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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
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
Jonathan Quinson – Journal of Chemical Education, 2023
Gold nanoparticles (AuNPs) are textbook model systems to introduce "Nanomaterials" and "Nanotechnology" to students and laypersons. AuNPs are also suitable materials to raise awareness about the "Green Chemistry" principles. The unique optical and catalytic properties of nanosized gold make it ideal to timely develop…
Descriptors: Chemistry, Engineering, STEM Education, Molecular Structure
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
Pamela Shea; Rajni Dogra; Kaela Shea; Jason Bazylak – Canadian Journal for the Scholarship of Teaching and Learning, 2024
Research has indicated that interprofessional collaboration improves client outcomes, enhances work life, optimizes costs, and allows professionals to tackle complex situations with increased knowledge and creativity. However, the inherent barriers and challenges of developing effective interprofessional teams have been documented in the…
Descriptors: Undergraduate Students, Psychology, Engineering Education, Interprofessional Relationship
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
Jasmina Berbegal-Mirabent; Dolors Gil-Doménech; Alba Manresa – Education & Training, 2024
Purpose: This study addresses the challenge of integrating entrepreneurial competences development into the traditionally structured engineering curriculum, recognizing its potential contribution to job creation. Specifically, this study proposes a course design that intersects project management and entrepreneurial disciplines, adopting a…
Descriptors: Foreign Countries, Universities, Engineering Education, Entrepreneurship
Cassandra Sue Ellen Jamison – ProQuest LLC, 2022
Biomedical engineering (BME) undergraduate students take courses that allow them to develop skills in multiple disciplinary areas (e.g., biology, medicine, chemical, mechanical, electrical engineering) and as such, have a wide array of career opportunities available to them upon graduation. While their broad curricular exposure lends itself to…
Descriptors: Experiential Learning, Extracurricular Activities, Biomedicine, Engineering Education
Nazi Homayounnasab; Peter Adam Hoeher; Sandra Hansen – Journal of STEM Education: Innovations and Research, 2024
This paper deals with an integration of STEM education and project-based learning (PBL) by introducing a hybrid hardware/software-based learning platform covering eight learning units. PBL not only bridges the gap between theory and practice, but also focuses on improving students' soft skills, which is important as they prepare for further…
Descriptors: STEM Education, Active Learning, Student Projects, Technology Integration
Michael Johnson; Anne Griffin – Journal of Experiential Education, 2024
Background: During the COVID-19 pandemic, restricted access to in-person facilities and traditional experiential learning activities meant that new, online solutions were needed to facilitate student learning/development across the disciplines of Allied Health and Engineering. Purpose: This article describes research conducted as part of an…
Descriptors: Problem Based Learning, Electronic Learning, Interdisciplinary Approach, Dietetics
Jade Mitchell; Hongwan Li; Mark H. Weir; Julie Libarkin; Emily Pasek – Journal of Microbiology & Biology Education, 2024
Quantitative microbial risk assessment (QMRA) is a growing interdisciplinary field addressing exposures to microbial pathogens and infectious disease processes. Risk science is inherently interdisciplinary, but few of the contributing disciplinary programs offer courses and training specifically in QMRA. To develop multidisciplinary training in…
Descriptors: Curriculum Development, Curriculum Evaluation, Microcredentials, Interdisciplinary Approach
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
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
Valero, Maria De Rodanas; Reid, Tom; Dell, Ghislaine; Stacey, David; Hatt, Jo; Moore, Yvonne; Clift, Sally – Higher Education Pedagogies, 2020
This paper discusses a practical, multidisciplinary approach used to embed employability skills in a new postgraduate (PGT) Engineering course at the University of Bath. Informed by relevant professional bodies, key transferable skills were identified and embedded in the curriculum with discipline-specific content. Students worked on a series of…
Descriptors: Foreign Countries, Graduate Students, Engineering Education, Skill Development
Boehm, Rodney – Advances in Engineering Education, 2020
Entrepreneurial skills are being sought by companies as they consider college graduates, particularly engineers, for future employment. Technical skills have become the baseline while the ability to apply these skills in a business environment has become a key differentiator in the value of employees in corporate environments. To address this need…
Descriptors: Engineering Education, Entrepreneurship, Design, Extracurricular Activities