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Luecha Ladachart; Visit Radchanet; Wilawan Phothong; Ladapa Ladachart – Research in Science & Technological Education, 2024
Integrating science, technology, engineering, art, and mathematics (STEAM) education has become an emphasis in many countries' K-12 curricula. Design-based learning is an instructional approach that allows students to learn STEAM in more integrated ways than the traditional method. Using design thinking as a pedagogical framework, design-based…
Descriptors: Foreign Countries, Middle School Students, Grade 8, STEM Education
Kilty, Trina J.; Burrows, Andrea C. – Education Sciences, 2022
The purpose of this study was to explore how undergraduate college students formed partnerships in informal educational teams to design and build an interdisciplinary, ill-defined, integrated science, technology, engineering, and mathematics (STEM) project and translate it to lessons taught to a pre-collegiate student (e.g., K-12 in the US)…
Descriptors: Undergraduate Students, STEM Education, Partnerships in Education, Interdisciplinary Approach
Tytler, Russell; Anderson, Judy; Williams, Gaye – ZDM: Mathematics Education, 2023
Advocacy of STEM curricular approaches is based on a concern to engage students in authentic disciplinary and interdisciplinary practices in the STEM (science, technology, engineering, mathematics) disciplines, and the need to promote participation in STEM pathways. The "STEM Academy" professional learning program was developed to…
Descriptors: STEM Education, Integrated Curriculum, Learner Engagement, Mathematics Education
Mejias, Sam; Thompson, Naomi; Sedas, Raul Mishael; Rosin, Mark; Soep, Elisabeth; Peppler, Kylie; Roche, Joseph; Wong, Jen; Hurley, Mairéad; Bell, Philip; Bevan, Bronwyn – Science Education, 2021
As an emerging field of theory, research, and practice, STEAM (Science, Technology, Engineering, Arts, and Mathematics) has received attention for its efforts to incorporate the arts into the rubric of STEM (Science, Technology, Engineering, and Mathematics) learning. In particular, many informal educators have embraced it as an inclusive and…
Descriptors: Art Education, STEM Education, Interdisciplinary Approach, Transformative Learning
Rabia Gul Kirikcilar; Ahmet Sukru Ozdemir – Online Submission, 2024
This study investigates the integration of EthnoSTEAM into mathematics education, focusing on the importance of incorporating students' cultural contexts to enhance their learning experiences. Traditional mathematics education often fails to account for the cultural backgrounds of students, hindering their ability to connect mathematical concepts…
Descriptors: Mathematics Education, Mathematics Curriculum, Students, Mathematics Teachers
Jane Watson; Noleine Fitzallen – Australian Primary Mathematics Classroom, 2024
Statistics need data and data need context. Contexts from across the curriculum can be the most powerful in creating interest, reward, and enthusiasm for both teachers and students. The activity described here is based in STEM, employing aspects of each field to create and solve a hypothetical problem of escaping from an erupting volcano (Science)…
Descriptors: Foreign Countries, Elementary School Curriculum, Elementary School Mathematics, Elementary School Science
Dion T. Harry; Ashtin Crawford; Chaterlee Pamintuan; Abhishek Singh; Dana Thomas; Natalie K. Cooke; Colleen Oliver; Claire L. Gordy; Jane L. Lubischer – CBE - Life Sciences Education, 2024
College students with identities traditionally marginalized in scientific disciplines are more engaged and more likely to remain in science if they feel that they belong in their science, technology, engineering, and mathematics (STEM) classes and departments. In this qualitative case study, we elevated marginalized student voices to learn how…
Descriptors: Undergraduate Students, Minority Group Students, Predominantly White Institutions, Research Universities
Chambers, Brittany; McNeal, Kenton; Salter, Amy; Muldrow, Lycurgus – About Campus, 2021
In an article written by Matthew Randazzo (2017) titled "Students Shouldn't Live in STEM Deserts," he revealed that a limited number of educational opportunities exist for students to gain essential STEM (science, technology, engineering, and mathematics) skills. This need for more STEM minds is bolstered by a widespread economic shift…
