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Showing 1 to 15 of 47 results Save | Export
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Kirsten A. Davis; David B. Knight – Journal of Engineering Education, 2025
Background: As more universities seek to offer international experiences for engineering students, it is important to design such programs to effectively support student learning abroad. Previous research on study abroad has focused on a limited number of outcomes and therefore failed to consider the diversity of experiences students may have in…
Descriptors: College Students, Engineering Education, Student Experience, Study Abroad
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Nutwell, Emily; Mokashi, Prasad; Christy, Ann – Advances in Engineering Education, 2023
This paper describes the course design and evaluation results for an online continuing education program designed for working engineers. Engineering educators have long recognized the value of reducing the gap between the classroom and work environments. Implementing experiential learning in the undergraduate classroom brings much needed context…
Descriptors: Instructional Design, Online Courses, Engineering Education, Work Environment
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Donald, John R.; Jamieson, Marnie V. – New Directions for Student Leadership, 2022
This article outlines the diversity of engineering leadership programs by comparing origin stories, definitions, program structure, instructional strategies, research, and program evaluation approaches of seven North American engineering leadership programs.
Descriptors: Engineering Education, Diversity, Program Design, Teaching Methods
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Tiyamike Ngonda; Richard Nkhoma; Thabo Falayi – Higher Education, Skills and Work-based Learning, 2024
Purpose: The study compares how work-integrated learning (WIL) placement positioning, duration, assessment strategies and environment at three Southern African universities influence engineering students' academic and employability outcomes. Design/methodology/approach: The study used a qualitative case study approach that drew on the principles…
Descriptors: Foreign Countries, School Business Relationship, Work Experience Programs, Experiential Learning
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Alarcon-Pereira, Grecia; Rampasso, Izabela Simon; Tapia-Ubeda, Francisco J.; Rojas-Aguilar, Karol; Rojas-Córdova, Carolina – International Journal of Sustainability in Higher Education, 2023
Purpose: Considering the relevance of education for sustainable development (SD) to enhancing engineers' abilities to contribute towards sustainability-related issues, this study aims to help understand the global context of the insertion of SD into engineering education and to provide guidelines to further evolve research and efforts towards…
Descriptors: Sustainability, Sustainable Development, Engineering Education, Higher Education
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Hjalmarson, Margret A.; Nelson, Jill K.; Huettel, Lisa G.; Wage, Kathleen E.; Buck, John R.; Padgett, Wayne T. – Advances in Engineering Education, 2021
This paper reports on a two-year project to form teaching development groups in engineering departments. The goal of each group was to discuss and implement interactive teaching strategies (e.g., in-class problem solving). The research design used meetings notes, feedback from group leaders and a case study of one participant to describe how the…
Descriptors: Engineering Education, Faculty Development, College Faculty, Teaching Methods
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Paul, Robyn Mae; Jazayeri, Yani; Behjat, Laleh; Potter, Michael – IEEE Transactions on Education, 2023
Contribution: In this article, integrated problem-based learning and critical reflection are shown to contribute to significant learning experiences, without needing to increase course hours and course assignments. Background: With the advances in technology, such as artificial intelligence, there is a shift in teaching and learning paradigms,…
Descriptors: Problem Based Learning, Educational Technology, Engineering Education, Program Design
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Rowe, Nicholas; Martin, Rose; Buck, Ralph; Mabingo, Alfdaniels – Higher Education Research and Development, 2021
This article draws on a multi-phase study of collaboration in tertiary education programmes. This commenced with a survey of 111 students in Engineering and Creative Arts, contrasting their experiences of the teaching of collaboration in different faculties. This led to an iterative action research cycle, in which the conceptual boundaries that…
Descriptors: Fundamental Concepts, Engineering Education, Art Education, Alignment (Education)
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Galoyan, Tamara; Songer, Nancy Butler – International Journal of Science Education, 2022
To build a sustainable future, science and engineering education programmes should emphasise scientific investigation, collaboration across traditional science topics and disciplines, and engineering design, including design and evaluation of solutions. While some research studies articulate the shifts that are needed to realise classroom learning…
Descriptors: Interdisciplinary Approach, Engineering Education, Teamwork, Scientific Research
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Trowsdale, Jo; McKenna, Ursula; Francis, Leslie J. – Research in Education, 2021
In order to evaluate the impact of "The Imagineerium" a 10-week educational project, teachers were asked to observe and rate the behaviour of a pilot sample of 135 participating students both at the beginning and at the end of the 10-week period. Scores recorded on the seven-item Trowsdale Index of Teacher Observation of Student…
Descriptors: Creativity Tests, Creativity, Teacher Attitudes, Observation
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Melvin, Adam T.; Steel, Adrienne – Chemical Engineering Education, 2019
Recent studies have identified that engaging middle school students (grades 6-8) in STEM activities increases their chances of choosing STEM-related disciplines when entering college; however, very few university-sponsored opportunities are available for these students. This paper describes an outreach day for middle school students consisting of…
Descriptors: Middle School Students, Outreach Programs, Engineering Education, Experiential Learning
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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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Edwards, Cherie D.; Lee, Walter C.; Knight, David B.; Fletcher, Trina; Reid, Karl; Lewis, Racheida – Advances in Engineering Education, 2021
Striving to remain a global leader in innovation, the United States continues prioritizing broadening participation in engineering and other STEM fields. For this reason, STEM outreach programs are increasingly popular and vital. However, few programs offer such outreach experiences at a large, national scale and intentionally situate those…
Descriptors: Summer Programs, Engineering Education, African American Students, Access to Education
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van der Wal, Nathalie J.; Bakker, Arthur; Drijvers, Paul – ZDM: The International Journal on Mathematics Education, 2019
The workplace practices of engineers have changed due to the ubiquity of digital technology. So-called techno-mathematical literacies (TmL), seen as a domain specification of 21st-century skills, are essential for future engineers. How these TmL can be fostered in their education, however, is still unclear. To address this issue, we conducted a…
Descriptors: Engineering Education, Mathematics Instruction, Chemistry, Science Instruction
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Pitt, Aleksandra N.; Schultz, Courtney A.; Vaske, Jerry J. – Environmental Education Research, 2019
The US Forest Service has a long history of youth conservation education. We investigated U.S. Forest Service citizen science programs that involve secondary school students in field collection of monitoring data to understand (1) how the programs integrated science and environmental education and (2) whether these programs advance ecological…
Descriptors: Literacy, Environmental Education, Program Descriptions, Forestry
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