The impact of a Metaverse-based educational program and the development of educational and technological methodology for the gymnastics lesson
DOI:
https://doi.org/10.65575/jamss.v2i2.193Keywords:
metaverse-based education, educational methodologies, sports technology, gymnastics lessonsAbstract
Background
The importance of the study is due to the real-time interaction during the lesson and sharing with the members of the classroom together, and the presence of diverse spaces that are similar to or superior to real spaces in which virtual life is practiced. Time series coding of data for the educational process.
Objectives
The purpose of this paper is to how the metaverse affects the development of the technological methodology for the physical education lesson.
Methods
The researcher used the descriptive method within the framework of studies and theoretical literature related to the study and similar, and the experimental method by applying and analyzing the study variables, the study community was second-stage students in the College of Physical Education and Sports Sciences, and the research sample was selected from Section D and their number was (10) students, the scientific methodology of the study was to apply technological variables and augmented reality and virtual reality to the course of the physical education lesson by choosing to explain the gymnastics skill.
Results
The results were the sum of the average arithmetic mean for the physical education lesson with metaverse applications (2.96), the highest percentage of technological influence on the physical education lesson and data science standards at a rate of (5.6), the percentage of improvement in the use of metaverse applications at a rate of (40%) and the application of metaverse technologies in various games for physical education.
Conclusion
In conclusion, there is a statistically significant difference in the initial measurements of the experimental group regarding the percentage contribution of the metaverse application to the development of physical education courses.
References
Athaya, H., Dewantara, J., Husein, M., Taiar, R., Malek, N. F. A., & Shukla, M. (2023). Analysis of physical fitness in students: a comparative study based on social status. Tanjungpura Journal of Coaching Research, 1(3), 71–78. https://doi.org/10.26418/tajor.v1i3.66542
Dan Li, C. Y. (2021). Mathematical Problems in EngineeringVolume 2021, Article ID 6625529, 8 pageshttps://doi.org/10.1155/2021/6625529.
Ebrahim, T. Y., & Hussein, S. A.-H. J. A. (2025). The effectiveness of experiential learning strategy to developing some fixed-case football plans for students. Tanjungpura Journal of Coaching Research, 3(2), 133–143. https://doi.org/10.26418/tajor.v3i2.90311
Egliston, B., & Carter, M. (2022). Critical questions for Facebook’s virtual reality: Data, power and the metaverse. Internet Policy Rev. 2021,.
Gastón Sanglier Contrerasو Aurora Hernández González, M. I. (2022). The Importance of the Application of the Metaverse in Education. Modern Applied Science; Vol. 16, No. 3.
Ghazi, M. A. M. (2022). Metaverse applications in physical education: Artificial intelligence language and programming (1st ed.). Dar Al-Ibtikar for Publishing and Distribution.
Gurrin, C., Smeaton, A., & Doherty, A. (2022). LifeLogging: Personal Big Data. Found. Trends Inf. Retr. 2014, 8, 1–125. [CrossRef].
Hirsh-Pasek, K. Z. (2022). A whole new world: Education meets the metaverse. Policy, February. https://www.brookings.edu/wp-content/uploads/2022/02/A-whole-new-world_Education-meets-the-metaverse-FINAL-02142.
Hwang, G., & Chien, S. (2022). Definition, roles, and potential research issues of the metaverse in education: An artificial intelligenceperspective. Comput. Educ. Artif. Intell. 2022, 3, 100082. [CrossRef.
Jeon, J. &. (2021). Exploring the educational applicability of Metaverse-based platforms. The. Korean Society for Information Education, 361–368.
Jeong, H., Yi, Y., & Kim, D. (2022). An innovative e-commerce platform incorporating metaverse to live commerce. Int. J. Innov. Comput. InfControl 2022, 18, 221–229. [CrossRef].
Lee, K. H. (2022). https://www.timeshighereducation.com/campus/educational-metaverse-coming.
Manickam, A. (2022). Augmented reality technology based on school physical education training. Computers & Electrical Engineering 99(106):107807.
Mystakidis, S. (2022). Metaverse. Encyclopedia, 2(1), 486–497. https://doi.org/10.3390/encyclopedia2010031.
Ning, H. W. (2021). A Survey on Metaverse: The State-of-the-art, Technologies, Applications, and Challenges. https://doi.org/10.48550/arXiv.2111.09673.
Radwan, R. M. (2022). Sustainability of technological transformation in curriculum systems and teaching methods of physical education (1st ed.). Dar Al-Ibtikar for Publishing and Distribution.
Salloum, S. A. (2022). A conceptual framework fordetermining metaverse adoption in higher institutions of gulf area: An empirical study usinghybrid SEM-ANN approach. Computers and Education: Artificial Intelligence, 3, 100052. https://doi.org/10.1016/j.caeai.2022.100052.
Talan, T. &. (2022). Students' opinions about the educational use of themetaverse. International Journal of Technology in Education and Science (IJTES), 6(2),333-346. https://doi.org/10.46328/ijtes.385
Wang, Y. S. (2022). A Survey on MetaverseFundamentals, Security, and Privacy (arXiv:2203.02662). arXiv. https://doi.org/10.48550/arXiv.2203.02662.
Yusroni, M. (2024). Game model to improve motor skills through traditional sports: Development study on elementary school students. Tanjungpura Journal of Coaching Research, 2(2), 71–79. https://doi.org/10.26418/tajor.v2i2.79872
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