The Effectiveness of Tornado Physics Enrichment Book to Increase Science Literacy of High School Students

Authors

Nurul Izzah , Desnita

DOI:

10.29303/jppipa.v9i9.5076

Published:

2023-09-25

Issue:

Vol. 9 No. 9 (2023): September

Keywords:

Immediately enrichment books physics, Science literacy, Tornado

Research Articles

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How to Cite

Izzah, N. ., & Desnita, D. (2023). The Effectiveness of Tornado Physics Enrichment Book to Increase Science Literacy of High School Students. Jurnal Penelitian Pendidikan IPA, 9(9), 7740–7748. https://doi.org/10.29303/jppipa.v9i9.5076

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Abstract

Scientific literacy is a need and learning goal in the industrial era 4.0. Indonesia's low scientific literacy is an urgent problem. There are many ways that can be used in learning to hone scientific literacy, including choosing sources and teaching materials that are integrated with natural disaster environmental. In this research, scientific literacy was sharpened in physics learning through the use of a knowledge enrichment book entitled Tornado. In this enrichment book, the discussion of tornadoes is presented from a physics perspective including the concepts of energy, heat, fluid dynamics and global warming. The aim of this research is to increase students' scientific literacy by using physics enrichment books on the theme of the tornado disaster. This research uses an experimental research method in the form of a quasi-experimental design with a one-group pretest-posttest design. The results of the trial of 60 students from SMAN 13 Padang and SMAN 2 Padang Panjang showed that the use of enrichment books was able to increase students' scientific literacy, with an average pretest scientific literacy of 46 and an average posttest of 87, and an N-gain of 0.76. These results indicate that the use of tornado physics enrichment books is effective in increasing students' scientific literacy.

References

Afrizon, R., Hidayati, H., & Anshari, R. (2017). Analisis Persepsi Mahasiswa Pendidikan Fisika terkait Pentingnya Pembelajaran Fisika Bermakna yang Menerapkan Unsur Kearifan Lokal Sumatera Barat. Prosiding Semirata, 1214–1222. Retrieved from https://rb.gy/sz4c4

Arif Kurniawan, M., & Aly, S. T. (2015). Efektivitas Penggunaan Bahan Ajar Pengayaan “Cara Asyik Mengenal Bencana†Pada Materi Pembelajaran Keadaan Iklim Indonesia Untuk Siswa Kelas VII SMP Negeri 1 Sambi. Universitas Muhammadiyah Surakarta. Retrieved from https://eprints.ums.ac.id/38015/

Atmojo, S. E., Rusilowati, A., Dwiningrum, S. I. A., & Skotnicka, M. (2018). The reconstruction of disaster knowledge through thematic learning of science, environment, technology, and society integrated with local wisdom. Jurnal Pendidikan IPA Indonesia, 7(2), 204–213. https://doi.org/10.15294/jpii.v7i2.14273

Azhar, H., Suhardiman, S., & Hasanah, U. (2020). Pengembangan Media Pembelajaran Majalah Mitigasi Angin Puting Beliung Terinterkoneksi Ayat-Ayat Al-Qur’an Dalam Pembelajaran Fisika. JPF (Jurnal Pendidikan Fisika) Universitas Islam Negeri Alauddin Makassar, 8(2), 140–148. Retrieved from https://journal3.uin-alauddin.ac.id/index.php/PendidikanFisika/article/view/14232

Azmanita, Y., & Festiyed, F. (2019). Analisis Kebutuhan Media untuk Pengembangan E-Book Tema Abrasi pada Pembelajaran Fisika Era 4.0. Jurnal Penelitian Pembelajaran Fisika, 5(1). https://doi.org/10.24036/jppf.v5i1.107416

BNPB. (2012). BNPB. 2017a). Data Informasi Bencana Indonesia (DIBI)[Data Set].

Camarao, M. K. G., & Nava, F. J. G. (2017). High school students’ difficulties in physics. In A paper presented at the National Conference on Research in Teacher Education (NCRTE), Quezon City, The Philippines. Retrieved from https://rb.gy/8l8dp

Chanifah, F. (2021). Pengaruh E-modul Berbasis Problem Based Learning terhadap Kemampuan Literasi Sains Siswa pada Materi Pemanasan Global. Jakarta: FITK UIN Syarif Hidayatullah Jakarta. Retrieved from https://repository.uinjkt.ac.id/dspace/handle/123456789/59312

Chiou, G.-L., Lee, M.-H., & Tsai, C.-C. (2013). High school students’ approaches to learning physics with relationship to epistemic views on physics and conceptions of learning physics. Research in Science & Technological Education, 31(1), 1–15. https://doi.org/10.1080/02635143.2013.794134

