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Asempapa, Reuben S.; Love, Tyler S. – School Science and Mathematics, 2021
Mathematical modeling is a critical component of the current K-12 mathematics, science, and technology and engineering (T&E) educational standards in the United States. However, mathematical modeling is often overlooked or underemphasized in integrative STEM lessons. This could be attributed to teachers' limited content and pedagogical…
Descriptors: Mathematics Instruction, Mathematical Models, Computer Peripherals, Printing
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Love, Tyler S.; Attaluri, Anilchandra; Tunks, Robert D.; Cysyk, Joshua P.; Harter, Kevin – Journal of STEM Education: Innovations and Research, 2022
Three-dimensional modeling and additive manufacturing technologies (i.e. 3D printing) have and will continue to revolutionize biomedical engineering. However, 3D printing within biomedical engineering contexts remains an area of limited focus within secondary education. Many secondary educators are not well prepared to teach about biomedical 3D…
Descriptors: Printing, Manufacturing Industry, Biomedicine, Equipment
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Andic, Branko; Ulbrich, Eva; Dana-Picard, Thierry; Cvjeticanin, Stanko; Petrovic, Filip; Lavicza, Zsolt; Maricic, Mirjana – Journal of Science Education and Technology, 2023
There is a large amount of research that indicates that the use of 3DMP in STEM education improves students' knowledge, motivation, and participation in the learning process. Nevertheless, despite the existing attempts to market 3DMP in education, its adoption in schools remains low. A number of studies with teachers in secondary schools and…
Descriptors: STEM Education, Teacher Attitudes, Teaching Methods, Technology Uses in Education
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Szymanski, Antonia; Paganelli, Andrea; Tassell, Janet – Journal of Educational Technology Systems, 2022
This mixed-methods study focused on advanced student engagement, mathematics competence, and the influence of teachers in classrooms that used 3D printing to teach mathematics. Quantitative methods were used to understand changes in student perceptions of competence, engagement, and feelings regarding group work. Qualitative methods were used to…
Descriptors: Computer Peripherals, Printing, Mathematics Instruction, Learner Engagement
Douglas Gagnon; Ela Joshi; Nicole Arshan; Eliese Rulifson; Elise Levin-Güracar; Tejaswini Tiruke – Grantee Submission, 2023
The Mathematics, 3D Printing, and Computational Thinking Through Work-Based Learning (MPACT) program relies on teacher professional development, specialized curriculum and materials, and STEM industry mentors to provide grades 4-7 students with project-based experiences implemented across three learning modules. This technical report presents…
Descriptors: Mathematics Education, Computer Peripherals, Printing, Computation
Douglas Gagnon; Ela Joshi; Nicole Arshan; Eliese Rulifson; Elise Levin-Güracar; Tejaswini Tiruke – SRI Education, a Division of SRI International, 2023
The Mathematics, 3D Printing, and Computational Thinking Through Work-Based Learning (MPACT) program combines teacher professional development, specialized curriculum and materials and STEM industry mentors to provide grade 4-7 students with project-based experiences implemented across three learning modules. This technical report presents…
Descriptors: Mathematics Education, Computer Peripherals, Printing, Computation
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Song, Min Jeong – Educational Media International, 2018
3D printing implementation in educational contexts has gained considerable attention in recent years. However, research shows that both in-service and pre-service teachers lack digital literacy and the confidence required to teach this emerging technology. This study reports the current challenges and opportunities in 3D printing education in…
Descriptors: Teaching Methods, Educational Technology, Technology Uses in Education, Foreign Countries
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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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Dyehouse, Melissa; Santone, Adam L.; Kisa, Zahid; Carr, Ronald L.; Razzouk, Rabieh – Journal of Pre-College Engineering Education Research, 2019
This paper describes the design principles and implementation of a novel approach for a K--12 teacher professional development (PD) program. The approach integrates training focused on development of model eliciting activities (MEAs) within authentic engineering design tasks, collaborative 3D model design and fabrication, and inspirational site…
Descriptors: Authentic Learning, Engineering Education, Faculty Development, Design