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Rennick, Christopher; Litster, Greg; Hulls, C. C. W.; Hurst, Ada – IEEE Transactions on Education, 2023
Contribution: This article defines "curricular hackathons" and describes the features, challenges, and opportunities of adopting the hackathon format into engineering curricula. It is based on experience implementing a series of curricular hackathons which provide students with formative design experiences as they address ill-structured…
Descriptors: Curriculum Development, Engineering Education, Curriculum Implementation, Design
Radloff, Jeffrey; Capobianco, Brenda; Weller, Jessica; Rebello, Sanjay; Eichinger, David; Erk, Kendra – Journal of College Science Teaching, 2022
Recent science reform advocates for the inclusion of engineering design to teach science and represents a shift to so-called three-dimensional (3D) learning. This shift often requires science instructors to adapt their current curriculum to integrate 3D learning. To support this shift, the current study illustrates the collaborative development…
Descriptors: Alignment (Education), Science Curriculum, College Curriculum, Teaching Methods
Fan, Szu-Chun; Yu, Kuang-Chao; Lin, Kuen-Yi – International Journal of Science and Mathematics Education, 2021
Integrated science, technology, engineering, and mathematics (STEM) curricula have taken center stage in the recent education reforms. However, the challenge in teaching STEM curricula lies in finding ways to develop students' content knowledge and plan suitable learning activities and instructional strategies. This paper is focused on the…
Descriptors: Curriculum Implementation, Engineering Education, STEM Education, Integrated Curriculum
Meagan E. Ita; Gönül Z. Kaletunç; Katelyn E. Swindle-Reilly – Biomedical Engineering Education, 2023
Entrepreneurial minded learning (EML) is a pedagogical technique that gives students the tools to identify opportunities, focus on impact, and to create value through their solutions. The entrepreneurial mindset builds upon three key elements: curiosity, connections, and creating value (3 Cs). A biomedical engineering course was developed using…
Descriptors: Entrepreneurship, Student Attitudes, Biomedicine, Engineering Education
Van Helden, Gitte; Zandbergen, Barry T. C.; Specht, Marcus M.; Gill, Eberhard K. A. – IEEE Transactions on Education, 2023
Contribution: This article presents a comprehensive overview of characteristics of educational designs of collaborative engineering design activities found in literature and how these characteristics mediate students' collaboration. Background: Engineers have to solve complex problems that require collaboration. In education, various collaborative…
Descriptors: Cooperative Learning, Engineering Education, Design, Literature Reviews
Santos, José; Escórcio, Patrícia – European Journal of Engineering Education, 2022
Building Information Modelling (BIM) has changed the way many civil engineers organise and execute their job in recent years. Many universities around the world have been adapting their curricula to include BIM education. However, this adaptation has been incomplete, occurring only in a small number of subjects. To fill this gap, this paper…
Descriptors: Civil Engineering, Engineering Education, Construction (Process), Construction Management
Annie Kelly; Chris Cooper; Vladimir Miskovic – New Directions for Student Services, 2023
Appreciative Advising is applied in the creation and delivery of an "Appreciative Mentorship" course for University of Cincinnati undergraduate peer mentors. The article explores course content, learning activities, and assignments. A former peer mentor shares examples of applying the phases when mentoring pre-professional engineering…
Descriptors: Undergraduate Students, Mentors, Peer Relationship, Engineering Education
K. P. J. Fortuin; Judith T. M. Gulikers; Nynke C. Post Uiterweer; Carla Oonk; Cassandra W. S. Tho – European Journal of Engineering Education, 2024
The competence to work together and co-create with others outside one's own scientific domain, culture or professional practice is a critical competence for engineers to respond to global challenges. In this context, boundary crossing (BC) competence is crucial. We reflect on a university-wide participatory action research educational innovation…
Descriptors: Learning Trajectories, Engineering Education, Cooperative Learning, Interdisciplinary Approach
Özlem Göksen; Esra Kizilay; Nagihan Tanik Önal – Science Insights Education Frontiers, 2024
In the current study, an engineering design-based STEM activity was designed and implemented for 5th graders. The current activity is expected to provide guidance and perspective to teachers (practitioners) in designing and implementing an activity based on design-based learning, STEM activity, and engineering design process (EDP). At the same…
Descriptors: STEM Education, Engineering Education, Learning Activities, Middle Schools
Vodovozov, Valery; Raud, Zoja; Petlenkov, Eduard – Education Sciences, 2021
The fourth industrial revolution has triggered a notable shift in engineering education, bringing the need to create new professionals. In this context, the active learning approach appears to be more important than ever. Nevertheless, to date quite lot of challenges related to active learning have been accumulated. Diversity of backgrounds and…
Descriptors: Active Learning, Integrated Curriculum, Engineering Education, Learner Engagement
Almusaed, Amjad; Almssad, Asaad; Andersson, Nina; Brunzell, Lena – International Society for Technology, Education, and Science, 2022
New trends such as globalization, knowledge economy, and information technology revolution have become essential factors affecting the development of universities in the new era. These trends have had a profound impact on the survival and growth of universities. First, universities need to shoulder the knowledge creation work in many fields…
Descriptors: Learner Engagement, College Students, Educational Change, Curriculum Development
Tejaswini Dalvi; Kristen Wendell – Science Education, 2024
An understanding of how sensemaking unfolds when elementary students engage in engineering design tasks is crucial to advancing engineering teaching and learning at K-12 levels. Sensemaking has been widely studied in the context of science as a discipline. In this paper, we seek to contribute to the more nascent efforts to build theory about the…
Descriptors: Elementary School Students, Grade 3, Comprehension, Science Education
Leah R. Cheek; Vinson Carter; Michael K. Daugherty; Christian Z. Goering – Reading Teacher, 2024
Empathy, an unsung, yet critical element of learning, can be strategically interlaced with literacy instruction and engineering design to create a rich and authentic learning experience for students. Integrated STEM education rests on the promise of engaging students and providing deep understandings through the intentional practice of delivering…
Descriptors: Empathy, STEM Education, Literacy Education, Engineering Education
Julie E. Speer; Zain Clapacs – Biomedical Engineering Education, 2022
Options for incarcerated individuals to participate in higher education in prison programs (HEPPs) have expanded in recent years to include courses in science, technology, engineering, and mathematics, however these students remain an underserved population in the United States. Thus, there are opportunities to expand the available offerings,…
Descriptors: Biomedicine, Engineering Education, Research Methodology, Courses
Bajracharya, Biju; Khan, Mohammad Shoeb – Information Systems Education Journal, 2023
The Autonomous Vehicles (AV) are a self-driving vehicle capable of sensing its environment and operating with minimal or no human intervention converting into a fully or partially automated vehicle. These automated vehicles have great potential to revolutionize the automotive industry and our daily lives. Thus, they are receiving a lot of…
Descriptors: Motor Vehicles, Interdisciplinary Approach, Computer Science Education, Artificial Intelligence