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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
Suvannatsiri, Ratchasak; Santichaianant, Kitidech; Murphy, Elizabeth – European Journal of Engineering Education, 2015
This paper reports on a project in which students designed, constructed and tested a model of an existing early warning system with simulation of debris flow in a context of a landslide. Students also assessed rural community members' knowledge of this system and subsequently taught them to estimate the time needed for evacuation of the community…
Descriptors: Undergraduate Students, Engineering Education, Student Improvement, Emergency Programs
Mitts, Charles R. – Technology and Engineering Teacher, 2013
This design/problem-solving activity challenges students to design a replacement bridge for one that has been designated as either structurally deficient or functionally obsolete. The Aycock MS Technology/STEM Magnet Program Virtual Bridge Design Challenge is an authentic introduction to the engineering design process. It is a socially relevant…
Descriptors: Problem Solving, Facility Planning, Design, Engineering Education
Granlund, George – Tech Directions, 2008
Like many technology teachers, the author, a technology education teacher at Arthur Hill High School in Saginaw, Michigan, tries to stretch his budget by "milking" each student activity for maximum benefit. In the technology department, they use balsa wood towers to teach the basics of structural engineering. To get the most from their materials,…
Descriptors: Technology Education, Engineering Education, Civil Engineering, Engineering Technology
Sharples, Kent – Engineering Education, 1977
Briefly reports on the structure and evaluation of an individually-paced, two year civil engineering technology curriculum sponsored by a National Science Foundation grant. The written modules progress linearly with support media presentations. Students in the self-paced program generally outperformed lecture-based students on cognitive…
Descriptors: Civil Engineering, Curriculum Development, Curriculum Evaluation, Engineering Education
Layton, Edwin T., Jr. – 1986
In examining the history of American engineering, this book emphasizes professionalism, social responsibility, and ethics. It explains how some engineers have attempted to express a concern for the social effects of technology and to forge codes of ethics which could articulate the profession's fundamental obligation to the public. The document's…
Descriptors: Business, Civil Engineering, Engineering, Engineering Education