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Showing 1 to 15 of 65 results Save | Export
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Alison K. Mercier – Research in Science Education, 2024
Understanding teachers' experiences as they lived them and as they told them is important for conceptualizing a well-rounded view of the state of science education and the role teachers play in it. Journey mapping, a way of visualizing one's processes and experiences as they progress towards a goal, is a tool with the potential to capture…
Descriptors: Elementary School Teachers, Science Instruction, Engineering Education, Teaching Experience
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Jacob Pleasants; Kristyn Sartin – International Journal of Technology and Design Education, 2024
Engineering design is being increasingly included in elementary education, typically to provide students with opportunities to apply science and mathematics concepts while developing their engineering practices. An important question is how to prepare teachers who can help students develop more informed engineering practices during classroom…
Descriptors: Engineering Education, Elementary School Teachers, Scaffolding (Teaching Technique), Mathematical Concepts
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Dongsheng Wan; Yew-Jin Lee – Science & Education, 2025
The integration of engineering into existing school science curricula is arguably an effort to move beyond a mono-disciplinary goal of learning to one that teaches real-world applications and problem-solving in science. This study adopted dual theoretical lenses to scrutinize and compare the distribution of engineering elements in past and present…
Descriptors: Engineering Education, Academic Standards, Elementary School Science, Secondary School Science
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Pearl, Sandra; Bless, Elizabeth – Science and Children, 2021
The activity presented in this article is an engaging engineering challenge that has been conducted with third- through fifth-grade students in school classrooms and during after-school programs. This article describes the hands-on activity as appropriate for fifth graders that supports the "Next Generation Science Standards." This…
Descriptors: Elementary School Students, Engineering Education, Grade 3, Grade 4
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Stout, Jody; Rouse, Rob; Malesic, Jonathan; Krummeck, Katie – Science and Children, 2022
Design thinking--a human-centered approach to problem solving--is a process by which K-12 teachers engage students in solving relevant issues that occur in their schools. In this article, the authors describe a project in which fourth-graders used design thinking to solve an unexpected issue related to a much-anticipated class project. The project…
Descriptors: Grade 4, Elementary School Students, Design, Animals
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Ganime Aydin; Mehpare Saka; Jale Çakiroglu – Educational Policy Analysis and Strategic Research, 2024
The aims of this research were to examine the changes in the students' perceptions of engineers, engineering as a profession, learning of engineering design processes (EDP), awareness of engineering branches, and their future career choices through Engineering Design Process activities with the 5E learning model. Sixty disadvantaged students…
Descriptors: Elementary School Students, Middle School Students, Grade 4, Grade 5
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Gonczi, Amanda L.; Maeng, Jennifer L. – Science Activities: Projects and Curriculum Ideas in STEM Classrooms, 2020
Problem-based learning (PBL) instruction tasks students with solving a real-world, relevant problem and provides a motivating context for learning science content. It also affords a natural opportunity for students to intentionally engage in a variety of engineering practices and components of engineering design if the problem scenario…
Descriptors: Problem Based Learning, Engineering Education, Physical Sciences, Scientific Concepts
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Skinner, Ron K.; Harlow, Danielle B. – Journal of Pre-College Engineering Education Research, 2022
The practice of persisting and learning from design failures is essential to engineering design and offers unique ways of knowing and learning for K-12 students. To understand how students engage in the practice of persisting and learning from design failures, we must first understand how, if at all, they recognize that a design failure has…
Descriptors: Recognition (Psychology), Design, Failure, Grade 4
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Amber Simpson; Jing Yang; Adam Maltese – Journal of Pre-College Engineering Education Research, 2024
Research has consistently highlighted the importance of promoting child-parent interactions. In this essay, we describe the development of MAKEngineering kits that provide collaborative learning experiences for children in Grades 2-6 to engage in engineering design tasks with members of their families in their home environment. First, we present…
Descriptors: Instructional Design, Engineering Education, Cooperative Learning, Elementary School Science
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Pleasants, Jacob; De La Cruz, Iliana; Olson, Joanne K. – Electronic Journal for Research in Science & Mathematics Education, 2023
Current U.S. science education reform efforts call for engineering to be included as part of science instruction at all grade levels. As students experience engineering instruction alongside science, an important question is how students conceptualize the nature of those two fields, and especially the extent to which they differentiate science and…
Descriptors: Elementary School Students, Engineering Education, Science Education, Grade 3
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Alexandra Schonning; Susan M. Perez – Journal of Engineering Education, 2024
Background: The gender gap in engineering presents a critical barrier to achieving a diverse and innovative engineering workforce. This gap is influenced by gender stereotypes, socialization processes, masculine culture, and insufficient early experiences with engineering. These contribute to diminished STEM self-concept, interest, and…
Descriptors: Sex Stereotypes, Engineering Education, Student Interests, Career Awareness
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Yang, Dazhi; Chittoori, Bhaskar – International Journal of Technology in Education and Science, 2022
This study investigated the technologies and tools used to support upper-level elementary students' engineering design and problem-solving activities in a bridge design and building challenge. The study was conducted in an eight-week afterschool program with a total of 36 4th to 6th grade students in small groups of four to six students. Analysis…
Descriptors: Engineering Education, Design, Elementary School Students, Problem Solving
Rehmat, Abeera P.; Hartley, Kendall – Interdisciplinary Journal of Problem-based Learning, 2020
Educators in the twenty-first century need to think of innovative ways to engage and prepare students for current and future challenges while cultivating an interest among students in STEM disciplines. This study sought to investigate the impact of problem-based learning on students' content knowledge and critical thinking towards STEM. This study…
Descriptors: Engineering Education, Problem Based Learning, STEM Education, Knowledge Level
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Love, Tyler S.; Griess, Carolyn J. – Science and Children, 2020
Computational thinking has been taught in elementary classrooms in other countries for many years, but in the United States this has only been a focus recently due to the drastic shortage of computer scientists. Early exposure to computational thinking has been shown to motivate students to pursue STEM careers, especially computer science (Jin,…
Descriptors: Computation, Thinking Skills, Engineering Education, Elementary School Students
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Henderson, Jerrod; Snodgrass Rangel, Virginia; Holly, James, Jr.; Greer, Rick; Manuel, Mariam – Journal of Pre-College Engineering Education Research, 2021
Black and Brown men continue to be underrepresented in engineering. One explanation for the dearth of Black and Latino men in engineering is that engineering (and STEM) identity often is not inclusive of People of Color. As a result, Black and Brown boys may be less likely to become interested in STEM subjects. The purpose of this study, then, was…
Descriptors: Engineering Education, Identification (Psychology), Males, Minority Group Students
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