Critical Thinking Analysis of 13-14 Years Old Students on Lens Refraction Material

Tanti Tanti, Darmaji Darmaji, Astalini Astalini, Dwi Agus Kurniawan, Lia Kartina

Abstract


This research aims to analyze HOTS-based science learning in terms of students' critical thinking skills. This research was conducted at SMPN 22 Jambi City using a mixed research method with explanatory design analysis. Two instruments were made in this research: the description test questions as an instrument for quantitative approach and interviews for qualitative approach. The research subjects consisted of 58 of 13-14 years old students selected using quota sampling. The tested topic was the lens refraction which consisted of 10 questions. Five indicators were tested; namely, the ability to provide basic explanation, basic support, interference, advanced clarification, and strategy and tactics. After analyzing students' answers, the average score for providing basic explanation was 3.31, building basic supports was 3.59, inferencing was 3.26, providing advanced explanation was 3.88, and utilizing strategies and tactics was 3.41. Students’ HOTS was high with the average scores in the 40-60 interval. Therefore, students’ critical thinking skills were sufficient, which affected students’ HOTS in science learning.

Keywords


Critical Thinking; HOTS; Natural Sciences

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References


Ariyana, Y., Pujiastuti, A., Bestary, R. & Zamroni. (2018). Buku pegangan pembelajaran berorieantasi pada keterampilan berpikir tingkat tinggi. Kementerian Pendidikan dan Kebudayaan.

Astalini, A., Kurniawan, D. A., Melsayanti, R., & Destianti, A. (2018). Sikap terhadap mata pelajaran IPA di SMP se-kabupaten Muaro Jambi. Lentera Pendidikan: Jurnal Ilmu Tarbiyah dan Keguruan, 21(2), 214-227. https://doi.org/10.24252/lp.2018v21n2i7

Astalini, A., Kurniawan, D. A., & Sumaryanti, S. (2018). Sikap siswa terhadap pelajaran fisika di SMAN Kabupaten Batanghari. JIPF (Jurnal Ilmu Pendidikan Fisika), 3(2), 59-64. https://doi.org/10.26737/jipf.v3i2.694

Fitri, S. G. S, Hendriyani, M. E., Sari, I. J. (2017). The development of biotechnology’s learning instruments oriented higher-order thinking and the utilization of natural resources tunda’s island potential, Jurnal Penelitian dan Pembelajaran IPA. 3(1), 41–52.

Hewi, L., & Shaleh, M. (2020). Penguatan peran lembaga PAUD untuk the programme for international student assesment. Jurnal Tunas Siliwangi, 6(2), 63–70.

Leest, B., & Wolbers, M. H. (2020). Critical thinking, creativity and study results as predictors of selection for and successful completion of excellence programmes in dutch higher education institutions programmes in dutch higher education institutions. European Journal of Higher Education, 1–15. https://doi.org/10.1080/21568235.2020.1850310

Lehavi, Y., & Eylon, B.-S. (2018). Integrating science education research and history and philosophy of science in developing an energy curriculum. Springer. https://doi.org/10.1007/978-3-319-62616-1_9

Lestari, D. A., Ariyanto, J., & Harlita, H. (2020). Perbandingan keterampilan berpikir kritis siswa dengan model problem-based learning dan numbered heads together berbasis student created case studies. Edusains, 12(1), 9–19. https://doi.org/10.15408/es.v12i1.12291

Lestari, R. P. (2014). Penerapan pendekatan keterampilan proses sains dalam model pembelajaran guided discovery pada materi suhu dan kalor terhadap hasil belajar siswa di SMAN 1 Sukomoro. Inovasi Pendidikan Fisika, 3(2), 60–64.

Melida, H. N., Sinaga, P., & Feranie, S. (2016). Implementasi strategi writing to learn untuk meningkatkan kemampuan kognitif dan keterampilan berpikir kritis siswa sma pada materi hukum newton. Jurnal Penelitian & Pengembangan Pendidikan Fisika, 2(2), 31–38.

Mislia, T. S., Indartono, S., & Mallisa, V. (2019). Improving critical thinking among junior high school students through assessment of higher-level thinking skills. Advances In Social Science, Education And Humanities Research, 323(1), 326–333.

