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Kelley, Todd R. – Journal of Technology Studies, 2012
The current emphasis in K-12 education on science, technology, engineering, and mathematics (STEM) (Douglas, Iversen, & Kalyandurg, 2004; Sanders, 2009) creates many ways to partner engineering education with these fields. Therefore, it is appropriate to examine the commonalities these fields have with engineering education. Though much of the…
Descriptors: Elementary Secondary Education, STEM Education, Engineering Education, Technology Education
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Williams, P. John – Journal of Technology Studies, 2010
Recent curriculum changes in the educational system of Australia have resulted in allowing optional Engineering course work to count for university entrance for students choosing to apply to a university. In other educational systems, Engineering is playing an increasingly important role, either as a stand-alone subject or as part of an integrated…
Descriptors: Curriculum Development, Engineering, Foreign Countries, Technology Education
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Daugherty, Jenny L.; Reese, George C.; Merrill, Chris – Journal of Technology Studies, 2010
A brief examination and comparison of mathematics and technology education provides the background for a discussion of integration. In particular, members of each field have responded to the increasing pressures to better prepare students for the technologically rich, globally competitive future. Approaches based within each discipline are varied…
Descriptors: Mathematics Education, Technology Education, Comparative Analysis, Engineering
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Locke, Edward – Journal of Technology Studies, 2009
This article presents a proposed model for a clear description of K-12 age-possible engineering knowledge content, in terms of the selection of analytic principles and predictive skills for various grades, based on the mastery of mathematics and science pre-requisites, as mandated by national or state performance standards; and a streamlined,…
Descriptors: Engineering Education, Middle Schools, Elementary Secondary Education, Engineering
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Kelley, Todd – Journal of Technology Studies, 2010
There are a number of examples in technology education history of multidisciplinary and interdisciplinary efforts linking technology education with other disciplines; however, there has never been a time in technology education where multidisciplinary and interdisciplinary efforts are not only promising but also may be essential for the prosperity…
Descriptors: Technology Education, STEM Education, Engineering Education, Mathematics Education
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Rockland, Ronald; Bloom, Diane S.; Carpinelli, John; Burr-Alexander, Levelle; Hirsch, Linda S.; Kimmel, Howard – Journal of Technology Studies, 2010
Technological fields, like engineering, are in desperate need of more qualified workers, yet not enough students are pursuing studies in science, technology, engineering, or mathematics (STEM) that would prepare them for technical careers. Unfortunately, many students have no interest in STEM careers, particularly engineering, because they are not…
Descriptors: Careers, Mathematics Curriculum, Curriculum Development, Elementary Secondary Education
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Salinger, Gerhard L. – Journal of Technology Studies, 2005
Engineering technology education (as distinguished from Engineering Technology education) is a design problem. In engineering, an important consideration is to determine the goal of the design. What is the desired result? For whom is it desirable? What are the unintended consequences? In this article, the author continues to raise the questions of…
Descriptors: Engineering Technology, Technological Literacy, Educational Opportunities, Technology Education