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Yang, Fan; Akanbi, Temitope; Chong, Oscar Wong; Zhang, Jiansong; Debs, Luciana; Chen, Yunfeng; Hubbard, Bryan J. – Journal of Civil Engineering Education, 2024
Computing technology is reshaping the way in which professionals in the architecture, engineering, and construction industries conduct their business. The execution of construction tasks is changing from traditional 2D to 3D building information modeling (BIM)-based concepts. The use of BIM is expanded and enriched by the introduction of advanced…
Descriptors: Civil Engineering, Engineering Education, Programming Languages, Construction Management
National Academies Press, 2016
Ethical practice in engineering is critical for ensuring public trust in the field and in its practitioners, especially as engineers increasingly tackle international and socially complex problems that combine technical and ethical challenges. This report aims to raise awareness of the variety of exceptional programs and strategies for improving…
Descriptors: Ethics, Engineering Education, Social Problems, Consciousness Raising
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
Flowers, Jim; Gorski, Alecia – Technology and Engineering Teacher, 2017
Whether you teach elementary school students, secondary school students, or college students, you can include upcycling activities in your class to promote both design skills and an environmental ethic. This article shares how a teacher at one school is doing just this, providing suggestions for those who have different material processing…
Descriptors: Teaching Methods, Recycling, Wastes, Experiential Learning
Goodman, Kevin; Davis, Julian; McDonald, Thomas – American Journal of Engineering Education, 2016
In an effort to motivate undergraduate engineering students to prepare for class by reviewing material before lectures, a "Look-Ahead" problem was utilized. Students from two undergraduate engineering courses; Statics and Electronic Circuits, were assigned problems from course material that had not yet been covered in class. These…
Descriptors: Undergraduate Students, Engineering Education, Assignments, Reading Assignments
Summers, Sarah E.; Chenette, Heather C. S.; Ingram, Ella L.; McCormack, Jay P.; Cunningham, Patrick J. – InSight: A Journal of Scholarly Teaching, 2016
Reflection is a high-impact practice in education. This paper explores the premise, approach, and outcomes of a learning community centered on scholarly engagement with the literature of reflection. Using the reflection model operationalized by a national consortium, we developed, implemented, and assessed reflection activities designed to create…
Descriptors: Reflection, Interdisciplinary Approach, Teaching Methods, Educational Practices
Evenhouse, David; Patel, Nimit; Gerschutz, Maria; Stites, Nick A.; Rhoads, Jeffrey F.; Berger, Edward; DeBoer, Jennifer – European Journal of Engineering Education, 2018
Engineering education has been slow to adopt research-based educational innovations. Few prior works on such adoption have investigated the combined classroom experiences of instructors and students when such innovations are being implemented. Therefore, this work focuses on the lived experiences of an instructor and her students when adopting an…
Descriptors: Educational Change, Undergraduate Students, Engineering Education, College Faculty
Foster, W. Tad; Shahhosseini, A. Mehran; Maughan, George – Journal of Technology Education, 2016
Facilitating student growth and development in diagnosing and solving technical problems remains a challenge for technology and engineering educators. With funding from the National Science Foundation, this team of researchers developed a self-guided, computer-based instructional program to experiment with conceptual mapping as a treatment to…
Descriptors: Technology Education, Engineering Education, Undergraduate Students, Problem Solving
Turner, Mathew J.; Webster, Rustin D. – American Journal of Engineering Education, 2017
This paper describes a student-centered approach to a power engineering technology course using the flipped or inverted classroom as well as active learning in the form of group discussions and team problem solving. The study compares student performance and perceptions of a traditional, teaching-centered classroom to two different flipped…
Descriptors: Comparative Analysis, Student Centered Learning, Engineering Technology, Power Technology
Xu, Renmei; Flowers, Jim – Technology and Engineering Teacher, 2015
Integrating different science, technology, engineering, and mathematics (STEM) areas can help students learn and leverage both the equipment and expertise at a single school. In comparing graphic communications classes with classes that involve rapid prototyping (RP) technologies like 3D printing, there are sufficient similarities between goals,…
Descriptors: Educational Technology, STEM Education, Integrated Activities, Specialization
Dib, Hazar Nicholas; Adamo-Villani, Nicoletta – Journal of Educational Technology Systems, 2016
We describe the development and evaluation of a virtual steel sculpture for engineering education. A good connection design requires the engineer to have a solid understanding of the mechanics and steel behavior. To help students better understand various connection types, many schools have acquired steel sculptures. A steel sculpture is a…
Descriptors: Computer Simulation, Teaching Methods, Engineering Education, Metallurgy
Dib, Hazar; Adamo-Villani, Nicoletta; Garver, Stephen – International Journal of Information and Communication Technology Education, 2014
Many benefits have been claimed for visualizations, a general assumption being that learning is facilitated. However, several researchers argue that little is known about the cognitive value of graphical representations, be they schematic visualizations, such as diagrams or more realistic, such as virtual reality. The study reported in the paper…
Descriptors: Comparative Analysis, Visualization, Undergraduate Students, Computer Graphics
Brizee, Allen – Journal of Technical Writing and Communication, 2015
Building on work by Dubinsky, Haskins, and Simmons and Grabill, this article explains how a technical communication instructor used Isocrates and informal usability testing to help guide a service-learning project involving the One Laptop Per Child XO-1 notebook. For the project, engineering students received feedback from peers and elementary…
Descriptors: Technical Writing, Rhetoric, Teaching Methods, Usability
Kartal, Ozgul; Dunya, Beyza Aksu; Diefes-Dux, Heidi A.; Zawojewski, Judith S. – International Journal of Research in Education and Science, 2016
Critical to many science, technology, engineering, and mathematics (STEM) career paths is mathematical modeling--specifically, the creation and adaptation of mathematical models to solve problems in complex settings. Conventional standardized measures of mathematics achievement are not structured to directly assess this type of mathematical…
Descriptors: Mathematical Models, STEM Education, Standardized Tests, Mathematics Achievement
Orange, Amy; Heinecke, Walter; Berger, Edward; Krousgrill, Charles; Mikic, Borjana; Quinn, Dane – Advances in Engineering Education, 2012
Between 2006 and 2010, sophomore engineering students at four universities were exposed to technologies designed to increase their learning in undergraduate engineering courses. Our findings suggest that students at all sites found the technologies integrated into their courses useful to their learning. Video solutions received the most positive…
Descriptors: Higher Education, Engineering Education, Undergraduate Students, Technology Integration
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