Interactive Multimedia Development Assisted by I Spring Suite 10 Integrated SETS (Science, Environment, Technology, Society) Approach to Improve High School Students' Critical Thinking Skill
Abstract
The aim of this research is to develop interactive multimedia assisted by Ispring suite 10 integrated with the SETS approach that is valid, practical and effective in order to advance high school students' critical thinking skills. This type of research is research and development (R&D) using the ADDIE development model. The participants were class XI students. Science at SMAN 2 Padang. The research results show: 1) Validation of interactive multimedia reaches very valid criteria; 2) The practicality of interactive multimedia is determined through learning implementation of 89.74% with practical criteria and student response questionnaires of 87.40% with practical criteria; 3) Interactive multimedia assisted by Ispring Suite 10's integrated SETS approach can increase critical thinking capabilities effectively. The novelty of this research is that teachers can apply interactive multimedia assisted by Ispring suite 10 integrated SETS approach as one way to improve students' critical thinking skills.
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Ananda, P. N., & Usmeldi. (2023). Validity and practicality of e-module model inquiry based online learning to improve student competence. Jurnal Penelitian Pendidikan IPA, 9(4). https://doi.org/10.29303/jppipa.v9i4.3563
Aouaf, S. (2023). Perceived barriers to critical thinking development: the student’s view. International Journal of Linguistics, Literature and Translation, February, 63–69. https://doi.org/10.32996/ijllt
Bean, J. C., & Melzer, D. (2021). Engaging ideas: The professor’s guide to integrating writting, critical thingking, and active learning in the classroom. Jossey-Bass.
Cahyanto, B., & Afifulloh, M. (2020). Electronic module (e-modul) berbasis component display theory (cdt) untuk mata kuliah pembelajaran terpadu. JINOTEP (Jurnal Inovasi Teknologi Pembelajaran), 7(1), 49–56. https://doi.org/10.17977/um031v7i12020p049
Cahyanto, Bagus, Akbar, S., & Sa, C. (2018). Desain fisik kelas berbasis tema untuk Sekolah Dasar. Jurnal Pendidikan: Teori, Penelitian, dan Pengembangan, 3(1), 15–20. https://doi.org/10.17977/jptpp.v3i1.10354
Darmaji, Kuriawan, D. A., & Suryani, A. (20219). Effectiveness of basic physics ii practicum guidelines based on science process skill. JIPF (Jurnal Ilmu Pendidikan Fisik), 4(1), 1–7. https://doi.org/10.26737/jipf.v4i1.693
Desmiwati, R., Ratnawulan, & Yulkifli. (2017). Validitas LKPD Fisika SMA menggunakan model problem based learning berbasis teknolgi digital. Jurnal Eksata Pendidikan (JEP), 1(1), 33–38.
Diana, P., Luit, V., & Johannes, E. H. (2017). The effects of digital learning material on students ’ mathematics learning in vocational education. Cogent Education, 4(1), 1–10. https://doi.org/10.1080/2331186X.2017.1313581
Evimalinda, R., & Situmorang, E. L. (2022). The role of christian religious education teachers in building student’s 6 skills in the era 4.0. Advances in Social Science, Education and Humanities Reseach, 669, 192–196. https://doi.org/https://doi.org/10.2991/assehr.k.220702.044
Fathimah, N. S., & Ishartiwi. (2018). Pengembangan multimedia permainan interaktif pembelajaran berhitung bagi anak diskalkulia usia prasekolah. Jurnal Inovasi Teknlogi Pendidikan, 5(2), 115–128. https://doi.org/10.21831/jitp.v5i2.15541
Firdaus, F. Z., Suryanti, & Azizah, U. (2020). Pengembangan multimedia interaktif berbasis pendekatan sets untuk meningkatkan kemampuan berpikir kritis siswa Sekolah Dasar. Jurnal Basicedu, 4(3), 681–689. https://doi.org/10.31004/basicedu.v4i3.417
Hirschman, K., & Wood, B. E. (2018). 21st century learners: changing conceptions of knowledge, learning and the child. New Zealand Annual Review of Education, 23(June), 20–35. https://doi.org/10.26686/nzaroe.v23i0.5280
Idzhar, A. (2016). Peranan guru dalam meningkatkan motivasi belajar siswa. Jurnal Office, 2(2), 222–228.
Irma, Meriyati, & Irwandani. (2021). Model pembelajaran discovery based unity of science ( dbus ) dengan pendekatan sets : pengaruh terhadap kemampuan berpikir kritis pada masa pandemi COVID-19. U-Teach: Journal Education of Young Physics Teacher, 2(1), 29–35. https://doi.org/10.30599/uteach.v2i1.36
Izza, A. Z., Falah, M., & Susilawati, S. (2020). The effects of digital learning material on students’ mathematics learning in vocational education. Konferensi Ilmiah Pendidikan Universitas Pekalongan, 11–15.
Khoir, H. M., Murtingugraha, R. E., & Musalamah, S. (2020). Pengembangan media pembelajaran e-learning berbasis moodle pada mata kuliah metodologi penelitian. Jurnal Pendidikan Teknik Sipil (JPenSil), 9(1), 1–7. https://doi.org/10.21009/jpensil.v9i1.13453
Latifah, S. (2014). Implementasi pembelajaran bervisi SETS di sekolah sri. Jurnal Ilmiah Pendidikan Fisika Al-Biruni, 3(1), 1–12.
Majid, A. (2014). Strategi pembelajaran. Remaja Rosdakarya.
