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Knut Aukland; Inge Andersland; Martin Smith-Gahrsen; Eva Mila Lindhardt; Anne Siri Kvia; Simon Simchai Hansen – Journal of Beliefs & Values, 2024
This paper reports from a symposium exploring the application of Virtual Reality (VR) in RE. The contributors presented empirical case-studies of interventions and instructional designs that had been tested in classroom settings ranging from primary to teacher education. The presentations illustrate the ways in which VR can be understood as a…
Descriptors: Computer Simulation, Teaching Methods, Religious Education, Moral Values
Suprapto, Nadi; Ibisono, Handal Setyo; Mubarok, Husni – Journal of Technology and Science Education, 2021
Planetary motion in physics learning is an abstract concept and requires high reasoning. This article is one of the augmented realities (AR)-based pocketbook development on the planetary motion, focusing on student learning achievement. The study used the ADDIE model : "Analysis-Design-Development-Implementation-Evaluation". In the…
Descriptors: Science Education, Physics, Motion, Astronomy
Sean J. Smith; Amber Rowland; Samantha Goldman; Adam Carreon – Journal of Special Education Leadership, 2024
The purpose of this qualitative study was to understand, from the perspective of students with disabilities, what special education leaders and their respective classroom educators should consider in the integration of artificial intelligence (AI) features and tools to support individualized instruction. This study utilized an immersive and…
Descriptors: Special Education, Leaders, Artificial Intelligence, Technology Uses in Education
Chou, Te-Shun; Vanderbye, Aaron – Journal of Information Technology Education: Innovations in Practice, 2017
Aim/Purpose: To prepare students with both theoretical knowledge and practical skills in the field of wireless communications. Background: Teaching wireless communications and networking is not an easy task because it involves broad subjects and abstract content. Methodology: A pedagogical method that combined lectures, labs, assignments, exams,…
Descriptors: Telecommunications, Experiential Learning, Simulation, Laboratories
Ramírez-Montoya, María-Soledad, Ed. – IGI Global, 2017
Educational strategies have evolved over the years, due to research breakthroughs and the application of technology. By using the latest learning innovations, curriculum and instructional design can be enhanced and strengthened. The "Handbook of Research on Driving STEM Learning with Educational Technologies" is an authoritative…
Descriptors: Guides, STEM Education, Educational Technology, Foreign Countries
Strayer, Jeremy F. – Mathematics Teacher, 2013
Statistical studies are referenced in the news every day, so frequently that people are sometimes skeptical of reported results. Often, no matter how large a sample size researchers use in their studies, people believe that the sample size is too small to make broad generalizations. The tasks presented in this article use simulations of repeated…
Descriptors: Sampling, Sample Size, Research Methodology, Statistical Analysis
Johnson, L.; Adams Becker, S.; Hall, C. – New Media Consortium, 2015
The purpose of the report is to inform Australian campus leaders and decision-makers about important developments in technologies supporting teaching, learning, and creative inquiry in tertiary education across the continent. It was produced to explore important developments in technology and forecast their potential impact expressly in an…
Descriptors: Higher Education, Decision Making, College Administration, Educational Technology
Bryan, Joel – Contemporary Issues in Technology and Teacher Education (CITE Journal), 2006
Although technological innovations have the capability to significantly change how scientific investigations are done and greatly enhance the teaching and learning of science, its use is no more effective than any other resource or innovation when researched-based effective teaching practices are not followed. This paper reviews established…
Descriptors: Technology Uses in Education, Physics, Science Instruction, Educational Technology