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Wai Tong Chor; Kam Meng Goh; Li Li Lim; Kin Yun Lum; Tsung Heng Chiew – Education and Information Technologies, 2024
The programme outcomes are broad statements of knowledge, skills, and competencies that the students should be able to demonstrate upon graduation from a programme, while the Educational Taxonomy classifies learning objectives into different domains. The precise mapping of a course outcomes to the programme outcome and the educational taxonomy…
Descriptors: Artificial Intelligence, Engineering Education, Taxonomy, Educational Objectives
Collofello, Jim; Fox, Derek; Jamieson, Leah H.; Johnson, Bart M.; Loughman, Joshua; Morgan, Jim; Oakes, William C.; Schoepf, Jared; Smith, Crystal – Advances in Engineering Education, 2021
The EPICS Program was created in 1995 with the dual purposes of improving engineering education and addressing compelling needs within our communities. The model broke with many traditional academic traditions, involving students in multidisciplinary teams of students from first-year to fourth years for multiple semesters or even years on projects…
Descriptors: Engineering Education, Service Learning, Higher Education, Undergraduate Students
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
Nørgaard, Bente – European Journal of Engineering Education, 2019
The development of employees' skills and competences has become a key driver of economic growth in the developed world. It is widely recognised that enhancing people's skills and competences will be a major cause of future competitive advantage. Consequently, companies need to be able to identify precise areas where they have, or can build,…
Descriptors: Problem Based Learning, Engineering Education, Corporations, Models
Rata, Elizabeth – British Educational Research Journal, 2019
A theoretical model called 'Curriculum Design Coherence' (CDC) is described and justified. The model's purpose is to assist teachers in the compulsory and higher education sectors to design courses that can accommodate the complex and interdependent relationship between concepts and content and between knowledge and skills. Its intended usefulness…
Descriptors: Curriculum Design, Decision Making, Foreign Countries, Instructional Design
Stamou, Anastasios; Noutsopoulos, Constantinos; Kuhlmann, Anna; Rutschmann, Peter – European Journal of Engineering Education, 2020
We present a teaching methodology to answer the question 'How can we link teaching with research in our engineering courses?' Due to the combination of hybrid Problem Based Learning with Research Tutored/Oriented Teaching, the methodology enables the students to acquire the skills of 'problem solving', 'working in teams', 'analytic', 'written…
Descriptors: Teaching Methods, Engineering Education, Problem Based Learning, Teamwork
Servant-Miklos, Virginie – Interdisciplinary Journal of Problem-based Learning, 2020
This paper addresses one of the major confusions in the study and practice of problem-based learning today, namely the use of the term "problem-based learning" to refer to both the small-group tutorial method pioneered by McMaster University and Maastricht University in medical education, and the problem-oriented project-work method…
Descriptors: Student Projects, Active Learning, Teaching Methods, Problem Based Learning
Soundarajan, Neelam; Camp, Stephen M.; Lee, David; Ramnath, Rajiv; Weide, Bruce W. – Advances in Engineering Education, 2016
The number of freshmen interested in entrepreneurship has grown dramatically in the last few years. In response, many universities have created entrepreneurship programs, including ones focused on engineering entrepreneurship. In this paper, we report on NEWPATH, an innovative NSF-supported program at Ohio State, designed to nurture students to…
Descriptors: Program Descriptions, Engineering Education, Entrepreneurship, State Universities
Alonzo, Alicia C.; Ke, Li – Measurement: Interdisciplinary Research and Perspectives, 2016
A new vision of science learning described in the "Next Generation Science Standards"--particularly the science and engineering practices and their integration with content--pose significant challenges for large-scale assessment. This article explores what might be learned from advances in large-scale science assessment and…
Descriptors: Science Achievement, Science Tests, Group Testing, Accountability
Locicero, Ryan; Trotz, Maya A. – Advances in Engineering Education, 2018
The Green Space Based Learning (GSBL) is an educational model to mainstream green infrastructure within urban environments that builds on a long-term partnership between a Research I university, surrounding underserved community, and local school district with a portion being piloted through a federally funded Research Experience for Teachers…
Descriptors: Engineering Education, Phenomenology, Urban Areas, Program Descriptions
Mehta, Khanjan; Zappe, Sarah; Brannon, Mary Lynn; Zhao, Yu – Advances in Engineering Education, 2016
The Humanitarian Engineering and Social Entrepreneurship (HESE) Program engages students and faculty across Penn State in the rigorous research, design, field-testing, and launch of technology-based social enterprises that address global development challenges. HESE ventures are embedded in a series of five courses that integrate learning,…
Descriptors: Entrepreneurship, Educational Philosophy, Outcomes of Education, Interdisciplinary Approach
Hart, Brenda; McAnulty, Kate – Metropolitan Universities, 2014
For more than thirty years, personnel from the University of Louisville J.B. Speed School of Engineering have presented a summer program targeting high school students historically underrepresented in engineering fields. INSPIRE provides these students with an introduction to careers in engineering and assists the students in planning their…
Descriptors: Summer Science Programs, Enrichment Activities, High School Students, Science Interests
Lakonpol, Thongmee; Ruangsuwan, Chaiyot; Terdtoon, Pradit – Educational Research and Reviews, 2015
This research aimed to develop a web-based learning environment model for enhancing cognitive skills of undergraduate students in the field of electrical engineering. The research is divided into 4 phases: 1) investigating the current status and requirements of web-based learning environment models. 2) developing a web-based learning environment…
Descriptors: Web Based Instruction, Undergraduate Students, Engineering Education, Teaching Methods
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

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