PENGEMBANGAN MODUL TRIGONOMETRI UNTUK MENGEMBANGKAN KEMAMPUAN PEMECAHAN MASALAH MATEMATIKA

Rahmatya Nurmeidina(1*), Ahmad Lazwardi(2), Arif Ganda Nugroho(3),

(1) Universitas Muhammadiyah Banjarmasin
(2) Universitas Muhammadiyah Banjarmasin
(3) Universitas Muhammadiyah Banjarmasin
(*) Corresponding Author


Abstract


Problem-solving is one of the most important abilities possessed by prospective mathematics teacher students. One way to develop student problem-solving abilities is to use learning models designed to develop problem-solving abilities. This study aims to develop a trigonometry module to develop valid, practical, and effective mathematics education student problem-solving abilities. This research is a research development (Research & Development). This study develops a trigonometric course module using the 4D development model (Define, Design, Develop, Disseminate). The instruments used consisted of validation sheets filled out by experts in the field of mathematics education, student practicality assessment sheets, and learning outcomes tests with problem-solving questions. The quality of the developed modules is viewed from the aspects of validity, aspects of practicality, and aspects of effectiveness. The result is that the module is included in the valid category, with a high practicality value. The aspect of effectiveness based on test learning outcomes with problem-solving problems has increased from the results of the pretest and posttest. The result of the development in this study is the product of a trigonometric course learning module that is valid, practical and effective, and suitable for use by mathematics education students. The contribution of this research is that this module can be used during Trigonometry lectures.



Keywords


Development; module; problem solving; trigonometry.

References


Ahmad, H., Febryanti, F., Muthmainnah, M., Yakin, A. Al, & Sarbi, S. (2018). The Analysis of Student Error in Solve the Problem of Spherical Trigonometry Application. Journal of Physics: Conference Series, 1114(1), 0–9. https://doi.org/10.1088/1742-6596/1114/1/012114

Angraini, N., & Masykur, R. (2018). Modul Matematika Berdasarkan Model Pembelajaran Problem Based Learning Materi Pokok Trigonometri. Desimal: Jurnal Matematika, 1(2), 217. https://doi.org/10.24042/djm.v1i2.2558

Devesh, S., & Nasseri, D. A. L. (2014). Effectiveness of Mathematics Module in Foundation Programme in Majan College. International Journal of Emerging Engineering Research and Technology, 2(1), 1–7.

Fitri, D. Y., Septia, T., & Yunita, A. (2015). Pengembangan Modul Kalkulus 2 Pada Program Studi Pendidikan Matematika Di Stkip Pgri Sumatera Barat. Jurnal Pelangi, 6(1). https://doi.org/10.22202/jp.v6i1.288

Hartono, W., & Noto, M. S. (2017). Pengembangan Modul Berbasis Penemuan Terbimbing untuk Meningkatkan Kemampuan Matematis pada Perkuliahan Kalkulus Integral. JNPM (Jurnal Nasional Pendidikan Matematika), 1(2), 320. https://doi.org/10.33603/jnpm.v1i2.616

Hendriana, H., Rohaeti, E. E., & Sumarmo, U. (2017). Hard Skills dan Soft Skills. In Refika Aditama.

In’am, A. (2015). Menguak penyelesaian masalah matematika (Analisis pendekatan metakognitif dan model polya). AM Publishing.

Ismail, A. D., Jamil, A. F., & Putri, O. R. U. (2017). Pengembangan Modul Trigonometri Bercirikan Open Ended Problem. AdMathEdu, 7(1), 1–8.

May, V., & Courtney, S. (2016). Developing meaning in trigonometry. Illinois Mathematics Teacher, 63(1), 25–33.

Nasution, A. (2016). Pengembangan Modul Matematika Berbasis Masalah Untuk Meningkatkan Kemampuan Pemecahan Masalah Matematik Siswa. Rekognisi: Jurnal Pendidikan Dan Kependidikan, 1(1). https://doi.org/10.31604/eksakta.v4i1.41-48

Nugroho, A. A., Juniati, D., & Siswono, T. Y. E. (2018). Self regulated learning of prospective mathematics teacher in solving linier program problem : a case of visual learning style. International Conference on Mathematics and Science Education, 3, 820–824.

Nurmeidina, R., Lazwardi, A., & Ariyanti, I. (2020). Pengembangan Modul Teori Peluang untuk Meningkatkan Hasil Belajar dan Disposisi Matematis. Aksioma, Jurnal Pendidikan Matematika FKIP Universitas Muhammadiyah Metro, 9(2), 440–450.

Nurmeidina, R., & Rafidiyah, D. (2019, November 6). Analysis of Students’ Difficulties in Solving Trigonometry Problems. https://doi.org/10.4108/eai.7-8-2019.2288422

Phonapichat, P., Wongwanich, S., & Sujiva, S. (2014). An Analysis of Elementary School Students’ Difficulties in Mathematical Problem Solving. Procedia - Social and Behavioral Sciences, 116(February), 3169–3174. https://doi.org/10.1016/j.sbspro.2014.01.728

Polya, G. (2004). How to solve it: A new aspect of mathematical method (Vol. 85). Princeton university press.

Sarac, A., & Aslan-Tutak, F. (2017). The Relationship between Teacher Efficacy, and Students’ Trigonometry Self-Efficacy and Achievement. International Journal for Mathematics Teaching and Learning, 18(1), 66–83.

Sormin, M. A., & Sahara, N. (2019). Pengembangan Modul Pembelajaran Matematika Berbasis Masalah Untuk Meningkatkan Kemampuan Pemecahan Masalah. EKSAKTA : Jurnal Penelitian Dan Pembelajaran MIPA, 4(1), 41–48. https://doi.org/10.31941/delta.v7i1.920

Subekti, F. E., & Akhsani, L. (2020). Pengembangan Modul Statistika Deskriptif Berbasis Pemecahan Masalah. AKSIOMA: Jurnal Program Studi Pendidikan Matematika, 9(3), 530. https://doi.org/10.24127/ajpm.v9i3.2869

Thiagarajan, S., Semmel, D. S., & Semmel, M. I. (1976). Instructional development for training teachers of exceptional children: A sourcebook. In Indiana University. https://doi.org/10.1016/0022-4405(76)90066-2




DOI: http://dx.doi.org/10.24127/ajpm.v10i1.3375

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