STRATEGI PENINGKATAN LITERASI SAINS DI MADRASAH PADA ERA DIGITAL
Keywords:
literasi sains, era digital, pandemi, madrasahAbstract
Penelitian ini bertujuan untuk mengidentifikasi strategi peningkatan literasi sains di madrasah pada era digital. Penelitian ini menggunakan metode kualitatif dengan pendekatan kajian pustaka untuk menggali data terkait strategi peningkatan literasi sains di madrasah. Sumber data penelitian yang digunakan bersifat sekunder dengan menggunakan buku-buku dan artikel jurnal ilmiah sebagai sumber data dalam mendeskripsikan hasil dan pembahasan. Hasil dari penelitian ini yaitu bahwa strategi meningkatkan literasi sains madrasah di era digital dalam pembelajaran dapat dilakukan dengan (1) meningkatkan penguasaan guru terhadap elemen literasi sains mencakup konten, konteks, dan kompetensi; (2) menghadirkan iklim pembelajaran berbasis saintifik dan penyelidikan ilmiah; (3) memanfaatkan multimedia berbasis digital; (4) menyusun bahan ajar berbasis literasi sains; (5) monitoring dan evaluasi literasi sains siswa madrasah secara berkala.
References
Adityara, S., & Rakhman, R. T. (2019). Karakteristik Generasi Z dalam Perkembangan Diri Anak Melalui Visual.
Amarulloh, R. R., Utari, S., & Feranie, S. (2017). The Implementation of Levels of Inquiry With Writing-To-Learn Assignment To Improve Vocational School Student’s Science Literacy. Journal of Physics: Conference Series, 812, 012049. https://doi.org/10.1088/1742-6596/812/1/012049
Amreta, M. Y. (2018). Pengaruh Kegiatan Pramuka terhadap Karakter Siswa Madrasah Ibtidaiyah di Era Digital. Jurnal Pendidikan Islam, 3.
Bybee, R.W; Powell, J.C; and Trowbridge, L.W. (2008). Teaching Secondary School Science. 9th Edition. New Jersey, Pearson: Merrill Prentice Hall.
Chiappetta, E. L., Fillman, D. A., & Sethna, G. H. (1991). A method to quantify major themes of scientific literacy in science textbooks. Journal of Research in Science Teaching, 28(8), 713–725. https://doi.org/10.1002/tea.3660280808.
Ditjen Pendis. 2021. Pemaknaan Hasil AKMI. Jakarta: Ditjen Pendis
Gormally, C., Brickman, P., Hallar, B., & Armstrong, N. (2009). Effects of Inquiry-based Learning on Students’ Science Literacy Skills and Confidence. International Journal for the Scholarship of Teaching and Learning, 3(2). https://doi.org/10.20429/ijsotl.2009.030216.
Hendayana, S., Supriatna, A., & Imansyah, H. (n.d.). Indonesia’s Issues and Challenges on Quality Improvement of Mathematics and Science Education.
Herianingtyas, N. L. R., & Harmawati, R. E. (2017). Optimalisasi Kemampuan Berpikir Kreatif dalam Pembelajaran Sains Melalui Discovery Learning Berwawasan Lingkungan. Prosiding SNPBS (Seminar Nasional Pendidikan Biologi dan Saintek) Ke-2, 547-556.
Herianingtyas, N.LR. 2022. Penguatan Literasi Sains Siswa MI/SD melalui Pengembangan E- Modul dengan Instrumen Asesmen berbasis Higher Order Thingking Skills, Elementar (Elementary of Tarbiyah): Jurnal Pendidikan Dasar, 2 (1), 2022, 15-26. 10.15408/elementar.v2i1.28 353.
Hernawati, D., Amin, M., al Muhdhar, M. H. I., & Indriwati, S. E. (2019). Science literacy skills through the experience of project activities with assisted local potential based learning materials. JPBI (Jurnal Pendidikan Biologi Indonesia), 5(1), 159–168. https://doi.org/10.22219/jpbi.v5i1.7372
Hobson. (2001). Teaching relevant science for scientific literacy. Journal of Knowledge Science Teaching, 2(1), 110–116.
Haleem, A., Javaid, M., Qadri, M. A., & Suman, R. (2022). Understanding the role of digital technologies in education: A review. Sustainable Operations and Computers, 3, 275–285. https://doi.org/10.1016/j.susoc.2022.05.004
Howell, E. L., & Brossard, D. (2021). (Mis)informed about what? What it means to be a science-literate citizen in a digital world. Proceedings of the National Academy of Sciences, 118(15), e1912436117. https://doi.org/10.1073/pnas.1912436117.
