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Showing 1 to 15 of 31 results Save | Export
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Natarajan, Sukumar; McCullen, Nick; Lo, Steve; Coley, David; Arja, Omaimah Ali; Moran, Francis – International Journal of Technology and Design Education, 2021
Engineering is a practical discipline, dedicated to the solution of problems through the sound application of principles derived from the natural sciences and mathematics. Engineering pedagogy has therefore to balance the need for learners to gain a deep understanding of the theoretical basis of the problem domain whilst grasping its practical…
Descriptors: Engineering Education, Instructional Design, Theory Practice Relationship, Problem Solving
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Brayan Díaz; Collin Lynch; Cesar Delgado; Kevin Han – International Journal of STEM Education, 2025
Background: This paper describes research into two pedagogical approaches to foster transdisciplinarity in a graduate engineering course that involves education and computer science. Leveraging the Communities of Practice framework, we examine how students majoring in computer science can integrate new knowledge from education and computer science…
Descriptors: Graduate Study, Engineering Education, Computer Science, Interdisciplinary Approach
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Kim, Ji-Yun; Seo, Jae Seon; Kim, Kwihoon – Education and Information Technologies, 2022
Attaining equitable education for all is one of the sustainable development goals. Not only the gap of education between urban and rural students but also the gap of access to information and communications technology also exists. Thus, an effort to resolve this gap is necessary. This study combines novel engineering, which is the fusion of…
Descriptors: Models, Problem Solving, Problem Based Learning, Engineering Education
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Higuera-Martínez, Oscar Iván; Corazza, Giovanni Emanuele; Fernández-Samacá, Liliana – European Journal of Engineering Education, 2022
This article presents how Problem- and Project-Based Learning (PBL) in engineering education can exploit the theoretical framework of the Space-Time (ST)-Continuum, according to which educational contexts can be classified in terms of the tightness vs. looseness of the relevant conceptual space S and available time T. By crossing these two…
Descriptors: Problem Based Learning, Engineering Education, Teaching Methods, Intervention
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Keenahan, Jennifer; McCrum, Daniel – European Journal of Engineering Education, 2021
Engineers and Architects require effective communication and interdisciplinary team working to be successful throughout their career which, is often overlooked during formal undergraduate education. The purpose of this paper is to disseminate the novel design and evaluation of a module on communication and interdisciplinary team working in the…
Descriptors: Engineering Education, Architectural Education, Intervention, Teaching Methods
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Li, Huaizhong; Öchsner, Andreas; Hall, Wayne – European Journal of Engineering Education, 2019
This paper introduced how a mechanical engineering course was redesigned by applying experiential learning theory to improve student engagement and learning experience. Design of machine elements has been considered by students to be a difficult course. Traditional teaching methods tend not to be effective in engaging students. Experiential…
Descriptors: Experiential Learning, Learner Engagement, Student Experience, Engineering Education
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Gómez Puente, Sonia M.; van Eijck, Michiel; Jochems, Wim – European Journal of Engineering Education, 2015
Design-based learning (DBL) is an educational approach in which students gather and apply theoretical knowledge to solve design problems. In this study, we examined how critical DBL dimensions (project characteristics, design elements, the teacher's role, assessment, and social context) are applied by teachers in the redesign of DBL projects.…
Descriptors: Professional Development, Experiential Learning, Problem Based Learning, Problem Solving
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Asunda, Paul A.; Mativo, John – Technology and Engineering Teacher, 2017
Part One of this article ("Technology and Engineering Teacher," 75(4), December/January, 2016) presented a process that science, math, engineering, and technology teachers could use to collaborate and design integrated STEM courses. A conceptual framework was discussed that could provide a premise that educators interested in delivery of…
Descriptors: STEM Education, Technology Education, Teaching Methods, Common Core State Standards
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Asunda, Paul A.; Mativo, John – Technology and Engineering Teacher, 2016
In this first of a two-part series, the authors report that STEM is still mostly science and mathematics, taught separately with little or no attention to technology and engineering. Where connections do get made to technology and engineering, too often they happen through several disconnected projects that lack coherence in content standards and…
Descriptors: STEM Education, Technology Education, Teaching Methods, Common Core State Standards
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Spelt, E. J. H.; Luning, P. A.; van Boekel, M. A. J. S.; Mulder, M. – European Journal of Engineering Education, 2015
Increased attention to the need for constructively aligned teaching and learning in interdisciplinary higher education in engineering is observed. By contrast, little research has been conducted on the implementation of the outcome-based pedagogical approach to interdisciplinary higher education in engineering. Therefore, the present design-based…
Descriptors: Interdisciplinary Approach, Higher Education, Teaching Methods, Outcomes of Education
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Rengel, R.; Martin, M. J.; Vasallo, B. G. – IEEE Transactions on Education, 2012
This paper presents a series of activities and educational strategies related to the teaching of digital electronics in computer engineering. The main objective of these methodologies was to develop a final tutored coursework to be carried out by the students in small teams. This coursework was conceived as consisting of advanced problems or small…
Descriptors: Educational Strategies, Motivation, Electronics, Learning Activities
Carr, Ronald L.; Strobel, Johannes – National Center for Engineering and Technology Education, 2011
Engineering is being currently taught in the full spectrum of the P-12 system, with an emphasis on design-oriented teaching (Brophy, Klein, Portsmore, & Rogers, 2008). Due to only a small amount of research on the learning of engineering design in elementary and middle school settings, the community of practice lacks the necessary knowledge of the…
Descriptors: Engineering, Educational Research, STEM Education, Integrated Curriculum
Jonassen, David H. – National Center for Engineering and Technology Education, 2011
Are there different kinds of design problems? Jonassen (2011) argued that problems vary in terms of structuredness, complexity, and context. On the structuredness and complexity continua, design problems tend to be the most ill-structured and complex. Brown and Chandrasekaran suggest that design problems may vary along a continuum from…
Descriptors: Instructional Design, Problem Solving, Instructional Development, Design Requirements
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McSpadden, Moira; Kelley, Todd R. – Technology and Engineering Teacher, 2012
It is well documented that there is a disproportionate number of males pursuing engineering and technology careers when compared to their female counterparts (Milgram, 2011). Some recent articles have proposed methods to recruit more females into technology education (Milgram, 2011; Zywno, Gilbride, Hiscodes, Waalen, and Kennedy, 1999). However,…
Descriptors: Problem Based Learning, Engineering Education, Engineering Technology, Design
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Koretsky, Milo D.; Kelly, Christine; Gummer, Edith – Chemical Engineering Education, 2011
The instructional design and the corresponding research on student learning of two virtual laboratories that provide an engineering task situated in an industrial context are described. In this problem-based learning environment, data are generated dynamically based on each student team's distinct choices of reactor parameters and measurements.…
Descriptors: Engineering Education, Research Design, Instructional Design, Problem Based Learning
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