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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
Yanko Ordóñez Ontiveros; Julián Roa González; José Luis Díaz Palencia – Journal of Education and Learning (EduLearn), 2025
This discussion explored the integration of creative thinking pedagogy and the anthropological theory of didactics in university-level algebra education, emphasizing the importance of understanding the perspectives of both learners and teachers. The work began by highlighting the necessity of considering these viewpoints to create effective and…
Descriptors: College Faculty, College Students, Mathematics Activities, Mathematics Curriculum
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
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
Joseph, Anthony; Lawler, James – Information Systems Education Journal, 2020
Colleges are engaging students in collaborative design courses on diverse projects. More of the courses could be focusing on cross-disciplinary entrepreneurship projects including computer science and information systems students with other disciplinary students. The authors of this paper describe a course that is focusing on collaborative design…
Descriptors: Computer Science Education, Entrepreneurship, Student Projects, Cooperative Learning
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
Holmén, Johan; Adawi, Tom; Holmberg, John – International Journal of Sustainability in Higher Education, 2021
Purpose: While sustainability-oriented education is increasingly placing importance on engaging students in inter- and transdisciplinary learning processes with societal actors and authentic challenges in the centre, little research attends to how and what students learn in such educational initiatives. This paper aims to address this by opening…
Descriptors: Sustainability, Environmental Education, Learning Processes, Social Environment
Bahls, Patrick – Honors in Practice, 2020
Research indicates that a majority of honors students across the country are able to earn honors credit through the fulfillment of honors contracts. These learning contracts grant honors credit to students who perform additional work in non-honors-designated sections of other courses. Despite their popularity, little has been written on the design…
Descriptors: Honors Curriculum, Authentic Learning, Contracts, College Credits
Struyf, Annemie; De Loof, Haydée; Boeve-de Pauw, Jelle; Van Petegem, Peter – International Journal of Science Education, 2019
In this paper, we explore how students' engagement varies in different STEM (Science, Technology, Engineering, Mathematics) learning environments. More specifically, we focus on the significance of a learning environment applying an integrated STEM (iSTEM) approach and the significance of STEM learning environments' student-centredness. Moreover,…
Descriptors: Learner Engagement, STEM Education, Educational Environment, Educational Practices
Warr, Melissa; West, Richard E. – Interdisciplinary Journal of Problem-based Learning, 2020
This article describes the implementation of an interdisciplinary design studio as a means to teach creative problem-solving through project-based learning. "Learning and Innovation Skills" has been designated as a core skill that students need to be successful in today's world, and project-based learning is one approach to helping…
Descriptors: Interdisciplinary Approach, Student Projects, Active Learning, Teaching Methods
Riley, Tracy; Noble, Anne – Teaching and Learning Research Initiative, 2021
This Teaching and Learning Research Initiative (TLRI) project was a 2-year exploratory study focusing on differentiating the curriculum in response to individual learner differences. The project was designed to explore learning and teaching of differentiated scientific content through observational processes and the expression of that learning…
Descriptors: STEM Education, Art Education, Individual Differences, Teaching Methods