Students' Creative Thinking Process in Mathematic Problems Solving Assisted by GeoGebra

Authors

  • Ningrat Delvia Margaretha Universitas Negeri Surabaya
  • Dayat Hidayat Universitas Negeri Surabaya

DOI:

https://doi.org/10.26740/jomp.v5n1.p32-41

Keywords:

Creative thinking process, mathematic problems solving, geogebra

Abstract

The purpose of this research is to find out how students' creative thinking process in solving Geogebra-assisted math problems and to find out the obstacles experienced by students in the creative thinking process. This research is a qualitative descriptive research. The subject selection was taken 3 students using purposive sampling method, namely by considering students who were considered able to work on the math problems given and had been able to use GeoGebra. The data collection techniques used in this research were tests and interviews. The main instrument in this research is the researcher himself. Auxiliary instruments are math problems and interview guidelines. The math problem used is a spatial problem to find the volume and surface area with assisted by Geogebra to measure students' creative thinking. Interviews are used to find out how students' creative thinking processes while working on math problems. The analysis used is data reduction, data presentation and conclusion drawing. The results of this reasearch show the student’s creative thinking process in solving math problems assisted by Geogebra. In this reasearch also shows that students experience obstacles at the stage of synthesizing ideas, namely the stage of students gathering information or remembering and combining ideas sourced from previous experiences.

References

Ahmadi, H. A., & Widodo Supriyono. (2013). Psikologi Belajar (III ed.). Jakarta: Rineka Cipta.

Andiyana, M. A., Maya, R., & Hidayat, W. (2018). Analisis kemampuan berpikir kreatif matematis siswa smp pada materi bangun ruang. JPMI (Jurnal Pembelajaran Matematika Inovatif), 1(3), 239-248.

DePorter, B., & Hernacki, M. (2015). Quantum Learning: Membiasakan Belajar Nyaman dan Menyenangkan (Cetakan 1). Bandung: Penerbit Kaifa.

Ervync, G. (1991). “Mathematical Creativity”. Dalam Tall, D. Advanced Mathematical Learning. London: Kluwer Academic Publisher

Kholisoh, I. L. (2019). Skipsi Kemampuan Berpikir Kreatif Siswa Dalam Menyelesaikan Masalah Open-Ended Ditinjau Dari Disposisi Matematis Pada Pembelajaran Treffinger. Universitas Negeri Semarang

King, F. J., Goodson, L., & Rohani, F. (2009). Higher Order Thinking Skills. In Publication of the Educational Services Program, now known as the Center for Advancement of Learning and Assessment.

Krathwohl, D. R. 2002. A Revision of Bloom’s Taxonomy: An Overview. Journal Theory Into Practice, Vol. 41(4)

Krulik, S., & Rudnick, J. A. (1999). Innovative tasks to improve critical and creative thinking skills. Developing mathematical reasoning in grades K-12, 12.

Kuswana, Wowo Sunaryo. 2011. Taksonomi Berpikir. Bandung: PT. Remaja Rosdakarya.

Lenaini, I. (2021). Teknik pengambilan sampel purposive dan snowball sampling. Historis: Jurnal Kajian, Penelitian dan Pengembangan Pendidikan Sejarah, 6(1), 33-39.

Mujis, D and Reynolds, D. 2008. Effective Teaching. Evidence and Practise. London: Sage.

Munandar, Utami. 2014. Pengembangan Kreativitas Anak Berbakat. Jakarta: Rineka Cipta.

Noer, S. H. (2009). Kemampuan Berpikir Kreatif Matematis Apa, Mengapa, dan Bagaimana? (pp. 521–526). Lampung: Prosiding Seminar Nasional Penelitian, Pendidikan dan Penerapan MIPA Fakultas MIPA, Universitas Negeri Yogyakarta, 16 Mei 2009

Priatna, N. & Arsani, M. (2019). Media Pembelajaran Matematika dengan GeoGebra. Bandung: PT Remaja Rosdakarya.

Rambung, O. S., Sion, S., Bungamawelona, B., Puang, Y. B., & Salenda, S. (2023). Transformasi Kebijakan Pendidikan Melalui Implementasi Kurikulum Merdeka Belajar. JIP: Jurnal Ilmu Pendidikan, 1(3), 598-612.

Rusmana, I. M. (2015). Efektifitas Penggunaan Media ICT dalam Peningkatan Pemahaman Konsep Matematika. Formatif: Jurnal Ilmiah Pendidikan MIPA, 2(3).

Silver, E. A. (1997). Fostering creativity through instruction rich in mathematical problem solving and problem posing. USA: International Journal of Mathematics Education (Online), 75–80. Retrieved from https://www.emis.de/journals/ZDM/zdm973a3.pdf

Siswono, T.Y.E., Rosyidi, & Haris, A. (2005). Menilai kreativitas siswa dalam matematika. Proseding Seminar Nasional Matematika dan Pendidikan Matematika di Jurusan Matematika FMIPA Unesa, 28 Pebruari 2005.

Siswono, Tatag Yuli Eko. 2007. Perjenjangan Kemampuan Berpikir Kreatif dan Identifikasi Tahap Berpikir Kreatif Siswa dan Memecahkan dan Mengajukan Masalah. Surabaya: Program Pascasarjana Unesa.

Siswono, T. Y. E. (2011). Level of student's creative thinking in classroom mathematics. Educational Research and Reviews, 6(7), 548.

Siswono, T. Y. E. (2016). Proses berpikir kreatif siswa dalam memecahkan dan mengajukan masalah matematika. Jurnal Ilmu Pendidikan, 15(1).

Sumarmo, U., Hidayat, W., Zukarnaen, R., Hamidah, H., & Sariningsih, R. (2013). Kemampuan dan Disposisi Berpikir Logis, Kritis, dan Kreatif Matematik. 17–33.

Syahbana, A. (2016). Belajar Menguasai GeoGebra Program Aplikasi Pembelajaran Matematika. Palembang: NoerFikri Offset.

Tilaar, H.A.R. 2012. Pengembangan Kreativitas dan Entrepreneurship dalam Pendidikan Nassional. Jakarta: PT Kompas Media Nusantara.

Widyastuti, R. (2015). Proses berpikir siswa dalam menyelesaikan masalah matematika berdasarkan teori Polya ditinjau dari adversity quotient tipe climber. Al-Jabar: Jurnal Pendidikan Matematika, 6(2), 183-194.

Downloads

Published

2024-03-28

Issue

Section

Articles
Abstract views: 26 , PDF Downloads: 17