Nofitasari, I., & Sihombing, Y. (2017). Deskripsi kesulitan belajar peserta didik dan faktor penyebabnya dalam memahami materi listrik dinamis kelas X SMA Negeri 2 Bengkayang. Jurnal Penelitian Fisika Dan Aplikasinya (JPFA), 7(1), 44-53. https://doi.org/10.26740/jpfa.v7n1.p44-53

Nurazizah, S., Sinaga, P., & Jauhari, A. (2017). Profil kemampuan kognitif dan keterampilan berpikir kritis siswa sma pada materi usaha dan energi. Jurnal Penelitian & Pengembangan Pendidikan Fisika, 3(2), 197–202.

Ozkan, Y. O., & Ozaslan, N. (2018). Student achievement in Turkey, according to question types used in PISA 2003-2012 mathematic literacy tests. International Journal Of Evaluation And Research In Education (IJERE), 7(1), 57-64. https://doi.org/10.11591/ijere.v7i1.11045

Padmanabha. (2018). Critical thinking: Conceptual framework. Review Papers, 11(4), 45–53.

Pradana, S. D. S., Parno, P., & Handayanto, S. K. (2017). Pengembangan tes kemampuan berpikir kritis pada materi optik geometri untuk mahasiswa fisika. Jurnal Penelitian dan Evaluasi Pendidikan, 21(1), 51-64. https://doi.org/10.21831/pep.v21i1.13139

Pratama, H., & Prastyaningrum, I. (2016). Pengaruh model pembelajaran project based learning berbantuan media pembelajaran pembangkit listrik tenaga mikrohidro terhadap kemampuan berpikir kritis. Jurnal Penelitian Fisika dan Aplikasinya, 6(2), 44–50.

Putri, R., & Ghufron, A. (2019). Efektivitas strategi the power of two terhadap kecakapan critical thinking siswa. Jurnal Kependidikan, 3(2), 194–206.

Rahayuni, G. (2016). Hubungan keterampilan berpikir kritis dan literasi sains pada pembelajaran IPA terpadu dengan model PBM dan STM. Jurnal Penelitian dan Pembelajaran IPA, 2(2), 131–146.

Ramdani, A., Jufri, A. W., & Setiadi, D. (2020). Kemampuan berpikir kritis dan penguasaan konsep dasar IPA peserta didik. Jurnal Penelitian Pendidikan IPA, 6(1), 119–124. https://doi.org/10.29303/jppipa.v6i1.388

Ritdamaya, D. & Suhandi, A. (2016). Konstruksi instrumen tes keterampilan berpikir kritis terkait materi suhu dan kalor. Jurnal Penelitian & Pengembangan Pendidikan Fisika 2(2), 87–96.

Sarwi, Rusilowati, A., & Khanafiyah, S. (2012). Implementasi model eksperimen gelombang open-inquiry untuk mengembangkan keterampilan. Jurnal Pendidikan Fisika Indonesia, 9 (1), 41–50.

Setyawan, F., Prasetyo, P. W., & Nurnugroho, B. A. (2020). Developing complex analysis textbook to enhance students’ critical thinking. Journal of Research and Advances in Mathematics Education. 5(1), 26–37. https://doi.org/10.23917/jramathedu.v5i1.8741

Sholihah, T. M., & Lastariwati, B. (2020). Problem based learning to increase competence of critical thinking and problem solving. Journal of Education and Learning (EduLearn), 14(1), 148–154. https://doi.org/10.11591/edulearn.v14i1.13772

Stupple, E. J. N., Maratos, F. A., Elander, J., Hunt, T. E., Cheung, K. Y. F., & Aubeeluck, A. V. (2017). Development of the critical thinking toolkit (critt): A measure of student attitudes and beliefs about critical thinking. Thinking Skills and Creativity, 23, 91–100. https://doi.org/10.1016/j.tsc.2016.11.007

Susana, E. S. H. (2015). Analisis didaktis berdasarkan kemampuan kognitif dan keterampilan berpikir kritis siswa pada materi kalor. 1(2), 39–44.

Thompson, C. (2011). Critical Thinking across the curriculum: Process over output. International Journal of Humanities and Social Science, 1(9), 1-7.

Wahyuni, A. S. A. (2015). Konsepsi dan miskonsepsi siswa, mahasiswa calon guru, dan guru pada topik cahaya dalam pembelajaran fisika. Jurnal Pendidikan Fisika, 6(3), 235–250.

Whalen, K., Paez, A., & Whalen, K. (2020). Student perceptions of reflection and the acquisition of higher-order thinking skills in a university sustainability course. Journal of Geography in Higher Education, 45(1), 1–20. https://doi.org/10.1080/03098265.2020.1804843




DOI: http://dx.doi.org/10.24042/jipfalbiruni.v10i1.7119

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