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AR-GeoShapes: Development and Evaluation of a Marker Less Augmented Reality Based Geometrical Shapes Learning Framework on Memory Retention and Learning Achievement

Ayesha AzamAl-Khwarizmi Institute of Computer Science, University of Engineering and Technology,Lahore,PakistanZubaira NazInformation Technology University,Lahore,PakistanMuhammad Usman Ghani KhanUniversity of Engineering and Technology,Department of Computer Science,Lahore,PakistanIrfanud DinNew Uzbekistan University,Department of Computer Science School of Computing,Tashkent,Uzbekistan
2024en
ABI

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A large number of students struggle to grasp geometric principles, especially in three-dimensional (3D) space. In turn, this is why digital educational tools have been integrated more and more into the learning environment: because they entertain students. One of these technologies is Augmented Reality (AR) which has become a widely researched and effective tool for education. Where learning is situated with content embedded within the physical environment (support), AR better enables offerings to be adapted. This paper presents AR-GeoShapes, an augmented reality-based educational tool developed to help students learn solid geometry concepts. Built with the Vuforia marker less SDK in Unity, AR-GeoShapes is an exercise that runs on mobile devices for users to learn shapes interactively. Further to evaluate whether using AR-GeoShapes helps increase memory retention and improve learning achievement, a comparative study involving 58 students was conducted. The results demonstrate that the experimental group, utilizing AR-GeoShapes, exhibited significantly higher memory retention and learning outcomes compared to the control group. These findings suggest that AR-GeoShapes are a valuable tool for enhancing students' comprehension of geometric concepts. The code is available at this link: https://github.com/Ayesha-Azam/AR-GeoShapes

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