Pemanfaatan Virtual Reality Sebagai Media Pembelajaran Informatika SMP Untuk Mendukung Motivasi dan Berpikir Kritis
DOI:
https://doi.org/10.37329/cetta.v9i4.5662Keywords:
Virtual Reality, Pembelajaran Informatika, Motivasi Belajar, Berpikir Kritis, Systematic Literature ReviewAbstract
Virtual Reality (VR) is increasingly used in education to represent abstract, procedural, and dynamic concepts, yet evidence concerning its relevance to junior high school Informatics remains fragmented across subjects, learner levels, devices, research designs, and instruments. This study aimed to synthesize the potential contribution of VR to learning motivation and critical thinking, identify pedagogical and implementation factors, and map research gaps for Informatics learning. A Systematic Literature Review following PRISMA 2020 examined Google Scholar, ERIC, Scopus, and IEEE Xplore on 5–10 May 2026. Twenty-five peer-reviewed journal articles published in 2014–2025 met the criteria and were analyzed through thematic coding. Categories could overlap because one article addressed several themes. Sixteen articles examined motivation-related constructs, five directly addressed critical thinking, eight discussed related constructs such as problem solving, inquiry, metacognition, or computational thinking, fifteen emphasized pedagogical design, eleven reported implementation factors, and only three were directly related to computer science or computational thinking. The evidence indicates a tendency that VR may support motivation through presence, interactivity, challenge, feedback, and contextual visualization; however, outcomes varied according to population, duration, device, and measurement. Evidence for critical thinking was more limited and suggested potential facilitation only when VR was combined with meaningful problems, scaffolding, reflection, discussion, and appropriate assessment. Technical readiness, teacher competence, curriculum alignment, digital literacy, and cybersickness also influenced implementation. In conclusion, VR shows educational potential for junior high school Informatics, but current evidence is heterogeneous and mostly indirect. Further classroom-based, longitudinal studies using validated motivation and critical-thinking instruments are required in Indonesia.
References
Alfalah, S. F. M. (2018). Perceptions Toward Adopting Virtual Reality As A Teaching Aid In Information Technology. Education and Information Technologies, 23(6), 2633-2653.
Allcoat, D., & von Mühlenen, A. (2018). Learning In Virtual Reality: Effects On Performance, Emotion And Engagement. Research in Learning Technology, 26, 1-13.
Concannon, B. J., Esmail, S., & Roberts, M. R. (2019). Head-Mounted Display Virtual Reality In Post-Secondary Education And Skill Training. Frontiers in Education, 4, 1-23.
Di Natale, A. F., Repetto, C., Riva, G., & Villani, D. (2020). Immersive Virtual Reality in K-12 And Higher Education: A 10-Year Systematic Review Of Empirical Research. British Journal of Educational Technology, 51(6), 2006-2033.
Elmqaddem, N. (2019). Augmented Reality And Virtual Reality In Education: Myth Or Reality?. International Journal of Emerging Technologies in Learning, 14(3), 234-242.
Fowler, C. (2015). Virtual Reality And Learning: Where Is The Pedagogy?. British Journal of Educational Technology, 46(2), 412-422.
Fransson, G., Holmberg, J., & Westelius, C. (2020). The Challenges Of Using Head Mounted Virtual Reality in K-12 Schools From A Teacher Perspective. Education and Information Technologies, 25(4), 3383-3404.
Grover, S., & Pea, R. (2013). Computational Thinking In K-12: A Review Of The State Of The Field. Educational Researcher, 42(1), 38-43.
Hamilton, D., McKechnie, J., Edgerton, E., & Wilson, C. (2021). Immersive Virtual Reality As A Pedagogical Tool In Education: A Systematic Literature Review Of Quantitative Learning Outcomes And Experimental Design. Journal of Computers in Education, 8(1), 1-32.
Handoko, D., Sutopo, Y., & Qudus, N. (2024). Implementation Of Virtual Reality Media With MilleaLab Platform In Computational Thinking Competence. Journal of Vocational and Career Education, 9(2), 185-192.
Huang, K. T., Ball, C., Francis, J., Ratan, R., Boumis, J., & Fordham, J. (2019). Augmented Versus Virtual Reality In Education: An Exploratory Study Examining Science Knowledge Retention When Using Augmented Reality/Virtual Reality Mobile Applications. Cyberpsychology, Behavior, and Social Networking, 22(2), 105-110.
Jensen, L., & Konradsen, F. (2018). A Review Of The Use Of Virtual Reality Head-Mounted Displays In Education And Training. Education and Information Technologies, 23(4), 1515-1529.
