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Aadi Swadipto Mondal; Yuang Zhu; Kaushal Kumar Bhagat; Nasser Giacaman – Interactive Learning Environments, 2024
The aim of this study is to investigate the public opinion (i.e., the learners themselves) of apps incorporating emerging technologies Augmented Reality (AR) and Virtual Reality (VR) and find out how satisfied mobile platform users are with these technologies for educational purposes. We performed sentiment analysis of more than one million…
Descriptors: Educational Technology, Technology Uses in Education, Computer Oriented Programs, Computer Simulation
Yenioglu, Busra Yilmaz; Ergulec, Funda; Yenioglu, Samed – Interactive Learning Environments, 2023
The use of technology in special education has been rapidly increased in recent years. Augmented reality (AR) is one of these technologies that combines real world and virtual objects together. AR has the potential to be used as a teaching technique for students with special needs to develop their daily lives skills, supporting learning,…
Descriptors: Special Education, Physical Environment, Simulated Environment, Synthesis
Álvarez-Marín, Alejandro; Velázquez-Iturbide, J. Ángel; Castillo-Vergara, Mauricio – Interactive Learning Environments, 2023
This study aims to determine if "technology optimism" and "technology innovativeness" can explain and predict the use of augmented reality in the scope of engineering education. An Augmented Reality app to analyze digital current (DC) in resistive circuits was developed was developed to enhance students' understanding of…
Descriptors: Physical Environment, Simulated Environment, Synthesis, Information Technology
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
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
Ebtesam S. Alqahtani; Sameer M. AlNajdi – Interactive Learning Environments, 2024
Many universities have adopted AR to enhance teaching and learning practices, but it has faced some obstacles. There is a lack of research on the obstacles of implications of AR in Saudi universities. This study aims to identify the extent to which faculty members agree with adopting AR as a pedagogical tool and whether there are statistically…
Descriptors: Foreign Countries, Physical Environment, Simulated Environment, Synthesis
Kangxu Cui – Interactive Learning Environments, 2023
The article is devoted to the study of the possibilities of augmented reality (AR) mobile applications in acquiring piano skills. The study presents concept of the online course "Piano for Beginners" with the implementation in the educational practices of mobile applications: Flowkey -- Learn Piano; Simply Piano; Skoove: Learn to Play…
Descriptors: Foreign Countries, Music Education, College Students, Student Attitudes
Zoran Sevarac; Jelena Jovanovic; Vladan Devedzic; Bojan Tomic – Interactive Learning Environments, 2023
The paper proposes EXPLODE, a new model of exploratory learning environment for teaching and learning neural networks. The EXPLODE model is about pedagogically instrumenting a software development environment to transform it into an exploratory learning environment for neural networks. Such an environment is particularly aimed for students who are…
Descriptors: Models, Discovery Learning, Artificial Intelligence, Computer Simulation
Saleem, Muhammad; Kamarudin, Suzilawati; Shoaib, Haneen Mohammad; Nasar, Asim – Interactive Learning Environments, 2023
Augmented reality apps are a novel technology in e-learning that enhances students' learning faster in virtual classrooms. Since the start of the COVID-19 pandemic, traditional teaching mechanisms pushed back due to the quick spread of Coronavirus disease. This study investigates university students' intention towards e-learning through augmented…
Descriptors: Physical Environment, Simulated Environment, Synthesis, Information Technology
Ilana Dubovi – Interactive Learning Environments, 2023
As virtual reality (VR) technologies have been increasingly adopted in the educational field, careful consideration and evaluation of instructional modes to support learning with VR are needed. This study focuses on evaluation of two instructional modes: direct interaction and manipulation of the VR learning environment; and the vicarious approach…
Descriptors: Computer Simulation, Simulated Environment, Educational Environment, Interaction
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
Vidal, Eric Cesar E., Jr.; Ty, Jayzon F.; Caluya, Nicko R.; Rodrigo, Ma. Mercedes T. – Interactive Learning Environments, 2019
We present Mobile Augmented-Reality Games for Instructional Support (MAGIS), a framework for the development of mobile augmented-reality (AR) games for education. The framework supports off-the-shelf, state-of-the-art technologies that enable AR tracking and rendering on consumer-level mobile devices, and integrates these technologies with…
Descriptors: Computer Simulation, Simulated Environment, Educational Games, Teaching Methods
Chin, Kai-Yi; Wang, Ching-Sheng; Chen, Yen-Lin – Interactive Learning Environments, 2019
Although Augmented Reality (AR) technology has already been adopted into mobile learning environments, additional effort must be put towards providing strong evidence that AR-based mobile systems are excellent educational tools that make a positive impact in or outside of the classroom. Our study utilized a similar AR-based mobile learning system…
Descriptors: Computer Simulation, Simulated Environment, Telecommunications, Educational Technology
Kyza, Eleni A.; Georgiou, Yiannis – Interactive Learning Environments, 2019
While learning can happen anywhere and everywhere, most educational practices in K-12 are confined within the walls of a classroom and the school; such practices narrowly define learning and exclude the opportunities that an expanded and digitally mediated definition of learning can offer. Augmented reality (AR) technologies offer exciting new…
Descriptors: Computer Simulation, Simulated Environment, Scaffolding (Teaching Technique), Inquiry
Lu, Andrew; Chan, Sandra; Cai, Yiyu; Huang, Lihui; Nay, Zin Tun; Goei, Sui Lin – Interactive Learning Environments, 2018
Autism Spectrum Disorder (ASD) is a developmental disorder with different levels of severity. Although the exact causes of ASD is not yet known, nor is there a medical cure for ASD to date, special facilities and schools have been established to help individuals coping better and becoming more independent. With the advancement in Virtual Reality…
Descriptors: Autism, Pervasive Developmental Disorders, Simulated Environment, Educational Technology