Development of Students Worksheet Learning Tools Made by Ethnoscience Based on Science Literacy
DOI:
10.29303/jppipa.v8i4.1949Published:
2022-10-31Issue:
Vol. 8 No. 4 (2022): OctoberKeywords:
Students Worksheet Learning Tools, Ethnoscience, Science LiteracyResearch Articles
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Abstract
Research activities carry out measurements for science literacy ability contained in ethnoscience values by making electronic Student Work learning tools students worksheets that are useful for students. Ethnoscience is related to the concept of local culture contained in the electronic Student Worksheet learning tool students worksheet which is used as a source of learning and learning activities while science literacy skills will provide motivation and interest in learning in understanding learning materials and improving. Thus the realization of a research objective, namely to determine the feasibility test of material experts, media experts, and practicalization experts from learning tools for the development of students’ worksheet learning tools to carry out ethnoscience based on science literacy on the material for the classification of living things at Muhammadiyah Langsa High School. The research method is a method of product development of students' worksheet learning devices. The results showed that products that have been made and validated by material experts, media experts, and practicalization experts state that the products are suitable for use for sourcing learning media in learning and learning activities of students and teachers. This research can also be concluded that the overall average of expert assessments of students’ worksheet product validation is feasible
References
Al Mukarram, A., Hartini, S., & Wati, M. (2014). Pengembangan Lembar Kegiatan Siswa (LKS) dan Media Pembelajaran IPA SMP Berbasis Keterampilan Berpikir Kritis. Berkala Ilmiah Pendidikan Fisika. 2 (3), 253-264. http://dx.doi.org/10.20527/bipf.v2i3.889
Ariningtyas, A., Wardani, S., & Mahatmanthi, W. (2017). Efektivitas Lembar Kerja Siswa Bermuatan Etnosains Materi Hidrolisis Garam untuk Meningkatkan Literasi Sains Siswa SMA. Journal of Innovative Science, 6(2), 186-196. https://doi.org/10.15294/jise.v6i2.19718
Aristo, R.W. & Tampubolon, T. (2019). STEM approach students’ worksheet development with 4d model in sound waves topic. International Journal of Scientific Research and Engineering Development, 2(4), 256-259.
Asmaranti, W., Pratama, G. S., dan Wisniarti, W. (2018). Desain Lembar Kerja Peserta Didik (LKPD) Matematika dengan Pendekatan Saintifik Berbasis Pendidikan Karakter. Prosiding Seminar Nasional Pendidikan Matematika Etnomatnesia. ISBN: 978-602-6258-07-6,639-646. Retrieved from https://jurnal.ustjogja.ac.id/index.php/etnomatnesia/article/view/2395
Atmojo, S.E. (2017). Pengembangan Perangkat Pembelajaran IPA Terpadu Berpendekatan Etnosains. Jurnal Pendidikan Sains (JPS), 6(01), 5-13. https://doi.org/10.26714/jps.6.1.2018.5-13
Baheivan E. & Kapueu, S. (2014). Turkish preservice elementary science teachers’ conception of learning science and science teaching efficacy beliefs: is there a relationship? International Journal Environmental and Science Education. 9(4), 429-442. http://dx.doi.org/10.12973/ijese.2014.226a
Dachi, F. A., & Perdana, D. N. (2021). Pengembangan Lembar Kerja Peserta Didik (LKPD) Dengan Menggunakan Model Pembelajaran Science, Technology, Engineering and Mathematics (STEM) Untuk Meningkatkan Efikasi Diri Pada Siswa Kelas XI Busana SMK Negeri 6 Padang. Jurnal Pendidikan Matematika Ekasakti, 1(1), 38–48. https://doi.org/10.31933/jangka.v1i1.177
Daryanto & Dwicahyono. (2014). Pengembangan Perangkat Pembelajaran. Yogyakarta : Gava Media
Dayelma, Y., Octarya, Z., & Refelita, F. (2019). Hubungan literasi sains dengan keterampilan berpikir kritis siswa pada materi ikatan kimia. Jedchem (Journal Education and Chemistry), 1(2), 72-78. Retrieved from https://ejournal.uniks.ac.id/index.php/JEDCHEM/article/view/180
Fayhaa, N. & Al-Momani. (2016). Assessing the development of scientific literacy among under graduates College of Education. Journal of Studies in Education, 6(2), 199- 212. http://dx.doi.org/10.5296/jse.v6i2.9405
Haryadi, E.F., Priyono, A., & Retnoningsih, A. (2015). Desain pembelajaran literasi sains berbasis problem-based learning dalam membentuk keterampilan berpikir kritis siswa. Journal of Innovative Science Education, 4(2):1-7. Retrieved from https://journal.unnes.ac.id/sju/index.php/jise/article/view/9898
Izzatunnisa, I., Andayani, Y., & Hakim, A. (2019). Pengembangan LKPD Berbasis Pembelajaran Penemuan Untuk Meningkatkan Kemampuan Literasi Sains Peserta Didik Pada Materi Kimia SMA. Jurnal Pijar Mipa, 14(2), 49–54. https://doi.org/10.29303/jpm.v14i2.124
Kazempour, M. (2014). I Can’t teach science! a case study of an elementary pre-service teacher’s intersection of science experiences, beliefs, attitude, and self-efficacy. International Journal of Environmental & Science Education, 9(1), 77-96. http://dx.doi.org/10.12973/ijese.2014.204a
Kemendikbud. (2017). Materi Pendukung Literasi Sains. Kemendikbud: Jakarta OECD (2003) The PISA 2003 Assessment Framework. Paris: OECD.
