Analisis Kebutuhan Pengembangan Digibook Geometry Berbasis Kearifan Lokal di Lingkungan Pesantren untuk Pembelajaran Geometri SMP

Authors

  • Fithri Sri Mulyani Universitas Cipasung Tasikmalaya, Indonesia
  • Evi Indriani Universitas Cipasung Tasikmalaya, Indonesia

DOI:

https://doi.org/10.53696/venn.v4i3.427

Keywords:

Geometry, Media Pembelajaran, analisis kebutuhan

Abstract

Penelitian ini bertujuan untuk menganalisis kebutuhan pengembangan Digibook Geometry berbasis kearifan lokal di lingkungan pesantren sebagai dasar pembelajaran geometri SMP. Latar belakang penelitian ini didasari oleh masih dominannya pembelajaran geometri yang bersifat konvensional, kurang memfasilitasi visualisasi spasial, serta belum terintegrasi dengan konteks dan nilai pesantren. Penelitian menggunakan pendekatan mixed methods dengan jenis penelitian deskriptif eksploratif. Subjek penelitian terdiri atas 10 guru dan 60 siswa SMP di lingkungan pesantren Darul Arqom Garut Kota yang dipilih menggunakan teknik purposive sampling. Data dikumpulkan melalui angket kebutuhan, wawancara, observasi, dan studi dokumentasi. Data kuantitatif dianalisis menggunakan statistik deskriptif dalam bentuk persentase, sedangkan data kualitatif dianalisis melalui reduksi data, penyajian data, dan penarikan kesimpulan. Hasil penelitian menunjukkan bahwa seluruh aspek kebutuhan berada pada kategori tinggi hingga sangat tinggi, yaitu visualisasi geometri (91%), interaktivitas materi (90%), integrasi kearifan lokal (88%), kemandirian belajar (85%), dan ketersediaan media digital (82%). Temuan wawancara dan observasi menguatkan bahwa pembelajaran masih teacher-centered dan minim visualisasi spasial. Oleh karena itu, pengembangan Digibook Geometry berbasis kearifan lokal pesantren diperlukan sebagai solusi pembelajaran yang interaktif, kontekstual, dan mampu mendukung visualisasi konsep serta kemandirian belajar siswa.

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References

Ainulluluah, A., Boeriswati, E., Rahmawati, Y., & Setiawan, B. (2022). Systematic Literature Review: Improving Self Regulated Learning Through The Flipped Classroom Model Based on Interactive E-Books. Jurnal Basicedu, 6(3), 4679–4685. https://doi.org/10.31004/basicedu.v6i3.2853

Arifin, M. A., & Razali, R. (2022). The ABC of Needs Study: A Mixed-Methods Approach for Instrument Development. International Journal of Academic Research in Business and Social Sciences, 12(10), 1337 – 1352. http://dx.doi.org/10.6007/IJARBSS/v12-i10/15047

Battista, M. T. (2007). The development of geometric and spatial thinking. Second handbook of research on mathematics teaching and learning/National Council of Teachers of Mathematics.

Birden, A.(2022). A Descriptive Mixed-Methods Study Examining Teachers’ Needs and Preferences for Technology Integration Professional Development. (Doctoral dissertation). Retrieved from https://scholarcommons.sc.edu/etd/6944

Bower, M., Howe, C., McCredie, N., Robinson, A., & Grover, D. (2014). Augmented Reality in education–cases, places and potentials. Educational Media International, 51(1), 1-15.

Branch, R. M., & Varank, İ. (2009). Instructional design: The ADDIE approach (Vol. 722, p. 84). New York: Springer. https://link.springer.com/book/10.1007/978-0-387-09506-6

Clements, D. H., & Sarama, J. (2011). Early childhood mathematics intervention. Science, 333(6045), 968-970.

Elmabaredy, A., Gencel, N. Exploring the integration of self-regulated learning into digital platforms to improve students’ achievement and performance. Discov Educ 3, 262 (2024). https://doi.org/10.1007/s44217-024-00233-4

Freeman, S., Eddy, S. L., McDonough, M., Smith, M. K., Okoroafor, N., Jordt, H., & Wenderoth, M. P. (2014). Active learning increases student performance in science, engineering, and mathematics. Proceedings of the national academy of sciences, 111(23), 8410-8415.

