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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
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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
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Basham, K. Lynn; Kotrlik, Joe W. – Journal of Technology Education, 2008
Spatial abilities are fundamental to human functioning in the physical world. Spatial reasoning allows people to use concepts of shape, features, and relationships in both concrete and abstract ways, to make and use things in the world, to navigate, and to communicate. Surgeons, pilots, architects, engineers, mechanics, builders, farmers, trades…
Descriptors: Computer Assisted Design, Educational Technology, Spatial Ability, Grade 9