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Pavel Smutny – Interactive Learning Environments, 2023
The benefits and opportunities of using virtual reality (VR) in education have been the subject of research for several decades. Descriptions of individual VR applications can be found in the literature, but there is no structured analysis of these applications on the market. This study analyses the market of VR educational applications in 2019 -…
Descriptors: Computer Simulation, Simulated Environment, Computer Oriented Programs, Technology Uses in Education
Sofija Matovic; Tamara Markovic; Nikoleta Dobrosavljevic; Miljana Stajin – Research in Pedagogy, 2025
The metaverse, powered by artificial intelligence and integrating virtual, augmented, and mixed reality, represents an emerging technology with the potential to transform education by creating immersive learning environments. As confirmed by previous research worldwide, teachers at different educational levels recognize its possibilities in…
Descriptors: Artificial Intelligence, Physical Environment, Simulated Environment, Synthesis
Jingru Zhang; Wan Ahmad Jaafar Wan Yahaya; Mageswaran Sanmugam; Yuting Dai – SAGE Open, 2025
The potential of educational augmented reality systems to improve students' learning performance, motivation, and cognitive load has been demonstrated by recent studies. To help students learn the design history material, this study suggests an AR-integrated learning application strategy. In this study, we use Modernism as the theoretical…
Descriptors: Cognitive Processes, Difficulty Level, Physical Environment, Simulated Environment
Yufang Cheng; Meng-Han Lee; Chung-Sung Yang; Pei-Yu Wu – Interactive Technology and Smart Education, 2024
Purpose: The purpose of this study was to develop the augmented reality (AR) educational program combined with the instructional guidance for supportive learning, which enhanced the thinking process cooperative discussion and problem-solving skills in chemistry subject. Design/methodology/approach: The method used the quasi-experimental research…
Descriptors: Chemistry, Science Instruction, Science Laboratories, Physical Environment
Mark Anthony Camilleri – Interactive Technology and Smart Education, 2024
Purpose: Many educators are increasingly acquainting themselves and becoming adept with interactive technologies like augmented reality and virtual reality. Some of them are also looking forward to using Metaverse applications, as they want to benefit from its immersive three-dimensional capabilities. Therefore, the purpose of this study is to…
Descriptors: Artificial Intelligence, Educational Technology, Technology Uses in Education, Cost Effectiveness
Julianna Washington; Candace Walkington – Grantee Submission, 2024
This article explores the use of Extended Reality (XR) technologies, such as Augmented Reality (AR) and motion capture, in mathematics instruction, specifically focusing on geometry learning. Our research highlights the challenges students face in learning geometry due to its abstract nature and the potential of XR technologies to create…
Descriptors: Mathematics Instruction, Geometry, Physical Environment, Simulated Environment
Köse, Hasan; Güner-Yildiz, Nevin – Education and Information Technologies, 2021
In this study, general information about augmented reality (AR) technology is given to be a resource for special education researchers and teachers who are interested in using AR as a learning/teaching material. Additionally, the researches that use AR as a learning material in the education of individuals with special needs are examined and the…
Descriptors: Special Education, Computer Simulation, Simulated Environment, Computer Uses in Education
Onime, Clement; Uhomoibhi, James; Wang, Hui; Santachiara, Mattia – International Journal of Information and Learning Technology, 2021
Purpose: This paper presents a reclassification of markers for mixed reality environments that is also applicable to the use of markers in robot navigation systems and 3D modelling. In the case of Augmented Reality (AR) mixed reality environments, markers are used to integrate computer generated (virtual) objects into a predominantly real world,…
Descriptors: Simulated Environment, Computer Simulation, Classification, Robotics
Markouzis, Dimitrios; Baziakou, Aikaterini; Fesakis, Georgios; Dimitracopoulou, Angelique – International Journal of Mobile and Blended Learning, 2022
In recent years more and more people use their mobile phones daily for work or entertainment. The increasing use of mobile devices has led researchers to seek new ways of learning with their support, beyond the confines of formal education. The increasing computing power of mobile devices has contributed to the emergence of new, rapidly evolving…
Descriptors: Foreign Countries, Handheld Devices, Electronic Learning, Simulated Environment
Jia Liu; Avinash Kumar Singh; Anna Wunderlich; Klaus Gramann; Chin-Teng Lin – npj Science of Learning, 2022
Although beacon- and map-based spatial strategies are the default strategies for navigation activities, today's navigational aids mostly follow a beacon-based design where one is provided with turn-by-turn instructions. Recent research, however, shows that our reliance on these navigational aids is causing a decline in our spatial skills. We are…
Descriptors: Navigation, Physical Environment, Simulated Environment, Computer Simulation
Nafiseh Salehi – Discover Education, 2025
In order for educators to be highly effective, they must be aware of how technology can enhance the teaching and learning process. Recently, augmented reality (AR) technology has gained significant attention and been widely adopted across disciplines. The aim of this study was to explore junior high school English teachers' perspectives and…
Descriptors: Vocabulary Development, Teaching Methods, Simulated Environment, Junior High School Teachers
Eunhye Flavin; Moon Chung; Sunghwan Hwang; Matthew T. Flavin – Educational Technology Research and Development, 2025
Area measurement is a foundational component across STEM fields. The area formula offers limited insight for children trying to develop their area measurement reasoning skills, particularly when dealing with composite shapes. Spatial structuring, where children explore structural units of a 2D space, is an alternative approach. However, poor…
Descriptors: STEM Education, Geometric Concepts, Thinking Skills, Computer Simulation
Laily Nurlina; Akhmad Fauzan; Irma Galuh Prameswari; Aiman Saniwae – Educational Process: International Journal, 2025
Background/purpose: This study utilizes Artificial Intelligence (AI) and Augmented Reality (AR) to improve the intercultural literacy of foreign students communicating in Indonesia through the integration of technology and local wisdom. By integrating AI and AR, a digital book is developed for Indonesian Language for Foreign Students (in…
Descriptors: Foreign Countries, Foreign Students, Artificial Intelligence, Physical Environment
Michaela Arztmann; Jessica Lizeth Domínguez Alfaro; Lisette Hornstra; Jacqueline Wong; Johan Jeuring; Liesbeth Kester – British Journal of Educational Technology, 2025
A distinct feature of educational games using augmented reality (AR) is that the game is played through physically interacting with the environment, whereas physical interaction is typically rather limited in other digital games. Understanding and performing the interactive game mechanics can be cognitively demanding. Adding pre-training could…
Descriptors: Computer Simulation, Artificial Intelligence, Training, Cognitive Processes
Romano, Marco; Díaz, Paloma; Aedo, Ignacio – Interactive Learning Environments, 2023
Well-designed educational Augmented Reality (AR) experiences support collaboration, transferability to the real world, situated, and experiential learning. Nevertheless, envisioning engaging yet effective learning and teaching experiences is a challenge. Most teachers are not technologically ready to create AR experiences and rely upon closed…
Descriptors: High School Teachers, Simulated Environment, Computer Simulation, Learning Experience

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