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Morelock, John R.; Salado, Alejandro; Lakeh, Arash Baghaei; Richards, Trevor K. – Advances in Engineering Education, 2021
In undergraduate engineering education, students are often overexposed to problem-solving methods that are unrepresentative of how engineers solve problems in practice. For decision-making problems, in particular, students are commonly taught to compare alternative solutions using known and provided information. However, many real-world…
Descriptors: Engineering Education, Teaching Methods, Educational Games, Simulation
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Katsioloudis, Petros J.; Jovanovic, Vukica – Engineering Design Graphics Journal, 2014
A quasi experimental study was done to determine significant positive effects among three different types of visual models and to identify whether any individual type or combination contributed towards a positive increase of spatial visualization ability for students in engineering technology courses. In particular, the study compared the use of…
Descriptors: Engineering Education, Drafting, Spatial Ability, Visualization
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Veurink, N. L.; Hamlin, A. J.; Kampe; J. C. M.; Sorby, S. A.; Blasko, D. G.; Holliday-Darr, K. A.; Kremer, J. D. Trich; Harris, L. V. Abe; Connolly, P. E.; Sadowski, M. A.; Harris, K. S.; Brus, C. P.; Boyle, L. N.; Study, N. E.; Knott, T. W. – Engineering Design Graphics Journal, 2009
Spatial visualization skills are vital to many careers and in particular to STEM fields. Materials have been developed at Michigan Technological University and Penn State Erie, The Behrend College to assess and develop spatial skills. The EnViSIONS (Enhancing Visualization Skills-Improving Options aNd Success) project is combining these materials…
Descriptors: Visualization, Spatial Ability, Skill Development, Program Implementation
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Rose, Mary Annette – Technology Teacher, 2007
Manufacturing engineering provides a relevant context from which to envision interdisciplinary learning experiences because engineers integrate their knowledge and skills of manufacturing and algebra processes in order to plan the efficient manufacture of products. In this article, the author describes an interdisciplinary learning activity that…
Descriptors: Teaching Methods, Tech Prep, Manufacturing, Cooperative Learning
Henrico County Public Schools, Glen Allen, VA. Virginia Vocational Curriculum and Resource Center. – 1996
This guide contains information and hands-on activities to guide students through the problem-solving process needed in engineering (problem solving, presentation, and impact analysis) and information to help the instructor manage the program or courses in Virginia. Following an introduction, the guide contains a program description that supplies…
Descriptors: Academic Education, Behavioral Objectives, Competence, Competency Based Education