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Choi, Yuhyun; Sung, Euisuk; Lee, Seungwon – 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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Tomlinson, Joel; Johnson, Etahe; Chesser, Cole; Moore, Jonathan – Technology and Engineering Teacher, 2020
The automated water filtration design challenge integrates computer programming and basic electronics concepts through the SIMILAR systems engineering design process. The SIMILAR systems design process is to state the problem, investigate alternatives, model the system, integrate the system, launch the system, assess performance, and reevaluate…
Descriptors: Automation, Water, Water Quality, Design
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Cox-Boniol, Cathi; Vincent, Lindsey – Technology and Engineering Teacher, 2020
The International Technology and Engineering Educators Association (ITEEA's) Science Technology Engineering and Math (STEM) Center for Teaching and Learning's Engineering by Design™ (EbD™) is a standards based Integrative STEM Education model program that provides curriculum, professional development, and assessments to K-12 schools. This article…
Descriptors: STEM Education, Consortia, Elementary Secondary Education, 21st Century Skills
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Kelley, Todd R. – Technology and Engineering Teacher, 2020
Teaching students the design process and providing opportunities for design is at the core of engineering/technology education. The design process is a key feature of technological literacy, and design is the most represented element within "Standards for Technological Literacy" (ITEA/ITEEA 2000, 2002/2007; Lewis, 2005; Wicklein, 2006).…
Descriptors: Design, Elementary Secondary Education, STEM Education, Engineering Education
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Sung, Euisuk – Technology and Engineering Teacher, 2019
Computational thinking has been popularized in the last decade, particularly with the emphasis on coding education in K-12 schools. The core idea of computational thinking has a close relationship with technology and engineering education (TEE). TEE has emphasized the use of computing skills to solve problems, and integrative STEM education…
Descriptors: Skill Development, Computation, STEM Education, Engineering
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Hartell, Eva – Technology and Engineering Teacher, 2019
The Globally Harmonized System of Classification and Labeling of Chemicals (GHS), adopted by the United Nations in 2003, is one example where safety has served as a universal language. GHS has helped countries provide uniform chemical labels and safety data sheets (SDS). It also provided a series of chemical hazard pictograms that are now…
Descriptors: Design, Technology Education, Elementary Secondary Education, Safety
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Kelley, Todd R. – Technology and Engineering Teacher, 2017
As national STEM initiatives focus on engineering design as a STEM integrator, a more important concern for K-12 educators should be teaching design fundamentals and using these experiences to help students obtain STEM content knowledge. There appears however, to be little instruction and emphasis on building students' design-sketching skills in…
Descriptors: Drafting, Design, Engineering Education, Engineering Technology
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Bartholomew, Scott R. – Technology and Engineering Teacher, 2017
Interest in Technology and Engineering Education (TEE) has recently revolved around working to define/redefine who we are, and who we are not; while others in TEE are not interested in a change of identity. An emphasis on design, design education, and design assessment may help clarify the discussion surrounding the future direction of TEE.…
Descriptors: Technology Education, Engineering Education, Design, Elementary Secondary Education
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Wells, John G. – Technology and Engineering Teacher, 2016
The PIRPOSAL model is both a conceptual and pedagogical framework intended for use as a pragmatic guide to classroom implementation of Integrative STEM Education. Designerly questioning prompted by a "need to know" serves as the basis for transitioning student designers within and among multiple phases while they progress toward an…
Descriptors: STEM Education, Models, Engineering Education, Integrated Activities