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Elissa Milto; Chelsea Andrews; Merredith Portsmore; Christopher Wright – Eye on Education, 2025
"Introducing Engineering to K-8 Students" will provide you with the tools you need to incorporate engineering design into your classroom. Rather than prescribing a specific curriculum to follow, this book will help you engage your students with hands-on, open-ended engineering design problems that can be easily integrated into your…
Descriptors: Engineering, Design, Middle School Teachers, Elementary School Teachers
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Ai-Chu Elisha Ding; Pengtong Qu; Krista Glazewski; Haesol Bae; Fatih Ergulec; Hamid Nadir; Thomas Brush – International Journal of Designs for Learning, 2021
Problem-based learning (PBL) has been widely incorporated in STEM classrooms. Unfortunately, its effectiveness for foreign language teaching is less explored. This design case describes the design and implementation process of a Chinese PBL unit in a US elementary school along with the design considerations of teaching dilemma-centered…
Descriptors: Second Language Learning, Second Language Instruction, Problem Based Learning, Instructional Effectiveness
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Kilty, Trina; Burrows, Andrea; Welsh, Kate; Kilty, Kevin; McBride, Shawna; Bergmaier, Philip – Journal of Technology and Science Education, 2021
An authentic, interdisciplinary, research and problem-based integrated science, technology, engineering, and mathematics (STEM) project may be ideal for encouraging scientific inquiry and developing teamwork among undergraduate students, but it also presents challenges. The authors describe how two interdisciplinary teams (n=6) of undergraduate…
Descriptors: Interdisciplinary Approach, STEM Education, Undergraduate Students, Preservice Teachers
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Cairns, Darran R.; Curtis, Reagan; Sierros, Konstantinos A.; Bolyard, Johnna J. – Interdisciplinary Journal of Problem-based Learning, 2018
There is currently significant interest in 3D fabrication in middle school classrooms. At its best 3D printing can be utilized in authentic design projects that integrate math, science, and technology, which facilitate deep learning by students. In essence, students are able to tinker in a virtual world using 3D design software and then tinker in…
Descriptors: Problem Based Learning, Faculty Development, Design, Manufacturing
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Asunda, Paul A.; Mativo, John – Technology and Engineering Teacher, 2017
Part One of this article ("Technology and Engineering Teacher," 75(4), December/January, 2016) presented a process that science, math, engineering, and technology teachers could use to collaborate and design integrated STEM courses. A conceptual framework was discussed that could provide a premise that educators interested in delivery of…
Descriptors: STEM Education, Technology Education, Teaching Methods, Common Core State Standards
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Asunda, Paul A.; Mativo, John – Technology and Engineering Teacher, 2016
In this first of a two-part series, the authors report that STEM is still mostly science and mathematics, taught separately with little or no attention to technology and engineering. Where connections do get made to technology and engineering, too often they happen through several disconnected projects that lack coherence in content standards and…
Descriptors: STEM Education, Technology Education, Teaching Methods, Common Core State Standards
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Ertmer, Peggy A.; Glazewski, Krista D.; Jones, Donna; Ottenbreit-Leftwich, Anne; Goktas, Yuksel; Collins, Kelly; Kocaman, Aslihan – Journal of Interactive Learning Research, 2009
Despite the challenges inherent in adopting problem-based learning (PBL) in the middle school classroom, successful PBL teachers are able to find suitable solutions. In this exploratory study we examined the perceptions and practices of five successful middle school PBL teachers regarding the specific difficulties encountered with PBL and the…
Descriptors: Middle Schools, Problem Based Learning, Academic Standards, Learning Processes