The effect of augmented reality on students' spatial abilities in mathematics learning: A systematic literature review
DOI:
https://doi.org/10.29407/jmen.v12i1.27993Keywords:
Spatial Ability, Mathematics Learning, Systematic Literature Review, Augmented RealityAbstract
Spatial ability is an important aspect in mathematics learning because it helps students understand geometric concepts, spatial forms, and relationships between visual elements. However, learning that is still abstract and two-dimensional makes it difficult for students to develop this ability. With advances in technology, Augmented Reality (AR) has emerged as an innovation that can bridge abstract concepts into concrete and interactive learning experiences. This study aimed to systematically review the influence and application of AR on improving students' spatial abilities in mathematics learning using the Systematic Literature Review (SLR) method with the PRISMA 2020 guidelines. Literature searches were conducted through Google Scholar, Scopus, ScienceDirect, and ERIC, and of the 266 articles found, 15 articles met the inclusion criteria for analysis. The synthesis results showed that the application of AR had a positive effect on improving spatial abilities, especially in the aspects of visualization, rotation, and spatial reasoning. AR helped students understand geometric concepts through interactive three-dimensional object representations, increased learning motivation, and strengthened cognitive engagement. The effectiveness of AR increased when integrated with active learning models, although there were still obstacles related to devices, teacher readiness, and infrastructure
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