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Liu, Leping; Chen, Li-Ting; Li, Wenzhen – International Journal of Technology in Teaching and Learning, 2021
With new technology tools available for educators and students, effectively using these tools to improve teaching and learning has become a constant theme for research and practice in the field of education. In this study, case-analysis was conducted on 305 published studies (from 140 peer-reviewed regional, national and international journals)…
Descriptors: Educational Technology, STEM Education, Mathematics Education, Science Education
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Strimel, Greg J.; Grubbs, Michael E.; Wells, John G. – Technology and Engineering Teacher, 2017
The core subjects in P-12 education have a common key characteristic that makes them stable over time. That characteristic is a steady content. For example, in the sciences, the basics of biology remain the same--the cell is the basic building block around which organisms are defined, characterized, structured, etc. Similarly, the basics of…
Descriptors: Engineering Education, Technology Education, Educational History, Educational Change
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Bartholomew, Scott – Technology and Engineering Teacher, 2015
STEM (Science, Technology, Engineering, and Math) is a buzzword in America (Ames, 2013; Woodruff, 2013). With recent pushes from the federal government (Obama, 2013) the educational landscape is changing, with an increased emphasis on STEM (Noddings, 2013; Obama, 2013). However, a clear definition of who teaches each aspect of STEM does not exist…
Descriptors: STEM Education, Teacher Qualifications, Science Education History, Academic Standards
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Sahni, Sarah D.; Caven, Meghan; Wu, Sally; DellaRocco, Nicole; Minner, Daphne; Martinez, Alina; McCulloch, Catherine – Community for Advancing Discovery Research in Education (CADRE), 2013
Innovative K-12 science, technology, engineering, and mathematics (STEM) education has been recognized by policy-makers as important to future economic growth. However, in practice, the science and mathematics domains receive more attention than technology and engineering. This may change given the prominence of engineering in the "Next…
Descriptors: Educational Research, Elementary Secondary Education, Engineering Education, STEM Education
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Mendoza Díaz, Noemi V.; Cox, Monica F. – Advances in Engineering Education, 2012
This paper presents an extensive overview of preschool to 12th grade (P-12) engineering education literature published between 2001 and 2011. Searches were conducted through education and engineering library engines and databases as well as queries in established publications in engineering education. More than 50 publications were found,…
Descriptors: Literature Reviews, Engineering Education, Educational Research, Elementary Secondary Education
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Harrison, Matthew – Design and Technology Education, 2011
Engineering, the "E" in STEM, is seldom taught as a distinct curriculum subject in English and Welsh schools to pupils under the age of 14 years. This contrasts with design and technology (D&T), taken in this paper to represent the largest contributor to the "T" in STEM (the remainder being taken to be the computing and…
Descriptors: STEM Education, Engineering Education, Technology Education, Needs Assessment
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Schnittka, Christine G. – Journal of Pre-College Engineering Education Research, 2012
Currently, unless a K-12 student elects to enroll in technology-focused schools or classes, exposure to engineering design and habits of mind is minimal. However, the "Framework for K-12 Science Education," published by the National Research Council in 2011, includes engineering design as a new and major component of the science content…
Descriptors: Engineering Education, Track System (Education), Science Education, Elementary Secondary Education