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Showing 1 to 15 of 17 results Save | Export
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Lydia Ross; Stephen Krause; Eugene Judson; Keith D. Hjelmstad; Robert Culbertson; James A. Middleton; Lindy Mayled; Sara Hoyt; Kara L. Hjelmstad – Advances in Engineering Education, 2024
Active learning pedagogical practices are more effective than instructor-centered teaching in building students' knowledge, skills, and understanding of engineering content and concepts. As such, a large-scale professional development (PD) program was created to move faculty toward the use of active learning. The project aimed to engage faculty in…
Descriptors: Faculty Development, Active Learning, Teaching Methods, Engineering Education
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Sheppard, Sheri D.; Anderson, R. Lanier; Kenny, Thomas W. – Advances in Engineering Education, 2021
Stanford has always embraced educational change, but not for its own sake. Instead, we have pursued reforms in response to specific problems or to realize definite possibilities. In that sense, our curricular innovations seek to move purposefully from "what is" to "what might be." Such purposeful change is guided by underlying…
Descriptors: College Faculty, Teacher Attitudes, Engineering Education, Educational Change
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Sochacka, Nicola W.; Delaine, David A.; Shepard, Thomas G.; Walther, Joachim – Advances in Engineering Education, 2021
Prior research indicates that empathy can help engineers achieve better outcomes in team-based, design, entrepreneurial, and humanitarian environments. We describe an educational innovation designed to teach engineering students empathic communication skills. Written in the spirit of a propagation (versus dissemination) paradigm, we focus on how…
Descriptors: Empathy, Teaching Methods, Engineering Education, Teamwork
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Bampasidis, Georgios; Piperidis, Dimitris; Papakonstantinou, Vassilis C.; Stathopoulos, Dimitris; Troumpetari, Christina; Poutos, Petros – Advances in Engineering Education, 2021
This paper presents the project Hydrobots, which the Eugenides Foundation has run in Greek secondary education schools since 2012. It is based on the MIT's Sea Perch project and more than 300 student teams got involved and built successfully an underwater remotely operated vehicle. The formal Greek education system lacks large-scale STEM-related…
Descriptors: Robotics, Engineering Education, STEM Education, Foreign Countries
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Adams, Robin S.; Brightman, Andrew O.; DeBoer, Jennifer; Jamieson, Leah H.; Oakes, William C.; Riley, Donna M.; Rudin, Paige – Advances in Engineering Education, 2021
Purdue University's commitments as a public land grant institution that purposefully integrates education, research, and service has enabled the university to develop as a site of innovation and impact at scale, making strategic investments and taking bold risks that produce benefits within wider social, political, and economic systems. We present…
Descriptors: Engineering Education, Access to Education, Organizational Culture, Institutional Mission
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Bertel, Lykke Brogaard; Askehave, Inger; Brohus, Henrik; Geil, Olav; Kolmos, Anette; Ovesen, Nis; Stoustrup, Jakob – Advances in Engineering Education, 2021
Since its establishment in 1974, Aalborg University has aimed to deliver cutting-edge research and innovative practices in engineering education. However, increasing complexity related to rapid developments in digitalization and emerging societal challenges offer new opportunities, requirements, and expectations across disciplines for educational…
Descriptors: Interdisciplinary Approach, Problem Based Learning, Student Projects, Active Learning
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Martin, Lee; Dixon, Colin – Advances in Engineering Education, 2019
There is growing interest in the engineering education community in "making" and the Maker Movement as a context for young people to learn and develop interest around design and early engineering competencies. Although some researchers argue that making has the potential to serve a liberating and anti-oppressive function in education,…
Descriptors: Engineering Education, Workshops, Educational Innovation, High School Students
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Zhan, Wei; Wang, Jyhwen; Vanajakumari, Manoj; Johnson, Michael D. – Advances in Engineering Education, 2018
This paper discusses an initiative called Product Innovation and Development (PID) that was launched at Texas A&M University. The goal of PID is to create a high impact learning environment that focuses on innovative product development. Undergraduate students are hired to develop innovative new products. The student teams generate ideas for…
Descriptors: Engineering Technology, Educational Environment, Undergraduate Students, Innovation
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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
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Zapata-Ramos, Mari Luz; Lugo, José E. – Advances in Engineering Education, 2020
Students are attracted to innovation and entrepreneurship. However, it is challenging for them to take courses in I&E due to their already busy curriculums. This paper describes the "New Venture Design Experience," a one-year interdisciplinary program that pairs core and elective courses between the colleges of Engineering and…
Descriptors: Design, Entrepreneurship, Teaching Methods, Engineering Education
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Karkoub, Mansour; Yang, Chun-Lin; Karkoub, Wael; Raslan, Moustafa – Advances in Engineering Education, 2020
For many years, educators have been developing tools and techniques to improve the learning process in higher education; however, the vast majority of these do not focus directly on deep learning. In this work, an innovative teaching/learning tool is presented which focuses on deep learning of some engineering skills and principles. The tool is…
Descriptors: Engineering Education, Learning Processes, Higher Education, Teaching Methods
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Hitt, Sarah Jayne; Holles, Cortney E. P.; Lefton, Toni – Advances in Engineering Education, 2020
This article discusses two multidisciplinary courses created at the Colorado School of Mines that were developed to integrate ethics into the first-year engineering curriculum: "Nature and Human Values" (NHV) and "Innovation and Discovery in Engineering, Arts, and Sciences" (IDEAS). In both NHV and IDEAS, our objectives are to…
Descriptors: Design, Ethics, Engineering Education, Interdisciplinary Approach
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Marshall, Jill; Bhasin, Amit; Boyles, Stephen; David, Bernard; James, Rachel; Patrick, Anita – Advances in Engineering Education, 2018
Our study used a natural experiment to compare a project-based cornerstone course with the traditionally-taught introductory course in civil engineering. During the study, two sections of the course were organized around an overarching project, the design of an event center, and the remaining sections used guest lectures, a textbook, and…
Descriptors: Active Learning, Student Projects, Civil Engineering, Student Attitudes
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Clevenger, Caroline; Lopez del Puerto, Carla; Glick, Scott – Advances in Engineering Education, 2015
This paper documents and assesses the development of a construction safety training module featuring interactive, BIM-enabled, 3D visualizations to test if such a tool can enhance safety training related to scaffolds. This research documents the technical challenges and the lessons learned through the development and administration of a prototype…
Descriptors: Engineering Education, Safety, Construction (Process), Teaching Methods
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Webster, Donald R.; Majerich, David M.; Madden, Amanda G. – Advances in Engineering Education, 2016
A flipped classroom approach was implemented in an undergraduate fluid mechanics course. Students watched short, online video lectures before class, participated in active in-class problem solving sessions (in pairs), and completed individualized online quizzes weekly. In-class activities were designed to develop problem-solving skills and teach…
Descriptors: Mechanics (Physics), Undergraduate Students, Electronic Learning, Multimedia Materials
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