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Mochammad Faiz Nur Falah; Muhammad Iqbal Rifqy; Ailsa Tsabita Primrose; Taufiq Satria Mukti – Journal of Research and Advances in Mathematics Education, 2025
Curved Side Spaces (BRSL) in learning need to be presented with learning media to make it easier for students to understand the concept. This research aims to produce learning media based on technology and cultural values. The media in question is (BRUSLE) an Android application that can be accessed via mobile with augmented reality hologram…
Descriptors: Computer Simulation, Synthesis, Physical Environment, Simulated Environment
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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
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Pedaste, Margus; Mitt, Geidi; Jürivete, Teele – Education Sciences, 2020
A systematic review of the potential of implementing augmented reality (AR) in inquiry-based learning was conducted. We considered the purposes, potential advantages, application characteristics and the effects of using AR in inquiry-based learning. The findings reveal that AR, in the context of inquiry-based learning, is mostly implemented…
Descriptors: Elementary Secondary Education, Computer Simulation, Simulated Environment, Educational Technology
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Buchner, Josef; Andujar, Alberto – International Association for Development of the Information Society, 2019
In this article we describe how mobile devices enable immersive learning experiences. Expensive Head Mounted Displays (HMDs) are a thing of the past, as even inexpensive alternatives in combination with a smartphone make it possible to immerse oneself in virtual worlds. Learners then take these worlds as realistic, which can lead to cognitively…
Descriptors: Telecommunications, Educational Technology, Technology Uses in Education, Teaching Methods
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Nasse, Joseph A.; McAteer, Daniel; Hughes, Karlton D.; Kelbon, Christopher; Mugweru, Amos; Grinias, James P. – Journal of Chemical Education, 2019
Instruction on the design of analytical instrumentation is a critical component of the analytical chemistry curriculum. To simplify this process and enable students to directly see how the instruments that are in their own laboratory setting work, the use of augmented reality technology can be implemented. In this report, the "HP Reveal"…
Descriptors: Science Instruction, College Science, Undergraduate Study, Chemistry
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Wood, Yvonne I.; Zegwaard, Karsten E.; Fox-Turnbull, Wendy – International Journal of Work-Integrated Learning, 2020
As a result of the COVID-19 pandemic, many organizations offering work-integrated learning (WIL) opportunities were no longer able to support student placements, resulting in many institutions searching for a range of innovative solutions. Many have redesigned their conventional placement-based WIL activities or programs to enable students to meet…
Descriptors: COVID-19, Pandemics, Experiential Learning, Work Experience Programs
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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
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Huang, Tien-Chi; Chen, Mu-Yen; Hsu, Wen-Pao – Educational Technology & Society, 2019
Augmented reality (AR) technology has recently been applied to outdoor learning in an attempt to overcome the drawbacks associated with traditional teaching environments. This study conducted an experiment designed to examine how augmented reality (AR) technology in mobile devices can be used to generate virtual objects to create a context-aware,…
Descriptors: Simulated Environment, Computer Simulation, Educational Technology, Technology Uses in Education
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Gan, Hong Seng; Tee, Nicholas Yee Kwang; Bin Mamtaz, Mohammad Raziun; Xiao, Kevin; Cheong, Brandon Huey-Ping; Liew, Oi Wah; Ng, Tuck Wah – Biochemistry and Molecular Biology Education, 2018
The appreciation and understanding of gas generation through processes is vital in biochemical education. In this work, an augmented reality tool is reported to depict the redox reaction between hydrogen peroxide and sodium hypochlorite solutions, two ubiquitous oxidizing agents, to create oxygen, a combustible gas. As it operates out of…
Descriptors: Science Instruction, Teaching Methods, Simulated Environment, Scientific Concepts
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Godwin-Jones, Robert – Language Learning & Technology, 2017
The iPhone turns 10 years old in 2017. For the occasion, Apple is rumored to be adding significant new features for the model to be released this year. Whatever those may be, they are not likely to have the same impact that the release of the original iPhone had 10 years ago. That event led to a radical new vision for the design and capability of…
Descriptors: Telecommunications, Handheld Devices, Second Language Learning, Teaching Methods
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Aguayo, Claudio; Cochrane, Thomas; Narayan, Vickel – Australasian Journal of Educational Technology, 2017
This paper summarises the findings from a literature review in mobile learning, developed as part of a 2-year six-institution project in New Zealand. Through the development of a key themes codebook, we address selected key themes with respect to their relevance to learner-generated learning through emerging technologies, with attention to mobile…
Descriptors: Foreign Countries, Literature Reviews, Telecommunications, Educational Technology
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Hadjistassou, Stella; Avgousti, Maria Iosifina; Louca, Petros – Research-publishing.net, 2019
While the debate on breakthrough technologies has focused on inept, dexterous, and socially transforming technologies such as Artificial Intelligence (AI) assistants and robot dexterity, in second/foreign language learning, particular emphasis is placed on AI, Augmented Reality (AR) and Virtual Reality (VR). This study takes a closer look at the…
Descriptors: International Educational Exchange, Intercultural Communication, Intercultural Programs, Simulated Environment
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Strzys, M. P.; Kapp, S.; Thees, M.; Kuhn, J.; Lukowicz, P.; Knierim, P.; Schmidt, A. – Physics Teacher, 2017
In the field of Virtual Reality (VR) and Augmented Reality (AR), technologies have made huge progress during the last years and also reached the field of education. The virtuality continuum, ranging from pure virtuality on one side to the real world on the other, has been successfully covered by the use of immersive technologies like head-mounted…
Descriptors: Science Instruction, Physics, Simulated Environment, Educational Technology
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Menorath, Darren; Antonczak, Laurent – International Association for Development of the Information Society, 2017
This paper examines the state of the art of mobile Augmented Reality (AR) and mobile Virtual Reality (VR) in relation to collaboration and professional practices in a creative digital environment and higher education. To support their discussion, the authors use a recent design-based research project named "Juxtapose," which explores…
Descriptors: Telecommunications, Handheld Devices, Simulated Environment, Teaching Methods
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Tan, Qing; Chang, William; Kinshuk – Electronic Journal of e-Learning, 2015
AR technology can be considered as mainly consisting of two aspects: identification of real-world object and display of computer-generated digital contents related the identified real-world object. The technical challenge of mobile AR is to identify the real-world object that mobile device's camera aim at. In this paper, we will present a…
Descriptors: Educational Technology, Telecommunications, Simulated Environment, Computer Simulation
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