APPLICATION OF AUGMENTED REALITY THROUGH A SCIENTIFIC APPROACH TO STUDENTS' CRITICAL THINKING ABILITY

Lilis Lismaya, Agus Priyanto, Putri Ayu

Abstract


This research is motivated by the lack of learning media that can facilitate students' critical thinking skills in learning during the covid-19 pandemic. Critical thinking ability is a very important competency to be developed through a scientific approach. This ability is indispensable in everyday life. The purpose of this study was to analyze the effect of students' critical thinking skills through the application of Augmented Reality through a scientific approach. The method used in this research is Quasi Experimental with pretest-posttest control group design. The population in this study were students of class XI science at SMA Negeri 1 Cigugur which consisted of 3 science classes with a total of 78 students. The samples used in this study were two classes, namely class XI IPA 1 and XI IPA 3. The sampling technique used was purposive sampling. The instruments used are description tests, observation sheets and student response questionnaires to the application of augmented reality through a scientific approach. Based on the results of analysis and calculations with hypothesis testing, the results obtained are H1 is accepted and Ho is rejected, meaning that there is an increase in students' critical thinking skills by applying Augmented Reality through a scientific approach.
Keywords: Augmented Reality; scientific approach; critical thinking.

 


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Apriyani, L., Nurlaelah, I., Setiawati, I. (2017). Penerapan model PBL untuk meningkatkan keterampilan berpikir kritis ditinjau dari kemampuan akademik siswa pada materi biologi. Jurnal Pendidikan dan Biologi. Quangga, 9(1), 41-54.

Bower, M., Howe, C., Mccredie, N., Robinson, A., Grover, D. (2014). Augmented Reality in education-cases, places and potentials. Journal Educational Media International.

Bunt, B., & Gouws, G. (2020). Using an artificial life simulation to enhance reflective critical thinking among student teachers. Smart Learning Environments, 7(1).

Chen, C. P., & Wang, C. H. (2015). Employing Augmented-Reality-embedded instruction to disperse the imparities of individual differences in earth science learning. Journal of Science Education and Technology, 24(6), 835–847. Diunduh dari https://doi.org/10.1007/S10956- 015-9567-3

Daheri, M., & Warsah, I. (2019). Akhlak: relasi antara sekolah dan keluarga. At-Turats: Jurnal Pemikiran Pendidikan Islam, 13, 3-20.

Davud Gul, M., & Akcay, H. (2020). Structuring a new Socioscientific Issues (SSI) based instruction model: Impacts on pre-service science teachers’ (psts) critical thinking skills and dispositions. International Journal of Research Ineducation and Science, 6(1), 141-159.

Deshpande, A., Kim, I. (2018). The effects of augmented reality on improving spatial problem solving for object assembly. Advanced Engineering and Informatics, 38(2), 769-775.

Ennis, R. H. (2011). The nature of critical thinking: an outline of critical thinking disposition and abilities. University of Illinois. Online at http://faculty.education.illinois.edu/rhennis/document/thenatureofcriticalthinking_51711 000.pdf

Fernanda, A., Haryani, S., Prasetya, T.A., Hilmi, M. (2019). Analisis kemampuan berpikir kritis siswa kelas XI pada materi laurutan penyangga dengan model pembelajaran predict observe explain. Jurnal Inovasi Pendidikan Kimia, 13(1).

Gilang, Y.P (2018). Analisis Penggunaan Media Augmented Reality Sebagai Media Pembelajaran Terhadap Motivasi Siswa Pada Konsep Bentuk Molekul. Skripsi. Universitas Islam Negeri Syarif Hidayatullah Jakarta.

Hayati, L., Loka, N, Anwar, Y.A.S. (2019). Pengaruh model pembelajaran inkuiri terbimbing dengan metode pembelajaran terpadu kemampuan berpikir kritis. Chemistry Education Practice.

Izzudin, A. (2019).Efektivitas pendekatan saintifik terhadap kemampuan berpikir kritis siswa dalam pembelajaran Ipa kelas V MI NW Begik Nyala. Jurnal Al-Muta’aliyah STAI Darul Kamal NW Kembang Kerang,4(1). http://ejournal.kopertais.or.id/sasambo/index.php/mutaaliyah

Liana, D. (2020). Berpikiran kritis melalui pendekatan saintifik. J.Mitra PGMI.

