Development of Student Worksheet on Fluid Material by Integrating Guided Inquiry Model to Promote Students' Science Process Skills

Authors

  • Chintya Larayesa Satria Padang State University Author
  • Asrizal Department of Physics, Padang State University, Jl. Prof. Dr. Hamka Air Tawar Padang 25131 Author
  • Yurnetti Department of Physics, Padang State University, Jl. Prof. Dr. Hamka Air Tawar Padang 25131 Author
  • Hidayati Department of Physics, Padang State University, Jl. Prof. Dr. Hamka Air Tawar Padang 25131 Author

DOI:

https://doi.org/10.24036/jppf.v11i1.8

Keywords:

Students Worksheep, Guided Inquiry, Science Process Skills, Fluid

Abstract

The teaching materials used by schools experience a lack of quality teaching materials or are not available at all. The standard of teaching materials that do not meet student requirements causes them to be unable to accommodate various levels of student ability, including in training student skills. In the era of competency-based curriculum, teaching materials should be capable of supporting the enhancement of student skills. The focus of this problem is a cause of weak science process skills amongs students. This study purpose to produce a Guided Inquiry Student Worksheet (SWS) Model to Develop Science Process Skills in Fluid Material for Class XI / Phase F that is valid and practical. The research approach is Research and Development (R&D) using 4D. Research is limited to the practicality stage in small group tests. The instruments used are validation questionnaires and practicality questionnaires. The data source obtained from the validation results by 3 experts. The practicality data source obtained from teachers and students of class X SMAN 16 Padang. The data analysis technique to analyze the level of validity of Students Worksheet (SWS) uses a Likert scale with the Aiken's V formula and analyzes the practicality of Students Worksheet (SWS) using a statistical analysis formula. The validation results of the Guided Inquiry model students worksheet obtained a value of 0.87 in the very valid category. The teacher's practicality score of 99% places it in the very practical category, while the student’s score of 90% also falls within this category.

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References

Ahmad, T. P. (2024). Perencanakan pembelajaran bermakna dan asesmen kurikulum merdeka. Jurnal Ilmiah Pedagogy, 20(1), 75–94.

Anggraini, R., Wahyuni, S., & Lesmono, A. D. (2016). Pengembangan Lembar Kerja Siswa (Lks) Berbasis Keterampilan Proses Di Sman 4 Jember 1). Jurnal Pembelajaran Fisika, 4(4), 350–356.

Ariani, D., & Meutiawati, I. (2019). Jurnal Phi Pengembangan Lembar Kerja Peserta Didik ( LKPD ) berbasis discovery learning pada materi. 5(1), 14–20.

Asrizal, A., & Dewi, W. S. (2018). A Development Assistance of Integrated Science Instructional Material by Integrating Real World Context and Scientific Literacy on Science Teachers. Pelita Eksakta, 1(02), 113-12.

Asrizal, A., Festiyed, F., & Sumarmin, R. (2017). Analisis Kebutuhan Pengembangan Bahan Ajar Ipa Terpadu Bermuatan Literasi Era Digital Untuk Pembelajaran Siswa Smp Kelas Viii. Jurnal Eksakta Pendidikan (Jep), 1(1), 1-8.

Aydin, A. (2013). Representation of Science Process Skills in the Chemistry Curricula for Grades 10, 11 and 12 / Turkey. International Journal of Education and Practice, 1(5), 51–63.

Citra, N., Masriani, M., Hadi, L., Sarti, R. P., & Ulfah, M. (2021). Pengembangan Lembar Kerja Peserta Didik Berbasis Keterampilan Proses Sains pada Materi Larutan Eleketrolit dan Nonelektrolit. Jurnal Eksakta Pendidikan (Jep), 5(2), 142–148.

Darmaji, D., Kurniawan, D. A., Parasdila, H., & Irdianti, I. (2018). Deskripsi Keterampilan Proses Sains Mahasiswa pada Materi Termodinamika. Berkala Ilmiah Pendidikan Fisika, 6(3), 345-353.

Depdiknas. (2008). Panduan Pengembangan Bahan Ajar. Depdiknas.

Hernawan, A. H., Permasih, & Dewi, L. (2008). Panduan Pengembangan Bahan Ajar. Depdiknas Jakarta, 1–13.