Descriptors: STEM Education, College Bound Students, Student Research, Summer Programs
Huang, Zhenhua; Kougianos, Elias; Ge, Xun; Wang, Shuping; Chen, P. Daniel; Cai, Liping – IEEE Transactions on Education, 2021
Contribution: A systematic interdisciplinary engineering and technology instructional model using cutting-edge technologies is proposed in this research. This model consists of four key components: 1) interdisciplinary collaboration; 2) hands-on projects; 3) real-world simulations; and 4) cutting-edge technologies. The model was designed to engage…
Descriptors: Interdisciplinary Approach, STEM Education, Models, Teaching Methods
Jessica F. Cantlon; Katherine T. Becker; Caroline M. DeLong – Journal for STEM Education Research, 2024
STEM experiences that capture students' curiosity have a unique role in inspiring awe in science, enculturing science engagement, and recruiting students to pursue STEM careers. Here, we present a unique interdisciplinary STEM experience for elementary school students that teaches them to write computer code to test primate intelligence at a zoo…
Descriptors: Authentic Learning, Interdisciplinary Approach, STEM Education, Elementary School Students
Admiraal, Wilfried; Post, Lysanne; Guo, Pengyue; Saab, Nadira; Makinen, Sari; Rainio, Ohto; Vuori, Johanna; Bourgeois, Jacky; Kortuem, Gerd; Danford, Gerard – International Journal of Technology in Education and Science, 2019
One promising way to cope with changing requirements from the labor market in the domain of Science, Technology, Engineering and Mathematics (STEM), but also to keep the field up to date, to start innovations and to advance the STEM domain as such is the use of student labs. In these labs, students work together in small groups imitating…
Descriptors: STEM Education, Higher Education, Learning Laboratories, Interdisciplinary Approach
Turner, Angela; Logan, Marianne; Wilks, Judith – International Journal of Technology and Design Education, 2022
Science, Technology, Engineering and Mathematics (STEM) education has been identified as a keystone teaching and learning area for developing students' knowledge and skills on interdisciplinary critical thinking and problem solving (We use the term 'interdisciplinary' because discipline knowledge and methods were integrated from different…
Descriptors: Gardening, Food, Sustainability, Principals
Kilty, Trina; Burrows, Andrea; Welsh, Kate; Kilty, Kevin; McBride, Shawna; Bergmaier, Philip – Journal of Technology and Science Education, 2021
An authentic, interdisciplinary, research and problem-based integrated science, technology, engineering, and mathematics (STEM) project may be ideal for encouraging scientific inquiry and developing teamwork among undergraduate students, but it also presents challenges. The authors describe how two interdisciplinary teams (n=6) of undergraduate…
Descriptors: Interdisciplinary Approach, STEM Education, Undergraduate Students, Preservice Teachers
Wu, Yufei; Cheng, Jiaming; Koszalka, Tiffany A. – International Journal of Education in Mathematics, Science and Technology, 2021
A call for educational reform motivated this school system to devise an enhanced version of STEM in their middle school. This case provides rich descriptions of how eighth grade middle school teachers, from multiple disciplines, enacted a STEAM team model that integrated Language Arts into STEM. These STEAM team teachers were systematically…
Descriptors: Interdisciplinary Approach, Language Arts, Social Studies, Art Education
Noble, Elizabeth; Ferris, Kaitlyn A.; LaForce, Melanie; Zuo, Huifang – European Journal of STEM Education, 2020
Background: Inclusive STEM high schools employ a variety of instructional strategies, including PBL (problem and/or project-based learning) experiences, with the goals of building students' 21st century skills, facilitating long-term academic success, and encouraging pursuit of STEM careers. PBL approaches are central to the goals of inclusive…
Descriptors: STEM Education, High Schools, Inclusion, Problem Based Learning
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