THE INFLUENCE OF COMPUTER-BASED INTERACTIVE MEDIA AND STUDENTS' CRITICAL THINKING SKILLS ON LEARNING OUTCOMES OF PHYSICS MATERIAL ELASTICITY OF CLASS XI IPA STUDENTS AT SMA PAKUSARI
DOI:
https://doi.org/10.31537/jeti.v5i2.914Keywords:
Computer Based Interactive Media, Critical Thinking Ability, , Learning OutcomesAbstract
The influence of computer-based interactive media has an influence on critical thinking skills and learning outcomes of physics material Elasticity. Respondents of this study were students of class XI IPA SMAN Pakusari, With a total of 76 students in Class XI IPA 4 with computer-based interactive learning with the MS team application in the 2020 school year, the research area was determined using the purpuse sampling area method. This research is a quantitative research with causal quantitative design. Data collection tools using observation, interviews, documentation and tests. Test Analysis of the instrument using: 1) normality test 2) homogeneity test. Data analysis used multiple linear regression using the product moment. Based on the hypothesis test, it is proven that: (1) the results of the 1-Sample Kolmogorov Smirnov analysis above, obtained the data sig = 0.088. Because the obtained sig > 0.05, then H0 is accepted, Ha is rejected. That is, the experimental class = control class.2). Based on the "Paired Sample Correlation" table above, the correlation value is 0.209 with a significance of 0.220. Because the significance value is > 0.05, it can be said that there is no relationship between the pretest variable and the posttest variable. Based on the table "Paired Sample t-test", it was found that the significance value (2-tailed) was 0.00. Because the significance value is <0.05, then H0 is rejected and Ha is accepted. So it can be said that there is an average difference between the pretest and posttest scores, which means that the use of Ms. Teams can improve student learning outcomes and critical thinking skills on physics material
References
Cheong, (2000), The Power of Questioning. San Francisco: Synergy Learning International, Inc.
Dahar, R.W. (1990), Teori-teori belajar. Jakarta: Erlangga.
Ennis. (1995). Critical Thinking (ROBERT H. ENNIS).pdf. New York: New York Times Compeny.
Esler dan Esler, (1993), Teaching Elementary Science, sixth edition. California: Wadsworth Publishing Company Belmont.
Exline, (2004), Workshop: Inquiry-based Learning, http://www. thirteen. org/ edonline/ concept2class/ inquiry/ index_sub2. html
Ford, N., Wilson, T. D., Foster, A., Ellis, D., & Spink, A. (2002). Information seeking and mediated searching: Part 4. Cognitive styles in information seeking. Journal of the American Society for Information Science and Technology, 53(9), 728–735. https://doi.org/10.1002/asi.10084
HALFFTER, G., Zikán, W., Wygodzinsky, P., Castillo, C., Boucher, S., Salazar, K., … Postal, A. (2003). Undang Undang Republik Indonesia Nomor 20 tahun 2003 tentang sistem pendidikan. The Coleopterists Bulletin, 1(1), 1–11. Retrieved from http://dx.doi.org/10.1016/j.cretres.2011.11.017%0Ahttp://www.conabio.gob.mx%0Awww.unal.edu.co/icn/publicaciones/caldasia.htm%0Ahttps://pdfs.semanticscholar.org/9bb8/973866467bf10fef937356ac16349c35874b.pdf?_ga=2.109558917.1250767975.1574828256-287221478.1
Haladyna, T. M. (2000), Writing Test Items to Evaluated Higher Order Thinking. Boston: Allyn & Bacon A Viacom Company.
Hasan, H., dkk, (2004), Pedoman Penulisan Karya Ilmiah. Bandung: Universitas Pendidikan Indonesia.
Howe, et.al. (1989), Teaching Critical Thinking Though Environmental Education, Http://ericae.net/edo/ED324193.htm.
Lestari, S. L. (2014). Analisis Konsepsi dan Perubahan Konsep suhu dan Kalor pada Siswa SMA Kelas Unggulan. Unnes Physics Education Journal, 3(3), 77–83.
Mar’atus Sholihah, Sugeng Utaya, dkk (Universitas N. M. (2016). Pengaruh Model Experiential Learning Terhadap Kemampuan Berpikir Siswa Sma. Jurnal Pendidikan, 2096–2100. Retrieved from http://journal.um.ac.id/index.php/jptpp/article/view/7869
Mawaddah, N., Suyitno, H., & Kartono. (2015). Model Pembelajaran Discovery Learning dengan Pendekatan Metakognitif Untuk Meningkatkan Metakognisi. Unnes Journal of Mathematics Education Research, 4(1), 10–17.
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. https://doi.org/p-ISSN 2252-6404 e-ISSN 2502-4515
Pramusinta, Y., Setyosari, P., & Kuswandi, D. (2019). Exploring Metacognitive and Critical Thinking Skills of Pre-Service Elementary School Teachers through Discovery Learning Method by Integrating Various Cognitive Styles. Journal for the Education of Gifted Young, (December), 999–1017.
Priawasana, E., & Waris, W. (2019). Peningkatan Kemampuan Berfikir Kritis Dengan Pendekatan Problem Based Learning. Madrosatuna: Journal of Islamic Elementary School, 3(1), 49. https://doi.org/10.21070/madrosatuna.v3i1.1975
Zhang, L. (2018). “Hands-on” plus “inquiry”? Effects of withholding answers coupled with physical manipulations on students’ learning of energy-related science concepts. Learning and Instruction, (December 2017), 0–1. https://doi.org/10.1016/j.learninstruc.2018.01.001
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