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Chandramouli, Magesh; Bertoline, Gary; Connolly, Patrick – Engineering Design Graphics Journal, 2009
This study proposes an innovative solution to the problem of multiobjective engineering design optimization by integrating desktop VR with genetic computing. Although, this study considers the case of construction design as an example to illustrate the framework, this method can very much be extended to other engineering design problems as well.…
Descriptors: Visualization, Genetics, Engineering, Guidelines
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Yue, Jianping – Engineering Design Graphics Journal, 2007
Spatial visualization is a fundamental skill in technical graphics and engineering designs. From conventional multiview drawing to modern solid modeling using computer-aided design, visualization skills have always been essential for representing three-dimensional objects and assemblies. Researchers have developed various types of tests to measure…
Descriptors: Computer Assisted Design, Visualization, Engineering, Spatial Ability
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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
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Jeswiet, J.; Mulvenna, C. A. – CoED, 1985
To evaluate the use of computer graphics for illustrating kinematics in an undergraduate course, a student project of mechanism simulation and analysis was carried out using a recently acquired workstation. This project is described. (JN)
Descriptors: Computer Graphics, Computer Simulation, Engineering, Engineering Education
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Smith, Donald A.; Jacquot, Raymond G. – CoED, 1984
Presents algorithms for the simulation and motion display of the three basic kinematic devices: (1) four bar linkages; (2) the slider crank; and (3) the inverted slider crank mechanisms. The algorithms were implemented on a Commodore-VIC 20 microcomputer system with 6500 bytes of available memory. (Author/JN)
Descriptors: Algorithms, Computer Graphics, Computer Simulation, Computer Software
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Whitman, David L.; Terry, Ronald E. – CoED, 1985
Demonstrating petroleum engineering concepts in undergraduate laboratories often requires expensive and time-consuming experiments. To eliminate these problems, a graphical simulation technique was developed for junior-level laboratories which illustrate vapor-liquid equilibrium and the use of mathematical modeling. A description of this…
Descriptors: Computer Graphics, Computer Simulation, Computer Software, Engineering
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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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Harris, La Verne Abe; Meyers, Frederick – Engineering Design Graphics Journal, 2007
Graphical plans for construction of machinery and architecture have evolved over the last 6,000 years beginning from hieroglyphics to drawings on printable media, from the "Golden Age" of engineering graphics to the innovation of computer graphics and prototyping. The evolution of engineering design graphics as a profession has also evolved. Years…
Descriptors: Computer Graphics, Drafting, Engineering, Educational Technology
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Planchard, Marie – Engineering Design Graphics Journal, 2007
At some point in their education, pre-engineering students will take physics and/or calculus. For many freshmen who aren't certain about their career paths, taking these courses is a litmus test to determine whether they have the aptitude or desire to pursue an engineering degree. Therein lies the challenge for many students in the U.S. Science,…
Descriptors: Engineering Education, Student Interests, Physics, Computer Software
Dwyer, Frederick D., Ed. – 1986
Advanced Education Projects (AEPs) are a series of multidisciplinary, advanced experiments in educational computing supported by IBM and currently in progress at 19 leading universities. Each AEP has established a series of curricular experiments to explore the use of workstations and network technologies as part of the instructional process. The…
Descriptors: Art Education, Biological Sciences, Computer Assisted Instruction, Computer Graphics
International Business Machines Corp., Milford, CT. Academic Information Systems. – 1986
This agenda lists activities scheduled for the second IBM (International Business Machines) Academic Information Systems University AEP (Advanced Education Projects) Conference, which was designed to afford the universities participating in the IBM-sponsored AEPs an opportunity to demonstrate their AEP experiments in educational computing. In…
Descriptors: Abstracts, Art Education, Biological Sciences, Computer Assisted Instruction