Khusniati, M. (2014). Model Pembelajaran Sains Berbasis Kearifan Lokal dalam Menumbuhkan Karakter Konservasi. Indonesian Journal of Conservation, 3(1), 67-74. https://doi.org/10.15294/ijc.v3i1.3091
Mc Conney, & Andrew. (2014). Inquiry, Engagement, and Literacy in Science: A Retrospective, Cross-National Analysis Using PISA 2006. Science Education Journal, 98(6), 963– 980. https://doi.org/10.1002/sce.21135
Nisa, A., Sudarmin, S., & Samini. (2015). Efektifitas Penggunaan Modul Terintegrasi Etnosains dalam Pembelajaran Berbasis Masalah Untuk Meningkatkan Literasi Sains Siswa, Unnes ScienceEducation Journal, 4(3). 1050. https://doi.org/10.15294/usej.v4i3.8860
Novitasari, L., Agustina, P.A., Sukesti, R., Nazri, M.F., Handhika, J. (2017). Fisika, Etnosains, dan Kearifan Lokal dalam Pembelajaran Sains. Makalah disajikan dalam Seminar Nasional Pendidikan Fisika III 2017. Retrieved from http://e-journal.unipma.ac.id/index.php/snpf/article/view/1617
OECD. (2009). PISA 2009 Assessment Framework: Key Competicies in Reading, Mathematics, and Science.USA: OECD-PISA.
OECD. (2010). PISA 2009 Results: Executive Summary. Retrieved from www.pisa.oecd.org
OECD. (2012). PISA 2012 Results in Focus What 15 Year Olds Know and What TheyCan Do with What They Know. OECD Publishingg. Retrieved from www.oecd.org/publishing/corrigenda
PISA. (2015). PISA 2015 Results in Focus. OECD. Retrieved from https://doi.org/10.1787/.
Prahastiwi, F.A. & Dika Fajar Saraswati. (2019). Keterkaitan Pembelajaran Literasi Sains dengan Keterampilan Berpikir Kritis Siswaddalam Pembelajaran IPA SD. Seminar Nasional Pendidikan Dasar, 1(1), 690-698.
Rachman, A, F., Ahsanunnisa, R., & Nawawi, E. (2017). Pengembangan LKPD Berbasis Berpikir Kritis Materi Kelarutan Dan Hasil Kali Kelarutan Pada Mata Pelajaran Kimia Di SMA. Alkimia, 1(1),16–25. https://doi.org/10.19109/alkimia.v1i1.1326
Sartiah, S., & Yulianti, D. (2015). Pengembangan LKS Fisika Materi Kalor dan Perubahan Wujud Bermuatan Karakter dengan Pendekatan Scientific (Semarang: Unnes Physic Education Journal Universitas Negeri Semarang, 4(1), 54-61. Retrieved from http://journal.unnes.ac.id/sju/index.php/upej.
Sugiyono. (2017). Metode Penelitian Kuantitatif, Kualitatif, dan R&D. Bandung: Alfabeta.
Sukowati, D., Rusilowati, A., & Sugianto. (2017). Analisis kemampuan literasi sains dan metakognitif peserta didik. Physics Communication, 1(1). 16-22. https://doi.org/10.15294/physcomm.v1i1.8961
Sulistiyowati, S., Abdurrahman, A., & Jalmo, T. (2018). The effect of STEM-based worksheets on students’ science literacy. Tadris: Jurnal Keguruan dan Ilmu Tarbiyah, 3(1). 89- 96. https://doi.org/10.24042/tadris.v3i1.2141
Syehma, B.R. (2016). Pengaruh Desain Pembelajaran Assure Terhadap Hasil Belajar Siswa Sekolah Dasar. Jurnal Inovasi. XVIII(1), 44-49. Retrieved from https://journal.uwks.ac.id/index.php/inovasi/article/view/587
Udompong, L., Traiwicitkhun, & Wongwanich. (2014). Causal model of research competency via scientific literacy of teacher and student. Procedia-Sosial and Behavioral Sciences, 116 (1). 1581-1586. https://doi.org/10.1016/j.sbspro.2014.01.438
Vasmin, M. E., Syafriati, Y. M., Sada, M., dan Nurfadilah, N. (2020). Analisis Faktor Kesulitan Peserta Didik dalam Proses Pembelajaran Biologi pada Implementasi Kurikulum 2013. Jurnal Inovasi Pembelajaran Biologi. 1 (2) : 14-23. https://doi.org/10.26740/jipb.v1n2.p14-23
Wardani, D.A & Mitarlis. (2018). Pengembangan Lembar Kerja Peserta Didik (LKPD) Untuk Meningkatkan Keterampilan Literasi Sains Pada Materi Hidrokarbon Dan Minyak Bumi. UNESA Journal of Chemical Education, 7(2), 123-128. Retrieved from https://jurnalmahasiswa.unesa.ac.id/index.php/journal-of-chemical-education/article/view/23879
Author Biographies
Siska Rita Mahyuny, Universitas Samudra
Nursamsu Nursamsu, Universitas Samudra
Hasruddin Hasruddin, Universitas Samudra
Muslim Muslim, Universitas Samudra
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Copyright (c) 2022 Siska Rita Mahyuny, Nursamsu Nursamsu, Hasruddin Hasruddin, Muslim Muslim
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