Development of Guided Inquiry Learning Model Based on Educational Games to Improve Elementary Students' Science Process Skills
DOI:
https://doi.org/10.69693/ijim.v2i3.190Keywords:
Science process skills, guided inquiry, educational games, science, elementary schoolAbstract
This research aims to develop a Guided Inquiry Learning Model Based on Educational Games, presented in a book format and supported by educational games accessible via Canva and Wordwall platforms. The model is designed to be valid, practical, and effective in enhancing elementary school students' science process skills. This study uses a Research and Development (R&D) approach, adapting the Plomp model's development stages: initial investigation, design, realization, testing, evaluation, revision, and implementation. The subjects are fifth-grade students from UPT SD Negeri 214, UPT SD Negeri 99, and UPT SD Negeri 101 in Pinrang Regency. Research instruments include validation sheets, observation sheets, questionnaires, and evaluation sheets. The study produces an Inquiry-Based Educational Game (IGE) textbook and learning tools, such as lesson plans (RPP), student worksheets (LKPD), and educational games. The findings reveal a strong need among teachers and students for a learning model that enhances science process skills. The developed IGE model comprises syntax, social system, reaction principles, support system, instructional impact, and accompanying impact. The syntax includes Activation, Playing, Exploring, and Wrap-Up phases. The IGE model meets the criteria for validity and practicality, receiving high validation ratings. The model effectively enhances students' science process skills, as shown by significant improvements in student performance. The IGE model and its learning tools are deemed highly practical, based on feedback from students and teachers.
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References
Bundu, P. (2006). Penilaian keterampilan proses dan sikap ilmiah dalam pembelajaran sains SD. Jakarta: Depdiknas.
Byun, J., & Joung, E. (2018). Digital game‐based learning for K–12 mathematics education: A meta‐analysis. School Science and Mathematics, 118(3-4), 113-126. DOI: https://doi.org/10.1111/ssm.12271
Depdiknas .2003. Undang-undang RI No.20 tahun 2003.tentang sistem pendidikan nasional.
Devi, M. Y., Aisyah, R. S. S., & Wijayanti, I. E. (2022). Pengembangan Media Pembelajaran Game Edukasi Kolopoli Berbasis Android Pada Materi Sistem Koloid. Jurnal Pendidikan Kimia Undiksha, 6(2). DOI: https://doi.org/10.23887/jjpk.v6i2.32415
Kemendikbud. (2013). Permendikbud Nomor 81A Tahun 2013 tentang Pedoman Implementasi Kurikulum.
Mahmudah, I. R., Makiyah, Y. S., & Sulistyaningsih, D. (2019). Profil keterampilan proses sains (KPS) siswa SMA di Kota Bandung. Diffraction: Journal for Physics Education and Applied Physics, 1(1)
McPherson, H. (2023). Reproduction to transformation: disrupting teacher habitus through pedagogic work. British Journal of Sociology of Education, 44(2), 355-373. DOI: https://doi.org/10.1080/01425692.2022.2161473
Medcom. (2024). Skor PISA Indonesia Tak Capai Target RPJMN 2024. Retrieved from Medcom.id: https://www.medcom.id/pendidikan/news-pendidikan/GNlPJEgN-skor-pisa-indonesia-tak-capai-target-rpjmn-2024
Mendikbudristek. (2022). Kepmendikbudristek Nomor 56 Tahun 2022 tentang Pedoman Penerapan Kurikulum dalam Rangka Pemulihan Pembelajaran. Jakarta.
Plomp, T. (2007). Educational Design Research: an Introduction. Netherlands:
Priyani, N. E., & Nawawi, N. (2020). Pembelajaran IPA berbasis ethno-stem berbantu mikroskop digital untuk meningkatkan keterampilan proses sains di sekolah perbatasan. WASIS: Jurnal Ilmiah Pendidikan, 1(2), 99-104. DOI: https://doi.org/10.24176/wasis.v1i2.5435
Riopel, M., Nenciovici, L., Potvin, P., Chastenay, P., Charland, P., Sarrasin, J. B., & Masson, S. (2019). Impact of serious games on science learning achievement compared with more conventional instruction: an overview and a meta-analysis. Studies in Science Education, 55(2), 169-214. DOI: https://doi.org/10.1080/03057267.2019.1722420
Samal, N., & Hasan, N. R. (2023). Penerapan Model Pembelajaran Inkuiri Terbimbing Untuk Meningkatkan Keterampilan Proses Sains (KPS) Peserta Didik di SMP Negeri 9 Majene. Jurnal Pemikiran Dan Pengembangan Pembelajaran, 5(2), 950-957. DOI: https://doi.org/10.31004/edukatif.v5i2.5025
Sudjana, Nana. 2000. Dasar-Dasar Proses Belajar Mengajar. Bandung: PT. Sinar Baru Algensindo
Susila, I. G. D., Wiarta, I. W., & Agustika, G. N. S. (2021). Model Pembelajaran Inkuiri Terbimbing Berbantuan Permainan Edukasi Berpengaruh terhadap Hasil Belajar Matematika. Jurnal Media dan Teknologi Pendidikan, 1(1), 38-47. DOI: https://doi.org/10.23887/jmt.v1i1.35521
Susilowati, S. A. (2019). Penerapan pendekatan keterampilan proses sains (KPS) untuk meningkatkan pemahaman konsep siswa pada pembelajaran IPA. Jurnal Elementaria Edukasia, 2(1), 34-45. DOI: https://doi.org/10.31949/jee.v2i1.1269
Tsai, Y. L., & Tsai, C. C. (2020). A meta‐analysis of research on digital game‐based science learning. Journal of Computer Assisted Learning, 36(3), 280-294. DOI: https://doi.org/10.1111/jcal.12430
Yu, J., Denham, A. R., & Searight, E. (2022). A systematic review of augmented reality game-based Learning in STEM education. Educational technology research and development, 70(4), 1169-1194. DOI: https://doi.org/10.1007/s11423-022-10122-y
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