Development of Solid Elasticity Modules with Guided Inquiry Model to Train Critical Thinking Skills
DOI:
https://doi.org/10.37891/kpej.v4i1.213Keywords:
Critical thinking skills, guided inquiry, moduleAbstract
Currently, few physics modules train critical thinking skills on the elasticity of solids. Therefore, a solid elasticity module was developed with a guided inquiry model to improve students' critical thinking skills. This research aims to produce a valid, practical, and effective learning module so that it is suitable for use in training students' critical thinking skills. This research is research & development with a design of the Dick and Carrey model. The subject of the pilot study was class XI IPA with 31 students in one of the public high schools in the city of Banjarmasin. The learning outcomes modules and tests developed were validated by 2 (two) academic validators and 1 (one) practitioner through a validation sheet. The practicality of this module is measured through the implementation of the Lesson Plan (RPP) by 3 (three) observers. The effectiveness of this module is measured using a learning outcome test that includes critical thinking skills, which are then analyzed using the N-gain equation. The results showed that: 1) the validity of the module obtained a score of 3.7, which was categorized as very valid, 2) the practicality of the module based on the lesson plan implementation sheet obtained a score of 3.5, which was categorized as very practical, 3) the effectiveness of the module based on the results of the learning test obtained an n-gain score of 0.66 with medium category critical thinking skills. It is concluded that the module of the solidity elasticity of the guided inquiry model is feasible to train students' critical thinking skills.References
Adnyana, G. P. (2012). Keterampilan berpikir kritis dan pemahaman konsep siswa pada model siklus belajar hipotetis deduktif. Jurnal Pendidikan Dan Pengajaran, 45(3).
Agnafia, D. N. (2019). Analisis kemampuan berpikir kritis siswa dalam pembelajaran biologi. E-Journal Universitas PGRI Madiun (Persatuan Guru Republik Indonesia, 6(1).
Aji, S. D., Hudha, M. N., & Rismawati, A. (2017). Pengembangan Modul Pembelajaran Fisika Berbasis Problem Based Learning untuk Meningkatkan Kemampuan Pemecahan Masalah Fisika. SEJ (Science Education Journal, 1(1), 36–51. https://doi.org/10.21070/sej.v1i1.830.
Akker, S. V. D. (1999). Design approachs and tools in education and training. Kluwer Academic Publisher.
Amijaya, L. N., Ramdani, A., & Merta, I. W. (2018). Pengaruh model pembelajaran inkuiri terbimbing terhadap hasil belajar dan kemampuan berpikir kritis peserta didik. Jurnal Pijar MIPA, 13(2), 94–99.
Ardi, A., Nyeneng, I. D. P., & Ertikanto, C. (2015). Pengembangan Modul Inkuiri Terbimbing Pada Materi Pokok Suhu dan Kalor. Jurnal Pembelajaran Fisika Unila, 3(3), 62–72.
Arends, R. I. (2012). Learning to teach (9th Editio). The McGraw-Hill Companies, Inc.
Arifuddin, M., Aslamiah, M., Misbah, M., & Dewantara, D. (2020). The implementation of guided inquiry model on the subject matter harmonious vibration. Journal of Physics: Conference Series (Vol. 1422, No. 1, p. 012001). IOP Publishing. https://doi.org/10.1088/1742-6596/1422/1/012001
Arikunto, S. (2013). Prosedur Penelitian. Rineka Cipta.
Daryanto, D., & Dwicahyono, A. (2014). Pengembangan perangkat pembelajaran. Gava Media.
Hake, R. R. (1998). Interactive-engagement versus traditional methods: a six-thousand-student survey of mechanics tes data for introducting physics course am. J. Physics. American Association of Physics Teachers, 66(1), 64–74.
Handriani, L., Harjono, A., & Doyan, A. (2015). Pengaruh model pembelajaran inkuiri terstruktur dengan pendekatan saintifik terhadap kemampuan berpikir kritis dan hasil belajar fisika siswa. Jurnal Pendidikan Fisika Dan Teknologi, 1(3), 210–218.
Hartini, S., Mariani, I., Misbah, M., & Sulaeman, N. F. (2020). Developing of students worksheets through STEM approach to train critical thinking skills. Journal of Physics: Conference Series, 1567(4), 42029.
Haryandi, S., Misbah, M., Mastuang, M., Dewantara, D., & Mahtari, S. (2019). Analysis of students’ critical thinking skills on solid material elasticity. Kasuari: Physics Education Journal (KPEJ, 2(2), 89–94.
Hayudiyani, M. (2017). IDENTIFIKASI KEMAMPUAN BERPIKIR KRITIS SISWA KELAS X TKJ Key words : early ability , ability think critically , critical thinking of Facione , subnetting Indonesia terdapat Sekolah Menengah. Jurnal Ilmiah Edutic, 4(2), 22.
Kristanto, Y. E., & Susilo, H. (2016). Pengaruh model pembelajaran inkuiri terbimbing terhadap kemampuan berpikir kritis dan hasil belajar IPA siswa kelas VII SMP. Jurnal Pendidikan Dan Pembelajaran (JPP, 22(2), 197–208.
