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Showing 1 to 15 of 28 results Save | Export
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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Niina Niinimäki; Kati Sormunen; Pirita Seitamaa-Hakkarainen; Sini Davies; Kaiju Kangas – Journal of Computer Assisted Learning, 2025
Background: Implementing maker education in schools is on the rise, fuelled by its potential to move formal education towards a creative, technology-driven 21st century learning culture. In maker education, collaborative learning takes place through and around various digital and traditional technologies, which provide the means for students'…
Descriptors: Cooperative Learning, Experiential Learning, Technological Literacy, Student Projects
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Wei Xu; Jia-Chen Chen; Ye-feng Lou; Hang Chen – International Journal of Technology and Design Education, 2024
Maker education can enhance learners' creativity. Design thinking can facilitate the innovative resolution of complex problems. The design thinking literature and most maker teaching modes are limited in their promotion of learning and ability development in various dimensions. Learners have stereotypes about some professions; interventions can…
Descriptors: Elementary School Students, Cooperative Learning, Problem Based Learning, Student Projects
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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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Kim, Ji-Yun; Seo, Jae Seon; Kim, Kwihoon – Education and Information Technologies, 2022
Attaining equitable education for all is one of the sustainable development goals. Not only the gap of education between urban and rural students but also the gap of access to information and communications technology also exists. Thus, an effort to resolve this gap is necessary. This study combines novel engineering, which is the fusion of…
Descriptors: Models, Problem Solving, Problem Based Learning, Engineering Education
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Parks, Melissa – Science Activities: Projects and Curriculum Ideas in STEM Classrooms, 2020
Maximizing classroom time to include meaningful content-based learning with fun engaging activities that simultaneously challenge and encourage students is a hallmark of a successful school day. This article shares one instructional approach that does a model eliciting activity (MEA). A MEA is a real-world, problem-based scenario framed around a…
Descriptors: Elementary School Science, Teaching Methods, Problem Based Learning, Letters (Correspondence)
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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Ergün, Aysegül; Külekci, Erhan – Pedagogical Research, 2019
It is important for students to experience STEM education for countries to be able to increase their scientific research capacity and economic progress. The purpose of this research was to determine the effect of problem based STEM education on the perception of middle-school 5th grade students of engineering, engineers and technology. In the…
Descriptors: Problem Based Learning, STEM Education, Grade 5, Student Attitudes
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Burrow, Lauren; Cross, Chrissy – Science and Children, 2019
Created by Tufts University through a National Science Foundation (NSF)-funded project, the Novel Engineering website explains that "Novel Engineering is an integrated approach to teaching engineering and literacy" (2018) that asks teachers to support students' engagement in a project-based endeavor of problem-and-solution processes and…
Descriptors: Teaching Methods, Engineering Education, Student Projects, Problem Based Learning
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Gale, Jessica; Koval, Jayma; Ryan, Mike; Usselman, Marion; Wind, Stefanie – Journal of Pre-College Engineering Education Research, 2018
With the inclusion of engineering disciplinary core ideas (DCIs), the Next Generation Science Standards (NGSS) position engineering as a new priority in K-12 science classrooms. This paper reports findings from the implementation of SLIDER, a problem-based learning 8th grade physical science curriculum that integrates engineering and physical…
Descriptors: Engineering, Middle School Students, Problem Based Learning, Grade 8
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Long, Nguyen Tien; Yen, Nguyen Thi Hoang; Van Hanh, Nguyen – International Journal of Education and Practice, 2020
The STEM education emphasizes on Science, Technology, Engineering and Mathematics with a major focus on engineering design process that engineers require in solving challenges or problems. Kolb's model provides micro-learning activities such as experiencing, sharing and processing, generalizing and applying. Therefore, both Kolb's model and…
Descriptors: Experiential Learning, Problem Based Learning, Problem Solving, Engineering
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Dailey, Debbie – Gifted Child Today, 2017
With the release of the Next Generation Science Standards and the adoption of the standards by many states, teachers are encouraged to use the engineering design process (EDP) as an instructional approach to teaching science. However, teachers have limited time to teach science and will often neglect science in favor of mathematics and literacy…
Descriptors: Elementary School Students, Engineering Technology, Gifted, Talent
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Chu, Lawrence; Sampson, Victor; Hutner, Todd L.; Rivale, Stephanie; Crawford, Richard H. – Journal of Pre-College Engineering Education Research, 2019
The goal of this study was to examine how the use of a new instructional model is related to changes in middle school students' engineering identity. The intent of this instructional model, which is called argument-driven engineering (ADE), is to give students opportunities to design and critique solutions to meaningful problems using the core…
Descriptors: Persuasive Discourse, Middle School Students, Engineering Education, Problem Based Learning
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Dailey, Debbie; Cotabish, Alicia; Jackson, Nykela – Journal for the Education of the Gifted, 2018
Present and future challenges in our society demand a solid science, technology, engineering, and mathematics (STEM) knowledge base, innovative thinking, and the ability to ask the right questions to generate multiple solutions. To prepare innovators to meet these challenges, we must recognize and develop their talents. This advancement and growth…
Descriptors: STEM Education, Science Instruction, Science Interests, Engineering Education
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Gonczi, Amanda L.; Bergman, Brenda G.; Huntoon, Jackie; Allen, Robin; McIntyre, Barb; Turner, Sheri; Davis, Jen; Handler, Rob – Science Activities: Classroom Projects and Curriculum Ideas, 2017
Decision matrices are valuable engineering tools. They allow engineers to objectively examine solution options. Decision matrices can be incorporated in K-12 classrooms to support authentic engineering instruction. In this article we provide examples of how decision matrices have been incorporated into 6th and 7th grade classrooms as part of an…
Descriptors: Decision Making, Matrices, Teaching Methods, Middle School Students
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