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Helen Durand; Saad Balhasan – International Review of Research in Open and Distributed Learning, 2023
This work describes an international collaboration experience carried out between our process design and petroleum property evaluation courses. This collaboration was developed as part of a partnership between the American University of Ras Al Khaimah (AURAK) in Ras Al Khaimah, United Arab Emirates, and Wayne State University in Detroit, Michigan,…
Descriptors: Cooperative Learning, Engineering Education, Undergraduate Students, Foreign Countries
Suzanne Lightsey; Michele Dill; Madison Temples; Taylor Yeater; Sarah Furtney – Biomedical Engineering Education, 2024
Hands-on laboratory courses seldom appear in biomedical engineering (BME) graduate programs, thus limiting graduate students' ability to acquire wet laboratory skills like cell culturing. At large, BME graduate programs rely on ad hoc training provided by senior graduate students; however, this method cannot be extended to new or non-BME…
Descriptors: Graduate Students, Engineering Education, Biomedicine, Cooperative Learning
Marissa L. Gray; Celinda M. Kofron – Biomedical Engineering Education, 2024
We have implemented a jigsaw framework in our biomedical engineering capstone design course by overlaying strategic consideration groups across our design teams. Collaboration in design courses is usually focused within a design team with some peer feedback, but opportunities to work across teams are often limited. The purpose of this teaching tip…
Descriptors: Biomedicine, Design, Cooperative Learning, Engineering Education
Jung, Jiyoon; Mercier, Emma – Educational Technology Research and Development, 2023
In response to the criticism that theory-driven researcher-developed learning tools lack scalability and sustainability in the real world, the design-based implementation research (DBIR) approach was proposed. However, few empirical studies actually describe what a DBIR study looks like and how it can inform readers about learning tool design. We…
Descriptors: Engineering Education, Educational Research, Program Implementation, Interdisciplinary Approach
Frederick R. Missel; Jeremy V. Ernst; Daniel P. Kelly; Erik Schettig; Aaron C. Clark – Technology and Engineering Teacher, 2023
For students to gain the most out of education, they need to form long-term memories from experiences gained through active learning. The greatest distinction between active learning and traditional approaches involves the types of tasks and problems the students are challenged to solve. Active learning activities should be structured with student…
Descriptors: Active Learning, Engineering Education, Computer Graphics, Design
Wagler, Adam – Journal of Advertising Education, 2023
What role does advertising play in product development as part of owned media? For three years, a capstone advertising campaign course collaborated with STEM courses to form interdisciplinary teams composed of advertising, engineering, and computer science. The study provides insight into how teams can be more entrepreneurial by building on the…
Descriptors: Advertising, Capstone Experiences, Interdisciplinary Approach, Cooperative Learning
Helge Fredriksen; Ragnhild Johanne Rensaa – Cogent Education, 2024
The present paper is a data note related to the paper "Gender perspectives on a flipped classroom environment". The paper drew on an in-depth analysis of the interview with a single female student called Sofia and attempted to analyze different gender related interactions between students in group work situations experienced by this…
Descriptors: Foreign Countries, Gender Issues, Flipped Classroom, Student Attitudes
Stuart White – International Journal of Designs for Learning, 2024
In 2017 Purdue evGrand Prix hired a K-12 Indiana public educator (the author) to write instructional material that could be implemented into participating teams' high school science and engineering classrooms. The goal was to create science-based integrated STEM learning experiences that complement the construction and racing of a 48-volt electric…
Descriptors: Novices, Decision Making, Instructional Materials, Material Development
Hirshfield, Laura J.; Mayes, Heather B. – Chemical Engineering Education, 2019
With the advance of engineering education research and scholarship, there has been an increased focus on amending chemical engineering courses to increase student learning, engagement and enjoyment. These approaches are often incorporated in project-based courses such as capstone design courses and laboratory courses, providing opportunities to…
Descriptors: Undergraduate Students, Chemical Engineering, Engineering Education, Inclusion
Muller, Alexandria; Connolly, Tarah; Skinner, Ron; Harlow, Danielle – Science and Children, 2020
While school field trips are valued as supplementary educational tools, Andersen and Zhang (2003) found that in practice field trips are often treated as one-off learning experiences and not furthered through connections to the classroom curriculum. Although students gain exposure to new phenomena and are able to participate in learning activities…
Descriptors: Engineering Education, Field Trips, Learning Activities, Elementary School Students
Gopinath, B.; Santhi, R. – Higher Education for the Future, 2021
In this article, Fishbone-based advanced computational thinking (FACT) pedagogy is proposed by fusing fishbone pedagogy and computational thinking pedagogy for enhancing teaching-learning process while teaching engineering and science courses, for engineering and science students respectively. The proposed FACT pedagogy has been implemented using…
Descriptors: Problem Solving, Thinking Skills, Computation, Visual Learning
E. K. Bucholz – Biomedical Engineering Education, 2021
In the spring of 2020, brick and mortar colleges had to abruptly adapt to the reality of COVID-19 and transition to entirely online environments in a manner of weeks. This required a rapid (< 2 weeks) acquisition of knowledge and flexibility in using technology, most commonly Zoom. Upon completion of the semester, and after debriefing with…
Descriptors: Online Courses, Educational Environment, Biomedicine, Engineering Education
Pattra Suansokchuak; Pallop Piriyasurawong – Higher Education Studies, 2025
This article aims to present a new educational model that integrates engineering learning with design thinking via a cloud ecosystem to enhance digital intelligence for undergraduate students. This approach utilizes user-centered problem-solving to foster innovation and collaborative learning. The educational environment can adapt to 21st-century…
Descriptors: Design, Thinking Skills, Engineering Education, Undergraduate Students
Welling, Jonathan; Wright, Geoffrey A. – Technology and Engineering Teacher, 2018
The paper rocket activity described in this article effectively teaches the engineering design process (EDP) by engaging students in a problem-based learning activity that encourages iterative design. For example, the first rockets the students build typically only fly between 30 and 100 feet. As students test and evaluate their rocket designs,…
Descriptors: Engineering Education, Teaching Methods, Learning Activities, Design
Silva Mangiante, Elaine; Carpenter, Elizabeth; Robichaud, Hayley – Kappa Delta Pi Record, 2020
Get an inside look at the discourse interactions of third- and fourth-grade students as they consider various design proposals to solve an engineering problem and negotiate a group decision. The authors present possible factors that impact student teamwork and provide recommendations for teachers to develop students' skills for group engineering…
Descriptors: Elementary School Students, Grade 3, Grade 4, Engineering