Makahinda, T., & Mawuntu, V. J. (2023). Development of thermodynamics learning with empirical approach and portfolio assessment techniques. Studies in Learning and Teaching (SiLeT), 4(2), 285–295.
Mardhiyah, R. H., Aldriani, S. N. F., Chitta, F., & Zuldikar, M. R. (2021). Pentingnya keterampilan belajar di ababd 21 senagai tuntutan dalam pengembangan sumber daya manusia. Lectura: Jurnal Pendidikan, 12(1), 30–40. https://doi.org/10.31849/lectura.v12i1.5813
Nganga, L. (2019). Preservice teachers’ perceptions and preparedness to teach for global mindedness and social justice using collaboration, critical thingkin, creativity and communication (3cs). Journal of Social Studies Education Research, 10(4), 26–57.
Novisya, D., & Desnita. (2020). Penilaian instrumen efektifitas video pembelajaran fisika berbasis contextual teaching and learning (CTL) materi fluida. Jurnal Inovasi dan Pembelajaran Fisika, 7(2), 129–139.
OECD. (2022). PISA 2022 mathematics framework. OECD. https://pisa2022-maths.oecd.org/files/PISA%202022%20Mathematics%20Framework%20Draft.pdf
Pramuji, L., Permanasari, A., & Ardianto, D. (2018). Multimedia interaktif berbasis STEM pada kosnep pencemaran lingkungan untuk meningkatkan kemampuan berpikir kritis siswa. Jurnal of Science Education and Practice, 2(1), 1–15. https://doi.org/10.33751/jsep.v2i1.1699
Putri, S. R., & Syafriani. (2022). Pengembangan e-modul fisika berbasis SETS (Science, Environment, Techonogy, Society) untuk meningkatkan kemampuan berpikir kritis peserta didik SMA/MA. Jurnal Penelitian dan Pembelajaran Fisika, 8(2), 142–151. https://doi.org/10.24036/jppf.v8i2.119361
Putriani, J. D., & Hudaidah. (2021). Penerapan pendidikan Indonesia di era revolusi insdustri 4.0. Edukatif: Jurnal Ilmu Pendidikan, 3(3), 831–838.
Qistina, M., Alpusari, M., Noviana, E., & Hermita, N. (2019). Pengembangan multimedia interaktif mata pelajaran IPA kelas IVC SD Negeri 34 Taraibangun Kabupaten Kampar. Primary: Jurnal Pendidikan Guru Sekolah Dasar, 8(2), 160–172. https://doi.org/10.33578/jpfkip.v8i2.7649
Setiawan, I., Ibrahim, Isnaini, Anugrah, M., Aslamiah, M., & Nurhayati. (2021). Peran pasar digital di era pandemi pada wirausaha muda di Banyumulek. Jurnal Pengabdian Meagister Pendidikan IPA, 4(4), 440–447. https://doi.org/10.29303/jpmpi.v3i2.1161
Simanjuntak, B. R., Desnita, & Budi, E. (2018). The development of web-based instructional media for teaching wave physics an andrid mobile. JPPPF (Jurnal Penelitian Dan Pengembangan Pendidikan Fisika), 4(1), 1–10. https://doi.org/10.21009/1.04101
Soeharto, Csapó, B., Sarimanah, E., Dewi, F. I., & Sabri, T. (2019). A review of students’ common misconceptions in science and their diagnostic assessment tools. Jurnal Pendidikan IPA Indonesia, 8(2), 247–266. https://doi.org/10.15294/jpii.v8i2.18649
Suanrti, T., Amiruddin, M. Z. B., Wasis, Setyarsih, W., Jauhariyah, M. N. R., & Zainuddin, A. (2023). Discussion of learning: Implementation and effect on critical thingking skill of students in general physics courses. Studies in Learning and Teaching (SiLet), 4(2), 260–272.
Widyatmojo, G., & Muhtadi, A. (2017). Pengembangan multimedia pembelajaran interaktif berbentuk game untuk menstimulasi aspek kognitif dan bahasa anak TK. Jurnal Inovasi Teknologi Pendidikan, 4(1), 38–49. https://doi.org/10.21831/jitp.v4i1.10194
Wilson, M. C., & Wilson, M. C. (2018). Crowdsourcing and self-instruction: Turning the production of teaching materials into a learning objective of teaching materials into a learning objective. Journal of Political Science Education, 0(0), 1–9. https://doi.org/10.1080/15512169.2017.1415813
Yulianti, Y., Lestari, H., & Rahmawanti, I. (2022). Penerapan model pembelajaran radec terhadap peningkatan kemampuan berfikir kritis siswa. Jurnal Cakrawala Pendas, 8(1), 47–56. https://doi.org/10.31949/jcp.v8i1.1915
Yulkifli, Risma, M., Festiyed, F., & Azis, H. (2023). Validity of e-module integrated scientific literacy using the smartphone-assisted IBL model to improve student competence Validity of e-module integrated scientific literacy using the smartphone-assisted IBL model to improve student competence. 5th International Conference on Research and Learning of Physics (ICRLP 2022), 1–7. https://doi.org/10.1088/1742-6596/2582/1/012051
Yusliani, E., & Desnita. (2022). Validity and reliability of critical thinking instruments to measure the effectiveness of context-based physics e- module on wave materials. JPPPF (Jurnal Penelitian dan Pengembangan Pendidikan Fisika), 8(1), 57–64. https://doi.org/10.21009/1.08106
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