Kuzaimah, S., Wati, M., & Hartini, S. (2016). Pengembangan lembar kerja siswa (LKS) dan media penunjang untuk mengaktifkan keterampilan berpikir kritis. Berkala Ilmiah Pendidikan Fisika, 2(2), 89–96. https://doi.org/. http://dx.doi.org/10.20527/bipf.v2i2.838
Misbah, M, Mahtari, S., Wati, M., & Harto, M. (2018). Analysis of students’ critical thinking skills in dynamic electrical material. Kasuari: Physics Education Journal (KPEJ, 1(2), 103–110.
Misbah, Misbah, Dewantara, D., Hasan, S. M., & Annur, S. (2018). The Development of Student Worksheet By Using Guided Inquiry Learning Model To Train Student’S Scientific Attitude. Unnes Science Education Journal, 7(1), 19–26. https://doi.org/10.15294/USEJ.V7I1.15799
Mukarram, A. A. M., Hartini, S., & Wati, M. (2014). Pengembangan Lembar Kegiatan Siswa (LKS) Dan Mediapembelajaran IPA SMP Berbasis Keterampilan Berpikir Kritis. Berkala Ilmiah Pendidikan Fisika, 2(3), 253–264.
Nafrianti, N., Supardi, Z. I., & Erman, E. (2016). Pengembangan Perangkat Pembelajaran Inkuiri Terbimbing Berbantuan Phet Pada Materi Listrik Dinamis Untuk Meningkatkan Keterampilan Berpikir Kritis Siswa. JPPS (Jurnal Penelitian Pendidikan Sains), 6(1).
Nainggolan, B., & O. (2018). Pengembangan Bahan Ajar Berbasis Inkuiri Terbimbing Untuk Melatihkan Keterampilan Berpikir Kritis Peserta Didik SMA/MA. Skripsi.Tidak Dipublikasikan.
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.
Nur’Azizah, H., Jayadinata, A. K., & Gusrayani, D. (2016). Pengaruh model pembelajaran inkuiri terbimbing terhadap kemampuan berpikir kritis siswa pada materi energi bunyi. Jurnal Pena Ilmiah, 1(1), 51–60.
Oktaviana, D., Hartini, S., & Misbah, M. (2017). Pengembangan modul fisika berintegrasi kearifan lokal membuat minyak lala untuk melatih karakter sanggam. Berkala Ilmiah Pendidikan Fisika, 5(3), 272. https://doi.org/10.20527/bipf.v5i3.3894
Purwati, R., Hobri, H., & Fatahillah, A. (2016). Analisis Kemampuan Berpikir Kritis Siswa Dalam Menyelesaikan Masalah Persamaan Kuadrat Pada Pembelajara Model Creative Problem Solving. KadikmA, 7(1), 84–93.
Rahmah, L. A. (2018). Pengembangan Modul Fisika Materi Getaran Harmonis Bermuatan Authentic Learning untuk Melatih Kemampuan Pemecahan Masalah. In Universitas Lambung Mangkurat. Tidak dipublikasikan.
Rahmayanti, P. R., Wati, M., & Mastuang, M. (2016). Pengembangan Modul Suhu dan Kalor Menggunakan Model Pembelajaran Kooperatif Tipe Somatic, Auditory, Visual, and Intellegent untuk Siswa Kelas X SMA Negeri 7 Banjarmasin. Berkala Ilmiah Pendidikan Fisika, 4(3), 192–200.
Redhana, I. W. (2012). Model pembelajaran berbasis masalah dan pertanyaan socratik untuk meningkatkan keterampilan berpikir kritis siswa. In Jurnal Cakrawala Pendidikan (p. 3).
Salam, A., Miriam, S., & Misbah, M. (2017). Pembelajaran fisika berbasis learner autonomy dengan metode pemecahan masalah pada topik gelombang. Jurnal Sains Dan Pendidikan Fisika, 13(3), 231–237.
Wartono, W, Diantoro, M., & Bartlolona, J. R. (2018). Influence of problem based learning model on student creative thinking on elasticity topics a material. Jurnal Pendidikan Fisika Indonesia, 14(1), 32–39.
Wartono, W, Alfroni, Y. F., Batlolona, J. R., & Mahapoonyanont, N. (2019). Inquiry-Scaffolding Learning Model: Its Effect on Critical Thinking Skills and Conceptual Understanding. Jurnal Ilmiah Pendidikan Fisika Al-Biruni, 8(2), 249–259. https://doi.org/10.24042/jipfalbiruni.v8i2.4214
Wartono, W, Hudha, M. N., & Batlolona, J. R. (2018). Guided inquiry and PSR in overcoming students’ misconception on the context of temperature and heat. AIP Conference Proceedings, 2014(September 2018). https://doi.org/10.1063/1.5054433
Widoyoko, E. P. (2016). Evaluasi program pembelajaran. Pustaka Pelajar.
Zainuddin, Z., Mastuang, M., Misbah, M., & Anissa, R. (2021). Efektivitas modul praktikum berbasis lingkungan lahan basah untuk melatih sikap ilmiah mahasiswa. JPFT (Jurnal Pendidikan Fisika Tadulako Online, 9(2).
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