Janbuala, S., Dhirapongse, S., Issaramanorose, N., & Iembua, M. (2013). A Study of Using Instructional Media to Enhance Scientific Process Skill for Young Children in Child Development Centers in Northeastern Area. International Forum of Teaching and Studies, 9(2), 41-47.

Kurnianto, I., Ismaya, E. A., & Pratiwi, I. A. (2024). Pengaruh Model Problem Based Learning Berbantuan Media Rimba terhadap Kemampuan Berpikir Kritis Siswa Sekolah Dasar. Jurnal Basicedu, 8(4), 2647–2659.

Lesmono, A. D., Supeno, & Riani, T. (2012). Penerapan pendekatan keterampilan proses sains dengan model pembelajaran inkuiri terbimbing dalam pembelajaran fisika di SMA. Jurnal Pendidikan Fisika, 1(1), 119–124.

Mazzola, S., Palestrini, C., Cannas, S., Fè, E., Bagnato, G. L., Vigo, D., Frank, D., & Minero, M. (2016). Research Article. 2(2), 155–164.

Murdani, E. (2020). Hakikat Fisika Dan Keterampilan Proses Sains. Jurnal Filsafat Indonesia, 3(3), 72–80.

Murni, S. (2020). Penerapan Model Pembelajaran Inkuiri Terbimbing untuk Meningkatkan Hasil Belajar Fisika dan Kemampuan Berpikir Kritis Peserta Didik. Journal of Classroom Action Research, 2(1), 57–62.

Ningtiyas, F. A. (2019). Implementasi Model Pembelajaran Inkuiri Terbimbing untuk Melatihkan Keterampilan Proses Sains pada Materi Kesetimbangan Kimia. JCER (Journal of Chemistry Education Research), 3(1), 9.

Nugraha, A. J., Suyitno, H., & Susilaningsih, E. (2017). Analisis kemampuan berpikir kritis ditinjau dari keterampilan proses sains dan motivasi belajar melalui model PBL. Journal of Primary Education, 6(1), 35–43.

Pratama, N. S., & Istiyono, E. (2015). Studi Pelaksanaan Pembelajaran Fisika Berbasis Higher Order Thinking (HOTS) Pada Kelas X di SMA Negeri Kota Yogyakarta. Prosiding Seminar Nasional Fisika Dan Pendidikan Fisika, 6(1), 104–112.

Purwanto. (2009). Evaluasi Hasil Belajar. Pustaka Belajar.

Putri, Y. S., & Rosy, B. (2020). Pengembangan Kemampuan Interaktif dan Reaktif Siswa Dengan Metode Pembelajaran Sosiodrama. Jurnal Pendidikan Administrasi Perkantoran (JPAP), 8(2), 273–284.

Rohman, M., & Muttaqin, A. (2022). Efektivitas Scientific Approach terhadap Materi PAI pada Merdeka Belajar. SINDA: Comprehensive Journal of Islamic Social Studies, 2(1), 74–80.

Ulumudin, I., Mahdiansyah, & Joko, B. S. (2017). Kelengkapan dan Kelayakan Buku Teks Kurikulum 2013.

Wismaningati, P., Nuswowati, M., Sulistyaningsih, T., & Eisdiantoro, S. (2019). Analisis Keterampilan Proses Sains Materi Koloid Melalui Pembelajaran Berbasis Proyek Bervisi SETS. Jurnal Inovasi Pendidikan Kimia, 13(1), 2287 – 2294.

Yazidi, A. (2020). Memahami Model-Model Pembelajaran Dalam Kurikulum 2013. Jurnal Bahasa, Sastra Dan Pembelajarannya, 4(1), 89.

Yohanes Boli Tematan, & Oktavius Y.T Mago. (2021). Pengembangan LKPD Berbasis Keterampilan Proses Pada Materi Klasifikasi Tumbuhan Untuk Melatihkan Keterampilan Proses Sains Siswa Kelas X SMAS Katolik St. Gabriel Maumere. Jurnal Pendidikan Mipa, 11(2), 181–185.

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Published

2025-03-26

How to Cite

Development of Student Worksheet on Fluid Material by Integrating Guided Inquiry Model to Promote Students’ Science Process Skills. (2025). Jurnal Penelitian Pembelajaran Fisika, 11(1), 12-23. https://doi.org/10.24036/jppf.v11i1.8

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