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Sarah Emily Wilson; Joseph B. Wiggins; Lauren N. Wong; Tracy Gault Ulrich; Bill Causey; Jorge Parra; Nicholas A. Gage; Jose Blackorby – Journal of Special Education Technology, 2025
Over the past few decades, advances in computing power and the widespread adoption of the Internet have completely transformed the ways that people obtain information, communicate, educate, and conduct business. Unfortunately, access to technology and to the training required to use technology are not equitably distributed in the United States,…
Descriptors: Students with Disabilities, Educational Technology, Technology Uses in Education, Intervention
Steven Floyd – Canadian Journal of Science, Mathematics and Technology Education, 2023
In this article, the relatively new phenomenon of integrating coding and computer science (CS) related concepts and skills into the K-8 grades is analysed through a comparative analysis of related provincial curriculum initiatives in Canada. First, provincial K-8 curricula that include coding and CS related concepts and skills are identified, as…
Descriptors: Foreign Countries, Elementary Schools, Middle Schools, Coding
Michael J. Berson; Ilene R. Berson; Kristen L. Franklin; Valerie N. Fawley; Perry S. Shank; Rebecca E. Dovi; Santiago Gasca; Eric D. Hochberg; Debra Bernstein – Social Education, 2024
The landscape of education is dynamically evolving with the infusion of technology into classrooms, but it is not just math or science disciplines that are getting a digital makeover. Social studies education has entered a transformative phase as well. The "Computer Science for Social Studies" project, funded by the National Science…
Descriptors: Critical Thinking, Active Learning, Inquiry, Social Studies
Xiaodong Huang; Chengche Qiao – Science & Education, 2024
Artificial intelligence is the unification of philosophy, cognitive science, mathematics, neurophysiology, psychology, computer science, information theory, cybernetics, and uncertainty theory. Therefore, it is feasible and necessary to utilize STEAM (Science, Technology, Engineering, Liberal Arts, and Mathematics) education to learn artificial…
Descriptors: Thinking Skills, Artificial Intelligence, STEM Education, Art Education
Joseph Frusci – Journal of Cybersecurity Education, Research and Practice, 2024
The increasing complexity of cybersecurity challenges necessitates a holistic educational approach that integrates both technical skills and humanistic perspectives. This article examines the importance of infusing humanities disciplines such as history, ethics, political science, sociology, law, and anthropology, into cybersecurity education.…
Descriptors: Humanities, Humanities Instruction, Computer Science Education, Computer Security
Woo, Karen; Falloon, Garry – Journal of Educational Computing Research, 2023
Coding is increasingly popular in schools around the world and is often taught by non-specialist teachers as an integrated task with other subject areas. In this article, we explore the relationship between computer science (CS) concepts and students' multimodal expression in a coding animated narrative (CAN) task in the context of an integrated…
Descriptors: Coding, Computer Science, Animation, Student Projects
Nicole Panorkou; Toni York; Erell Germia – Cognition and Instruction, 2024
In this paper we discuss the types of knowledge used by six middle school students as they engaged with a debugging task designed to integrate ideas from computer science, mathematics and science. Our findings show that the computational thinking practice of debugging is a rich source of opportunities to integrate these different disciplines. The…
Descriptors: Troubleshooting, Interdisciplinary Approach, Middle School Students, Computer Science
Matthew W. Rutherford; Brian E. Whitacre; Levi Captain; Sabit Ekin; Julie Angle; Tom Hensley; John F. O'Hara – IEEE Transactions on Education, 2025
Contribution: Case study of a rural-focused educational program with two components: 1) introducing high school students and teachers to smart and connected technologies (SCTs) that can be used to solve local problems and 2) engaging the local community in supporting local technology-driven entrepreneurship. Background: Rural communities typically…
Descriptors: Rural Areas, Entrepreneurship, High School Students, Robotics
W. Brian Lane; Terrie M. Galanti; X. L. Rozas – Journal for STEM Education Research, 2023
Integrating computational thinking (CT) into STEM disciplines requires secondary teachers to develop their pedagogical content knowledge of computing and content integration. Experienced teachers who choose to integrate CT in their secondary STEM courses may struggle in the same ways as novice teachers as they learn about programming and its…
Descriptors: Physics, Teaching Methods, Grounded Theory, Capacity Building
Souza, Isabelle M. L.; Andrade, Wilkerson L.; Sampaio, Lívia M. R. – Informatics in Education, 2022
Nowadays, solving problems is substantial for the social relationship human. Computational Thinking (CT) emerges as an interdisciplinary thought process encompassing mental abilities to help students solve and understand problems. Researchers invest in the methodological proposal of activities aimed at CT stimulation, educational approaches, and…
Descriptors: Robotics, Vocational Education, High School Students, Thinking Skills
Christopher Lore; Hee-Sun Lee; Amy Pallant; Charles Connor; Jie Chao – International Journal of Science and Mathematics Education, 2024
As computational methods are widely used in science disciplines, integrating computational thinking (CT) into classroom materials can create authentic science learning experiences for students. In this study, we classroom-tested a CT-integrated geoscience curriculum module designed for secondary students. The module consisted of three inquiry…
Descriptors: Risk, Science Instruction, Physical Geography, Natural Disasters
Sreynet Un – Journal of Educational Technology and Online Learning, 2025
Since its emergence, technology has progressed beyond knowledge. Therefore, competencies are needed to navigate it safely, responsibly, and ethically. A well-designed curriculum forms the core of school strategies to enhance students' competencies and learning outcomes. This study examines the integration of digital citizenship concepts in…
Descriptors: Secondary School Students, Curriculum Development, Educational Strategies, Outcomes of Education
Humble, Niklas – Education and Information Technologies, 2023
Due to increased need of professionals on the future labour market with competence in programming, many countries have integrated programming in kindergarten to grade 12 (K-12) education. In 2017, programming was integrated in Swedish primary and secondary school curriculum and the courses of Mathematics and Technology. Research has highlighted…
Descriptors: Secondary School Students, Mathematics Instruction, Programming, Teaching Methods
Dana Shaat – Society for Research on Educational Effectiveness, 2023
Background/Context: There were over 500,000 open computing jobs across the country in 2018, but only 35% of U.S. high schools offer computer science classes, and only 8-10% of STEM graduates study computer science (Code.org, 2018). In 2021, only 5.1% of all Bachelor's degrees conferred were in Computer and Information Sciences (IPEDS, 2018). STEM…
Descriptors: Hispanic American Students, High School Students, Computer Science Education, Faculty Development
Aimicheva, G.; Kopeyev, Zh.; Ordabayeva, Zh.; Tokzhigitova, N.; Akimova, S. – Education and Information Technologies, 2020
The article is devoted to the issues of teaching mobile application development and, as a consequence, training of highly qualified in-demand mobile developers. Nowadays, training professional mobile developers is a crucial task all over the world. The researchers emphasize the complexity of mobile application development associated with its…
Descriptors: Teaching Methods, Telecommunications, Handheld Devices, Undergraduate Students