The Impact of Augmented Reality-Based Mathematics Learning Games on Students’ Critical Thinking Skills

被引:0
作者
Hanggara Y. [1 ,2 ]
Qohar A. [1 ]
Sukoriyanto [1 ]
机构
[1] Universitas Negeri Malang, Malang
[2] Universitas Riau Kepulauan, Batam
关键词
critical thinking (CT) skills; game-based learning (GBL); mathematics; polyhedrons;
D O I
10.3991/ijim.v18i07.48067
中图分类号
学科分类号
摘要
The significance of critical thinking skills among students lies in their ability to actively assess, evaluate, and respond thoughtfully to information. This study investigates the impact of a game-based learning (GBL) model that utilizes augmented reality (AR) in mathematics learning games on the CT skills of eighth-grade junior high school students. The study specifically focuses on polyhedrons in mathematics. A quasi-experimental design was utilized to accomplish the study objectives. This study involved 77 students, divided into an experimental group of 40 students and a control group of 37 students. The research instrument used was a valid and reliable test of the students’ CT skills. The results showed that the GBL model with AR-based games significantly improved students’ CT skills. The students who received this approach showed more significant improvements in CT compared to traditional teaching methods. These results highlight the potential benefits of integrating AR technology into education to enhance students’ CT skills. This encourages educators and curriculum developers to view AR as an effective alternative for supporting students’ CT. The outcomes of this research indicate a significant advantage in using AR as a tool to promote CT among students. It could create more engaging and interactive learning environments. © 2024 by the authors of this article.
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收藏
页码:173 / 187
页数:14
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共 69 条
[61]  
Hake R. R., Interactive-engagement vs. traditional methods: A six-thousand-student survey of mechanics test data for introductory physics courses, American Journal of Physics, 66, 1, pp. 64-74, (1998)
[62]  
Meltzer D. E., The relationship between mathematics preparation and conceptual learning gains in physics: A possible ‘hidden variable’ in diagnostic pretest scores, American Journal of Physics, 70, 12, pp. 1259-1268, (2002)
[63]  
Cheng M. T., Huang W. Y., Hsu M. E., Does emotion matter? An investigation into the relationship between emotions and science learning outcomes in a game-based learning environment, Br. J. Educ. Technol, 51, 6, pp. 2233-2251, (2020)
[64]  
Su C. H., Cheng C. H., A mobile gamification learning system for improving the learning motivation and achievements, J. Comput. Assist. Learn, 31, 3, pp. 268-286, (2015)
[65]  
Chen C. H., Ho C.-H., Lin J.-B., The development of an augmented reality gamebased learning environment, Procedia – Soc. Behav. Sci, 174, pp. 216-220, (2015)
[66]  
Hakiki R., Muchson M., Sulistina O., Febriana A., The development of learning media based on augmented reality, hologram, and ludo game on the topic of molecular shapes, Int. J. Interact. Mob. Technol, 16, 4, pp. 70-84, (2022)
[67]  
Yu J., Denham A. R., Searight E., A systematic review of augmented reality gamebased learning in STEM education, Educ. Technol. Res. Dev, (2022)
[68]  
Fan M., Antle A. N., Warren J. L., Augmented reality for early language learning: A systematic review of augmented reality application design, instructional strategies, and evaluation outcomes, J. Educ. Comput. Res, 58, 6, pp. 1059-1100, (2020)
[69]  
Erhel S., Jamet E., Digital game-based learning: Impact of instructions and feedback on motivation and learning effectiveness, Comput. Educ, 67, pp. 156-167, (2013)