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Showing all 13 results Save | Export
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Garcia-Belmonte, Germà – Cultural Studies of Science Education, 2017
Spatial visualization is a well-established topic of education research that has allowed improving science and engineering students' skills on spatial relations. Connections have been established between visualization as a comprehension tool and instruction in several scientific fields. Learning about dynamic processes mainly relies upon static…
Descriptors: Visualization, Figurative Language, Spatial Ability, Science Equipment
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Ogunkola, Babalola; Knight, Carlos – Cogent Education, 2018
In this article, we examined whether technical drawing increased the mental rotation ability in 13- to 15-year-old students (N = 201). Students were pretested with the Mental Rotations Test. Later, a group of students was exposed to technical drawing for 10 weeks, which involved specific training with spatial activities and tasks, to increase…
Descriptors: Spatial Ability, Visualization, Secondary School Students, Engineering
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Budinoff, Hannah; McMains, Sara – Engineering Design Graphics Journal, 2018
The impact of spatial visualization ability on student outcomes in a freshman-level, 3D modeling class is explored by analyzing connections between students' spatial ability pre- and post-test scores, course grades, and self-reported difficulty of an assignment. Analysis of the results indicate that spatial visualization ability, as measured by…
Descriptors: Correlation, Visualization, Spatial Ability, Scores
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Branoff, T. J.; Dobelis, M. – Engineering Design Graphics Journal, 2012
Spatial abilities have been used as a predictor of success in several engineering and technology disciplines (Strong & Smith, 2001). In engineering graphics courses, scores on spatial tests have also been used to predict success (Adanez & Velasco, 2002; Leopold, Gorska, & Sorby, 2001). Other studies have shown that some type of…
Descriptors: Spatial Ability, Engineering, Minicourses, Visualization
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Steinhauer, H. M. – Engineering Design Graphics Journal, 2012
Engineering graphics has historically been viewed as a challenging course to teach as students struggle to grasp and understand the fundamental concepts and then to master their proper application. The emergence of stable, fast, affordable 3D parametric modeling platforms such as CATIA, Pro-E, and AutoCAD while providing several pedagogical…
Descriptors: Spatial Ability, Engineering Education, Engineering, Fundamental Concepts
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Barbero, Basilio Ramos; Pedrosa, Carlos Melgosa; Mate, Esteban Garcia – Educational Technology & Society, 2012
The purpose of this study is to determine which 3D viewers should be used for the display of interactive graphic engineering documents, so that the visualization and manipulation of 3D models provide useful support to students of industrial engineering (mechanical, organizational, electronic engineering, etc). The technical features of 26 3D…
Descriptors: Engineering, Learning Processes, Computer Assisted Design, Computer Software
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Study, Nancy E. – Engineering Design Graphics Journal, 2011
Previous studies found that students enrolled in introductory engineering graphics courses at a historically black university (HBCU) had significantly lower than average test scores on the Purdue Spatial Visualization Test: Visualization of Rotations (PSVT) when it was administered during the first week of class. Since the ability to visualize is…
Descriptors: Majors (Students), Control Groups, Grade Point Average, Graduation Rate
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Martin-Dorta, Norena; Saorin, Jose Luis; Contero, Manuel – Educational Technology & Society, 2011
This paper attempts to harness the opportunities for mobility and the new user interfaces that handheld touch screen devices offer, in a non-formal learning context, with a view to developing spatial ability. This research has addressed two objectives: first, analyzing the effects that training can have on spatial visualisation using the…
Descriptors: Experimental Groups, Control Groups, Spatial Ability, Handheld Devices
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Yue, Jianping – Engineering Design Graphics Journal, 2008
In this study, the popular Purdue Spatial Visualization Test-Visualization by Rotations (PSVT-R) in isometric drawings was recreated with CAD software that allows 3D solid modeling and rendering to provide more realistic pictorial views. Both the original and the modified PSVT-R tests were given to students and their scores on the two tests were…
Descriptors: Spatial Ability, Visualization, Measures (Individuals), Improvement
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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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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
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Sorby, Sheryl A. – Engineering Design Graphics Journal, 2006
Three-dimensional spatial skills have been shown to be critical to success in engineering and other technological fields. Well-developed 3D spatial skills are particularly important for success in engineering graphics courses. Further, 3D spatial skills of women lag significantly behind those of their male counterparts, which could hinder their…
Descriptors: Spatial Ability, Visualization, Motion, Elementary Secondary Education
California Univ., Berkeley. Lawrence Hall of Science. – 1982
The activities in this guide are designed for students in grades 4-10 and are intended to stimulate thinking about scientific and engineering careers, develop logical reasoning and problem-solving skills, promote positive attitudes toward mathematics, increase interest and knowledge about scientific work, strengthen spatial visualization skills,…
Descriptors: Career Awareness, Career Exploration, Engineering, Estimation (Mathematics)