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Moloi, Mabel Julia; Motlhabane, Abraham Tlhalefang – South African Journal of Education, 2023
The aim with this study was to analyse and explore how physical sciences, engineering science and technology subjects (technical electrical technology, technical civil technology, technical mechanical technology) can contribute to the alignment of the technical sciences curriculum. We used document analysis to collect data. An analysis of the…
Descriptors: Integrated Curriculum, Science Curriculum, Physical Sciences, Engineering Education
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Bernstein, Debra; Puttick, Gillian; Wendell, Kristen; Shaw, Fayette; Danahy, Ethan; Cassidy, Michael – Educational Technology Research and Development, 2022
In most middle schools, learning is segregated by discipline. Yet interdisciplinary approaches have been shown to cultivate creative thinking, support problem solving, and develop interest while supporting knowledge gains (NAE & NRC in STEM Integration in K-12 Education: Status, Prospects, and an Agenda for Research. National Academies Press,…
Descriptors: Robotics, Design, Middle School Students, Problem Based Learning
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Tasso E. F. Diógenes; Gabriela A. de B. Vieira; Joao R. A. Leao; Glaydson F. B. de Oliveira – Journal of Education and Learning, 2024
The professional high school by the federal schools in Brazil requires an integrated curriculum itinerary. There is a lack of information about how to achieve that in a practical conception of integration. This article aimed to investigate the interdisciplinary approach of the content "transformation of energy" involving the relationship…
Descriptors: Interdisciplinary Approach, High School Students, Intervention, Teaching Methods
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Brand, Brenda R. – International Journal of STEM Education, 2020
Background: The Next Generation Science Standards accentuate engineering design along with scientific inquiry, emphasizing the relationship between scientific investigations and engineering design in solving problems and devising new ideas and technologies. The goal is for students to realize the importance of science and engineering in innovation…
Descriptors: Science Education, Engineering Education, STEM Education, Design
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Santos, José; Escórcio, Patrícia – European Journal of Engineering Education, 2022
Building Information Modelling (BIM) has changed the way many civil engineers organise and execute their job in recent years. Many universities around the world have been adapting their curricula to include BIM education. However, this adaptation has been incomplete, occurring only in a small number of subjects. To fill this gap, this paper…
Descriptors: Civil Engineering, Engineering Education, Construction (Process), Construction Management
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Latimer, Benjamin; Bergin, David A.; Guntu, Vinay; Schulz, David J.; Nair, Satish S. – IEEE Transactions on Education, 2019
Contribution: This paper demonstrates curricular modules that incorporate engineering model-based approaches, including concepts related to circuits, systems, modeling, electrophysiology, programming, and software tutorials that enhance learning in undergraduate neuroscience courses. These modules can also be integrated into other neuroscience…
Descriptors: Integrated Curriculum, Models, Neurosciences, Interdisciplinary Approach
Salcedo Orozco, Oscar H. – ProQuest LLC, 2017
STEM education is an interdisciplinary approach to learning where rigorous academic concepts are coupled with real-world lessons and activities as students apply science, technology, engineering, and mathematics in contexts that make connections between school, community, work, and the global enterprise enabling STEM literacy (Tsupros, Kohler and…
Descriptors: Engineering Education, STEM Education, Interdisciplinary Approach, Educational Philosophy
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Moyer, Courtney D. – Technology and Engineering Teacher, 2016
Thematic instruction offers flexible opportunities to engage students with real-world experiences in the technology and engineering community. Whether used in a broad unifying theme or specific project-based theme, research has proven that thematic instruction has the capacity to link cross-curricular subjects, facilitate active learning, and…
Descriptors: Engineering Education, Technology Education, Thematic Approach, Integrated Curriculum
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Roure, Bastien; Anand, Chirjiv; Bisaillon, Véronique; Amor, Ben – International Journal of Sustainability in Higher Education, 2018
Purpose: The purpose of this paper is to provide a consistent and systematic integration framework of sustainable development (SD) in a civil engineering (CE) curriculum, given the connection between the two. Curriculum integration is a challenging project and requires the development of certain protocols to ensure success.…
Descriptors: Sustainable Development, Civil Engineering, Engineering Education, Interdisciplinary Approach
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Gess, Ashley H. – Technology and Engineering Teacher, 2017
Improving science, technology, engineering, and mathematics education (STEM) is an international imperative as countries work to improve life and prospects for their people. Countries recognize that to improve economic prosperity and national security, their citizens should be prepared to work in a global society that is characterized by digital,…
Descriptors: STEM Education, Art Education, Technological Literacy, Scientific Literacy
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Lim, Cheolil; Lee, Jihyun; Lee, Sunhee – Asia Pacific Education Review, 2014
Existing approaches to developing creativity rely on the sporadic teaching of creative thinking techniques or the engagement of learners in a creativity-promoting environment. Such methods cannot develop students' creativity as fully as a multilateral approach that integrates creativity throughout a curriculum. The purpose of this study was to…
Descriptors: Foreign Countries, Engineering Education, Integrated Curriculum, Creativity
Vehuni, Alina – ProQuest LLC, 2015
This qualitative study explored preservice elementary teacher preparation to teach engineering as part of science, technology, engineering, and mathematics (STEM) integration as required by the Next Generation Science Standards (NGSS). The purpose of the study was to understand how preservice teachers' undergraduate major and teacher preparation…
Descriptors: Preservice Teachers, Teacher Education Programs, STEM Education, Engineering Education
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Valtorta, Clara G.; Berland, Leema K. – Journal of Pre-College Engineering Education Research, 2015
Engineering in K-12 classrooms has been receiving expanding emphasis in the United States. The integration of science, mathematics, and engineering is a benefit and goal of K-12 engineering; however, current empirical research on the efficacy of K-12 science, mathematics, and engineering integration is limited. This study adds to this growing…
Descriptors: STEM Education, Engineering Education, Secondary Education, High School Students
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Hansen, Alexandria Killian; Iveland, Ashley; Harlow, Danielle Boyd; Dwyer, Hilary; Franklin, Diana – Science and Children, 2015
As science teachers continue preparing for implementation of the "Next Generation Science Standards," one recommendation is to use computer programming as a promising context to efficiently integrate science and engineering. In this article, a interdisciplinary team of educational researchers and computer scientists describe how to use…
Descriptors: Animation, Programming, Integrated Curriculum, Science Education
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Asunda, Paul A.; Mativo, John – Technology and Engineering Teacher, 2017
Part One of this article ("Technology and Engineering Teacher," 75(4), December/January, 2016) presented a process that science, math, engineering, and technology teachers could use to collaborate and design integrated STEM courses. A conceptual framework was discussed that could provide a premise that educators interested in delivery of…
Descriptors: STEM Education, Technology Education, Teaching Methods, Common Core State Standards
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