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Canan Mesutoglu; Dury Bayram; Annemieke Vennix; Anne Limburg; Jan van der Veen – European Journal of Engineering Education, 2024
Higher engineering education programmes increasingly include courses characterised by real-world problems and student collaboration in multidisciplinary teams. Research findings demonstrate that students remain limited in perceiving and meaningfully bridging disciplinary differences in these course contexts. Drawing on the literature on boundaries…
Descriptors: Interdisciplinary Approach, Physics, Engineering, Engineering Education
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Noah Goshi; Gregory Girardi; Hyehyun Kim; Erkin Seker – Biomedical Engineering Education, 2023
There is a need for novel teaching approaches to train biomedical engineers that are conversant across disciplines and have the technical skills to address interdisciplinary scientific and technological challenges. Here, we describe a graduate-level miniaturized biomedical device engineering course that has been taught over the last decade in…
Descriptors: Experiential Learning, Biomedicine, Equipment, Teaching Methods
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Sangwan, Kuldip Singh; Singh, Rajni – Higher Education, Skills and Work-based Learning, 2022
Purpose: Problem solving skills (PSS), an important component of learning outcomes, is one of the desirable skills in engineering graduates as stated by many employers, researchers and government bodies in India for a strong foothold in professional world. There is a need to develop comprehensive understanding and integration of theory (concept)…
Descriptors: Experiential Learning, Problem Solving, Engineering Education, College Students
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Mishra, Chandrani; Novak, Lauren; Riley, Coleen; Okekeogbu, Ikenna; Smith, Gillian; Brace, Emma; Kerstiens, Emily; Clase, Kari – Biochemistry and Molecular Biology Education, 2022
Based on recent education reform guidelines to prepare professionals who are able to handle new technological, economic, social, and environmental challenges, pedagogical modifications are deemed necessary by the educators. Specifically, in biology, the rapid changes in the content and biological products demand changes in the curriculum. We aim…
Descriptors: Biology, Engineering Education, Undergraduate Study, Inquiry
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Tavseef Mairaj Shah; Sahar Jannesarahmadi; Salome Shokri-Kuehni; Dorothea Ellinger; Andrea Brose; Dani Or; Nima Shokri – Discover Education, 2024
We implemented research-based learning (RBL) as an alternative to traditional frontal classroom lectures and laboratory sessions to impart knowledge on the emerging topic of microplastics in soil to students. The RBL module aimed at studying how microplastics (MPs) affect soil processes. We designed low-cost, small-scale and simple experiments for…
Descriptors: Plastics, Soil Science, Conservation (Environment), Engineering Education
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Steven C. Koenig; Gretel Monreal – Design and Technology Education, 2025
Purpose: Biomedical engineers that have the ability and skill sets to comprehend and retain basic anatomy and physiology (A&P) knowledge, apply fundamental engineering principles, use critical thinking, and communicate effectively across multiple disciplines to facilitate successful development and clinical translation of medical devices. The…
Descriptors: Equipment, Medical Services, Biomedicine, Engineering Education
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Hsin-Yu Lee; Ting-Ting Wu; Chia-Ju Lin; Wei-Sheng Wang; Yueh-Min Huang – Journal of Educational Computing Research, 2024
Science, Technology, Engineering, and Mathematics (STEM) education is essential for developing future-ready learners in both secondary and higher education levels. However, as students transition to higher education, many encounter challenges with independent learning and research. This can negatively impact their Higher-Order Thinking Skills…
Descriptors: Experiential Learning, STEM Education, Scaffolding (Teaching Technique), Barriers
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Xuting Tang; Hui Guo – ECNU Review of Education, 2024
Purpose: This study investigates the role of the engineering education environment created by the implementation of the "Plan for Educating and Training Outstanding Engineers" (PETOE) on the professional capability development of engineering students from the perspective of students' experience. Design/Approach/Methods: This study uses…
Descriptors: Engineering Education, College Students, Program Effectiveness, Learning Activities
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Wan-Ju Liao; Chieh-Hsin Tang – SAGE Open, 2023
Developing design concepts is crucial in architectural engineering education, yet helping students to develop these concepts is a challenging task. Despite previous research exploring design concepts, statistical analysis is scarce to evaluate their effectiveness. This study used the body movement methods from existing literature, combined with…
Descriptors: Architectural Education, Engineering Education, Design, Teaching Methods
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Tyler S. Love; Mark D. Threeton; Kenneth R. Roy – Journal of Technology Education, 2023
Fostering experiential learning experiences that allow students to apply their design thinking skills is important for developing technological and engineering (T&E) literacy. However, K-12 schools must ensure that educators providing these experiential T&E experiences are adequately prepared and supported to maintain a safer teaching and…
Descriptors: Safety, Engineering Education, Technology Education, Elementary Secondary Education
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Muhly, Fabian; Leo, Philipp; Caneppele, Stefano – Journal of Cybersecurity Education, Research and Practice, 2022
Social engineering is a method used by offenders to deceive their targets utilizing rationales of human psychology. Offenders aim to exploit information and use them for intelligence purposes or financial gains. Generating resilience against these malicious methods is still challenging. Literature shows that serious gaming learning approaches are…
Descriptors: Educational Games, Social Psychology, Engineering Education, Experiential Learning
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Moye, Johnny J.; Reed, Philip A. – Technology and Engineering Teacher, 2020
In this quickly evolving digital world, the technology and education (T&E) education classroom can provide valuable instruction that creates a well-informed online citizenry through digital understanding and citizenship curriculum. For twenty years, "Standards for Technological Literacy" (STL) (ITEA/ ITEEA, 2000/2002/2007) provided…
Descriptors: Standards, Technological Literacy, Engineering Education, Elementary Secondary Education
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Frank, Daniel Z.; Douglas, Elliot P.; Williams, Darryl N.; Crane, Carl D. – Journal of Engineering Education, 2021
Background: Recently there has been considerable interest in making as a means to promote interest in engineering careers. Leveraging making practices that already exist in communities could provide a way to address the severe underrepresentation of minority groups, such as Native Americans, in engineering. Before any programs or curricula can be…
Descriptors: Engineering Education, American Indian Students, Culturally Relevant Education, Navajo (Nation)
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Habib, Maki K.; Nagata, Fusaomi; Watanabe, Keigo – Education Sciences, 2021
The development of experiential learning methodologies is gaining attention, due to its contributions to enhancing education quality. It focuses on developing competencies, and build-up added values, such as creative and critical thinking skills, with the aim of improving the quality of learning. The interdisciplinary mechatronics field…
Descriptors: Experiential Learning, Thinking Skills, Engineering Education, Teaching Methods
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Seidel, Victor P.; Marion, Tucker J.; Fixson, Sebastian K. – INFORMS Transactions on Education, 2020
Faculty in business and engineering schools are increasingly focused on teaching the fundamentals of the innovation process to students at all levels. There has been a recent embrace of teaching the innovation process through a user-centered "design thinking" methodology and on experiential "making" activities within…
Descriptors: Innovation, Teaching Methods, Experiential Learning, Design
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