Lismaya, L. (2017). Pengaruh model pembelajaran berbasis masalah terhadap kemampuan berpikir kritis mahasiswa pada konsep spesiasi. Quagga Jurnal Pendidikan dan Biologi, 9(1), 73-80.

Lismaya, L. (2019). Berpikir Kritis dan PBL. Surabaya: Media Sahabat Cendekia.

Lismaya, L. (2021). Analysis of students’ critical thinking skill through online learning assisted by student worksheets. Indonesian Journal of Learning & Instruction (IJLI), 4(2), 1-10.

Mantasia., & Jaya, H. (2016). Pengembangan teknologi Augmented Reality sebagai penguatan dan penunjang metode pembelajaran di SMK untuk implementasi kurikulum 2013. Jurnal Pendidikan Vokasi. http://journal.uny.ac.id/index.php/jpv

Mauludin, R., Sukamto, S. A., Muhardi, H. (2017). Penerapan Augmented Reality sebagai media pembelajaran sistem pembelajaran sistem pencernaan pada manusia dalam mata pelajaran Biologi. Jurnal Edukasi dan Penelitian Informatika (JEPIN), 3(2).

Mustaqim, I (2016) Pemanfaatan Augmented Reality sebagai media pembelajaran. Jurnal Pendidikan Teknologi dan Kejujuran, 13(2).

Mustaqim, I., & Kurniawan, N. (2017). Pengembangan media pembelajaran berbasis Augmented Reality. Jurnal Edukasi Elektro, 1(1). Diunduh Dari https://doi.org/10.21831/jee.v1i1.13267

Nainggolan, D.S., Suriani, C., Sianturi, E. (2017). Analisis kemampuan berpikir kritis siswa pada materi pokok sistem pencernaan manusia di kelas XI IPA SMA Swasta Yapim Biru-Biru. Jurnal Pelita Pendidikan, 6(3).

Pujianti, M. (2020). Penerapan model problem based learning terhadap keterampilan berpikir kritis siswa pada konsep sistem reproduksi. Jurnal Pendidikan Biologi.

Purwanto, J., & Winarti. (2016). Profil pembelajaran fisika dan kemampuan berpikir kritis siswa Madrasah Aliyah Se-DIY. Jurnal Penelitian Pembelajaran Fisika, 7(2), 8-18.

Sugiyono. (2017). Metode Penelitian Pendidikan. Bandung: Alfabeta.

Sugiyono. (2014). Metode Penelitian Kuantitatif Kualitatif dan R&D. Bandung: Alfabeta. Cet. 20.

Sungkar, R.K., Panchoo, A., Bhoyroo, K. N. (2016). Augmented Reality, The Future of Contextual Mobile Learning. University of Mauritius, Réduit, Mauritius

Syarifuddin, S. (2018). The effect of using the scientific approach through concept understanding and critical thinking in science. Jurnal Prima Edukasia, 6(1).

Usada, E. (2014) Rancang bangun modul praktikum teknik digital berbasis mobile Augmented Reality (AR). Jurnal Sekolah Tinggi Telematika Telkom Purwekerto. 6(12), 83-90. Doi: https://doi.org/10.20895/infotel.v6i2.20

Wahyuni, S. (2015). Pengembangan bahan ajar IPA untuk meningkatkan kemampuan berpikir kritis siswa SMP. In PROSIDING: Seminar Nasional Fisika Dan Pendidikan Fisika, 6(6), 95-107.

Wakhidah, N. (2018). Pembelajaran dengan pendekatan saintifik terhadap kemampuan berpikir kritis mahasiswa calon guru Madrasah Ibtidaiyah. Premiere Educandum: Jurnal Pendidikan Dasar dan Pembelajaran, 8(1) 150-160. http://e-Journal.unipma.ac.id/index.php/PE

Yunliono, T., Sarwanto., Rintayanti, P. (2018). The promising roles of Augmented Reality in educational setting: A review of the literature. Int J. of Educ. Meth., 4(3), 125-132.




DOI: https://doi.org/10.25134/ijli.v5i1.5874

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