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Jessica M. Vaden; April A. Dukes; Kristen Parrish; Amy Hermundstad Nave; Amy Landis; Melissa M. Bilec – Journal of Civil Engineering Education, 2025
Historically minoritized and marginalized students have had harmful discriminatory experiences within and outside of their classrooms, which has been shown to negatively impact their educational outcomes. Research has illustrated how the transformation of pedagogical decisions and classroom interactions that cultivate inclusive excellence have…
Descriptors: Undergraduate Study, Undergraduate Students, Engineering Education, Program Development
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Luiz Ney d’Escoffier; Aida Guerra; Marco Braga – Journal of Problem Based Learning in Higher Education, 2024
Education for sustainability demands transformative knowledge, which can be obtained through problem-based, project-organized learning (PBL). However, the integration of PBL and sustainability in higher education has not yet met the needs required due to the lack of application of a systemic perspective and strategy. In this literature review, we…
Descriptors: Problem Based Learning, Engineering Education, Sustainability, Higher Education
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Shekhar, Prateek; Maura Borrego – IEEE Transactions on Education, 2017
Engineering education research has empirically validated the effectiveness of active learning over traditional instructional methods. However, the dissemination of education research into instructional practice has been slow. Faculty workshops for current and future instructors offer a solution to promote the widespread adoption of active learning…
Descriptors: Case Studies, Engineering Education, Program Implementation, Teacher Workshops
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Schrlau, Michael G.; Stevens, Robert J.; Schley, Sara – Advances in Engineering Education, 2016
Flipped classrooms support learner-centered approaches to improve conceptualization, comprehension, and problem solving skills by delivering content outside the classroom and actively engaging students inside the classroom. While literature in engineering and science education supports and encourages the use of inverted instruction, many core…
Descriptors: Engineering Education, Heat, Thermodynamics, Technology Uses in Education
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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
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Wright, Jeff R. – New Directions for Higher Education, 2007
In this article, the author relates his experiences leading the building of the School of Engineering within the new University of California (UC) campus of UC Merced. He discusses the goals of the project, as well as the challenges it faced, and concludes with personal lessons for those tasked with similar positions within university building…
Descriptors: Engineering Education, College Faculty, Undergraduate Study, Academic Achievement
National Science Foundation, Washington, DC. Directorate for Education and Human Resources. – 1998
This is a companion study to "Shaping the Future: New Expectations for Undergraduate Education in Science, Math, Engineering, and Technology (SMET)" (NSF 96-139). Both the original report and Volume 2 focus on a collaborative approach to developing and implementing strategies to improve undergraduate SMET education. The reports, compiled…
Descriptors: Educational Change, Engineering Education, Followup Studies, Higher Education
National Science Foundation, Arlington, VA. Directorate for Education and Human Resources. – 1996
This conference, cosponsored by the NSF and the National Research Council (NRC), focused on developing and implementing strategies for improving undergraduate education in science, math, engineering and technology (SMET). Represented at the conference were various types of 2-year and 4-year institutions, private industry, professional societies,…
Descriptors: Community Colleges, Conference Proceedings, Educational Change, Engineering
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