Development of an Enrichment Book of Colloid Industry Products as a Source of Literacy for Senior High School Students

Abstract

The aim of this research was to develop an enrichment book of colloid industry products as a source of literacy and to determine the quality of this book. The approach used in this study was Design-Based Research, which included four phases of development: 1) a questionnaire about needs was filled in by 5 teachers and 83 students; 2) the book was developed using CorelDraw X8 software and a literature search was conducted of online articles, journals and other supporting books; 3) cycles of testing were conducted, in which three experts and three peer reviewers assessed the book, and several revisions were produced; and 4) reflection and final evaluation were conducted, in which 5 teachers and 20 students from SMA N 2 Sleman, SMA N 2 Yogyakarta, SMA 1 Tempel, and MAN 3 Sleman assessed the substance, presentation, language and graphics of the book. Through this process, an enrichment book of colloidal industry products titled “Proses Pembuatan Koloid di Industri untuk SMA/MA Kelas XI” was produced. The book received a score 62.8 out of a maximum score of 70, which corresponded to a rating of ‘very good quality’.


Keywords: colloid, literacy, enrichment book

References
[1] Abidin Y, Mulyati T, Yunansyah H. Pembelajaran literasi, strategi meningkatkan literasi matematika, sains, membaca dan menulis. Bumi Aksara; 2017.

[2] Perkasa T, Aznam B. Pengembangan SSP kimia berbasis pendidikan berkelanjutan untuk meningkatkan literasi kimia dan kesadaran terhadap lingkungan. Jurnal Inovasi Pendidikan IPA. 2016;(2):46-57.

[3] Mozeika R, Bilbokaite T. Teaching and learning method for enhancing 15-16 years old students’ knowledge as one of scientific literacy aspect in chemistry: Result based on research and approbation. The International Journal of Educational Researchers. 2010;3(1):1-16.

[4] Holbrook A, Rannikmae N. The meaning of scientific literacy. International Journal of Environmental & Science Education. 2009;4:275-288.

[5] Organisation for Economic Co-operation and Development. PISA 2018 results what students know and can do. Volume I. Paris: OECD. Retrieved from https://www.oecdilibrary.org/docserver/5f07c754-en.pdf expires=1636885235&id=id&accname=guest&checksum= 63669DC8539232FB70635B75A3A77E57.

[6] Direktorat Pembinaan Sekolah Menengah Atas. Panduan gerakan literasi sekolah di sekolah menengah atas. Direktorat Pembinaan Sekolah Menengah Atas. Retrieved from http://repositori.kemdikbud.go.id/ 55/1/Panduan-Gerakan-Literasi-Sekolah-di-SMA.pdf.

[7] Latifah AD. Pengembangan buku pengayaan kimia berbasis mind map materi laju reaksi semester ganjil kelas XI SMA/MA. [Thesis]. FMIPA, Pendidikan Kimia, Universitas Negeri Yogyakarta; 2019.

[8] Ambarsari Z. Pengembangan buku pengayaan mengenal kimia organik materi alkana, sikloalkana, alkena, alkuna, dan haloalkana berbasis kontekstual disertai mekanisme reaksi. [Thesis]. Universitas Negeri Yogyakarta; 2019.

[9] Wulandari AN. Pengembangan buku saku pengayaan kimia materi sistem koloid sebagai alternatif sumber belajar mandiri untuk siswa kelas XI SMA/MA. [Thesis]. Universitas Negeri Yogyakarta; 2017.

[10] Risky TM. Pengembangan modul berbasis PAIKEM pada materi koloid di kelas XI SMA negeri 7 banda aceh. Jakarta: Universitas Islam Negeri Syarif Hidayatullah; 2018.

[11] Pratiwi AE. Pengembangan buku suplemen kimia berorientasi sains teknlogi masyarakat CSTM pada materi koloid. Jakarta: Universitas Islam Negeri Syarif Hidayatullah; 2014.

[12] Terry A, Julie S. Design-based research: A decade of progress in education research. Educational Researcher. 2012;41(1):16–25.

[13] Reeves T. Educational design research. Akker K, Gravemeijer S, editors. Routledge; 2006. Design research from a technology perspective.

[14] Amiel T, Reeves TC. Design-based research and educational technology: Rethinking technology and the research agenda. Educational Technology & Society. 2008;11(4):29–40.

[15] Febriyeni R. Pengembangan ludo kimia berbasis chemo-edutainment (CET) sebagai media pembelajaran pada materi sistem koloid kelas XI SMA/MA. Journal of RESIDU. 2019;3(14):122–131.

[16] Pujiantari ES, Kadaritna N, Rudibyani RB. Pengembangan media animasi berbasis representasi kimia pada pembelajaran jenis-jenis koloid. Jurnal Pendidikan dan Pembelajaran Kimia. 2016;5(2):360–371.

[17] Padmanaba IK, Kirna IM, Sudria IB. Pengembangan media pembelajaran interaktif kimia koloid berbantuan komputer untuk siswa SMA. Jurnal Pendidikan Kimia Indonesia. 2018;2(1):15–24.

[18] Sukarsih NK, Wardhani RR, Mashuri MT. Pengembangan kartu remi kimia menggunakan model pembelajaran TGT terhadap hasil belajar siswa pada materi pokok sistem koloid kelas XI SMA KORPRI banjarmasin. Jurnal Pendidikan Kimia dan Ilmu Kimia. 2018;1(1):16–22

[19] Kennedy-Clark S. Research by design: Design-based research and the higher degree research student. Journal of Learning Design. 2013;6(2):26–32.

[20] Mariana F, Wisdawatia AW. The Development of ethnoscience-based chemical enrichment book as a science literacy source of students. International Journal of Chemistry Education research. 2018;2:50– 57.

[21] Saefulloh H, Mudzakir A. The first year pre-service teachers’ chemical literacy in individual learning case using the fuel cell technology based-chemical enrichment book. Paper presented at: The 4th International Conference on Research, Implementation, and Education of Mathematics and Science (4th ICRIEMS); 2017, May 14-16, Yogyakarta, Indonesia. doi:10.1063/1.4995106.