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Rona Riantini; Mochamad Hariadi; Supeno Mardi Susiki Nugroho; Diah Puspito Wulandari; Wahyu Suci Rohqani – IEEE Transactions on Education, 2025
Contribution: This article proposes the systematic integration of embedded systems into training hardware to bridge the gap in structured troubleshooting education. Traditional methods often rely on manual explanations, virtual simulations, or on-the-job training, which lack structured learning experiences. The proof-of-work module, developed…
Descriptors: Engineering Education, Troubleshooting, Engineering, Experiential Learning
Annica Gullberg; Kristina Andersson; Jenny Ivarsson; Henni Söderberg – Journal of Technology Education, 2025
Practical activities are at the core of learning in both engineering and science education programs. Hence, such activities are included as important practical learning experiences in each of these fields. During such learning experiences students are confronted by many different entities, from simple equipment to advanced instrumentation, all of…
Descriptors: Engineering Education, Learning Activities, Psychological Patterns, Learning Processes
P. Hariharasakthisudhan; K. Logesh; K. Sathickbasha; Sathish Kannan – Discover Education, 2025
This study presents a structured hybrid framework integrating Design Thinking (DT), the Conceive-Design-Implement-Operate (CDIO) methodology, and Root Assessment (RA) to enhance project-based learning (PBL) in engineering education. The framework addresses limitations in conventional PBL by embedding iterative ideation, structured engineering…
Descriptors: Student Projects, Active Learning, Design, Decision Making
Elena Comino; Laura Dominici; Anna Reyneri; Anna Treves – International Journal of Sustainability in Higher Education, 2025
Purpose: This paper aims to investigate the relationship between academia and society focusing on how technical universities perform Third Mission (TM) to promote knowledge outside the academic environment producing multiple benefits. Design/methodology/approach: This investigation is performed through the conceptual approach. The theoretical…
Descriptors: College Role, Environmental Education, Sustainability, Technical Institutes
Mercy F. Fash; Andrea A. N. Ofori-Boadu – Journal of Research Initiatives, 2025
This study examines the impact of a femalized Architecture, Engineering, and Construction Kinesthetic Learning Model (fAEC-KLM) intervention on the AEC knowledge of African American middle school girls. Fourteen (14) middle school girls completed both pre- and post-surveys and tests that assessed their knowledge of AEC concepts, including roles…
Descriptors: Kinesthetic Methods, Knowledge Level, African American Students, Middle School Students
Elissa Milto; Chelsea Andrews; Merredith Portsmore; Christopher Wright – Eye on Education, 2025
"Introducing Engineering to K-8 Students" will provide you with the tools you need to incorporate engineering design into your classroom. Rather than prescribing a specific curriculum to follow, this book will help you engage your students with hands-on, open-ended engineering design problems that can be easily integrated into your…
Descriptors: Engineering, Design, Middle School Teachers, Elementary School Teachers
Lavyne L. Rada; Scott W. Smalley – Journal of Agricultural Education, 2025
Retaining quality SBAE teachers is key to the success and growth of the agricultural industry. Given the connection between SBAE teacher perceived competence and professional commitment (Palmer, 2020; Rada, 2023), it is vital to explore the perceptions of competence of teachers concerning their classroom. Using a Borich needs assessment model, the…
Descriptors: Agricultural Education, Agriculture Teachers, Knowledge Base for Teaching, Experiential Learning
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
Niina Niinimäki; Kati Sormunen; Pirita Seitamaa-Hakkarainen; Sini Davies; Kaiju Kangas – Journal of Computer Assisted Learning, 2025
Background: Implementing maker education in schools is on the rise, fuelled by its potential to move formal education towards a creative, technology-driven 21st century learning culture. In maker education, collaborative learning takes place through and around various digital and traditional technologies, which provide the means for students'…
Descriptors: Cooperative Learning, Experiential Learning, Technological Literacy, Student Projects
Sokratis Tselegkaridis; Theodosios Sapounidis; Christos Tokatlidis; Dimitrios Papakostas – IEEE Transactions on Education, 2025
Contribution: This study focuses on microcontroller circuits and aims to: 1) investigate the impact of formal reasoning on students' post-knowledge using catastrophe theory; 2) compare the different combination sequences of tangible user interface (TUI) and graphical user interface (GUI); and 3) assess the usability of both interfaces and explore…
Descriptors: College Students, Electronics, Electronic Equipment, Engineering Education
Milorad Cerovac; Therese Keane – International Journal of Technology and Design Education, 2025
Piaget's theory of stage structure is synonymous with discussions involving cognitive development. As with any theoretical model, researchers inevitably and rightly seek to affirm and/or contest the elements of the model presented. In this comparative study, students' performance across three hands-on engineering tasks for two distinct student…
Descriptors: Cognitive Development, Developmental Stages, Piagetian Theory, Developmental Tasks