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Jeou-Shyan Horng; Hsuan Hsu – Education and Information Technologies, 2024
In light of today's experience economy and the forthcoming era of smart-technology and the metaverse, the aesthetic education needs to be revolutionized. In particular, integrating augmented reality (AR) and virtual reality (VR) into such courses has been proven to significantly enrich the learning experience and enhance its effectiveness. This…
Descriptors: Hospitality Occupations, Dining Facilities, Aesthetic Education, Aesthetics
Jelena Salkovska; Anda Batraga; Liene Kaibe; Henrijs Kalkis; Katrina Kellerte; Laura Minskere – International Journal of Learning and Change, 2024
The scientific problem of the paper is related to the need to improve corporate marketing communication by using innovative technologies to improve consumer experience in the purchase decision process and to reduce purchase risks. The use of augmented reality is one of the innovative marketing communication technologies. So far, the impact of the…
Descriptors: Foreign Countries, Online Surveys, Young Adults, Computer Simulation
Anveshna Srivastava; Vihang Vaidya; Sahana Murthy; Chandan Dasgupta – British Journal of Educational Technology, 2024
Spatial perspective-taking (SPT) ability positively influences performance in STEM fields. While limited research studies have been done with school students, they have yielded inconclusive findings and, hence, here we report findings from our study with an augmented reality (AR) enhanced learning environment (ARELE), GeoSolvAR, on middle-school…
Descriptors: Physical Environment, Simulated Environment, Synthesis, Information Technology
Mukesh Kumar Rohil; Saksham Mahajan; Trishna Paul – Education and Information Technologies, 2025
Intelligent Tutoring Systems (ITS) and Augmented Reality (AR) have become greatly popular in current scenario, especially for helping students in mastering difficult subjects through a variety of different methods with the implementation of smart algorithms. There are many papers in the current literature that discuss the ITS architecture and the…
Descriptors: Intelligent Tutoring Systems, Artificial Intelligence, Physical Environment, Simulated Environment
Ye Zhufeng; Jirarat Sitthiworachart – Education and Information Technologies, 2024
Teaching the complex subject matter of "Exploring Space" necessitates concrete and engaging teaching methods, as it requires students to employ abstract thinking and imagination. An expert team designed and developed Augmented Reality (AR)-based activity schemes for children aged 3-6. A total of 166 preschool students from Ningbo, China,…
Descriptors: Foreign Countries, Preschool Children, Science Education, Computer Simulation
Paloma García-Robles; Irene Cortés-Pérez; Francisco Antonio Nieto-Escámez; Héctor García-López; Esteban Obrero-Gaitán; María Catalina Osuna-Pérez – Anatomical Sciences Education, 2024
The purpose of this review was to (1) analyze the effectiveness of immersive virtual reality (iVR) and augmented reality (AR) as teaching/learning resources (collectively called XR-technologies) for gaining anatomy knowledge compared to traditional approaches and (2) gauge students' perceptions of the usefulness of these technologies as learning…
Descriptors: Computer Simulation, Physical Environment, Simulated Environment, Anatomy
António Faria – Journal of New Approaches in Educational Research, 2024
This study investigated the impact of two teaching strategies, conventional and drawing principle, associated with the use of Augmented Reality (AR), on the school performance of pupils in the 7th-year of primary school and the 10th-year of secondary school on volcanism learning. Compared to previous research, the novelty of this study lies in the…
Descriptors: Science Education, Grade 7, Grade 10, Physical Environment
Tomal Kumar Chadeea; Paul Prinsloo – Journal of Learning for Development, 2024
Augmented Reality (AR) has garnered significant attention in the field of education over the last two decades, with data indicating that it improves the effectiveness of teaching and learning in a variety of academic environments. There is, however, the absence of a framework that can guide the institution-wide adoption of AR in distance…
Descriptors: Physical Environment, Simulated Environment, Synthesis, Information Technology
Nana Osei Bonsu; Jason Zagami; Donna Pendergast; Gideon Boadu – Issues and Trends in Learning Technologies, 2024
This systematic quantitative literature review (SQLR) spans from 2013 to 2023 and includes 40 research articles that meet the inclusion criteria. It explores the intersection of virtual reality (VR) and history education. This SQLR serves as a scoping of the field, discovering key contributors, publication trends, research types, geographic…
Descriptors: Literature Reviews, History Instruction, Computer Simulation, Technology Uses in Education
Cindioglu, Hasane Ceren; Gursel Dino, Ipek; Surer, Elif – International Journal of Technology and Design Education, 2022
Immersive Virtual Environments (IVEs), particularly Mixed-Reality (MR) technologies, continue to have an increasing impact on design processes and design education. This study focuses on MR's potentials in Basic Design (BD) education and its influence on novice designers' design thinking abilities. In this study, through a newly developed MR-based…
Descriptors: Computer Simulation, Simulated Environment, Design, Thinking Skills
Lei Wu; Ying Ma – Early Child Development and Care, 2025
Augmented reality (AR) technology can enrich preschoolers' picture book reading experiences. This study examined differences in reading quality and comprehension between children using AR and traditional paper picture books. Ninety 5- to 6-year-old children from City S, with no prior AR exposure, were randomly assigned to an AR group or a paper…
Descriptors: Preschool Children, Picture Books, Computer Simulation, Printed Materials
Tiwari, Chandan Kumar; Bhaskar, Preeti; Pal, Abhinav – International Journal of Educational Management, 2023
Purpose: Augmented reality (AR) and virtual reality (VR) are becoming increasingly interwoven into people's daily lives, with applications in fields such as science, engineering, medical, the arts, education, finance and business. While much study has been conducted in the field of VR and AR in a variety of areas, less attention has been paid to…
Descriptors: Physical Environment, Simulated Environment, Synthesis, Information Technology
Zeynel Abidin Yilmaz; Ali Ibrahim Can Gözüm – Southeast Asia Early Childhood, 2023
This study aims to determine the learning outcomes of children in educational settings by using an AR (Augmented Reality) app for animals in classroom activities. To achieve this, the study used sequential exploratory research design, applied in both quantitative and qualitative research. The participants in the study are 2 teachers and 37…
Descriptors: Physical Environment, Simulated Environment, Information Technology, Computer Simulation
Michaela Arztmann; Jessica Lizeth Domínguez Alfaro; Lisette Hornstra; Johan Jeuring; Liesbeth Kester – British Journal of Educational Technology, 2024
Digital games are widely used in education to motivate students for science. Additionally, augmented reality (AR) is increasingly used in education. However, recent research indicates that these technologies might not be equally beneficial for students with different background characteristics. Moreover, students with different backgrounds may…
Descriptors: Secondary School Students, Socioeconomic Status, Self Efficacy, Computer Simulation
Odd Rune Stalheim; Hege Merete Somby – Smart Learning Environments, 2024
There has long been an increased focus on and investment in digital technology in schools to improve the quality of education. While digital tools have gained access to pedagogical spheres, physical activity has been overlooked, as pupils often engage in activities that require minimal bodily movement. In this article, we discuss pupils'…
Descriptors: Simulated Environment, Physical Environment, Educational Games, Human Body

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