Kavanagh, S., Luxton-Reilly, A., Wuensche, B., & Plimmer, B. (2017). A Systematic Review Of Virtual Reality In Education. Themes in Science and Technology Education, 10(2), 85-119.
Keller, J. M. (2010). Motivational Design For Learning And Performance: The ARCS Model Approach. Berlin: Springer.
Makransky, G., & Lilleholt, L. (2018). A Structural Equation Modeling Investigation Of The Emotional Value Of Immersive Virtual Reality In Education. Educational Technology Research and Development, 66(5), 1141-1164.
Makransky, G., & Petersen, G. B. (2021). The Cognitive Affective Model of Immersive Learning (CAMIL): A Theoretical Research-Based Model Of Learning In Immersive Virtual Reality. Educational Psychology Review, 33(3), 937-958.
Makransky, G., Terkildsen, T. S., & Mayer, R. E. (2019). Adding Immersive Virtual Reality To A Science Lab Simulation Causes More Presence But Less Learning. Learning and Instruction, 60, 225-236.
Mayer, R. E. (2021). Multimedia Learning. Cambridge: Cambridge University Press.
Merchant, Z., Goetz, E. T., Cifuentes, L., Keeney-Kennicutt, W., & Davis, T. J. (2014). Effectiveness Of Virtual Reality-Based Instruction On Students' Learning Outcomes in K-12 And Higher Education: A Meta-Analysis. Computers & Education, 70, 29-40.
Page, M. J., McKenzie, J. E., Bossuyt, P. M., Boutron, I., Hoffmann, T. C., Mulrow, C. D., Shamseer, L., Tetzlaff, J. M., Akl, E. A., Brennan, S. E., Chou, R., Glanville, J., Grimshaw, J. M., Hróbjartsson, A., Lalu, M. M., Li, T., Loder, E. W., Mayo-Wilson, E., McDonald, S., McGuinness, L. A., Stewart, L. A., Thomas, J., Tricco, A. C., Welch, V. A., Whiting, P., & Moher, D. (2021). The PRISMA 2020 Statement: An Updated Guideline For Reporting Systematic Reviews. BMJ, 372, n71.
Parong, J., & Mayer, R. E. (2018). Learning Science In Immersive Virtual Reality. Journal of Educational Psychology, 110(6), 785-797.
Pellas, N., Fotaris, P., Kazanidis, I., & Wells, D. (2019). Augmenting The Learning Experience In Primary And Secondary School Education: A Systematic Review Of Recent Trends In Augmented Reality Game-Based Learning. Virtual Reality, 23(4), 329-346.
Radianti, J., Majchrzak, T. A., Fromm, J., & Wohlgenannt, I. (2020). A Systematic Review Of Immersive Virtual Reality Applications For Higher Education: Design Elements, Lessons Learned, And Research Agenda. Computers & Education, 147, 103778.
Rojas-Sánchez, M. A., Palos-Sánchez, P. R., & Folgado-Fernández, J. A. (2023). Systematic Literature Review And Bibliometric Analysis On Virtual Reality And Education. Education and Information Technologies, 28(1), 155-192.
Slater, M., & Sanchez-Vives, M. V. (2016). Enhancing Our Lives With Immersive Virtual Reality. Frontiers in Robotics and AI, 3, 74.
Sukirman, S., Pramudita, D. A., Nugroho, A. A., & Aminudin, M. R. (2023). Educational Game For Learning Computational Thinking In A Low Budget Virtual Reality Environment. JANAPATI: Jurnal Nasional Pendidikan Teknik Informatika, 12(1), 8-15.
Sweller, J. (1988). Cognitive Load During Problem Solving: Effects On Learning. Cognitive Science, 12(2), 257-285.
Villena-Taranilla, R., Cózar-Gutiérrez, R., González-Calero, J. A., & López Cirugeda, I. (2022). Effects Of Virtual Reality On Learning Outcomes in K-6 Education: A Meta-Analysis. Educational Research Review, 35, 100434.
Wee, C., Wang, L. Y. K., & Ong, H. F. (2025). TeachVR: An Immersive Virtual Reality Framework For Computational Thinking Based On Student Preferences. ACM Transactions on Computing Education, 25(1), 1-28.
Wu, B., Yu, X., & Gu, X. (2020). Effectiveness Of Immersive Virtual Reality Using Head-Mounted Displays On Learning Performance: A Meta-Analysis. British Journal of Educational Technology, 51(6), 1991-2005.
Yu, Z., & Xu, W. (2022). A Meta-Analysis And Systematic Review Of The Effect Of Virtual Reality Technology On Users' Learning Outcomes. Computer Applications in Engineering Education, 30(5), 1470-1484.
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