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Matthew, Victoria; Monroe-White, Thema – Advances in Engineering Education, 2020
In this paper, we provide an overview of the Pathways to Innovation Program (Pathways), a faculty development and institutional change initiative designed to address the adaptive challenge of integrating innovation and entrepreneurship (I&E) into undergraduate engineering, nationwide. In particular, we build upon earlier papers that describe…
Descriptors: Innovation, Program Descriptions, Faculty Development, Organizational Change
Lleó, A.; Agholor, D.; Serrano, N.; Prieto-Sandoval, V. – European Journal of Engineering Education, 2018
This article describes an action research (AR) project for designing and implementing a structured mentoring programme in a Spanish university. A student affairs unit, a team of researchers, faculty-mentors and student-protégés worked together on three cycles of AR. The result is a programmatic mentoring programme for the development of…
Descriptors: Mentors, Action Research, Program Descriptions, Trust (Psychology)
Cui, Weili; Jones, Wayne E., Jr.; Klotzkin, David; Myers, Greta L.; Wagoner, Shawn; White, Bruce – IEEE Transactions on Education, 2015
Microfabrication is a critical area to many branches of science and engineering. However, to many students accustomed to seeing transistors as things that come in a lab kit, it is an obscure subtopic of their discipline. Beginning in 2009, the authors undertook a broad multidisciplinary approach to bring microfabrication into all aspects of the…
Descriptors: Interdisciplinary Approach, Engineering Education, Universities, Program Descriptions
Malheiro, Benedita; Silva, Manuel; Ribeiro, Maria Cristina; Guedes, Pedro; Ferreira, Paulo – European Journal of Engineering Education, 2015
Current engineering education challenges require approaches that promote scientific, technical, design and complementary skills while fostering autonomy, innovation and responsibility. The European Project Semester (EPS) at Instituto Superior de Engenharia do Porto (ISEP) (EPS@ISEP) is a one semester project-based learning programme (30 European…
Descriptors: Engineering Education, Problem Solving, Interdisciplinary Approach, Cultural Pluralism
Wu, Bin; Abad, Jorge – American Journal of Engineering Education, 2014
This paper reports a problem-based learning model for the training of university students in the area of industrial energy efficiency, and discusses its context, contents, and the results from its implementation. The impact has been significant, with hundreds of university graduates trained and many of them now working in industry, leading their…
Descriptors: Energy, Energy Education, Labor Force Development, Problem Based Learning
Forest, Craig R.; Moore, Roxanne A.; Jariwala, Amit S.; Fasse, Barbara Burks; Linsey, Julie; Newstetter, Wendy; Ngo, Peter; Quintero, Christopher – Advances in Engineering Education, 2014
Creativity, invention, and innovation are values championed as central pillars of engineering education. However, university environments that foster open-ended design-build projects are uncommon. Fabrication and prototyping spaces at universities are typically "machine shops" where students relinquish actual fabrication activities to…
Descriptors: Engineering Education, Intellectual Property, Studio Art, Creativity
Implementation of a Multidisciplinary Professional Skills Course at an Electrical Engineering School
Gider, F.; Likar, B.; Kern, T.; Miklavcic, D. – IEEE Transactions on Education, 2012
This paper describes a case study of an innovative approach to teaching at an engineering school. The postgraduate course "Project Work and Communication in Research and Development (R&D)" was developed at the Faculty of Electrical Engineering of the University of Ljubljana, Ljubljana, Slovenia. The main aim of the course was to make…
Descriptors: Teaching Methods, Engineering Education, Foreign Countries, Feedback (Response)
Ricks, Kenneth G.; Richardson, James A.; Stern, Harold P.; Taylor, Robert P.; Taylor, Ryan A. – American Journal of Engineering Education, 2014
Retention and graduation rates for engineering disciplines are significantly lower than desired, and research literature offers many possible causes. Engineering learning communities provide the opportunity to study relationships among specific causes and to develop and evaluate activities designed to lessen their impact. This paper details an…
Descriptors: At Risk Students, School Holding Power, Academic Persistence, Engineering Education
Herz, Lori; Russo, M. Jean; Ou-Yang, H. Daniel; El-Aasser, Mohamed; Jagota, Anand; Tatic-Lucic, Svetlana; Ochs, John – Advances in Engineering Education, 2011
The undergraduate Bioengineering Program at Lehigh University was established as part of the university's Bioscience and Biotechnology Initiative with support from the National Science Foundation through a grant from its Division of Engineering Education and Centers (EEC). The objective here is to describe the program development and…
Descriptors: Undergraduate Study, Engineering Education, Biotechnology, Program Descriptions
Daniels, John L.; Wood, Sally L.; Kemnitzer, Susan C. – Advances in Engineering Education, 2011
Engineering education directly supports the nation's capacity for economic growth, infrastructure renewal, and security, as well as environmental and human health. Numerous reports have recommended federal support to advance our understanding of how students learn, how faculty teach, and how teaching and learning are assessed. The U.S. National…
Descriptors: Engineering Education, Educational Practices, Educational Research, Science Course Improvement Projects
Arzberger, Peter; Wienhausen, Gabriele; Abramson, David; Galvin, Jim; Date, Susumu; Lin, Fang-Pang; Nan, Kai; Shimojo, Shinji – Advances in Engineering Education, 2010
Recently we have seen an increase in the calls for universities and the education community to re-think undergraduate education and create opportunities that prepare students as effective global professionals. The key motivator is the need to build a research and industrial workforce that works collaboratively across cultures and disciplines to…
Descriptors: Sustainability, International Programs, Undergraduate Students, Science Careers
Loshbaugh, Heidi; Streveler, Ruth; Breaux, Kimberley – Center for the Advancement of Engineering Education (NJ1), 2007
The Center for the Advancement of Engineering Education was founded in 2003 with five collaborating institutions. A multi-institutional, multi-year grant offers many opportunities for the demands of reality to interfere with design goals. In particular, at Colorado School of Mines (CSM) student demographics required adjustment of the original APS…
Descriptors: Engineering Education, Research Design, Research Methodology, Program Implementation
Jackson, Marilyn T. – New Directions for Higher Education, 2007
The Atlanta University Center (AUC) comprises five historically black colleges and a centralized library. All are separate institutions, each having its own board of directors, president, infrastructure, students, faculty, staff, and traditions. To encourage coordination of effort and resources, the AUC was formed and the first formal cooperative…
Descriptors: Engineering Education, Black Colleges, Consortia, Dual Enrollment
Peer reviewedPriscoli, Jerome Delli – Environmentalist, 1983
Discusses why modern engineering requires social science and the nature of planning. After these conceptional discussions, 12 practical tools which social science brings to engineering are reviewed. A tested approach to training engineers in these tools is then described. Tools include institutional analysis, policy profiling, and other impact…
Descriptors: Civil Engineering, Engineering Education, Environmental Education, Futures (of Society)
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
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