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Özlem Göksen; Esra Kizilay; Nagihan Tanik Önal – Science Insights Education Frontiers, 2024
In the current study, an engineering design-based STEM activity was designed and implemented for 5th graders. The current activity is expected to provide guidance and perspective to teachers (practitioners) in designing and implementing an activity based on design-based learning, STEM activity, and engineering design process (EDP). At the same…
Descriptors: STEM Education, Engineering Education, Learning Activities, Middle Schools
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Pilar Pazos; Francisco Cima Cohuo; Jennifer Kidd; Kristie Gutierrez; Krishnanand Kaipa; Orlando Ayala – Journal of Pre-College Engineering Education Research, 2023
Global efforts are underway to include engineering in pre-college curricula. In the USA, this pursuit led to the inclusion of engineering content in the most recent version of the Next Generation Science Standards that guide K-12 science. As these standards become part of the K-12 curriculum, teachers face the challenge of gaining basic…
Descriptors: Pedagogical Content Knowledge, Engineering Education, Elementary Secondary Education, Curriculum Implementation
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Hammack, Rebekah; Ivey, Toni – Journal of Engineering Education, 2019
Background: The Next Generation Science Standards (NGSS) call for the integration of engineering content and practices in elementary science curricula, yet little is known about elementary teachers' preparedness to do so or their views on teaching engineering. Purpose/Hypothesis: The purpose of the current study was to explore K-5 teachers'…
Descriptors: Elementary School Teachers, Teacher Attitudes, Engineering Education, Barriers
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Jackson, Justina R.; Boice, Katherine L.; Cochran, Stephen; Skelton, Brooke; Rosen, Jeffrey; Usselman, Marion – Journal of Pre-College Engineering Education Research, 2022
This study investigated the teaching experiences of three school personnel at a public high school during the 2020-2021 school year as they implemented a unique science, technology, engineering, arts, and math (STEAM) unit with in-person and virtual students in their engineering classes during the COVID-19 pandemic. A research team interviewed two…
Descriptors: Teaching Experience, High School Teachers, Engineering Education, STEM Education
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Hernández, Carola Hernández; Flórez, Francisco Buitrago; Tocora, Milena Alcocer; León, Diana Gaitán – Turkish Online Journal of Educational Technology - TOJET, 2018
In recent decades, one important objective in higher education has been developing professionals who can display competences in their specific work fields. Hence, the development of such competences and skills has been a widely discussed, highlighting that the use of active pedagogical initiatives might be the best approach to fulfill this…
Descriptors: Problem Based Learning, Problem Solving, Biomedicine, Engineering Education
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Newton, Sunni; Alemdar, Meltem; Hilton, Ethan; Linsey, Julie; Fu, Katherine – International Journal of STEM Education, 2018
Background: A redesigned curriculum for teaching engineering graphics was adopted in an introductory mechanical engineering course. The rollout of this curriculum was staggered, allowing for comparisons of student perceptions across the newly revised and previous instructional approaches. The new curriculum borrows from content and pedagogy…
Descriptors: Industrial Arts, Design, Engineering, Drafting
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Lesseig, Kristin; Slavit, David; Nelson, Tamara Holmlund – Middle School Journal, 2017
Given the current emphasis on science, technology, engineering, and math (STEM) education and its key attributes, middle school is an optimal time to implement STEM-based curricula. However, the interdisciplinary and open-ended nature of STEM projects often makes implementation difficult. In this article, we describe a professional development…
Descriptors: STEM Education, Middle School Students, Middle School Teachers, Interdisciplinary Approach
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Lachapelle, Cathy Pauline; Oh, Yoonkyung; Cunningham, Christine M. – AERA Online Paper Repository, 2017
We present main effects of treatment and moderating effects of student background on science and engineering outcomes for grades 3-5 children participating in an engineering intervention. Data is from a large-scale randomized-controlled trial of two matched pairs (intervention and comparison) of engineering units. The intervention curriculum…
Descriptors: Instructional Effectiveness, Engineering, Engineering Education, Intervention
Harris, Milton G. – Online Submission, 2018
Science education in the US entered a period of reform in 2011 with the development and implementation of the Next Generation Science Standards (NGSS). The NGSS have subsequently been adopted in 18 states. School districts within these states are in the process of adjusting science curricula to align with the academic expectations described by the…
Descriptors: Middle School Teachers, Science Education, Teacher Attitudes, Inquiry
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Ralston, Patricia A. S.; Tretter, Thomas R.; Kendall-Brown, Marie – Journal of the Scholarship of Teaching and Learning, 2017
Active and collaborative teaching methods increase student learning, and it is broadly accepted that almost any active or collaborative approach will improve learning outcomes as compared to lecture. Yet, large numbers of faculty have not embraced these methods. Thus, the challenge to encourage evidence-based change in teaching is not only how to…
Descriptors: Engineering Education, Curriculum Implementation, Cooperative Learning, Teaching Methods
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Holstein, Krista A.; Keene, Karen Allen – Teacher Education and Practice, 2013
There have been recent calls for the integration of STEM (science, technology, engineering, and mathematics) in K-12 education. In this collective case study, we describe three teachers' implementations of a new STEM curriculum that integrates mathematics, engineering, and technology. These teachers ranged in their faithfulness to the curriculum…
Descriptors: STEM Education, Curriculum Implementation, Barriers, Performance Factors
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Henry, Holly R.; Tawfik, Andrew A.; Jonassen, David H.; Winholtz, Robert A.; Khanna, Sanjeev – Interdisciplinary Journal of Problem-based Learning, 2012
This qualitative case study examines the initial implementation of a problem-based version of an undergraduate course in materials science for the purpose of identifying areas of improvement to the curriculum prior to a planned second implementation. The course was designed around problems that students work in small teams to solve under the…
Descriptors: Undergraduate Students, Participant Satisfaction, Student Attitudes, Science Materials