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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
Zsombor-Murray, Paul – Engineering Design Graphics Journal, 2007
Cubic symmetry is used to build the other four Platonic solids and some formalism from classical geometry is introduced. Initially, the approach is via geometric construction, e.g., the "golden ratio" is necessary to construct an icosahedron with pentagonal faces. Then conventional elementary vector algebra is used to extract quantitative…
Descriptors: Geometric Concepts, Geometry, Mathematics Instruction, Thinking Skills
Peer reviewedCroft, Frank M. Jr. – Engineering Design Graphics Journal, 1998
Evaluates the use of modern CAD methods to solve geometric problems. Solves descriptive geometry problems using the layout and position of the successive auxiliary views from the projection of three-dimensional figures onto a two-dimensional plane of paper. (CCM)
Descriptors: Computer Assisted Design, Engineering Graphics, Geometric Concepts, Mathematics Activities
Connolly, Patrick; Holliday-Darr, Kathryn; Blasko, Dawn G. – Engineering Design Graphics Journal, 2006
Several methods have been developed, presented, and discussed at recent ASEE and EDGD conferences on the topic of computer-based multiview drawing instruction. While small-scale and localized testing of these instruments and methods has been undertaken, no larger-scale or multi-location experiments have been attempted. This paper describes an…
Descriptors: Engineering Education, Computer Assisted Design, Drafting, Instructional Effectiveness
Peer reviewedJuricic, Davor; Barr, Ronald E. – Engineering Design Graphics Journal, 1996
Reports on a project that extended the Engineering Design Graphics curriculum to include instruction and laboratory experience in computer-aided design, analysis, and manufacturing (CAD/CAM). Discusses issues in project implementation, including introduction of finite element analysis to lower-division students, feasibility of classroom prototype…
Descriptors: Computer Assisted Design, Computer Assisted Manufacturing, Computer Uses in Education, Curriculum Development
Peer reviewedBarr, R. E.; Krueger, T. J.; Aanstoos, T. A. – Engineering Design Graphics Journal, 2002
Summarizes the digital engineering design process using software widely available for the educational setting. Points out that newer technology used in the field is not used in engineering graphics education. (DDR)
Descriptors: College Curriculum, Computer Assisted Design, Computer Graphics, Computer Software
Kinsey, Brad; Towle, Erick; Hwang, Grace; O'Brien, Edward J.; Bauer, Christopher F.; Onyancha, Richard M. – Engineering Design Graphics Journal, 2007
In this paper, results from a subset of the Purdue Spatial Visualization Test and a self-efficacy test developed by the authors are presented to determine whether certain object shapes, orientations, and types of rotations in standard spatial ability tests cause more difficulty than others and whether a solid object, which includes shading to…
Descriptors: Test Results, Self Efficacy, Visualization, Spatial Ability
Peer reviewedAult, Holly K. – Engineering Design Graphics Journal, 1991
Described is a course that focuses on theory and techniques for ideation and refinement of geometric models used in mechanical engineering design applications. The course objectives, course outline, a description of the facilities, sample exercises, and a discussion of final projects are included. (KR)
Descriptors: Computer Assisted Design, Course Content, Course Descriptions, Engineering Education
Peer reviewedDeJong, P. S.; Shahan, J. C. – Engineering Design Graphics Journal, 1991
An investigation of alternative methods of managing lower division graphics courses is described. Nonexam grading time was reduced to nearly zero, creating time for professional growth, proposal development, and meaningful research. Grade profiles and attitudes of students taking the altered course are discussed. (KR)
Descriptors: Assignments, Computer Assisted Design, Engineering Education, Higher Education
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
Lamb, Carol M.; Kurtanich, David G. – Engineering Design Graphics Journal, 2007
This paper outlines the work in progress undertaken by the School of Engineering Technology faculty to identify, assess, and develop a course to address the depth and breadth of drafting/plan preparation and plan reading skills required by the various engineering technology programs offered at Youngstown State University. The methodology used to…
Descriptors: Engineering Technology, Engineering, Student Evaluation, Science Tests
Peer reviewedZsombor-Murray, P. J. – Engineering Design Graphics Journal, 1990
A proposition that 3-D CAD provides an array of unambiguous solutions to engineering problems is illustrated. This proposition assumes that engineering problems are conceived in parallel processing mode while they are solved in sequential processing mode. Circle construction analysis, parallel equidistant planes, and solid modeling are discussed.…
Descriptors: College Science, Computer Assisted Design, Computer Assisted Instruction, Computer Graphics
Peer reviewedRoss, William A. – Engineering Design Graphics Journal, 1991
An approach to reduce the barrier between two-dimensional computer-aided drafting and three-dimensional constructive solids modeling is graphically illustrated. This process, or some derivative, encompasses a significant portion of the future direction for engineering graphics education. (KR)
Descriptors: College Science, Computer Assisted Design, Computer Assisted Instruction, Computer Graphics
Peer reviewedBarr, Laneda; And Others – Engineering Design Graphics Journal, 1991
Described is a pilot course which includes a designed set of exercises to instruct students in procedures for creating solid models. A detailed description and analysis of students' various approaches used in completing a final design project are included. (KR)
Descriptors: College Science, Computer Assisted Design, Computer Assisted Instruction, Computer Graphics
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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