Abstract
Traditional learning methods often struggle to engage students and help them comprehend complex or abstract concepts. These methods lack interactivity and real-world context and are typically static and limited, making it difficult for students to fully understand the concepts or gain comprehensive knowledge. Augmented reality (AR) technology offers a transformative solution to these limitations. By integrating the virtual objects into the real world, AR provides immersive and interactive experiences that enhance students’ understanding and engagement. AR allows students to visualize complex ideas in 3D, interact with virtual objects, and explore topics in a way that feels real and easy to understand. By linking virtual elements to objects in the physical world, AR helps students understand difficult topics in a practical, real-world context. The proposed application is an AR-based website to overcome the limitations faced by traditional learning methods and offer students a better understanding.
References
Azuma, R. T. "A Survey of Augmented Reality." Teleoperators and Virtual Environment 6, 4 (August 1997), 355-385.
Billinghurst, Mark, Adrian Clark, and Gun Lee. "A survey of augmented reality." Foundations and Trends® in Human–Computer Interaction 8, no. 2-3 (2015): 73-272.
Kerawalla, Lucinda, Rosemary Luckin, Simon Seljeflot, and Adrian Woolard. “Making it real”: exploring the potential of augmented reality for teaching primary school science." Virtual reality 10 (2006): 163-174.
Akçayır, Murat, and Gökçe Akçayır. "Advantages and challenges associated with augmented reality for education: A systematic review of the literature." Educational research review 20 (2017): 1-11.
Klopfer, Eric, and Kurt Squire. "Environmental Detectives—the development of an augmented reality platform for environmental simulations." Educational technology research and development 56 (2008): 203-228.
Cheng, Kun-Hung, and Chin-Chung Tsai. "Affordances of augmented reality in science learning: Suggestions for future research." Journal of science education and technology 22 (2013): 449-462.
Johnson, Larry, Samantha Adams Becker, Michele Cummins, Victoria Estrada, Alex Freeman, and Courtney Hall. NMC horizon report: 2016 higher education edition. The New Media Consortium, 2016.1-50
Billinghurst, Mark, and Andreas Duenser. "Augmented reality in the classroom." Computer 45, IEEE Computer Society no. 7 (2012): 56-63.
Fitria, Tira Nur. "Augmented reality (AR) and virtual reality (VR) technology in education: Media of teaching and learning: A review." International Journal of Computer and Information System (IJCIS) 4, no. 1 (2023): 14-25.
Danish, Abdul Samad, Nouman Noor, Yasir Hamid Onib-Ur-Rehman, Hina Ali Khan, Rana Muneeb Asad, and Agha Muhammad Yar Khan. "Augmented Narratives: Unveiling the Efficacy of Storytelling in Augmented Reality Environments." Journal of Xi’an Shiyou University, Natural Science Edition, 20(2), 2024,210-215.
Svitlana H. Lytvynova,“Interaction in an Educational Environment with Virtual And Augmented Reality “Information Technologies and Learning Tools”, Vol 98, №6, ISSN: 2076-8184(2023). 13-30.
Gorbunov, A. L. "Visual coherence for augmented reality." Advanced Engineering Research 23, no. 2 (2023): 180-190.
Shivhare, Rahul, and Abhishek Singhal. "Augmented Reality: A New Tool for Education." International Journal of Computer Applications Volume 186 – No.10, February 2024 975: 8887.
Bronack, Stephen, Robert Sanders, Amelia Cheney, Richard Riedl, John Tashner, and Nita Matzen. "Presence pedagogy: Teaching and learning in a 3D virtual immersive world." International journal of teaching and learning in higher education 20, no. 1 (2008): 59-69.
Murniarti, Erni, Hadi Prayitno, Guntur Arie Wibowo, Suparmi Suparmi, Elfi Yuliani, and Rochmah Rochmah. "Implementing Augmented Reality in Inclusive Education: Experiments and Potential." International Journal of Science and Society 5, no. 4 (2023): 60-72.
Yin, Yue, Pai Zheng, Chengxi Li, and Lihui Wang. "A state-of-the-art survey on Augmented Reality-assisted Digital Twin for futuristic human-centric industry transformation." Robotics and Computer-Integrated Manufacturing 81 (2023): 102515.