Habibullah, J. A., Norvaizi, I., & Dewi, D. E. C. (2025). Implementasi mixed methods dalam penelitian pendidikan. Peradaban Journal of Interdisciplinary Educational Research, 3(1), 17-31. https://doi.org/10.59001/pjier.v3i1.245

Harefa, D. (2024). STRENGTHENING MATHEMATICS AND NATURAL SCIENCES EDUCATION BASED ON THE LOCAL WISDOM OF SOUTH NIAS: INTEGRATION OF TRADITIONAL CONCEPTS IN MODERN EDUCATION. Haga : Jurnal Pengabdian Kepada Masyarakat, 3(2), 63-79. https://doi.org/10.57094/haga.v3i2.2347

Hegarty, M., & Waller, D. (2005). Individual differences in spatial abilities. The Cambridge handbook of visuospatial thinking, 121-169. https://books.google.co.id/books?id=m91B8zm_1qgC&lpg=PA121&ots=kqpaTxjwoj&dq=Individual%20differences%20in%20spatial%20abilities&lr&hl=id&pg=PA120#v=onepage&q=Individual%20differences%20in%20spatial%20abilities&f=false

Ibáñez, M. B., & Delgado-Kloos, C. (2018). Augmented reality for STEM learning: A systematic review. Computers & Education, 123, 109-123.

Kostiainen, E., Ukskoski, T., Ruohotie-Lyhty, M., Kauppinen, M., Kainulainen, J., & Mäkinen, T. (2018). Meaningful learning in teacher education. Teaching and Teacher education, 71, 66-77. https://doi.org/10.1016/j.tate.2017.12.009

Kostiainen, E., Kairisto-Mertanen, L., & Belt, P. (2018). Meaningful learning in higher education: From theory to practice. Education Sciences, 8(2), 1–15. https://doi.org/10.3390/educsci8020070

Laksana, D. N. L., Awe, E. Y., Sugiani, K. A., Ita, E., Rawa, N. R., & Noge, M. D. (2021). Desain pembelajaran berbasis budaya. Penerbit Nem. https://books.google.co.id/books?id=kSwnEAAAQBAJ&lpg=PP1&ots=u7n3AIr5Rd&dq=Integrasi%20Kearifan%20Lokal%20dalam%20Pembelajaran%20Geometri%20di%20Sekolah%20Dasar%20melalui%20Model%20Kontekstual%20%7C%20EDUKASI%20KULTURA%20JURNAL%20BAHASA%20SASTRA%20DAN%20BUDAYA&lr&hl=id&pg=PP1#v=onepage&q&f=false

Lestari, I. (2018). Pengembangan bahan ajar matematika dengan memanfaatkan GeoGebra untuk meningkatkan pemahaman konsep. GAUSS: Jurnal Pendidikan Matematika, 1(1), 26-36.

Mutijah, M. (2018). Model integrasi matematika dengan nilai-nilai islam dan kearifan lokal budaya dalam pembelajaran matematika. Jurnal Pendidikan Matematika, 1(2), 1-28.

Nadzeri, M. B., Musa, M., Cheng Meng, C., & Ismail, I. M. (2024). The Effects of Augmented Reality Geometry Learning Applications on Spatial Visualization Ability for Primary School Pupils. International Journal of Interactive Mobile Technologies (iJIM), 18(16), pp. 104–118. https://doi.org/10.3991/ijim.v18i16.47079

Nahak, K. E. N., Mona, G. Y., SabaOra, J. U. L., Nubatonis, S., & Tameon, E. M. (2024). Pengembangan Bahan Ajar Berbasis Kearifan Lokal Ume Le’u Materi Bangun Datar untuk Siswa SDK Eban 1. JagoMIPA: Jurnal Pendidikan Matematika dan IPA, 4(1), 178-188. https://doi.org/10.53299/jagomipa.v4i1.541

Nasrullah, A., Marlina, M., Ratnasari, S., Hilman, H., Mulyawan, G., & Ali , A. (2024). Blended Learning in the Digital Era: An Analysis of Self-Regulated Learning Assisted with Edmodo-GeoGebra. International Journal of Geometry Research and Inventions in Education, 1(2), 67–75. https://doi.org/10.56855/gradient.v1i2.1266

Prince, M. (2004). Does active learning work? A review of the research. Journal of engineering education, 93(3), 223-231.

Tuljannah, L., & Khabibah, S. (2021). Pengembangan e-book interaktif pada materi bentuk aljabar untuk siswa SMP. MATHEdunesa, 10(2), 330-338. https://doi.org/10.26740/mathedunesa.v10n2.p330-338.

Uttal, D. H., Meadow, N. G., Tipton, E., Hand, L. L., Alden, A. R., Warren, C., & Newcombe, N. S. (2013). The malleability of spatial skills: a meta-analysis of training studies. Psychological bulletin, 139(2), 352. https://psycnet.apa.org/doi/10.1037/a0028446

Zimmerman, B. J. (2002). Becoming a self-regulated learner: An overview. Theory into practice, 41(2), 64-70.

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Published

20-06-2025

How to Cite

Mulyani, F. S., & Indriani, E. (2025). Analisis Kebutuhan Pengembangan Digibook Geometry Berbasis Kearifan Lokal di Lingkungan Pesantren untuk Pembelajaran Geometri SMP. Venn: Journal of Sustainable Innovation on Education, Mathematics and Natural Sciences, 4(3), 510–518. https://doi.org/10.53696/venn.v4i3.427

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