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EL-Ariss, Bilal; Zaneldin, Essam; Ahmed, Waleed – Education Sciences, 2021
Conventional methods of teaching structural engineering topics focus on face-to-face delivery of course materials. This study shows that using video-based e-learning in delivering an undergraduate Structural Steel Design course satisfactorily achieved most of the course learning outcomes. Video-based e-learning with animations and simulations…
Descriptors: Teaching Methods, Video Technology, Educational Technology, Electronic Learning
Chou, Karen C.; Moaveni, Saeed; Sapp, James D. – Journal of STEM Education: Innovations and Research, 2017
The integrity of a structural system depends on the strength of materials, shape of the individual member and the elements used to hold the members together. In most undergraduate civil engineering curricula, a structural steel and/or reinforced concrete design course is required. Usually, the main focus of these courses is on member selection…
Descriptors: Engineering Education, Metallurgy, Construction Materials, Computer Simulation
Vemury, Chandra Mouli; Heidrich, Oliver; Thorpe, Neil; Crosbie, Tracey – International Journal of Sustainability in Higher Education, 2018
Purpose: The purpose of this paper is to present pedagogical approaches developed and implemented to deliver sustainable design education (SDE) to second-year undergraduate students on civil engineering programmes in the (then) School of Civil Engineering and Geosciences at Newcastle University. In doing so, the work presented offers an example of…
Descriptors: Holistic Approach, Sustainability, Design, Engineering Education
Cramer, Steven; Kurten, Jaime – Tech Directions, 2005
While classroom instruction can and should still be used to teach students the fundamentals of engineering, the key to their ultimate success is learning to use that knowledge in a real-world setting. Out-of-class activities, like the American Society of Civil Engineers' (ASCE) National Concrete Canoe Competition, not only give students a hands-on…
Descriptors: Teamwork, Educational Technology, Civil Engineering, Competition