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Adriana D. Cimetta; Rebecca S. Friesen; Shaun M. Davis; Martha R. C. Bhattacharya – Scholarship and Practice of Undergraduate Research, 2025
Vertically integrated project courses (VIPs) are successful models for embedding long-term research participation into engineering curricula. Whether this model can be translated into gains for laboratory-based projects in biological sciences is unknown. Most biological sciences course-based undergraduate research experiences (CUREs) are a single…
Descriptors: Neurosciences, Educational Benefits, STEM Education, Self Efficacy
Brayan Diaz; Cesar Delgado; John Bacher; Collin Lynch; Kevin Han – International Journal of STEM Education, 2025
Background: Policy documents call for supporting STEM students in developing collaborative abilities for working in multidisciplinary teams. Courses with intra- and inter-group collaboration are therefore essential to prepare STEM students to participate in modern multidisciplinary professional environments. To analyze those courses, this paper…
Descriptors: Graduate Students, Cooperation, Teamwork, Computer Mediated Communication
Katherine R. McCance; Margaret Blanchard – AERA Open, 2024
Interdisciplinarity has the potential to lead to more innovation and advances in knowledge than are possible from a single discipline. Yet, little is known about interdisciplinary collaborations and the perceptions of those involved. This quantitative study investigated the perceptions of U.S. faculty, staff, postdocs, and graduate students…
Descriptors: Interdisciplinary Approach, Cooperation, Partnerships in Education, Scientists
Ayar, Mehmet C.; Yalvac, Bugrahan – Journal of Engineering Education, 2022
Background: Laboratory studies explore the norms and characteristics of scientific practice and explain the constructive nature of knowledge production. However, how learning and research are sustained in engineering research laboratories at the graduate level requires further investigation. Purpose: We explored the cultural characteristics of an…
Descriptors: Ethnography, Engineering Education, Mentors, Learning Processes
Kilic-Bebek, Ebru; Nizamis, Kostas; Vlutters, Mark; Bebek, Ozkan; Karapars, Zeynep G.; Unal, Ramazan; Yilmaz, Deniz; Ugurlu, Barkan – IEEE Transactions on Education, 2023
Contribution: This study provides evidence for the benefit of short online courses for the transdisciplinary competence development of graduate students. It shows the significant challenges students face while learning, and provides instructional recommendations to improve students' learning quality and professionalism. Background: Developing…
Descriptors: Interdisciplinary Approach, Skill Development, Graduate Students, Online Courses
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
Luiz Ney d'Escoffier; Dan Jiang; Aida Guerra; Andres Felipe Valderrama Pineda; Imad Abou-Hayt – European Journal of Engineering Education, 2024
Despite an emerging emphasis on the role of engineers in achieving the SDGs, there is still a lack of agreement on which competencies should be prioritised to prepare them to tackle future sustainability challenges. By formulating a theoretical framework of key sustainable competencies based on prior studies, this study investigated engineering…
Descriptors: Problem Based Learning, Q Methodology, Student Attitudes, Engineering Education
Schwarzman, Megan R.; Buckley, Heather L. – Journal of Chemical Education, 2019
For the last seven years, an interdisciplinary course known as "Greener Solutions", offered by the University of California, Berkeley Center for Green Chemistry, has brought together graduate students in chemistry, environmental health, and engineering to understand each other's disciplines, and to work together to develop safer…
Descriptors: Chemistry, Interdisciplinary Approach, Science Instruction, Course Descriptions
McCance, Katherine R.; Teeter, Stephanie D.; Blanchard, Margaret R.; Venditti, Richard A. – Studies in Higher Education, 2023
Interdisciplinary collaborations between different academic disciplines can create knowledge and solutions to challenges that are beyond the scope of what a single discipline can achieve. However, little is known about how interdisciplinary teams of faculty and graduate students function as a whole and the processes that guide them as they work on…
Descriptors: Graduate School Faculty, Graduate Students, Teacher Student Relationship, Science Teachers
Martinez-Vazquez, P. – Higher Education Pedagogies, 2019
A graduate profile benchmark developed by a higher education organisation is subject to scrutiny. This occurs through the numerical parameterisation of text collected through surveys and the use of basic concepts drawn from Information Technology. The process uses data processing, analysis and evaluation to show the degree to which established an…
Descriptors: Engineering Education, Benchmarking, Teaching Methods, Instructional Effectiveness
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
Hallberg, Peter; Ölvander, Johan – European Journal of Engineering Education, 2022
In times of rapid transformation of society in general and domains of technology in particular, questions are raised on how to effectively organise higher engineering education. As a response, this study examines the curriculum composition of eleven engineering programs to investigate curriculum nativeness, a novel approach for assessing…
Descriptors: Engineering Education, Course Content, Educational Change, Higher Education
Salvador, Rodrigo; Barros, Murillo Vetroni; Barreto, Bernardo; Pontes, Joseane; Yoshino, Rui Tadashi; Piekarski, Cassiano Moro; de Francisco, Antonio Carlos – Industry and Higher Education, 2023
This article aims to identify the challenges and opportunities in cross-program problem-based learning (PBL) in higher education, based on an Industry 4.0 case with undergraduate and graduate students studying for engineering degrees. The method for this research comprised a cross-program course structured to bring together undergraduate and…
Descriptors: Barriers, Industry, Educational Opportunities, Graduate Students
Susan B. Wainscott; Mohamed B. Trabia; David E. James – Advances in Engineering Education, 2023
How can we engage new engineering and computer science graduate students in meaningful conversations about research and publication ethics without establishing a common understanding of the issues and expectations? Most universities offer extensive responsible conduct of research (RCR) training programs, which are usually a semester-long. Absent a…
Descriptors: Ethics, Engineering Education, Computer Science Education, Graduate Students
Seniuk Cicek, Jillian; Paul, Robyn; Sheridan, Patricia K.; Kuley, Liz – Canadian Journal of Science, Mathematics and Technology Education, 2020
Four graduate students from four distinct Canadian institutions engaged in collaborative autoethnography to explore their dual roles as participant-researchers investigating the lived experience of graduate students studying engineering education research (EER) in Canada. Findings, oriented through the identity-trajectory framework, indicate that…
Descriptors: Participatory Research, Graduate Students, Student Experience, Engineering Education

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