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Brito, Irene; Almeida, José João; Machado, Gaspar J. – Open Education Studies, 2023
Mathematics and Music are closely connected and their multifaceted relationship has been explored since ancient times. Pythagoras was one of the first who discovered and formalized one of those connections by studying the arithmetic of musical intervals, expressing them by numerical ratios and relating ratios to consonance/dissonance notions,…
Descriptors: Mathematics, Music, Interdisciplinary Approach, Geometric Concepts
Musa Saimon; Zsolt Lavicza; Tony Houghton; Fredrick Mtenzi; Pablo Carranza – Discover Education, 2025
STEAM (Science, Technology, Engineering, Arts and Mathematics) Education is one of the approaches that teachers adopt as they shift from content delivery focused teaching to skills development teaching. Also, effective STEAMING requires connection to issues outside the classroom (outdoor STEAM) and hence the coinage of the term Transdisciplinary…
Descriptors: Outdoor Education, Art Education, STEM Education, Sustainability
Sobotka, Alex J.; Clough, Michael P. – Clearing House: A Journal of Educational Strategies, Issues and Ideas, 2022
Design activities can serve as a concrete experience to address the similarities and differences between science and engineering, and also demarcate engineering from tinkering. They can lay the foundation for concept development of targeted disciplinary ideas. Minor, but crucial, changes to classroom tinkering activities along with targeting and…
Descriptors: STEM Education, Design, Scientific Principles, Intellectual Disciplines
Christopher Dignam – International Journal of Technology in Education and Science, 2024
The process of perceiving music involves the transference of environmental physics in the air to anatomical and physiological interpretations of resonance in the body and psychological perceptions in the brain. These processes and musical interpretations are the basis of physical and cognitive science, neurophysiology, psychoacoustics, and…
Descriptors: Music, STEM Education, Interdisciplinary Approach, Curriculum Development
Oylum Cavdar; Bekir Yildirim; Esin Kaya; Adem Akkus – Journal of Chemical Education, 2024
This paper investigated the effect of TRIZ ("Teoriya Resheniya Izobretatelskikh Zadatch"-Theory of Inventive Problem Solving)--STEM activities customized for nanotechnology education on middle school students' problem-solving, critical thinking, and research inquiry skills. Since STEM requires both multidisciplinary work and…
Descriptors: STEM Education, Middle School Students, Problem Solving, Critical Thinking
King-Dow Su – Journal of Science Education and Technology, 2024
According to extensive research, problem-based learning (PBL) in STEM education improves student learning outcomes and supports them in gaining practical skills necessary for upward future careers. Despite current efforts to promote PBL-STEM activities in education, their uptake in life science remains low. Several types of research involving…
Descriptors: Problem Based Learning, Learning Activities, Interdisciplinary Approach, STEM Education
Armutcu, Yaprak; Bal, Ayten Pinar – International Journal of Contemporary Educational Research, 2023
This study was conducted to examine the effect of mathematical modelling activities on the mathematical modelling skills of secondary school students in the context of STEM education. The study was designed according to the embedded design, one of the mixed research methods. The study group of research consists of 66 eighth-grade students studying…
Descriptors: STEM Education, Mathematical Models, Mathematics Skills, Program Effectiveness
Lee, Irene; Malyn-Smith, Joyce – Journal of Science Education and Technology, 2020
This paper describes analyses of the K-12 computational thinking (CT) integration activities collected at two NSF-funded workshops, "Developing an Interdisciplinary Framework for Integrating Computational Thinking in K-12 Science, Mathematics, Technology, and Engineering Education," held in August and November of 2017 at Education…
Descriptors: Elementary Secondary Education, Interdisciplinary Approach, STEM Education, Computation
