Keberhasilan siswa kompetisi sains madrasah nasional dalam menyelesaikan masalah matematika terintegrasi Islam pada materi segitiga
Main Article Content
Abstract
This study aims to describe the success of Madrasah Science Competition students at the national level in solving Islamic integrated math problems on triangle material. The research was conducted qualitatively on 5 students at the Madrasah Tsanawiyah (MTs) / equivalent level who participated in the Madrasah Science Competition (KSM) at the national level and successfully solved Islamic integrated mathematics problems on triangle material. The research instrument was a triangle problem given during the National KSM in 2023. The results showed the existence of two strategies that lead to success, namely success with complex mathematical proficiency and success with simple mathematical proficiency. In addition, the strategy of registering students with simple mathematical proficiency was found, namely listing from smallest to largest and listing from largest to smallest. This research contributes to science in the form of a description of students' success in solving triangle problems with various solution strategies. The results of this study are useful as guidelines in designing learning designs or tools that lead to student success in solving Islamic integrated mathematics problems.
Downloads
Article Details
This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.
References
Abdussakir. (2014). Matematika dalam Al-Qur’an. UIN-Maliki Press.
Abdussakir, & Rosimanidar. (2017). Model integrasi matematika dan Al-Quran serta praktik pembelajarannya. In Seminar Nasional Integrasi Matematika di dalam Al-Quran (pp. 1–16).
Aguilera, M. (2023). Two-Column demonstrations in math olympiad geometry problems: The case of Honduras. Matemáticas, Educación y Sociedad, 6(2), 28–52.
Alghar, M. Z., & Afandi, M. I. (2024). Islamic integrated maths: Mathematical logic in the Qur’an. Fahima: Jurnal Pendidikan Dan Kajian Keislaman, 3(1), 33–48. https://doi.org/10.54622/fahima.v3i1.144
Asmanto, B., Suradi, S., Warisno, A., Andari, A. A., & Anshori, M. A. (2023). The Evolution of Islamic educational institutions in Indonesia. JMKSP (Jurnal Manajemen, Kepemimpinan, Dan Supervisi Pendidikan), 8(1), 262–272. https://doi.org/10.31851/jmksp.v8i1.11117
Bafadhol, I. (2017). Lembaga Pendidikan Islam di Indonesia. Edukasi Islami: Jurnal Pendidikan Islam, 6(11), 59–72. https://doi.org/10.30868/ei.v6i11.95
Biber, C., Tuna, A., & Korkmaz, S. (2013). The mistakes and the misconceptions of the eighth grade students on the subject of angles. European Journal of Science and Mathematics Education, 1(2), 50–59. https://doi.org/10.30935/scimath/9387
Corrêa, P. D., & Haslam, D. (2021). Mathematical Proficiency as the basis for assessment: A literature review and its potentialities. Mathematics Teaching Research Journal, 12(4), 3–20.
Cragg, L., & Gilmore, C. (2014). Skills underlying mathematics: The role of executive function in the development of mathematics proficiency. Trends in Neuroscience and Education, 3(2), 63–68. https://doi.org/10.1016/j.tine.2013.12.001
Engelbrecht, J., & Mwambakana, J. (2016). Validity and diagnostic attributes of a mathematics Olympiad for junior high school contestants. African Journal of Research in Mathematics, Science and Technology Education, 20(2), 175–188.
Findell, B., Swafford, J., & Kilpatrick, J. (2001). Adding It Up: Helping Children Learn Mathematics. National Academies Press.
Firdaus, A. M., Junıatı, D., & Wijayanti, P. (2020). Number pattern generalization process by provincial mathematics olympiad winner students. Journal for the Education of Gifted Young Scientists, 8(3), 991–1003. https://doi.org/10.17478/jegys.704984
Hendrawati, N. E., Wulandari, S., Ulum, M., Asnawi, M. H., Rofiki, I., & Abdussakir. (2020). Integrative mathematics learning: Study of hadits on number. Abjadia, 5(1), 15–28. https://doi.org/10.18860/abj.v5i1.8675
Hoque, M. E. (2016). Three domains of learning: Cognitive, affective and psychomotor. The Journal of EFL Education and Research, 2(2), 45–52.
Indraswari, L., Lestari, A. W., & Hastari, R. C. (2019). Analisis kesulitan siswa dalam menyelesaikan soal− soal HOTS materi segiempat dan segitiga ditinjau dari gender. Delta: Jurnal Ilmiah Pendidikan Matematika, 7(2), 65–72. https://doi.org/10.31941/delta.v7i2.874
Ishak, A. H., & Osman, M. R. (2016). A systematic literature review on Islamic values applied in quality management context. Journal of Business Ethics, 138, 103–112. https://doi.org/10.1007/s10551-015-2619-z
Iversen, S. M., & Larson, C. J. (2006). Simple thinking using complex math vs. complex thinking using simple math—A study using model eliciting activities to compare students’ abilities in standardized tests to their modelling abilities. ZDM, 38, 281–292. https://doi.org/10.1007/BF02652811
Kemendikbud. (2017). Peraturan Menteri Pendidikan dan Kebudayaan tentang Penilaian Hasil Belajar Oleh Pemerintah Dan Penilaian Hasil Belajar Oleh Satuan Pendidikan. Kemendikbud.
