Artificial intelligence and cinematic comprehension from ABP [Inteligencia artificial y comprensión cinemática desde el ABP]
DOI:
https://doi.org/10.62574/rmpi.v5iEducativa.457Keywords:
artificial intelligence, teaching methods, physicsAbstract
The study aims to analyse the integration of artificial intelligence in kinematic understanding through problem-based learning as an innovative teaching strategy. A descriptive documentary design was used, involving a systematic analysis of fourteen bibliographic sources published between 2008 and 2025, structured in four stages: identification, selection, content analysis and interpretative synthesis. The results identify five thematic categories: pedagogical foundations of PBL in physics, showing improvements in conceptual understanding and problem-solving skills; conceptual difficulties in kinematics related to the coordination of representation systems and intuitive conceptions; applications of AI in physics teaching, facilitating personalisation of learning and automatic diagnosis of difficulties; convergence between PBL and AI, generating methodological synergies that enhance both components; and documented effects showing significant increases in student motivation and conceptual understanding.
Downloads
References
Aliassacq, I., Greca, I. M., & Muñoz-Alvarez, G. (2025). The role of artificial intelligence (AI) in transforming physics education: A narrative review. Lensa: Jurnal Kependidikan Fisika, 12(2), 200–215.
Argaw, A. S., Haile, B. B., Ayalew, B. T., & Kuma, S. G. (2017). The effect of problem based learning (PBL) instruction on students' motivation and problem solving skills of physics. Eurasia Journal of Mathematics, Science and Technology Education, 13(3), 857–871. https://doi.org/10.12973/eurasia.2017.00647a
Becerra-Labra, C., Gras-Martí, A., & Martínez-Torregrosa, J. (2012). Effects of a problem-based structure of physics contents on conceptual learning and the ability to solve problems. International Journal of Science Education, 34(8), 1235–1253. https://doi.org/10.1080/09500693.2011.619210
Díaz-Santamaría, J. O., Abril-Neira, A. M., Díaz-Santamaría, L. S., & Bravo-Faytong, F. A. (2017). La utilización del aprendizaje basado en proyectos en la enseñanza de la cinemática. Revista Atlante: Cuadernos de Educación y Desarrollo, 2(7), 1–15. https://www.eumed.net/rev/atlante/2017/07/aprendizaje-cinematica.html
Escribano-González, A., & Valle, Á. (2010). Aprendizaje basado en problemas (ABP): Una propuesta metodológica en educación superior. Narcea Ediciones. https://elibro.net/es/ereader/uguayaquil/102005
Huang, W., Wang, T., & Tong, Y. (2024). The effect of gamified project-based learning with AIGC in information literacy education. Innovations in Education & Teaching International, 1–15. https://doi.org/10.1080/14703297.2024.2423012
Kanyesigye, S. T., Uwamahoro, J., & Kemeza, I. (2022). Difficulties in understanding mechanical waves: Remediated by problem-based instruction. Physical Review Physics Education Research, 18(1), 010140. https://doi.org/10.1103/PhysRevPhysEducRes.18.010140
López, E., Castillo, C., & Véliz, J. (2008). Aprendizaje colaborativo y significativo en la resolución de problemas de física en estudiantes de ingeniería. Caderno Brasileiro de Ensino de Física, 25(1), 55–76. https://dialnet.unirioja.es/servlet/articulo?codigo=5165973
Mahligawat, F., Allanas, E., Butarbutar, M. H., & Nordin, N. A. N. (2023). Artificial intelligence in physics education: A comprehensive literature review. Journal of Physics: Conference Series, 2596, 012080. https://doi.org/10.1088/1742-6596/2596/1/012080
Muñoz-Alvarez, G., Greca, I. M., & Arriassecq, I. (2025). Problem-based learning as a strategy for teaching physics in technical–professional higher education: A case study in Chile. Education Sciences, 15(8), 941. https://doi.org/10.3390/educsci15080941
Nicholus, G., Muwonge, C. M., & Joseph, N. (2023). The role of problem-based learning approach in teaching and learning physics: A systematic literature review. F1000Research, 12, 951. https://doi.org/10.12688/f1000research.136339.2
Plúas, L., Coloma, T., Landívar, J., & Arce, J. (2024). Aprendizaje basado en proyectos con inteligencia artificial. Pro Sciences: Revista de Producción, Ciencias e Investigación, 8(55), 59–68. https://doi.org/10.29018/issn.2588-1000vol8iss55.2024pp59-68
Pulido-Gómez, D. A. (2019). Evaluación del aprendizaje basado en problemas como un método para la comprensión del tema de cinemática [Tesis de maestría, Universidad Externado de Colombia]. Repositorio Digital. https://bdigital.uexternado.edu.co/handle/001/1577
Robledo-Rella, V., Gonzalez-Nucamendi, A., Neri, L., García-Castelán, R. M. G., & Noguez, J. (2024). Artificial intelligence in physics courses to support active learning. Proceedings of the 2024 10th International Conference on e-Society, e-Learning and e-Technologies (ICSLT), 125–130. https://doi.org/10.1145/3678610.3678631
Singh, P., Kumar, R., & Sharma, M. (2025). Advancing learning outcomes in physics education through artificial intelligence integration. European Journal of Education and Pedagogy, 6(3), 45–59. https://eu-opensci.org/index.php/ejedu/article/view/30996
Published
How to Cite
Issue
Section
License
Copyright (c) 2025 Jhonn Edisson Cruz-Guerra

This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License.
CC BY-NC-SA : This license allows reusers to distribute, remix, adapt and build upon the material in any medium or format for non-commercial purposes only, and only if attribution is given to the creator. If you remix, adapt or build upon the material, you must license the modified material under identical terms.
OAI-PMH URL: https://rperspectivasinvestigativas.org/index.php/multidiscipinaria/oai










