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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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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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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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Peeters, Marie-Christine; Londers, Elsje; Van der Hoeven, Wouter – European Journal of Engineering Education, 2014
Following the decision at the KU Leuven to implement the educational concept of guided independent learning and to encourage students to participate in scientific research, the Faculty of Bioscience Engineering decided to introduce a bachelor thesis. Competencies, such as communication, scientific research and teamwork, need to be present in the…
Descriptors: Integrated Activities, Integrated Curriculum, Teamwork, Biological Sciences
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Mendez, Empar; Casadesus, Marti; De Ciurana, Quim – Innovations in Education and Teaching International, 2006
This article describes the Gironacel[R] project--a virtual learning environment produced by the University of Girona. The purpose of this tool is to make it easier for students studying quality management courses within engineering schools to understand what the "quality culture" is and how to implement the ISO 9001:2000 standard in a…
Descriptors: Engineering Education, Standards, Total Quality Management, Educational Environment
Zorowski, Carl F.; Brown, Thomas H., Jr. – 1998
This paper summarizes lessons learned from the creation and operation of a National Science Foundation-sponsored Engineering Education Coalition, the Southeastern University and College Coalition for Engineering Education (SUCCEED). Specific operational issues addressed include planning, organization, leadership, operations, support, participant…
Descriptors: Educational Change, Educational Cooperation, Educational Research, Engineering Education
Neff, Gregory; And Others – 1990
A report describes the Purdue University Calumet Mechanical Engineering Technology (MET) program, especially the approaches used to enhance industrial involvement and take advantage of the urban setting to find real-life senior project problems. The outreach program, used by faculty to find student senior project material, is described along with…
Descriptors: Case Studies, College Seniors, Engineering Education, Higher Education
Landis, Raymond B. – Engineering Education, 1988
Discusses some of the barriers that impede minority success in college and gives suggestions for overcoming them. Describes the California Minority Engineering Program (MEP) as a successful program that has been replicated at several California universities. Presents the three structural elements and gives suggestions for starting a MEP program.…
Descriptors: Academic Persistence, College Science, Engineering Education, Higher Education
Bussard, Ellen – 1982
A 3-year project was developed to increase students' abilities to perform competently as professional engineers. The project sought to infuse into existing courses concern for, practice with, and development of three competencies critical to professional success: problem-solving, communication, and value clarification. Eight elementary and…
Descriptors: Communication (Thought Transfer), Competence, Course Descriptions, Curriculum Development
National Action Council for Minorities in Engineering, Inc., New York, NY. – 1987
Based on the expertise generated by years of work in minority engineering program development, this handbook consolidates the experiences of program directors, industry sponsors, and school system collaborators. Its purpose is to provide quidelines for setting up a comprehensive precollege engineering program. Discussions include: (1) history; (2)…
Descriptors: Academic Achievement, Engineering Education, High Schools, Minority Groups
Tobin, Alexander; Woodring, Richard – Engineering Education, 1988
This article describes a precollege intervention program known as the Philadelphia Regional Introduction for Minorities in Engineering. The goals and objectives, essential elements, and history of the program are discussed. Several ideas for program administrators are listed. (CW)
Descriptors: Career Counseling, Career Education, Engineering Education, Females