler, Marinez; Malheiro, M. Teresa; Alves, Anabela C.; Lima, Rui M.; Teixeira, Marcelo C. M. – Advances in Engineering Education, 2019
This paper aims to study ways of contributing to the development of Calculus through a Project-Based Learning (PBL) approach, which involves students in their first semester of the Integrated Master's program in Industrial Engineering and Management (IEM) at the University of Minho. The study presents the analysis of forty-two interdisciplinary…
Descriptors: Foreign Countries, Calculus, Problem Based Learning, Engineering Education
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Gómez Puente, Sonia M.; van Eijck, Michiel; Jochems, Wim – International Journal of Technology and Design Education, 2013
Design-based learning (DBL) is an educational approach grounded in the processes of inquiry and reasoning towards generating innovative artifacts, systems and solutions. The approach is well characterized in the context of learning natural sciences in secondary education. Less is known, however, of its characteristics in the context of higher…
Descriptors: Literature Reviews, Learning Strategies, Design, Natural Sciences
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Magana, Alejandra; Newby, Timothy; Brophy, Sean – Journal of Technology and Teacher Education, 2012
Education in nanotechnology presents major challenges in science literacy. One of these challenges relates to conveying size and scale-related concepts. Because of the potential difficulties in conveying concepts and ideas that are not visible to the naked eye, multimedia for learning could be an appropriate vehicle to deliver curricular materials…
Descriptors: Educational Technology, Instructional Design, Learning Strategies, Multimedia Materials
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Wolmarans, Nicky; Collier-Reed, Brandon I. – African Journal of Research in Mathematics, Science and Technology Education, 2010
This article draws on Gee's notions of Discourse and specifically Discourse Models to explore Engineering Problem Solving1 and the different ways in which it can be understood in an engineering context. After Gee we attempt to identify aspects of doing, being and valuing that underpin people's Problem Solving Discourse Models. Interviews with…
Descriptors: Problem Solving, Introductory Courses, Engineering Education, Discourse Modes
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Fuentes, Arturo A.; Freeman, Robert; Crown, Stephen; Kypuros, Javier; Mahdi, Hashim – New Directions for Teaching and Learning, 2006
This chapter presents an innovative framework for a mechanical engineering program of study termed desegregated learning. The goal is not desegregation but rather to promote a higher level of learning and to look for opportunities where desegregating the learning environment yields optimal results with reasonable costs and complexity. (Contains 3…
Descriptors: Engineering Education, Student Experience, Unified Studies Curriculum, Sequential Learning
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Taylor, Joseph A.; Lunetta, Vincent N.; Dana, Thomas M.; Tasar, Mehmet F. – Journal of College Science Teaching, 2002
Describes an engineering course for education and other nonscience majors. In this course, students integrate basic principles of applied physical science and engineering to solve authentic design problems. Discusses the nature of the interactive and problem-based instructional format and its effects on developing students' scientific inquiry…
Descriptors: Course Descriptions, Curriculum Development, Engineering Education, Higher Education
de Oliveira, Clara Amelia – 1998
This paper presents an overview of the fundamental characteristics of the teaching and learning environment of a computer language class course designed for college-level engineering and computer science education. Characteristics include training teachers, student evaluation, learning environment, and integrating disciplines. (Contains 16…
Descriptors: Computer Science, Curriculum Development, Engineering Education, Foreign Countries