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Han, Peng-Fei; Zhao, Feng-Kui; Zhao, Gang – IEEE Transactions on Learning Technologies, 2022
Mechanical assembly courses are widely set up for mechanical and vehicle engineering majors. Teaching in these classes is traditionally presented in the form of 2-D lectures, which are ineffective for students to understand complex 3-D information. The study presented in this article aimed to investigate whether augmented reality (AR) could…
Descriptors: Physical Environment, Simulated Environment, Synthesis, Information Technology
Christian Moro; Kaushal Khumar Bhagat; Vineesha Veer; Gadiraju Chinmay Varma; Aishika Das; James Birt – Journal of University Teaching and Learning Practice, 2023
Accessible and equitable education is a national priority recently highlighted by the Indian and Australian Governments. New developments in web-based architecture allow augmented reality (AR) lessons to be delivered via smartphone. Although educational technology is commonplace in the Australian curriculum, it is unclear if Indian tertiary…
Descriptors: Foreign Countries, Web Sites, Physical Environment, Simulated Environment
Busra Yilmaz Yenioglu; Samed Yenioglu; Kubra Sayar; Funda Ergulec – Journal of Special Education Technology, 2024
Augmented reality has the potential to give students a unique experience, including when teaching science subjects. The purpose of this study was to examine the effectiveness of an augmented reality-based intervention in teaching "Solar Systems and Planets" to four students with learning disabilities. The dependent variable was the…
Descriptors: Science Instruction, Students with Disabilities, Learning Disabilities, Intervention
T. Lee; Y. Wen; M. Y. Chan; A. B. Azam; C. K. Looi; S. Taib; C. H. Ooi; L. H. Huang; Y. Xie; Y. Cai – Interactive Learning Environments, 2024
This study investigates the use of virtual and augmented reality (VAR) in higher education on students' self-efficacy in science and engineering, and academic performance. An innovative VAR classroom is set up as an immersive and interactive learning environment at Nanyang Technological University for curriculum-based learning. This classroom is…
Descriptors: Computer Simulation, STEM Education, Universities, Physical Environment
Habig, Sebastian – British Journal of Educational Technology, 2020
This paper is about "augmented reality" (AR) and its potentials to support students in handling scientific representations. For this purpose, first representations are examined from a science educational and instructional psychology perspective. After giving a short overview of AR in general and how it can be delineated from…
Descriptors: Physical Environment, Simulated Environment, Synthesis, Information Technology
How to Motivate Students Using Augmented Reality in the Mathematics Classroom? An Experimental Study
Wanda Nugroho Yanuarto; Elfis Suanto; Ira Hapsari; Aulia Nisa Khusnia – Mathematics Teaching Research Journal, 2024
An Augmented Reality (AR) approach to creating a maths education app is the focus of this research. To turn the 2D floor plan into 3D objects, students will use their mobile devices to scan the cards. Students can have a better understanding of the 3D shape from various angles by interacting with virtual 3D items. Students can gain a deeper…
Descriptors: Computer Simulation, Physical Environment, Simulated Environment, Foreign Countries
Marc A. Zambri; John R. De Backere – Journal of Chemical Education, 2024
Molecular symmetry and orbitals are two important chemical concepts which can be difficult for students to visualize in three dimensions; as such, instructors have traditionally adopted a variety of approaches to teach them including the use of physical models and digital renderings/resources. This paper describes a new mobile device application…
Descriptors: Molecular Structure, Science Education, Chemistry, Handheld Devices
Baltaci, Sehnaz; Çetin, Sümeyye – Journal of Learning and Teaching in Digital Age, 2022
This study investigated the effect of using the technical visual arts lessons' material on visualization skills and attitudes. For this purpose, an augmented reality application called BTRS was designed. The application was created using Unity3D, 3Ds Max, and Vuforia programs. The study was conducted for eight weeks, with a total of 33 students…
Descriptors: Physical Environment, Simulated Environment, Synthesis, Information Technology
Lúcia Pombo; Margarida M. Marques – International Association for Development of the Information Society, 2022
This study used Bloom's Revised Taxonomy to examine 30 questions produced for a mobile quiz game with augmented reality contents to be explored in a formal learning context, in an urban green park, in Portugal. The game was co-created by 14 in-service teachers involved in a 50h training that aimed to promote the collaborative development of open…
Descriptors: Educational Games, Handheld Devices, Computer Oriented Programs, Open Educational Resources
Chin-Huang Daniel Liao; Wen-Chi Vivian Wu; Venny Gunawan; Tin-Chang Chang – Asia-Pacific Education Researcher, 2024
This comparative study aimed to investigate the effects of an Augmented-Reality Game-Based Learning application, "StemUp," on the English learning performance and motivation of distinct rural and urban groups of young EFL (English as a Foreign Language) learners. Multiple sources of data collection were employed, including pre- and…
Descriptors: Game Based Learning, Physical Environment, Simulated Environment, Synthesis
Asmaa Sakr; Tariq Abdullah – Education and Information Technologies, 2024
Virtual and Augmented Reality technologies have emerged as promising tools in the education sector, offering new possibilities for immersive learning experiences. Many researchers have focused their research on examining the potential of these technologies in education from different perspectives. However, it was discovered that there are research…
Descriptors: Computer Simulation, Technology Uses in Education, Physical Environment, Learning Analytics
Jen Schumacher Arnold – ProQuest LLC, 2021
Tactical populations and other performers who find it difficult to access training often turn to simulation training to adequately prepare, and increasingly are using virtual reality (VR) as a resource. Additionally, groups struggling with fear produced by various aspects of tactical training may find VR, alongside psychological skills training,…
Descriptors: Computer Simulation, Physical Environment, Simulated Environment, Thinking Skills
Lili Yan; Breanne K. Litts; Melissa Tehee; Stuart Baggaley; Jennifer Jenkins – British Journal of Educational Technology, 2025
Although education is framed as a future-oriented enterprise, we often fail to serve the diverse futurities of youth, particularly in formal learning environments. The cultural norms of formal learning environments are rooted in dominant ways of being and knowing and this shapes how learning environments and learning technologies can be designed.…
Descriptors: Student Projects, Cultural Awareness, Multimedia Materials, Design
Schaffernak, Harald; Moesl, Birgit; Vorraber, Wolfgang; Koglbauer, Ioana Victoria – Education Sciences, 2020
The goal of carrying out this work was to identify potential application areas for augmented reality (AR) in pilot education by addressing gender preferences. Like the field of engineering, the aviation industry is dominated by men. Because the aviation industry forecasts a high demand for pilots, it is highly desirable to address gender diversity…
Descriptors: Simulated Environment, Physical Environment, Synthesis, Computer Simulation
Rustam Shadiev; Qiwei Liang – Innovation in Language Learning and Teaching, 2024
Augmented Reality (AR) has gained significant attention in the field of language learning. This study conducted a systematic review of research on AR-supported language learning published between 2008 and 2022. Thirty articles were selected based on specific inclusion and exclusion criteria, and analyzed using an analytical framework with the…
Descriptors: Physical Environment, Simulated Environment, Computer Simulation, Handheld Devices

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