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Van Name, Barry – Tech Directions, 2012
There is a battlefield where no quarter is given, no mercy shown, but not a single drop of blood is spilled. It is an arena that witnesses the bringing together of high-tech design and manufacture with the outpouring of brute force, under the remotely accessed command of some of today's brightest students. This is the world of battling robots, or…
Descriptors: Females, Engineering, Computer Assisted Design, High School Students
Dallas, T.; Berg, J. M.; Gale, R. O. – IEEE Transactions on Education, 2012
This paper describes the goals, pedagogical system, and educational outcomes of a three-semester curriculum in microelectromechanical systems (MEMS). The sequence takes engineering students with no formal MEMS training and gives them the skills to participate in cutting-edge MEMS research and development. The evolution of the curriculum from…
Descriptors: Outcomes of Education, Competition, Curriculum Development, Manufacturing
Bertozzi, N.; Hebert, C.; Rought, J.; Staniunas, C. – Engineering Design Graphics Journal, 2007
Over the past decade the software products available for solid modeling, dynamic, stress, thermal, and flow analysis, and computer-aiding manufacturing (CAM) have become more powerful, affordable, and easier to use. At the same time it has become increasingly important for students to gain concurrent engineering design and systems integration…
Descriptors: Engineering Education, Computer Software, Engineering, Models
Barr, Ronald E.; Juricic, Davor – Engineering Education, 1991
A course curriculum model that shows how modern engineering design graphics can be used to conceptualize, develop, analyze, and communicate engineering designs is presented. Background studies, early investigations, and a weekly curriculum outline of the course are provided. (KR)
Descriptors: College Science, Computer Assisted Design, Computer Graphics, Course Content
Krueger, Thomas J.; Barr, Ronald E. – Engineering Design Graphics Journal, 2007
Engineering design graphics education has come a long way in the past two decades. The emergence of solid geometric modeling technology has become the focal point for the graphical development of engineering design ideas. The main attraction of this 3-D modeling approach is the downstream application of the data base to analysis and…
Descriptors: Models, Engineering, Barriers, Costs
Peer reviewedFritte, A.; Vanbeveren, R. – European Journal of Engineering Education, 1990
Discussed are the objectives of higher technical education, and computer hardware and software requirements for engineering education. One approach to meeting these objectives is described using a Belgian university as an example. (CW)
Descriptors: College Curriculum, College Science, Computer Assisted Design, Computer Assisted Instruction

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