Engineering Technology Education in the United States

Engineering Technology Education in the United States

Author: National Academy of Engineering

Publisher: National Academies Press

Published: 2017-01-27

Total Pages: 195

ISBN-13: 0309437717

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The vitality of the innovation economy in the United States depends on the availability of a highly educated technical workforce. A key component of this workforce consists of engineers, engineering technicians, and engineering technologists. However, unlike the much better-known field of engineering, engineering technology (ET) is unfamiliar to most Americans and goes unmentioned in most policy discussions about the US technical workforce. Engineering Technology Education in the United States seeks to shed light on the status, role, and needs of ET education in the United States.


Bulletin

Bulletin

Author: United States. Office of Experiment Stations

Publisher:

Published: 1899

Total Pages: 892

ISBN-13:

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Report

Report

Author: Engineers' Council for Professional Development

Publisher:

Published: 1958

Total Pages: 852

ISBN-13:

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Engineering in K-12 Education

Engineering in K-12 Education

Author: National Research Council

Publisher: National Academies Press

Published: 2009-09-08

Total Pages: 595

ISBN-13: 030914471X

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Engineering education in K-12 classrooms is a small but growing phenomenon that may have implications for engineering and also for the other STEM subjects-science, technology, and mathematics. Specifically, engineering education may improve student learning and achievement in science and mathematics, increase awareness of engineering and the work of engineers, boost youth interest in pursuing engineering as a career, and increase the technological literacy of all students. The teaching of STEM subjects in U.S. schools must be improved in order to retain U.S. competitiveness in the global economy and to develop a workforce with the knowledge and skills to address technical and technological issues. Engineering in K-12 Education reviews the scope and impact of engineering education today and makes several recommendations to address curriculum, policy, and funding issues. The book also analyzes a number of K-12 engineering curricula in depth and discusses what is known from the cognitive sciences about how children learn engineering-related concepts and skills. Engineering in K-12 Education will serve as a reference for science, technology, engineering, and math educators, policy makers, employers, and others concerned about the development of the country's technical workforce. The book will also prove useful to educational researchers, cognitive scientists, advocates for greater public understanding of engineering, and those working to boost technological and scientific literacy.