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Sun, Yan – Digital Experiences in Mathematics Education, 2023
Rich research evidence supporting the strong, positive connections between spatial ability and mathematical ability has been well documented. Spatial tools, such as computer-aided-design (CAD) software, have been increasingly utilized and researched for promoting mathematics learning in K--12 (kindergarten to 12th grade). Tinkercad, a free online…
Descriptors: Spatial Ability, Mathematics Education, Learning Experience, Computer Simulation
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Bull, Glen; Greenstein, Steven; Ellis, Joshua; Asim, Sumreen; Novitski, Ryan; Whitewolf, Elizabeth; Lake, Sherry – Contemporary Issues in Technology and Teacher Education (CITE Journal), 2023
An Educational CAD Model Library (CAD Library) is being developed by collaborating educational associations affiliated with the National Technology Leadership Summit coalition. The CAD Library's Curators' Council has developed descriptive metadata fields that will be associated with each educational object published in the library. These fields…
Descriptors: Metadata, Standards, Libraries, Technology Uses in Education
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Wan, Anna; Ivy, Jessica – Journal of Digital Learning in Teacher Education, 2021
This article condenses five years of professional development based on Technological Pedagogical and Content Knowledge (TPACK) integration principles, National Council of Teachers of Mathematics Principles to Actions (2014), and ISTE Student and Teacher standards to give a launch point for teachers and teacher educators to integrate 3D modeling…
Descriptors: Computer Assisted Design, Mathematics Education, Mathematics Teachers, Teacher Education Programs
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Blachut, Klaus – School Science Review, 2018
3D printers can do a lot more than just printing nice little giveaways such as keyring pendants or chess pieces. During a project at the Holbein-Gymnasium Augsburg in Bavaria, Germany, students developed a number of helpful tools for chemistry lessons and tested them in classes. Full details of these are now available for free to any teacher who…
Descriptors: Science Instruction, Secondary School Students, Printing, Computer Peripherals
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Davis, Eric J.; Jones, Michael; Thiel, D. Alex; Pauls, Steve – Journal of Chemical Education, 2018
Additive manufacturing (3D printing) is a technology with near-unlimited potential for the chemical educator. However, its adoption into higher education has been limited by the dual requirements of expertise in 3D printing and 3D computer-aided design (CAD). Thus, its reported utilization in the chemistry curriculum has been within the creation…
Descriptors: Chemistry, Science Education, Open Source Technology, Computer Peripherals
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Orr, Taylor; Flowers, Jim – Technology and Engineering Teacher, 2015
3D printing is becoming ever more popular in both the manufacturing world as well as in technology and engineering education classrooms all over the United States. 3D printing is an additive manufacturing process in which successive layers of material are built up to produce three-dimensional objects from computer-aided design (CAD) files, making…
Descriptors: Computer Peripherals, Printing, Plastics, Engineering Education
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Cochran, Jill A.; Cochran, Zane; Laney, Kendra; Dean, Mandi – Mathematics Teaching in the Middle School, 2016
With the rise of personal desktop 3D printing, a wide spectrum of educational opportunities has become available for educators to leverage this technology in their classrooms. Until recently, the ability to create physical 3D models was well beyond the scope, skill, and budget of many schools. However, since desktop 3D printers have become readily…
Descriptors: Computer Peripherals, Printing, Geometry, Mathematics
Chen, Angela – Chronicle of Higher Education, 2012
The ability to print a 3-D object may sound like science fiction, but it has been around in some form since the 1980s. Also called rapid prototyping or additive manufacturing, the idea is to take a design from a computer file and forge it into an object, often in flat cross-sections that can be assembled into a larger whole. While the printer on…
Descriptors: Engineering Education, Engineering, Campuses, Intellectual Property
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Gorman, Lynn – Tech Directions, 2012
Miami Central High School technology teacher Frank Houghtaling thinks the connection between theory and application is one reason his students perform better on the Florida Comprehensive Assessment Test (FCAT). The impressive turnaround school drew local and national attention last spring when one of Houghtaling's students, Dagoberto Cruz, won…
Descriptors: Creativity, Computer Assisted Design, Effective Schools Research, School Turnaround
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Crowl, William F. – Tech Directions, 2008
This article describes the Hill-Climb project of a second level Computer-Aided Drafting and Design (CADD) class. The author primarily designed the activity to increase student understanding of the assembly drawing process and its components. The emphasis on problem solving adds a dimension that can aid students in their other classes as well. By…
Descriptors: Computer Assisted Design, Drafting, Problem Solving, Technical Education
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Fulantelli, Giovanni; Gentile, Manuel; Taibi, Davide; Allegra, Mario – Journal of Interactive Media in Education, 2008
In this paper we present the results of research work, that forms part of the activities of the EU-funded project SLOOP: Sharing Learning Objects in an Open Perspective, aimed at encouraging the definition, development and management of Open Educational Resources based on the Learning Object paradigm (Wiley, 2000). We present a model of Open…
Descriptors: Open Education, Management Systems, Educational Resources, Research Reports
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Warren, Scott J.; Jones, Greg – Journal of Educational Technology, 2008
There are several major challenges for instructional designers seeking to design learning games. These include the lack of access, the cost of rapidly advancing/expensive technology tools that make developing games uneconomical, the institutional time constraints limiting game use, and the concerns that schools lack sufficiently robust computer…
Descriptors: Games, Design, Educational Technology, Computer Games
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van der Schaaf, Hylke; Tramper, Johannes; Hartog, Rob J.M.; Vermue, Marian – European Journal of Engineering Education, 2006
One of the objectives of the process technology curriculum at Wageningen University is that students learn how to design mathematical models in the context of process engineering, using a systematic problem analysis approach. Students find it difficult to learn to design a model and little material exists to meet this learning objective. For these…
Descriptors: Engineering Education, Mathematical Models, Computer Assisted Design, Feedback (Response)
Cassola, Joel – Techniques: Connecting Education and Careers (J3), 2007
Last fall, when Mastercam, the leading manufacturer of computer-aided manufacturing (CAM) software, announced the winners of its Innovators of the Future (IOF) contest, first, second and third prizes went to students in the advanced manufacturing program of Vincennes University's (VU's) Machine Trades Technology Department. The contest called for…
Descriptors: Graduates, Employment Opportunities, Educational Technology, Technology Uses in Education
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McCormick, Robert – International Journal of Technology and Design Education, 2004
Information and communications technology (ICT) brings many potential benefits to technology education, though the evidence of improved performance on traditional tasks is not yet proven. Areas such as computer-aided design and manufacture are now becoming standard elements of any student's technology education. These applications of ICT require…
Descriptors: Computer Assisted Design, Educational Technology, Technology Education, Technology Integration