ANALISIS POLA REPRESENTASI DAN GAYA BELAJAR MAHASISWA FISIKA PADA MATERI KINEMATIKA
Keywords:
Pola representasi, Kemampuan pemecahan masalah, KinematikaAbstract
Physics problems tend to presented in one or some representation forms, such as verbal; visual; mathematic; graphic; etc. The consistency of representation using and concept understanding have strong relation, while learning style using by students gives big help to understand a concept too. The purpose of this research is to know relationship between representation pattern and VAK learning styles of physics’ undergraduate students in solving physics problems. Research has been done qualitatively in phenomenology type. Data was obtained from a quiz using 4 representation forms, interview, and questionnaire. The results of this research showed that representation pattern and learning styles using by students had well relation where most chose visual as the most preferred of both.
References
Afolabi, F. (2021). Learning Styles: Tools for Understanding Media Selection and Learners’ Academic Achievement in Physics. Journal of Educational Sciences. https://doi.org/10.31258/jes.5.4.p.584-597
Ali Eslami, S. M., Rezende, D. J., Besse, F., Viola, F., Morcos, A. S., Garnelo, M., … Hassabis, D. (2018). Neural scene representation and rendering. Science. https://doi.org/10.1126/science.aar6170
Ananingtyas, R. S. A. (2019). KEMAMPUAN MULTIREPRESENTASI SISWA DALAM PEMBELAJARAN APBL (AUTHENTIC PROBLEM BASED LEARNING) PADA MATERI ELASTISITAS DAN GETARAN. Briliant: Jurnal Riset Dan Konseptual, 4(1), 97. https://doi.org/10.28926/briliant.v4i1.273
Ananingtyas, R. S. A., Hakim, M. H., Rachmadania, Akabarita, Robby, R. R., Sanwidi, A., … Ariska, F. (2023). Pengenalan dan Pengembangan APE Berbasis Gerakan Literasi Nasional pada KB Anugrah. JPPNu (Jurnal Pengabdian Dan Pemberdayaan Nusantara), 5(1), 52–63. https://doi.org/https://doi.org/10.28926/jppnu.v5i1.163
Apata, F. S. (2022). Students’ Gender Proficiency in Multiple Representational Format and Mathematical Reasoning in Senior School Physics Problem-Solving. Asian Journal of Science Education. https://doi.org/10.24815/ajse.v4i1.25415
Bahaudin, A., Festiyed, F., Djamas, D., & Putri, N. H. (2019). Validity of physics learning module based on multirepresentation to improve the problem solving ability. Journal of Physics: Conference Series. https://doi.org/10.1088/1742-6596/1185/1/012063
Bengio, Y., Courville, A., & Vincent, P. (2013). Representation learning: A review and new perspectives. IEEE Transactions on Pattern Analysis and Machine Intelligence. https://doi.org/10.1109/TPAMI.2013.50
Bybee, J. L. (2013). Usage-based Theory and Exemplar Representations of Constructions. https://doi.org/10.1093/oxfordhb/9780195396683.013.0004
Christensen, W. M., & Thompson, J. R. (2012). Investigating graphical representations of slope and derivative without a physics context. Physical Review Special Topics - Physics Education Research, 8(2), 1–5. https://doi.org/10.1103/PhysRevSTPER.8.023101
De Cock, M. (2012). Representation use and strategy choice in physics problem solving. Physical Review Special Topics - Physics Education Research, 8(2), 1–15. https://doi.org/10.1103/PhysRevSTPER.8.020117
Gorghiu, G., Drăghicescu, L. M., Cristea, S., Petrescu, A.-M., & Gorghiu, L. M. (2015). Problem-based Learning - An Efficient Learning Strategy in the Science Lessons Context. Procedia - Social and Behavioral Sciences, 191, 1865–1870. https://doi.org/10.1016/j.sbspro.2015.04.570
Hsu, C. Y., Liu, T. C., Lin, Y. C., Hsu, C. Y., & Paas, F. (2023). Learning from different multimedia representation formats: effects of prior knowledge. Journal of Research on Technology in Education. https://doi.org/10.1080/15391523.2023.2288393
Hung, C. S., & Wu, H. K. (2018). Tenth graders’ problem-solving performance, self-efficacy, and perceptions of physics problems with different representational formats. Physical Review Physics Education Research. https://doi.org/10.1103/PhysRevPhysEducRes.14.020114
Ibrahim, B., & Rebello, N. S. (2012). Representational task formats and problem solving strategies in kinematics and work. Physical Review Special Topics - Physics Education Research, 8(1), 1–19. https://doi.org/10.1103/PhysRevSTPER.8.010126
Khodabakhshzadeh, H., Hosseinnia, M., & Rahimian, S. (2017). Learning Style, Metacognition and Creativity as Predictors of the Foreign Language Achievement: A Structural Equation Modeling Approach. Psychological Studies. https://doi.org/10.1007/s12646-017-0427-5
Murshed, M., Phang, F. A., & Bunyamin, M. A. H. (2022). Discovery of Multiple Representation Created by Secondary School Students in Real-World Problem Solving. AIP Conference Proceedings. https://doi.org/10.1063/5.0072395
Nieminen, P., Savinainen, A., & Viiri, J. (2012). Relations between representational consistency, conceptual understanding of the force concept, and scientific reasoning. Physical Review Special Topics - Physics Education Research, 8(1), 1–10. https://doi.org/10.1103/PhysRevSTPER.8.010123
Pennington, J., Socher, R., & Manning, C. D. (2014). GloVe: Global vectors for word representation. EMNLP 2014 - 2014 Conference on Empirical Methods in Natural Language Processing, Proceedings of the Conference. https://doi.org/10.3115/v1/d14-1162
Scherr, R. E., Close, H. G., Close, E. W., & Vokos, S. (2012). Representing energy. II. Energy tracking representations. Physical Review Special Topics - Physics Education Research, 8(2). https://doi.org/10.1103/PhysRevSTPER.8.020115
Velásquez, G. M. B., Zambrano, S. J. B., & Meza, O. B. R. (2022). Planned educational strategies based on learning styles. International Research Journal of Management, IT and Social Sciences. https://doi.org/10.21744/irjmis.v9n2.2058
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