Della Islami, P. M., Lusa, H., & Dalifa, D. (2018). Pengaruh Bahan Ajar Muatan Lokal Bencana Alam di Bengkulu Terhadap Hasil Belajar Siswa di Kelas V. JURIDIKDAS: Jurnal Riset Pendidikan Dasar, 1(3). https://doi.org/10.33369/juridikdas.1.3.%25p

Desnita, D., Fadilah, N., & Budi, E. (2016). Pengembangan Buku Pengayaan Kajian Fisis Peristiwa Angin Puting Beliung untuk Siswa SMA. Jurnal Penelitian & Pengembangan Pendidikan Fisika, 2(2), 97–104. Retrieved from https://journal.unj.ac.id/unj/index.php/jpppf/article/view/2810

Desnita, D., Putra, A., Hamida, S., Marsa, P. B., & Novisya, D. (2021). Quality Test of Student Worksheets Based on Contextual Teaching And Learning for Class XI High School Physics. Jurnal Penelitian Pendidikan IPA, 7(1), 92–101. https://doi.org/10.29303/jppipa.v7i1.600

Ebadi, A. G., Toughani, M., Najafi, A., & Babaee, M. (2020). A brief overview on current environmental issues in Iran. Central Asian Journal of Environmental Science and Technology Innovation, 1(1), 1–11. https://doi.org/10.22034/CAJESTI.2020.01.08

Ekici, E. (2016). “ Why Do I Slog through the Physics?†Understanding High School Students’ Difficulties in Learning Physics. Journal of Education and Practice, 7(7), 95–107. Retrieved from https://files.eric.ed.gov/fulltext/EJ1095264.pdf

Erinosho, S. Y. (2013). How do students perceive the difficulty of physics in secondary school? An exploratory study in Nigeria. International Journal for Cross-Disciplinary Subjects in Education, 3(3), 1510–1515. https://doi.org/10.20533/ijcdse.2042.6364.2013.0212

Fadilah, M. (2021). Pengembangan Buku Ajar Prekursor Alami Gempa Bumi Untuk Meningkatkan Literasi Dan Kesiapsiagaan Bencana Mahasiswa Pendidikan IPA. Universitas Pendidikan Indonesia.

Fua, J. L., Wekke, I. S., Sabara, Z., & Nurlila, R. U. (2018). Development of environmental care attitude of students through religion education approach in Indonesia. IOP Conference Series: Earth and Environmental Science, 175(1), 12229. https://doi.org/10.1088/1755-1315/175/1/012229

Fuadi, H., Robbia, A. Z., Jamaluddin, J., & Jufri, A. W. (2020). Analisis faktor penyebab rendahnya kemampuan literasi sains peserta didik. Jurnal Ilmiah Profesi Pendidikan, 5(2), 108–116. https://doi.org/10.29303/jipp.v5i2.122

Hake, R. R. (1999). Analyzing change/gain scores. Indiana: Indiana University.

Irwandi, I., & Fajeriadi, H. (2020). Pemanfaatan lingkungan sebagai sumber belajar untuk meningkatkan minat dan hasil belajar siswa SMA di kawasan pesisir, Kalimantan Selatan. BIO-INOVED: Jurnal Biologi-Inovasi Pendidikan, 1(2), 66–73. http://dx.doi.org/10.20527/binov.v1i2.7859

Ismiati, I., Sarwi, S., & Marwoto, P. (2020). Pola dan Kemampuan Pemecahan Masalah Peserta Didik melalui Pembelajaran Flipped Classroom Berbasis Proyek. ORBITA: Jurnal Kajian, Inovasi Dan Aplikasi Pendidikan Fisika, 6(1), 115–123. https://doi.org/10.31764/orbita.v6i1.1847

Juwita, A. R. (2020). Pengembangan bahan pengayaan fisika mitigasi bencana kebakaran hutan Gunung Ciremai untuk meningkatkan literasi sains peserta didik. UIN Sunan Gunung Djati Bandung. Retrieved from https://digilib.uinsgd.ac.id/33982/

Kamala, I., Prayitno, B. A., & Sudarisman, S. (2015). Pengembangan Modul IPA Terpadu Berbasis Inquiry Lesson Tema Pencemaran Lingkungan Untuk Meningkatkan Literasi Sains. Inkuiri, 4(1), 138–151. Retrieved from https://jurnal.fkip.uns.ac.id/index.php/inkuiri/article/view/8259/0

Kelana, J. (2017). Peran Hukum Pidana dalam Penegakan Hukum Lingkungan di Indonesia. Darmawan Aji.

