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Darshan M. A. Karwat; James R. Blakley; Elizabeth A. Castillo; Amy Squitieri; Alisa Oyler; Madison M. Macias – Journal of Civil Engineering Education, 2025
Engineers and planners are central players in creating the built environments and shaping natural ones that make up our communities. They can be a force for creating environments that are just and equitable, and by doing so advance the ideals of environmental justice. But, too often, these professionals are not empowered to create or seize…
Descriptors: Engineering Education, Physical Environment, Environmental Education, Justice
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Komp, Evan A.; Pelkie, Brenden; Janulaitis, Nida; Abel, Michael; Castillo, Ivan; Chiang, Leo H.; Peng, You; Beck, David C.; Valleau, Stéphanie – Chemical Engineering Education, 2023
We present a two-week active learning chemical engineering hackathon event specifically designed to teach undergraduate chemical engineering students of any skill level data science through Python and directly apply this knowledge to a real problem provided by industry. The event is free and optional to the students. We use self-evaluation surveys…
Descriptors: Data Science, Undergraduate Students, Learning Activities, Chemical Engineering
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English, Niall J. – Chemical Engineering Education, 2022
Molecular-, fluid- and field-dynamics simulation are becoming more mainstream tools for practicing process engineers; here, the academic community needs to pay close attention to "upskilling" demands from industry, where remote working/training emphasizes the need for sophisticated computational-engineering design tools with molecular…
Descriptors: Engineering Education, Skill Development, Computation, Design
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Shen Zhan; Ling Wang – Education Research and Perspectives, 2024
The rapid integration of artificial intelligence (AI) in higher education has been significantly propelled by developments in generative AI tools, which hold considerable promise for transforming teaching and assessment methodologies. This paper explores the distinctive opportunities and challenges associated with the incorporation of generative…
Descriptors: Artificial Intelligence, Technology Uses in Education, Evaluation Methods, Engineering Education
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Meagan E. Ita; Gönül Z. Kaletunç; Katelyn E. Swindle-Reilly – Biomedical Engineering Education, 2023
Entrepreneurial minded learning (EML) is a pedagogical technique that gives students the tools to identify opportunities, focus on impact, and to create value through their solutions. The entrepreneurial mindset builds upon three key elements: curiosity, connections, and creating value (3 Cs). A biomedical engineering course was developed using…
Descriptors: Entrepreneurship, Student Attitudes, Biomedicine, Engineering Education
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Sabriya Stukes; Eliot Bethke; Michael J. O'Donnell; Jennifer R. Amos – Biomedical Engineering Education, 2023
Undergraduate biomedical engineering programs are better preparing students to enter industry; however, some positions and sectors expect students to enter with a higher level degree. As an alternative to research-focused graduate programs, Specialized Master's Programs (SMPs) cater to students with a variety of educational backgrounds and focus…
Descriptors: Biomedicine, Masters Programs, Education Work Relationship, Career Readiness
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Alyssa C. Taylor; Jamie L. Hernandez – Biomedical Engineering Education, 2022
As cornerstones of biomedical engineering and bioengineering undergraduate programs, hands-on laboratory experiences promote key skill development and student engagement. Lab courses often involve team-based activities and close communication with instructors, allowing students to build connection and community. Necessitated by the pandemic,…
Descriptors: Inclusion, Teamwork, Blended Learning, Biology
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Lowe, David; Goldfinch, Tom; Kadi, Anthony; Willey, Keith; Wilkinson, Tim – European Journal of Engineering Education, 2022
The professional formation of new graduates and their ability to perform well at the start of their career depends on the development of both technical skills and professional competencies. Whilst the latter aspects have become increasingly considered within engineering programs, they are often learnt within an academic context rather than a…
Descriptors: Engineering Education, College Graduates, Competency Based Education, Skill Development
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Santos, Gilberto; Mandado, Enrique; Silva, Rui; Doiro, Manuel – European Journal of Engineering Education, 2019
The different technology fields have increased in complexity, especially during the last two decades, giving place to the concept of Complex Technology. An example is Electronics also characterised as a horizontal technology being incorporated in many products and processes of other technological areas. Bloom's taxonomy of learning objectives and…
Descriptors: Engineering Education, Computer Assisted Instruction, Taxonomy, Educational Objectives
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Scriver, Stacey; Walsh Olesen, Amber; Clifford, Eoghan – Irish Educational Studies, 2021
This paper examines the successes and challenges of a Supplemental Instruction/Peer Assisted Learning (SI/PAL) scheme at an Irish Higher Education Institute that was the outcome of a co-working approach between academic staff and the Students' Union. It considers how novel approaches can enhance student experience, support student learning and…
Descriptors: Partnerships in Education, Academic Achievement, Peer Teaching, Undergraduate Students
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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
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Geraskin, Nikolay I.; Krasnoborodko, Andrey A.; Glebov, Vasily B. – Industry and Higher Education, 2020
This article summarises the results of a preliminary feasibility study and the experience of implementing Conceive-Design-Implement-Operate (CDIO) ideas during 2016-2019 in the education of nuclear specialists. The study is a form of empirical research. The results and findings regarding implementation of the CDIO approach are presented in…
Descriptors: Engineering Education, Nuclear Energy, Foreign Countries, Graduate Students
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Talmi, Iris; Hazzan, Orit; Katz, Reuven – Higher Education Studies, 2018
The 21st century is characterized by new technological developments and a rapid pace of change, challenging the academy to educate students for a future employment market characterized by change and uncertainty. This market requires practitioners to develop a broad set of skills, so-called "21st-century skills," along with more focused…
Descriptors: Undergraduate Students, Student Motivation, Engineering Education, Student Projects
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Karareba, Gilbert; Baillie, Caroline – Education, Citizenship and Social Justice, 2019
We argue for the need for and provide an example of a new form of community-based engineering education in Rwanda. We draw on Bourdieu's theories of field and habitus to frame the arguments for an alternative to the current dominant engineering education model. The proposed community engineering education programme has three key facets including…
Descriptors: Foreign Countries, Critical Theory, Critical Thinking, Teaching Methods
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Storksdieck, Martin – Cultural Studies of Science Education, 2016
Grace Reid and the late Stephen Norris argue in this issue the urgent need for widespread Science Media Education (SME) as an integral part of formal and informal science education. SME is to achieve two goals: First, allow learners to critically evaluate any media as a source for scientific information by understanding the socio-economic and…
Descriptors: Information Literacy, Science Education, Media Literacy, STEM Education
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