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Feille, Kelly; Wildes, Annie N. – International Electronic Journal of Elementary Education, 2021
Incorporating authentic engineering practices into educative experiences in elementary school has the potential to positively impact student consideration of STEM careers and increase student self-efficacy in later engineering study. Additionally, as students move from primary to secondary grades, their interest in STEM topics tends to decline. To…
Descriptors: Independent Study, Engineering Education, Student Projects, Student Attitudes
Leah R. Cheek; Vinson Carter; Michael K. Daugherty; Christian Z. Goering – Reading Teacher, 2024
Empathy, an unsung, yet critical element of learning, can be strategically interlaced with literacy instruction and engineering design to create a rich and authentic learning experience for students. Integrated STEM education rests on the promise of engaging students and providing deep understandings through the intentional practice of delivering…
Descriptors: Empathy, STEM Education, Literacy Education, Engineering Education
Tina Vo; Rebekah Hammack; Paul Gannon; Nicholas Lux; Blake Wiehe; Miracle Moonga; Brock LaMeres – Journal of Science Teacher Education, 2024
As we prepare teachers to provide students with opportunities within STEM education, authentic experiences should guide the instruction. Unfortunately, due to the novel integration of engineering into national reform documents, there is a dearth of documentation on elementary preservice teachers' engineering ideas as they align with student goals…
Descriptors: Majors (Students), Engineering Education, Authentic Learning, Educational Change
Feille, Kelly; Wildes, Annie; Pyle, Janet; Marshall, Jessica – Science and Children, 2021
At a time when changes in standards and curriculum compound the pressures of fifth-grade state testing, the authors wanted to find an engaging way to involve students in authentic science and engineering. Rather than put their efforts into a traditional science fair that would inevitably lead to inequitable input by parents and students alike,…
Descriptors: Engineering Education, Grade 5, Elementary School Students, Science Education
Cunningham, Christine M.; Kelly, Gregory J. – Journal of Pre-College Engineering Education Research, 2022
In this paper, we address the societally important issue of developing a more equitable approach to preK-12 engineering education. Our primary emphasis is on K-8 grades--a time when first impressions of engineering may be developed. Calls for increased participation by all students, including those who have been historically marginalized, motivate…
Descriptors: Models, Equal Education, Engineering Education, Kindergarten
Dasgupta, Chandan – Journal of Engineering Education, 2019
Background: There is a need to find ways of productively engaging K-12 students with engineering design. I investigate a new class of physical models, referred to as Improvable Models, as scaffolds for helping middle school students productively engage in engineering design practices. Purpose/Hypothesis: The purpose of this study is to answer two…
Descriptors: Models, Scaffolding (Teaching Technique), Authentic Learning, Discourse Analysis
Sisk-Hilton, Stephanie; Ferner, Sarah Davies – Science and Children, 2022
The inclusion of engineering in the Next Generation Science Standards (NGSS) as a key component of K-12 science learning has provided both opportunities and challenges for elementary teachers. One challenge is integrating the design thinking processes that undergird engineering with core science concepts and current issues facing scientists and…
Descriptors: Engineering Education, Science Education, National Standards, Elementary School Teachers
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