Jufrida, J., Basuki, F. R., Kurniawan, W., Pangestu, M. D., & Fitaloka, O. (2019). Scientific literacy and science learning achievement at junior high school. International Journal of Evaluation and Research in Education, 8(4), 630–636. https://doi.org/10.11591/ijere.v8i4.20312.
Nurwahidah, Wilujeng, I., Senam, & Jumadi. (n.d.). Scientific Literacy: The Use of Android on Science Instructions Viewed on Project Based Learning. ICRIEMS Proceedings.
Laugksch, R. C. (n.d.). Scientific Literacy: A Conceptual Overview. https://doi.org/10.1002/(SICI)1098-237X(200001)84:13.0.CO;2-C.
Mukhlis, S., & Herianingtyas, N. L. R. (2021). Peningkatan Berpikir Kreatif Siswa Kelas V SDN Cililitan 02 melalui Problem Based Learning (PBL) berbasis Contextual Content. DWIJA CENDEKIA: Jurnal Riset Pedagogik, 5 (1), 64. https://doi.org/10.20961/jdc.v5i1.50858
McPhearson, P.T.; Pollack, G.R.; and Sable, J.E. (2008). Increasing scientific literacy in undergraduate education: A case study from “frontiers of science” at Columbia University.
Miller, J. (2002). Civic Scientific Literacy: A Necessity in the 21st Century. FAS Public Interest Reports, 5(1), 3–6.
OECD. (2019). PISA 2018 Assessment and Analytical Framework. OECD. https://doi.org/10.1787/b25efab8-en
Okada, A. (2013). Scientific literacy in the digital age: tools, environments and resources for co-inquiry. 12.
Osman, K., & Marimuthu, N. (2010). Setting new learning targets for the 21st century science education in Malaysia. Procedia - Social and Behavioral Sciences, 2(2), 3737–3741. https://doi.org/10.1016/j.sbspro.2010.03.581.
Putranta, H., Setiyatna, H., Supahar, S., & Rukiyati, R. (2021). The Effect of Smartphones Usability on High School Students’ Science Literacy Ability in Physics Learning. European Journal of Educational Research, 10(3), 1383–1396. https://doi.org/10.12973/eu-jer.10.3.1383
Putri, L. A., Permanasari, A., Winarno, N., & Ahmad, N. J. (2021). Enhancing Students’ Scientific Literacy using Virtual Lab Activity with Inquiry-Based Learning. Journal of Science Learning, 4(2), 12.
Rahmani, R., Mustadi, A., Maulidar, M., & Senen, A. (2021). The Development of Teaching Materials Based on Context and Creativity to Increase Students Scientific Literacy. Jurnal Ilmiah Peuradeun, 9(2), 345. https://doi.org/10.26811/peuradeun.v9i2.506
Ross, K., Hooten, M. A., & Cohen, G. (2013). Promoting Science Literacy through an Interdisciplinary Approach. Bioscene: Journal of College Biology Teaching, 39(1), 6.
Shoulders, C., & Myers, B. (2013). Socioscientific Issues-based Instruction: An Investigation of Agriscience Students’ Content Knowledge based on Student Variables. Journal of Agricultural Education, 54(3), 140–156. https://doi.org/10.5032/jae.2013.03140
Suryanti, Arifin, I. S. Z., & Baginda, U. (2018). The Application of Inquiry Learning to Train Critical Thinking Skills on Light Material of Primary School Students. Journal of Physics: Conference Series, 1108, 012128. https://doi.org/10.1088/1742-6596/1108/1/012128
Sutiani, A., Situmorang, M., & Silalahi, A. (2021). Implementation of an Inquiry Learning Model with Science Literacy to Improve Student Critical Thinking Skills. International Journal of Instruction, 14(2), 117–138. https://doi.org/10.29333/iji.2021.1428a
Turiman, P., Omar, J., Daud, A. M., & Osman, K. (2012). Fostering the 21st Century Skills through Scientific Literacy and Science Process Skills. Procedia - Social and Behavioral Sciences, 59, 110–116. https://doi.org/10.1016/j.sbspro.2012.09.253.
Udompong, L., Traiwichitkhun, D., & Wongwanich, S. (2014). Causal Model of Research Competency Via Scientific Literacy of Teacher and Student. Procedia - Social and Behavioral Sciences, 116, 1581–1586. https://doi.org/10.1016/j.sbspro.2014.01.438.
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