Latupeirisa, V. P. S. (2020). Level of earthquake disaster preparedness and its integrity in natural science learning: A literature review. Journal of Physics: Conference Series, 1440(1), 12093. https://doi.org/10.1088/1742-6596/1440/1/012093

Liverman, D. M. (2013). Vulnerability to global environmental change. In Global environmental risk (pp. 201–216). Routledge.

Mayuni, Y. E. (2021). Belajar Bersama Alam Sekitar Guna Memahamkan Peserta Didik dalam Pembelajaran IPA Masa Pandemi Covid-19. PISCES: Proceeding of Integrative Science Education Seminar, 1(1), 458–474. Retrieved from https://prosiding.iainponorogo.ac.id/index.php/pisces/article/view/387

Muhlis, F., & Ali, N. (2020). Eksperimentasi Pembelajaran Fisika Melalui Pendekatan Lingkungan Alam Sekitar dan Pendekatan Konvensional di Tinjau dari Hasil Belajar Siswa. Jurnal Ilmiah Wahana Pendidikan, 6(4), 896–902. https://doi.org/10.5281/zenodo.4312216

Mulyana, V., & Desnita, D. (2023). Empirical Validity and Reliability of the Scientific Literacy Assessment Instrument Based on the Tornado Physics Enrichment Book. Jurnal Penelitian Pendidikan IPA, 9(5), 3961–3967. Retrieved from https://doi.org/10.29303/jppipa.v9i5.3290

Narut, Y. F., & Supardi, K. (2019). Literasi sains peserta didik dalam pembelajaran ipa di indonesia. JIPD (Jurnal Inovasi Pendidikan Dasar), 3(1), 61–69. https://doi.org/10.36928/jipd.v3i1.214

Padmaja, D. L., Tammali, S., Gajavelly, N., & Reddy, K. S. (2022). A comparative study on natural disasters. 2022 International Conference on Applied Artificial Intelligence and Computing (ICAAIC), 1704–1709. https://doi.org/10.1109/ICAAIC53929.2022.9793039

Pattberg, P., & Widerberg, O. (2015). Theorising global environmental governance: Key findings and future questions. Millennium, 43(2), 684–705. https://doi.org/10.1177/0305829814561773

Permatasari, R. (2013). Pengembangan Bahan Ajar IPA Terpadu Tipe Webbed dengan Tema Tanggap Bencana untuk Siswa Kelas VII SMPN 1 Pogalan. Pensa: E-Jurnal Pendidikan Sains, 1(02). Retrieved from https://ejournal.unesa.ac.id/index.php/pensa/article/view/2506

Pursitasari, I. D., Suhardi, E., Ardianto, D., & Arif, A. (2019). Pengembangan bahan ajar bermuatan konteks kelautan untuk meningkatkan literasi sains siswa. Jurnal IPA & Pembelajaran IPA, 3(2), 88–105. Retrieved from https://jurnal.unsyiah.ac.id/JIPI/article/view/14847/0

Qismawa, H. U., & Jumini, S. (2020). Pengembangan komik berbasis mitigasi bencana sebagai sumber belajar ipa untuk meningkatkan kemampuan literasi sains siswa. Prosiding Seminar Pendidikan Fisika FITK UNSIQ, 2(1), 198–203. Retrieved from https://ojs.unsiq.ac.id/index.php/semnaspf/article/view/1411

Rahmawati, L., & Wiyatmo, Y. (2018). Keefektifan Pembelajaran Fisika SMA Terintegrasi Pendidikan Kebencanaan Letusan Gunung Api Ditinjau dari Penguasaan Materi dan Kesiapsiagaan Bencana Alam. Jurnal Pendidikan Fisika, 7(1), 74–82. Retrieved from https://journal.student.uny.ac.id/index.php/pfisika/article/view/10482

Raksanagara, A. S., Ubaidillah, M. B., Astuti, H. D., Tampubolon, M., & Jufri, M. (2022). Hukum Lingkungan. Global Eksekutif Teknologi.