Kilpatrick, J., Swafford, J., & Findell, B. (2001). Adding it up: Helping children learn mathematics. National Academy Press.
Kontorovich, I. (2020). Problem-posing triggers or where do mathematics competition problems come from? Educational Studies in Mathematics, 105(3), 389–406. https://doi.org/10.1007/s10649-020-09964-1
Kriswandani, C. S., Irawati, S., & Hidayanto, E. (2022). Systemic thinking processes of preservice teachers with systematic cognitive style in solving complex problems. Journal of Positive School Psychology, 6(5), 2706–2730.
Kurniawan, H., Sutawidjaja, A., As’ari, A. R., Muksar, M., & Setiawan, I. (2018). Investigating students’ failure in fractional concept construction. Journal of Physics: Conference Series, 1008(1), Article 12064. https://doi.org/10.1088/1742-6596/1008/1/012064
Putra, R. A. C., & Syarifuddin, A. (2019). Kemampuan koneksi matematis siswa tipe sensing-intuiting dalam menyelesaikan soal olimpiade. Jurnal Gantang, 4(1), 61–70. https://doi.org/10.31629/jg.v4i1.899
Radjak, D. S., Alghar, M. Z., & Cholidiyah, A. C. (2023). Exploration of the concept of relation and function in the Quran with the theme of Q.S. Ar-Rahman. West Science Islamic Studies, 1(1), 120–131. https://doi.org/10.58812/wsiss.v1i01.309
Rebholz, F., Golle, J., Tibus, M., Ruth-Herbein, E., Moeller, K., & Trautwein, U. (2022). Getting fit for the mathematical olympiad: Positive effects on achievement and motivation? Zeitschrift Für Erziehungswissenschaft, 25(5), 1175–1198. https://doi.org/10.1007/s11618-022-01106-y
Rofiki, I., & Alghar, M. Z. (2024). The failure of national madrasah science competition students in solving Islam-Integrated mathematics problem on triangle material. Jurnal Riset Pendidikan Dan Inovasi Pembelajaran Matematika (JRPIPM), 7(2), 151–170. https://doi.org/10.26740/jrpipm.v7n2.p151-170
Rosikhoh, D., Abdussakir, Ali, F., & Mukmin, M. I. (2022). Designing learning trajectory based on Qur’an and Hadith: A case of fractions at Madrasah Ibtidaiyah. International Journal of Trends in Mathematics Education Research, 5(3), 291–298. https://doi.org/10.33122/ijtmer.v5i3.123
Sa’o, S., Mei, A., & Naja, F. Y. (2019). The Application of Intuition in Solving the Problems of Math in the Olympiad of Mathematics. International Journal of Multidisciplinary Research and Publication, 2(6), 11–15. https://doi.org/10.5281/zenodo.3570662
Safitri, W. Y., Haryanto, H., & Rofiki, I. (2020). Integrasi matematika, nilai-nilai keislaman, dan teknologi: Fenomena di madrasah tsanawiyah. Jurnal Tadris Matematika, 3(1), 89-104. https://doi.org/10.21274/jtm.2020.3.1.89-104
Santiago, P. V. da S., & Alves, F. R. V. (2022). Record of Semiotic Representation Using Geogebra: An Olympiad Training on Brazilian Students. Indonesian Journal of Science and Mathematics Education, 5(2), 118–133. https://doi.org/10.24042/ijsme.v5i2.12510
Sofiyana, M. S. (2021). Pendampingan materi IPA terpadu untuk kompetisi sains madrasah di MTS Maarif NU 2 sutojayan. Jurnal Pengabdian Al-Ikhlas, 7(1), 48–52. https://doi.org/10.31602/jpaiuniska.v7i1.5350
Soifer, A. (2022). The Soifer (formerly Colorado) Mathematical Olympiad, why it was founded, bridge between its problems and mathematics, and lives of its winners: an essay. ZDM–Mathematics Education, 54, 1115–1130. https://doi.org/10.1007/s11858-021-01320-8
Sutiarso, S. (2020). Meta-Analisis Pengaruh Alqurun Teaching Model Terhadap Kemampuan Matematis. Histogram: Jurnal Pendidikan Matematika, 4(2), 462–478. https://doi.org/10.31100/histogram.v4i2.711
Tobón, S., & Luna-Nemecio, J. (2021). Complex thinking and sustainable social development: Validity and reliability of the complex-21 scale. Sustainability, 13(12), Article 6591. https://doi.org/10.3390/su13126591
Tohir, M. (2019). Students’ creative thinking skills in solving mathematics Olympiad problems based on metacognition levels. Alifmatika: Jurnal Pendidikan Dan Pembelajaran Matematika, 1(1), 1–14. https://doi.org/10.35316/alifmatika.2019.v1i1.1-14
Utomo, D. P., Putri, A. M. J., & Santoso, T. (2022). Student’s critical thinking ability to solve problems HOTS in regular, acceleration, and olympics class programs. Jurnal Didaktik Matematika, 9(1), 125–135. https://doi.org/10.24815/jdm.v9i1.23242
Walidah, N. Z., Alghar, M. Z., Abdussakir, & Smeer, Z. B. (2024). Integrasi Islam dan sains: Telaah terhadap konsep matematika dalam hadits keutamaan membaca shalawat. Lentera, 6(1), 16–26. https://doi.org/10.32505/lentera.v6i1.8717