Building an Applicative Model of Integration-Interconnection of Mathematics and Islamic Sciences

Authors

  • Muhammad Wakhid Musthofa UIN Sunan Kalijaga, Yogyakarta, Indonesia
  • Malahayati UIN Sunan Kalijaga, Yogyakarta, Indonesia

DOI:

https://doi.org/10.15642/jrpm.2024.9.1.33-51

Keywords:

Scientific integration, Tri Dharma of higher education activities, Islam-mathematics.

Abstract

The idea of scientific integration-interconnection initiated by Amin Abdullah still cannot be applied in pure science study programs. The unique and very formal character of mathematics causes almost all lecturers of the Department of Mathematics and Mathematics Education to learn how to implement the concept of integration-interconnection when they teach some mathematical courses. This article offers a design for implementing the integration-interconnection paradigm of mathematics and Islam in the Tri Dharma of higher education activities for the Department of Mathematics and Mathematics Education. The integrative-interconnective model of mathematics and Islam includes an integrative learning, research, and community service model. We used the grounded theory method to form the integration-interconnection model. The resulting model is expected to be used as a guide for the academic community of the Department of Mathematics and Mathematics Education under the Islamic Religious Universities (Perguruan Tinggi Keagamaan Islam) in carrying out all activities of the Tri Dharma of higher education in terms of teaching and learning, research and community service.

Downloads

Download data is not yet available.

References

Abdullah, M. A. (2014). Religion, science, and culture: An integrated, interconnected paradigm of science. Al-Jami’ah: Journal of Islamic Studies, 52(1), 175–203. https://doi.org/10.14421/ajis.2014.521.175-203

Alwi, H. (2002). Kamus Besar Bahasa Indonesia, Jakarta: Balai Pustaka.

Anggreni, F. (2019). Integrasi al-Quran Pada Mata Pelajaran Matematika terhadap Kemampuan Siswa. At- Tarbawi, 6(1), 42–53.

Cutcliffe, J. R. (2000). Methodological issues in grounded theory. Journal of Advanced Nursing, 31(6), 1476–1484.

Fadilah, Y. (2023). Integration of Culture and Islam in Learning Mathematics in The Independent Curriculum. Journal of Scientific Research, Education, and Technology (JSRET), 2(3), 1407–1416.

Fathani, A. H. (2009). Matematika Hakikat dan Logika. Yogyakarta: Ar-Ruzz Media.

Hamami, T. (2004). Basic Scientific Framework and Curriculum Development of State Islamic University (UIN) Sunan Kalijaga Yogyakarta. Yogyakarta

Hidayah, U., Tobroni, & Faridi. (2023). Islamisasi Integrasi Interkoneksi Ilmu Pengetahuan dan Agama Islam: Model Keilmuan di Perguruan Tinggi Islam. AL-MUADDIB: Jurnal Kajian Ilmu Kependidikan, 5(2). 306-320. https://doi.org/10.46773/muaddib.v5i2.897

Huda, U., Syafitri, Y., & Herlina, E. (2019). Efektivitas Media Interaktif Berbasis Integrasi Matematika Islam pada Materi Himpunan di Batipuh. Proceeding IAIN Batusangkar, 4(1), 273–280.

Islam, T. (2013). Maqasid Al-Qur’an and Maqasid Al-Shari’ah: An Analytical Presentation. Revelation and Science, 3(1). 50-60.

Kneebone, G. T. (2001). Mathematical Logic and the Foundations of Mathematics: An Introductory Survey. New York: Dover Publications.

Kurniawan, S. (2020). Al-jabiri’s traces in m. amin abdullah’s idea about integrative-interconnective paradigm for higher education. ATTARBIYAH: Journal of Islamic Culture and Education, 5(1), 60–79.

Kusno, Marsigit, & Yaakob, M. F. M. (2020). Integration of islamic spiritual values with mathematics teaching. International Journal of Advanced Science and Technology, 29(4), 2111–2119.

Kuteeva, M., & McGrath, L. (2015). The theoretical research article as a reflection of disciplinary practices: The case of pure mathematics. Applied Linguistics, 36(2), 215–235.

