Student Gestures when Solving Local Wisdom-Based Mathematics Problems
DOI:
https://doi.org/10.37303/jelmar.v4i2.155Keywords:
gestures, math problem solving, geometryAbstract
When solving math problems, students make spontaneous movements called gestures. The purpose of this research is to find out the variations of gestures that appear when students solve math problems related to rotational geometry based on local wisdom. The qualitative approach used in this research is a descriptive research type. Test questions, documentation results, observations, and interviews were used as research instruments. The subjects of this study were four students in class XI for the 2022/2023 academic year at SMA Negeri Balung. The results showed that the group of students with high abilities used gestures more than students with low abilities. Students with high ability in solving math problems use 11 iconic gestures, 8 metaphoric gestures, and 24 deictic gestures. Meanwhile, the group of students with low abilities used 7 iconic gestures, 6 metaphoric gestures, and 12 deictic gestures. Based on the distribution of the number of student gestures when solving math problems, the gesture that appears the most is the deictic gesture, and the one that appears the least is the metaphoric gesture.
Downloads
References
Albab, I. U., Hartono, Y., & Darmawijoyo. (2014). Kemajuan belajar peserta didik pada geometri transformasi menggunakan aktivitas refleksi geometri. Jurnal Ilmiah Cakrawala Pendidikan, 33(3), 338–348. https://doi.org/10.21831/cp.v3i3.2378
Aljaberi, N. M. (2015). University students' learning styles and their ability to solve mathematical problems. International Journal of Business and Social Science, 6(4), 121–134. https://www.researchgate.net/publication/331731138
Auliya, R. N. (2016). Kecemasan matematika dan pemahaman matematis. Formatif: Jurnal Ilmiah Pendidikan MIPA, 6(1), 12–22. https://doi.org/10.30998/formatif.v6i1.748
Elvierayani, R. R. (2016). Gesture matematis siswa dalam menyelesaikan masalah fungsi. Jurnal Reforma, 4(1). https://doi.org/10.30736/rfma.v4i1.13
Islamiah, N., Purwaningsih, W. E., Akbar, P., & Bernard, M. (2018). Analisis hubungan kemampuan pemecahan masalah matematis dan self-confidence siswa SMP. Journal on Education, 1(1), 47–57. https://doi.org/10.31004/joe.v1i1.10
McNeill, D. (1992). Hand and mind: What gestures reveal about thought. The University of Chicago Press.
Murtinasari, F., Sulisawati, D. N., & Lutfiyah. (2019). Desain kaos geometri sebagai media pemahaman konsep bentuk pada segiempat untuk siswa SD kelas III. EMASAINS, 8(1), 70–76. https://ojs.mahadewa.ac.id/index.php/emasains/article/view/273/221
Nggaba, M. E., & Ngaba, A. L. (2021). Kemampuan berpikir aljabar siswa dalam menyelesaikan masalah matematika berbasis kearifan lokal. Satya Widya, 36(2), 97–104. https://doi.org/10.24246/j.sw.2020.v36.i2.p97-104
Oktavianita, S., & Wahidin, W. (2022). Gestur siswa slow learner dalam belajar matematika menggunakan aplikasi Wordwall di sekolah dasar. Jurnal Basicedu, 6(3), 4802–4811. https://doi.org/10.31004/basicedu.v6i3.2941
Panglipur, I. R., & Putra, E. D. (2019). Identifikasi level kinerja novice melalui kemampuan berpikir kritis siswa (interpretasi, analisis). Prismatika: Jurnal Pendidikan dan Riset Matematika, 2(1), 43–50. https://doi.org/10.33503/prismatika.v2i1.573
Putra, E. D., & Panglipur, I. R. (2019). Analisis level kinerja practitioner melalui aktivitas belajar siswa. JUDIKA (Jurnal Pendidikan Matematika), 2(1), 25–35. https://doi.org/10.31539/judika.v2i1.700
Sulisawati, D. N., Amalia, D., & Djamali, M. F. (2021). Eksplorasi konsep dilatasi etnomatematika pada batik tembakau Jember. Prismatika: Jurnal Pendidikan dan Riset Matematika, 4(1), 56–64. https://doi.org/10.33503/prismatika.v4i1.1441
Umaisaroh, Supandi, S. R., Agustin, I. H., Maylisa, I. N., & Dafik. (2022). Kerangka aktivitas pembelajaran berbasis riset dengan pendekatan STEM: Penggunaan software berbasis Android untuk meningkatkan metaliterasi siswa dalam mendesain motif batik khas Situbondo menggunakan konsep geometri transformasi dan pewarna alami. Ebook CGANT Universitas Jember. http://ebook-cgantunej.or.id/index.php/cgant/article/view/6
Williams, C. C., Walkington, C., Boncoddo, R., Srisurichan, R., Pier, E., Nathan, M., & Alibali, M. (2012). Invisible proof: The role of gestures and action in proof. In Proceedings of the North American Chapter of the International Group for the Psychology of Mathematics Education (pp. 182–189). http://www.pmena.org/
Yunaeti, N., Arhasy, E. A., & Ratnaningsih, N. (2021). Analisis kemampuan pemecahan masalah matematik peserta didik menurut teori John Dewey ditinjau dari gaya belajar. Journal of Authentic Research on Mathematics Education (JARME), 3(1), 10–21. https://doi.org/10.37058/jarme.v3i1.2212
Zanthy, L. S., & Maulani, F. I. (2020). Analisis kesulitan siswa dalam menyelesaikan soal materi transformasi geometri. Gammath: Jurnal Ilmiah Program Studi Pendidikan Matematika, 5(1), 16–25. https://doi.org/10.32528/gammath.v5i1.3189
Downloads
Published
Issue
Section
License

This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.




