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The Transformative Role Of Artificial Intelligence in Shaping Future of Science Education
Dr. Harendra Nath Sharma
Department of Zoology, Shri Varshney College, Aligarh
Author
Jayant Saraswat
Institute of Basic Science, Swami Vivekanand Campus, Khandari, Agra
Author
π DOI: https://doi.org/10.63920/ICFCSAI2025.005
π Keywords: AI, Science education, ICT tools.
π Publication Date: 02 January 2026
π License:
This work is licensed under a Creative Commons Attribution 4.0 International License
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Abstract:
Artificial Intelligence (AI) is rapidly emerging as a catalyst for innovation in science education, transforming how knowledge is delivered, accessed, and applied. The integration of AI tools into teaching and learning processes has the potential to redefine educational paradigms by personalizing learning experiences, enhancing research capabilities, and fostering critical thinking and creativity among students. This paper examines the transformative role of AI in shaping the future of science education, highlighting both opportunities and challenges. AI- powered adaptive learning platforms can analyze learner behavior, identify knowledge gaps, and provide customized content that aligns with individual learning styles. Virtual laboratories and intelligent simulations allow students to experiment with complex scientific phenomena in safe, cost-effective, and scalable environments, thereby promoting experiential learning beyond traditional classrooms. Moreover, natural language processing tools and generative AI models are enabling interactive tutoring systems that provide real-time feedback, assist in problem-solving, and support collaborative learning across geographical boundaries.
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π How to Cite
Dr. Harendra Nath Sharma and Jayant Saraswat (2026). The Transformative Role Of Artificial Intelligence in Shaping Future of Science Education . TEJAS J. Technol. Humanit. Sci.,, Vol. 05, Issue 01. https://doi.org/10.63920/ICFCSAI2025.005
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References
[1]. Almasri, Firas, et al. (2024) Exploring the Impact of Artificial Intelligence in Teaching and Learning ofScience: A Systematic Review of Empirical Research. Research in Science Education, Vol. 54, pp. 977-997,.
[2]. AteΕ, H. (2024). Integrating augmented reality into intelligent tutoring systems to enhance science education outcomes. Education and Information Technologies. doi:10.1007/s10639-024-12970-y.
[3]. du Plooy, E., & Colleagues. (2024). Personalized adaptive learning in higher education: evidence and practice. Frontiers / Education (open access) β (see PubMed Central for article: PMCID: PMC11544060).
[4]. Guo, L., et al. (2021). Evolution and trends in intelligent tutoring systems research. [Open-access review].(See PubMed Central for full text; discusses ITS trends and research directions.) β (PMCID: PMC8095475).
[5]. Heeg, Dagmar Mercedes, & Avraamidou, Lucy (2023). The use of Artificial Intelligence in School Science: A Systematic Literature Review. Educational Media International, Vol. 60, No. 2, pp. 125-150.
[6]. Kavitha, K., & Joshith, V. P. (2024) Pedagogical incorporation of artificial intelligence in K-12 science education: A decadal bibliometric mapping and systematic literature review (2013-2023). Journal of
Pedagogical Research, Volume 8, Issue 4, pages 437- 465,. DOI: 10.33902/JPR.202429218
[7] Expert Systems with Applications, 252, Article 124167. Wang, Shan; Wang, Fang; Zhu, Zhen; Wang, Jingxuan; Tran, Tam; Du, Zhao. Artificial Intelligence in
Education: A Systematic Literature Review. Expert Systems with Applications, Volume 252, Article 124167, 2024.
[8]. Lampropoulos, G. (2025) Augmented Reality, Virtual Reality, and Intelligent Tutoring Systems in Education and Training: A Systematic Literature Review. Applied Sciences, Volume 15, Issue 6, Article 3223,.
DOI:10.3390/app15063223
[9]. LΓ©tourneau, A., et al. (2025). A systematic review of AI-driven intelligent tutoring systems (ITS) in K-12 education. NPJ Science of Learning, 10(1), Article 29. doi:10.1038/s41539-025-00320-7.
[10]. Major, L., et al. (2021). Effectiveness of technology-supported personalised instruction: A meta-analysis. British Journal of Educational Technology, 52(4), pp.
[11]. VanLehn, K. (2011). The relative effectiveness of human tutoring, intelligent tutoring systems, and other tutoring systems. Educational Psychologist, 46(4), 197β221. doi:10.1080/00461520.2011.611369.
[12]. Villegas-Ch, W., Buenano-Fernandez, D., Maldonado Navarro, A., & Mera-Navarrete,
[13]. (2025). Adaptive intelligent tutoring systems for STEM education: Analysis of the learning impact and effectiveness of personalized feedback. Smart Learning Environments, 12, Article 41. doi:10.1186/s40561
025-00389-y.
[14]. literature Wang, S., Wang, F., Zhu, Z., Wang, J., Tran, T., & Du, Z. (2024). Artificial intelligence in education: A systematic review. doi:10.1016/j.eswa.2024.124167.
