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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
Andrew J. Hughes; Mike Stitzer – Technology and Engineering Teacher, 2022
The intention of this article is to provide Technology and Engineering Educators (T&EEs) with a more thorough understanding of the product realization process (PRP) being implemented during machine design. Machines can be defined as the combination of simple machines and mechanisms for the purpose of doing work (Hughes & Merrill, 2021b).…
Descriptors: Technology Education, Engineering Education, Equipment, Design
Andrew J. Hughes – Technology and Engineering Teacher, 2022
The intention of this article is to provide Technology and Engineering Educators (T&EEs) with a more thorough understanding of implementing the product realization process (PRP) to help manage the design and development processes in their classrooms. The product realization process (PRP) innately involves a practical combination of knowledge,…
Descriptors: Engineering Education, Design, High School Students, Skill Development
David A. Rubenstein – Biomedical Engineering Education, 2024
Biomedical engineering (BME) undergraduate curricula have begun to address gaps in diversity, especially in response to the newly proposed ABET diversity, equity, and inclusion (DEI) criteria. However, there is a significant lack of teaching resources, and pedagogical training available for those interested in including DEI into their course…
Descriptors: Biomedicine, Engineering Education, Undergraduate Study, Diversity
Patete, Anna; Marquez, Ronald – Education Sciences, 2022
The world is changing, and university education must be able to adapt to it. New technologies such as artificial intelligence and robotics are requiring tools such as simulation and process control to develop products and services. Thus, control systems engineering schools are adapting to new educational frameworks tailored to deploy promising and…
Descriptors: Animation, Distance Education, Electronic Learning, COVID-19
Renate G. Klaassen; Hans Hellendoorn; Linette Bossen – IEEE Transactions on Education, 2024
TU Delft education system is transformed on three levels: (1) new courses and projects in existing B.Sc. and M.Sc. programs for multidisciplinary and reflective learning; (2) new M.Sc. programs focusing on multi and interdisciplinarity, personal development, and professional skills; and (3) central Interdisciplinary Projects for Master Students…
Descriptors: Engineering Education, Resilience (Psychology), Foreign Countries, Ecology
Barquero, Berta; Bosch, Marianna; Florensa, Ignasi; Ruiz-Munzón, Noemí – International Journal of Mathematical Education in Science and Technology, 2022
Implementing inquiry-oriented instructional proposals at the university level collides with many constraints related to the current pedagogical paradigm based on the transmission of previously established works of knowledge. One such constraint comes from defining subjects' curricula by a set of topics to study, not questions to inquire. Our…
Descriptors: Inquiry, Active Learning, Teaching Methods, Anthropology
John Mitchell; Emanuela Tilley – Journal of Problem Based Learning in Higher Education, 2024
This paper will present the argument that while Problem Based Learning (PBL) (or its variant Project Based Learning, PjBL) provides significant benefits and advantages to student learning in of itself, the full benefit of PBL is only completely realised as part of an "integrated" curriculum that provides a variety of learning…
Descriptors: Foreign Countries, College Faculty, Engineering Education, Educational Researchers
Roberts, Dustyn; Buckley, Jenni – Advances in Engineering Education, 2020
The Design Studio is an academic makerspace, housed in the Mechanical Engineering Department at University of Delaware, that was co-developed through a multi-year, grassroots effort by the department and its undergraduate study body. It originated in 2012 in a small, under-utilized study room and evolved in stages into its present form as a 5,500…
Descriptors: Undergraduate Students, Engineering Education, Design, Shared Resources and Services
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
Wesley A. Stroud – Journal of College Science Teaching, 2025
This paper highlights the design process and implementation for an "all majors" undergraduate course that allows students a chance to reconnect with the natural world. During this course students explore a wide range of biological and physical science based topics that seek to highlight human intervention and our impacts on the planet.…
Descriptors: Scientific Principles, Science Education, Honors Curriculum, Majors (Students)
Padraic Casserly; Ademola Dare; Joy Onuh; Williams Baah; Ashley Taylor – Biomedical Engineering Education, 2024
Amidst the dual challenges of an eight-month university closure from nationwide public university strikes in Nigeria and the lingering impacts of the COVID-19 pandemic, we needed to innovate the delivery of BME graduate curriculum to ensure graduate students continued to progress in their studies. To ensure BME graduate students were engaging in…
Descriptors: Biomedicine, Engineering Education, Video Technology, Lecture Method
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
Higuera-Martínez, Oscar Iván; Corazza, Giovanni Emanuele; Fernández-Samacá, Liliana – European Journal of Engineering Education, 2022
This article presents how Problem- and Project-Based Learning (PBL) in engineering education can exploit the theoretical framework of the Space-Time (ST)-Continuum, according to which educational contexts can be classified in terms of the tightness vs. looseness of the relevant conceptual space S and available time T. By crossing these two…
Descriptors: Problem Based Learning, Engineering Education, Teaching Methods, Intervention
Lavi, Rea; Bathe, Mark; Hosoi, Anette; Mitra, Amitava; Crawley, Ed – Advances in Engineering Education, 2021
In Fall 2016, the School of Engineering at the Massachusetts Institute of Technology (MIT) chartered the New Engineering Education Transformation (NEET) initiative. NEET aims to educate young engineers to build the new machines and systems that will address societal needs of the 21st century. Students enter NEET in their sophomore year and join…
Descriptors: Technical Institutes, Engineering Education, Undergraduate Students, Interdisciplinary Approach