DEVELOPMENT OF MATHEMATICAL LEARNING DEVICES BASED ON PROBLEM BASED LEARNING MODEL ON THREE DIMENSIONAL MATERIAL TO FACILITATE HIGHER-ORDER THINKING SKILLS FOR STUDENTS IN CLASS XII SMA/MA

  • Nur Samsi Pendidikan Matematika, Universitas Riau
  • Sehatta Saragih Pendidikan Matematika, Universitas Riau
  • Rini Dian Anggraini Pendidikan Matematika, Universitas Riau
Keywords: 4-D Model, Learning devices, Problem Based Learning, Research and Development

Abstract

This research produces a product in the form of a mathematics learning device using a Problem Based Learning model on Three Dimensional material to facilitate students' Higher Order Thinking Ability. Validity and practicality is the instrument of the research. 4-D is a model of development. The validity instrument is in the form of a validation sheet to assess the validity of the learning tools, namely the syllabus, RPP, and LAS. The practicum instrument is a student response questionnaire to assess the usefulness and ease of use of LAS. Three validators will validate it and revise it according to the validator's suggestions. Then a limited group trial was conducted with six students. The results of syllabus validation 3.79, RPP 3.73, and LAS 3.58 are very valid. While the result of LAS is 85.15%, it is said to be a very practical category. Based on these, it was concluded that this study produced a product in the form of a mathematical learning device based on the Problem Based Learning model on Three Dimensional material that was valid for syllabus, RPP, and LAS and practical for LAS.

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References

Akbar, S. (2013). Instrumen perangkat pembelajaran. Remaja Rosdakarya.

Al-Tabany, T. I. B. (2014). Mendesain model pembelajaran inovatif, progresif, dan kontekstual: Konsep, landasan, dan implementasinya pada Kurikulum 2013. Prenadamedia Group.

Daryanto, Dwicahyono, A., & Purwanto, D. (2014). Pengembangan perangkat pembelajaran : (silabus, RPP, PHB, bahan ajar). Gava Media.

Devi, P. K., Sofiraeni, R., & Khairuddin. (2009). pengembangan perangkat pembelajaran untuk guru SMP. Pusat Pengembangan dan Pemberdayaan Pendidik dan Tenaga Kependidikan Ilmu Pengetahuan Alam (PPPPTK IPA).

IEA. (2016). TIMSS 2015 International results in mathematics. http://timss2015.org/timss-2015/mathematics/student-achievement/

Ilham, L. (2010). Persepsi guru Sekolah Dasar terhadap pelaksanaan Kurikulum Tingkat Satuan Pendidikan. Universitas Negeri Makassar.

Kawiyah, S. (2015). Pengembangan perangkat pembelajaran matematika berbasis saintifik untuk meningkatkan kemampuan pemecahan masalah dan prestasi belajar siswa. PYTHAGORAS: Jurnal Pendidikan Matematika, 10(2), 201–210. https://doi.org/10.21831/pg.v10i2.9163

Mulyasa, E. (2013). Menjadi guru professional menciptakan pembelajaran kreatif dan menyenangkan. Remaja Rosdakarya.

Novita, R., Zulkardi, & Hartono, Y. (2012). Exploring primary student’s problem-solving ability by doing tasks like PISA’s question. Journal on Mathematics Education, 3(2), 133–150. https://doi.org/10.22342/jme.3.2.571.133-150

OECD. (2019). PISA 2018 Results (Volume I): What students know and can do. In OECD: Vol. I. OECD Publishing. https://doi.org/https://doi.org/10.1787/5f07c754-en

Rusman. (2014). Model-model pembelajaran: mengembangkan profesionalisme guru (Edisi Kedua). PT Raja Grafindo Persada.

Setiawan, T., Sugianto, & Junaedi, I. (2012). Pengembangan perangkat pembelajaran matematika dengan pendekatan problem based learning untuk meningkatkan keterampilan Higher Order Thinking. Unnes Journal of Research Mathematics Education, 1(1), 72–80.

Siregar, H. M. (2019). Analisis kesalahan siswa dalam menyelesaikan soal tes kemampuan berpikir kreatif matematis materi Lingkaran. AKSIOMA: Jurnal Program Studi Pendidikan Matematika, 8(3), 497–507. https://doi.org/10.24127/ajpm.v8i3.2379

Solfitri, T., & Siregar, H. M. (2021). Developing integration techniques module to improve mathematical creative thinking ability in Integral Calculus. Jurnal PAJAR (Pendidikan dan Pengajaran), 5(2), 296–305. https://doi.org/http://dx.doi.org/10.33578/pjr.v5i2.8221

Sugiyono. (2015). Metode penelitian dan pengembangan pendekatan Kualitatif, Kuantitatif, dan R&D. In Metode Penelitian dan Pengembangan Pendekatan Kualitatif, Kuantitatif, dan R&D. Alfabeta.

Susanti, E. (2014). Pendidikan Matematika Realistik berbantuan komputer untuk meningkatkan Higher Order Thinking Skill dan mathematical habits of mind siswa SMP. Universitas Pendidikan Indonesia.

Susanto, E., & Retnawati, H. (2016). Perangkat pembelajaran matematika bercirikan PBL untuk mengembangkan HOTS siswa SMA. Jurnal Riset Pendidikan Matematika, 3(2), 189–197. https://doi.org/https://doi.org/10.21831/jrpm.v3i2.10631

Warisdiono, E. (2017). Modul penyusunan soal Higher Order Thinking Skill (HOTS). Direktorat Pembinaan SMA Departemen Pendidikan dan Kebudayaan.

Published
2022-05-31