Lailiyah, S., & Kurlillah, F. (2023). Student’s ways of thinking and ways of understanding analysis in solving mathematics problems in term of adversity quotient. Beta: Jurnal Tadris Matematika, 16(2), 151–171.

Maulida, S., & Ali, M. M. . (2023). Maqasid Shariah Index: A Literature Review. Maqasid Al-Shariah Review, 2(1). 1-13. https://doi.org/10.58968/msr.v2i1.309

Mubarok, A. (2021). Integrasi Matematika dan Islam dalam Pembelajaran Matematika. JIPKIS: Scientific Journal of Education and Islamic Studies, 1(1), 1–9.

Rahmadhani, E., & Wahyuni, S. (2020). Integrasi Pembelajaran Matematika Berbasis ICARE dan Islam pada Materi Pecahan. JNPM (Jurnal Nasional Pendidikan Matematika), 4(1), 110–124.

Rahmawati, A., & Rizki, S. (2017). Pengembangan Bahan Ajar Matematika Berbasis Nilai-Nilai Islam pada Materi Aritmatika Sosial. Jurnal Aksioma Pendidikan Matematika FKIP Univ. Muhammadiyah Metro, 6(1), 81-88.

Ramadhan, M. (2019). Maqasid Syari’ah dan Lingkungan Hidup (Bahtsul Masa’il sebagai Perlawanan Kaum Santri terhadap Eksploitasi Pertambangan Emas di Silo Jember). Analytica Islamica, 21(2), 126-136.

Rasool, M. S., Abdul, M. A. M. Y., & Ali, S. M. (2020). Wellbeing of the society: A Maqasid al-Shari’ah approach. Afkar: Jurnal Akidah & Pemikiran Islam, 22(1), 25–46.

Setianingsih, L., & Purwoko, R. Y. (2019). Kemampuan Berpikir Kreatif Siswa SMP dalam Menyelesaikan Soalopen-Ended. Jurnal Review Pembelajaran Matematika, 4(2), 143–156. https://jurnalftk.uinsby.ac.id/index.php/jrpm/article/view/201/218

Sion, H., Rahayu, S. E. M., Rahan, N., & Azahari, A. R. (2021). Problem-Solving Methods Influencing Mathematics Learning Outcomes Of Elementary School Students In Palangka Raya. Acta Scientiae et Intellectus, 7(2), 33–43.

Sumardiyono. (2004). Karakteristik Matematika dan Implikasinya terhadap Pembelajaran Matematika. Yogyakarta: Depdiknas.

Suryani. (2017). Pengarusutamaan ḥifdh al-‘Alam Sebagai Bagian dari Maqāṣid al-Sharī’ah. Al-Tahrir, 17(2), 353–370.

Syihabuddin, M., Soleh, A. K., & Mursyid, A. Y. (2024). Islamization of Science Ismail Raji al-Faruqi and Integration-Interconnection of Science Amin Abdullah: A Comparative Study. Tasfiyah Jurnal Pemikiran Islam, 8(1), 55–80.

Thoib, I. (2021). Development of Integration-Interconnection Oriented Problem Based Learning Model to Improve Critical Thinking Ability. Journal of Tianjin University Science and Technology, 54(6). 70-86.

Wagner, C. S., Roessner, J. D., Bobb, K., Klein, J. T., Boyack, K. W., Keyton, J., & Börner, K. (2011). Approaches to understanding and measuring interdisciplinary scientific research (IDR): A review of the literature. Journal of Informetrics, 5(1), 14–26. https://doi.org/10.1016/j.joi.2010.06.004

Weber, K. (2002). Beyond proving and explaining: Proofs that justify the use of definitions and axiomatic structures and proofs that illustrate technique. For the Learning of Mathematics, 22(3), 14–17.

Downloads

Published

2024-06-30

How to Cite

Musthofa, M. W., & Malahayati. (2024). Building an Applicative Model of Integration-Interconnection of Mathematics and Islamic Sciences. JRPM (Jurnal Review Pembelajaran Matematika), 9(1), 33–51. https://doi.org/10.15642/jrpm.2024.9.1.33-51

Issue

Section

Articles

Similar Articles

1 2 3 4 5 6 7 8 > >> 

You may also start an advanced similarity search for this article.