Retno, A. T. P., Saputro, S., & Ulfa, M. (2017). Kajian aspek literasi sains pada buku ajar kimia SMA kelas XI di Kabupaten Brebes. Prosiding SNPS (Seminar Nasional Pendidikan Sains), 112–123. Retrieved from https://jurnal.fkip.uns.ac.id/index.php/snps/article/viewFile/11400/8085

Rohadi, R., Sriyono, S., & Maftukhin, A. (2017). Pengembangan LKS Pembelajaran Fisika SMA Berbasis Fenomena Alam Guna Meningkatkan Pemahaman Konsep Siswa. Radiasi: Jurnal Berkala Pendidikan Fisika, 9(2), 1–6. Retrieved from https://jurnal.umpwr.ac.id/index.php/radiasi/article/view/191

Rohman, S., Rusilowati, A., & Sulhadi, S. (2017). Analisis pembelajaran fisika kelas x sma negeri di kota cirebon berdasarkan literasi sains. Physics Communication, 1(2), 12–18. https://doi.org/10.15294/physcomm.v1i2.10402

Sinurat, C. D. (2020). Pengembangan Dan Pemanfaatan Buku Suplemen Elektronik Siswa Berbasis Potensi Lokal Perkebunan Kopi Simalungun Dalam Upaya Meningkatkan Literasi Sains Konteks Lingkungan Dan Sikap Peduli Lingkungan Siswa. Paper Knowledge. Toward a Media History of Documents, 12–26. Retrieved from https://core.ac.uk/download/pdf/346338863.pdf

Sudrajad, B. (2015). Pengembangan Media Video Pembelajaran Fisika Terintegrasi dengan Pendidikan Kebencanaan Tsunami untuk Meningkatkan Kesiapsiagaan Siswa SMA di Kawasan Pesisir Kabupaten Kulon Progo. Daerah Istimewa Yogyakarta: Fakultas MIPA Universitas Negeri Yogyakarta.

Sudrajad, B., & Napitupulu, D. (2022). Pengintegrasian Pendidikan Kebencanaan ke dalam Mata Pelajaran Fisika untuk Meningkatkan Kesadaran dan Kesiapsiagaan Siswa SMA Terhadap Risiko Bencana Alam di Kota Jayapura. Jurnal Altifani Penelitian Dan Pengabdian Kepada Masyarakat, 2(6), 618–626. https://doi.org/10.25008/altifani.v2i6.307

Sugiyono. (2013). Metode penelitian pendidikan pendekatan kuantitatif, kualitatif dan R&D. Alfabeta

Suprapto, P. K., Bin Ahmad, M. Z., Chaidir, D. M., Ardiansyah, R., & Diella, D. (2018). Spatial Intelligence and Studentsâ€TM Achievement to Support Creativity on Visuospatial-Based Learning. Jurnal Pendidikan IPA Indonesia, 7(2), 224–231. https://doi.org/10.15294/jpii.v7i2.14322

Torani, S., Majd, P. M., Maroufi, S. S., Dowlati, M., & Sheikhi, R. A. (2019). The importance of education on disasters and emergencies: A review article. Journal of Education and Health Promotion, 8. Retrieved from https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6512217/pdf/JEHP-8-85.pdf

Tuksanova, Z. I., & Nosirova, N. G. (2021). Solving Problems is an Important Part of Learning Physics. Central Asian Journal of Mathematical Theory and Computer Sciences, 2(10), 33–36. Retrieved from https://cajmtcs.centralasianstudies.org/index.php/CAJMTCS/article/view/114

Ubaidillah, M. (2018). Metode Field Trip Untuk Meningkatkan Kemampuan Pemahaman Konsep Fisika Dan Mengakses Keterampilan Proses Sains. Jurnal Pendidikan Sains (JPS), 6(2), 93–103. Retrieved from http://jurnal.unimus.ac.id/index.php/JPKIMIA/article/viewFile/3310/pdf

Utami, I. S., Septiyanto, R. F., Wibowo, F. C., & Suryana, A. (2017). Pengembangan STEM-A (science, technology, engineering, mathematic and animation) berbasis kearifan lokal dalam pembelajaran fisika. Jurnal Ilmiah Pendidikan Fisika Al-Biruni, 6(1), 67–73. Retrieved from https://core.ac.uk/download/pdf/276126021.pdf

Wafiah, D. Y. (2017). Pengembangan bahan pengayaan mata pelajaran fisika untuk meningkatkan kemampuan literasi sains peserta didik pada konsep bencana banjir. UIN Sunan Gunung Djati Bandung.

Widiana, R., Maharani, A. D., & Rowdoh, R. (2020). Pengaruh model problem based learning terhadap kemampuan literasi sains siswa sma. Ta’dib, 23(1), 87–94. http://dx.doi.org/10.31958/jt.v23i1.1689

Young, O. R., Guttman, D., Qi, Y., Bachus, K., Belis, D., Cheng, H., Lin, A., Schreifels, J., Van Eynde, S., & Wang, Y. (2015). Institutionalized governance processes: Comparing environmental problem solving in China and the United States. Global Environmental Change, 31, 163–173. https://doi.org/10.1016/j.gloenvcha.2015.01.010

Author Biographies

Nurul Izzah, Universitas Negeri Padang

Desnita, Universitas Negeri Padang

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