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Showing 1 to 15 of 23 results Save | Export
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Euisuk Sung; Yuhyun Choi; Ji Suk Kim; Eunsang Lee; Yunjin Lim – Technology and Engineering Teacher, 2022
On a hot summer night in July 2020, several technology education experts in South Korea and the United States gathered in a Zoom meeting room. The meeting started with a brief introduction of ITEEA's new standards, "Standards for Technological and Engineering Literacy" ("STEL"; ITEEA, 2020), to the Korean audience and discussed…
Descriptors: Foreign Countries, Technological Literacy, Engineering Education, Technology Education
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Loveland, Thomas; Love, Tyler S.; Wilkerson, Trena; Simmons, Patricia – Technology and Engineering Teacher, 2020
In 1981, twenty-one industrial arts educators convened at Jackson's Mill, WV to develop an agreed-upon rationale and direction for the future of industrial arts. However, the route to achieve this goal was not as clear, as they had to "live the challenge of inquiry, assimilation, compromise, and consensus" (Snyder & Hales, 1981, p.…
Descriptors: Industrial Arts, Curriculum, Standards, Educational History
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Moye, Johnny J.; Reed, Philip A. – Technology and Engineering Teacher, 2020
In this quickly evolving digital world, the technology and education (T&E) education classroom can provide valuable instruction that creates a well-informed online citizenry through digital understanding and citizenship curriculum. For twenty years, "Standards for Technological Literacy" (STL) (ITEA/ ITEEA, 2000/2002/2007) provided…
Descriptors: Standards, Technological Literacy, Engineering Education, Elementary Secondary Education
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Hughes, Andrew J.; Merrill, Chris – Technology and Engineering Teacher, 2021
Technology and Engineering Education (T&EE) includes "engineering design challenges" to establish a connection to designing and problem-solving indicative of being an Engineer. Engineering design challenges involving bridges (or towers) have been a common feature of the discipline. These bridge design challenges ask students to…
Descriptors: Design, Engineering Education, Teaching Methods, Problem Solving
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Love, Tyler S.; Duffy, Brian C.; Loesing, Mary L.; Roy, Kenneth R.; West, Sandra S. – Technology and Engineering Teacher, 2020
The purpose of this article is to examine the level of emphasis placed on safety concepts and guidelines in "Standards for Technological and Engineering Literacy" ("STEL") (ITEEA, 2020) in comparison to other current science, technology, engineering, and math (STEM) content area standards and frameworks. The authors who…
Descriptors: STEM Education, Occupational Safety and Health, Content Analysis, Safety Education
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Warner, Scott A.; Shearer, Korbin L.; Heidt, Garreth; Shoemaker, Korbin – Technology and Engineering Teacher, 2021
For as long as the profession of technology and engineering education (TEE) has existed (the addition of engineering to the professional title marks the official beginning of the profession, and that occurred in 2010), there has been a struggle. Arguably, this struggle's roots go back to the beginning of public education in the U.S. The struggle,…
Descriptors: Technology Education, Engineering Education, Technological Literacy, Educational Objectives
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Grubbs, Michael E.; Strimel, Greg J.; Huffman, Tanner – Technology and Engineering Teacher, 2018
Interest in engineering at the P-12 level has increased in recent years, largely in response to STEM educational reform. Despite greater attention to the value, importance, and use of engineering for teaching and learning, the educational community has engaged minimally in its deliberate and coherent study. Specifically, few efforts have been…
Descriptors: Engineering Education, Standards, STEM Education, Elementary Secondary Education
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Bartholomew, Scott; Loveland, Thomas; Santana, Vanessa – Technology and Engineering Teacher, 2020
The process of writing lesson plans at the beginning of one's teaching career can be very time-consuming (Arnett-Hartwick and Cannon, 2019); however, the development of sequenced lessons that result in effective learning must be organized and articulate, not done haphazardly. Designing a lesson through a written document can help a teacher see the…
Descriptors: Standards, Lesson Plans, Technology Education, Engineering Education
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Loveland, Thomas – Technology and Engineering Teacher, 2019
In order to be prepared for future college or careers, 21st century students should have critical thinking in their arsenal of soft skills. Most teachers and schools feel that critical thinking skills are important to teach, but unfortunately they have a lack of understanding of what critical thinking is and what strategies are best utilized to…
Descriptors: Technology Education, Engineering Education, Personal Autonomy, 21st Century Skills
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Haney, Casey Lynn; Bartholomew, Scott; Hauck, Morgan; Price, Alexandria – Technology and Engineering Teacher, 2019
While some promising efforts have recently been made to connect farmers with new practices of water conservation and assist in the optimization and use of resources, these efforts have not eliminated the need for additional research and sustainable practices in farming. This is especially true for crops such as rice that rely heavily on large…
Descriptors: Water, Agricultural Occupations, Sustainability, Lesson Plans
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Yuhyun Choi; Euisuk Sung; Seungwon Lee – Technology and Engineering Teacher, 2022
The International Technology and Engineering Educators Association's (ITEEA's) "Standards for Technological and Engineering Literacy" ("STEL") describes design thinking as an approach that allows students and educators to integrate other content areas by considering relevant contextual information to guide design and making…
Descriptors: Design, Engineering Education, Thinking Skills, Context Effect
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Salinger, Gerhard L.; Moye, Johnny J. – Technology and Engineering Teacher, 2021
This is the nineteenth in a series of articles entitled "The Legacy Project." The Legacy Project focuses on the lives and actions of leaders who have forged the technology and engineering teaching profession into what it is today. Members of the profession owe a debt of gratitude to these leaders. One simple way to demonstrate that…
Descriptors: Program Descriptions, Technology Education, Engineering Education, Professional Recognition
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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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Hollers, Brent – Technology and Engineering Teacher, 2017
Documentation of ideas and the engineering design process is a critical, daily component of a professional engineer's job. While patent protection is often cited as the primary rationale for documentation, it can also benefit the engineer, the team, company, and stakeholders through creating a more rigorously designed and purposeful solution.…
Descriptors: Engineering Education, Design, Extracurricular Activities, Teamwork
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Weidman, Justin; Coombs, Dawan – Technology and Engineering Teacher, 2016
Students had just participated in an experiential learning exercise where they played dodgeball using marshmallows, but the unique context of the game introduced ethical dilemmas that integrated ethics education into a technical education classroom setting. Research shows that "Engineering curriculum and activities at the K-12 level should be…
Descriptors: Simulation, Ethics, Experiential Learning, Technical Education
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