Hardy, John G.; Sdepanian, Stephanie; Stowell, Alison F.; Aljohani, Amal D.; Allen, Michael J.; Anwar, Ayaz; Barton, Dik; Baum, John V.; Bird, David; Blaney, Adam; Brewster, Liz; Cheneler, David; Efremova, Olga; Entwistle, Michael; Esfahani, Reza N.; Firlak, Melike; Foito, Alex; Forciniti, Leandro; Geissler, Sydney A.; Guo, Feng; Hathout, Rania M.; Jiang, Richard; Kevin, Punarja; Leese, David; Low, Wan Li; Mayes, Sarah; Mozafari, Masoud; Murphy, Samuel T.; Nguyen, Hieu; Ntola, Chifundo N. M.; Okafo, George; Partington, Adam; Prescott, Thomas A. K.; Price, Stephen P.; Soliman, Sherif; Sutar, Papri; Townsend, David; Trotter, Patrick; Wright, Karen L. – Journal of Chemical Education, 2021
For some professionally, vocationally, or technically oriented careers, curricula delivered in higher education establishments may focus on teaching material related to a single discipline. By contrast, multidisciplinary, interdisciplinary, and transdisciplinary teaching(MITT) results in improved affective and cognitive learning and critical…
Descriptors: Chemistry, Science Instruction, Interdisciplinary Approach, Higher Education
Braskén, Mats; Pörn, Ray – LUMAT: International Journal on Math, Science and Technology Education, 2021
Although one of key ideas behind the introduction of STEM (or STEAM) as a unifying concept, is to emphasize the interdisciplinary character of many real world problems, there is a non-trivial educational challenge in exceeding existing subject boundaries and implementing multidisciplinary activities into the classroom. The present case study…
Descriptors: Energy Education, Interdisciplinary Approach, Units of Study, Grade 9
Al-Mutawah, Masooma Ali; Alghazo, Yazan M.; Mahmoud, Enaz Yousef; Preji, Nisha; Thomas, Ruby – International Journal of Education and Practice, 2021
The significant global interest in 21st century skills and their incorporation into school curricula inspired the researchers of the current study to develop a new educational approach of designing curricula that incorporates science, mathematics, technology, arts and engineering (STEAM). In this study, the researchers reviewed several relevant…
Descriptors: Foreign Countries, 21st Century Skills, STEM Education, Art Education
Remijan, Kelly W. – Mathematics Teacher, 2019
Just as steam was found to be a source of power during the Industrial Revolution, increasing factory production and improving transportation, today STEAM (Science, Technology, Engineering, Art, and Mathematics) can be found to be a framework that empowers teachers, increases student engagement, and improves student understanding. Although a…
Descriptors: STEM Education, Art Education, Integrated Curriculum, Curriculum Implementation
Evmorfia-Iro Bartzia; Michael Lodi; Marco Sbaraglia; Simon Modeste; Viviane Durand-Guerrier; Simone Martini – Informatics in Education, 2024
In this paper, we present an activity to introduce the idea of public-key cryptography and to make pre-service STEM teachers explore fundamental informatics and mathematical concepts and methods. We follow the Theory of Didactical Situations within the Didactical Engineering methodology (both widely used in mathematics education research) to…
Descriptors: Information Science Education, Mathematics Education, Problem Solving, Teaching Methods
Le, Thi Xinh; Bui, Van Hong – Journal of Education and e-Learning Research, 2021
STEM education is an educational solution that prepares pupils for the future by connecting scientific knowledge with practical applications. This modern method of education is being widely applied in developing countries in order to maintain their scientific and technical standing and strengthen their competition in the global economy. In…
Descriptors: Foreign Countries, STEM Education, Teacher Competencies, Elementary School Teachers
A. M. Bowling; W. Klooster; A. J. Lindsey – Natural Sciences Education, 2024
Agricultural systems are complex and can be used as examples to teach science, technology, engineering, and math (STEM) concepts. However, inclusion of agriculture in core STEM courses is often limited. Three professional development sessions for K-12 teachers were offered in 2021-2022 (hybrid or remote sessions) and repeated in 2022-2023…
Descriptors: Faculty Development, Agriculture, STEM Education, Scientific Concepts