PENGEMBANGAN MODUL BERBASIS MULTIPEL REPRESENTASI PADA MATERI GARAM HIDROLISIS

Desi Julia, Ila Rosilawati, Tasviri Efkar

Abstract


This study was aimed to describe the validity and practicality of the module. This research used methods of Borg and Galls research and development. This module was developed through the study of literature and field study. Validity of module was measured base on results of expert validation. Practicality module was measured base on the response of educators, learners feedback, and observations on the enforceability of the module. Validator given high validity and it was said to be valid. Based on limited testing of the module educators given respons to the module, on the appropriateness of the contents to the curriculum aspect, constructs, legibility, and the graphics have a very high criteria, as well as the responses of students in aspects of the graphic arts and legibility have very high criteria. Based on observations and the positive response of students to the learning with module, the results was said to be practical.


Penelitian ini bertujuan untuk mendeskripsikan validitas dan kepraktisan modul. Penelitian ini mengunakan metode penelitian dan pengembangan Borg and Gall. Pengembangan modul ini melalui hasil studi literatur dan studi lapangan. Kevalidan modul hasil pengembangan diukur berdasarkan hasil validasi ahli. Kepraktisan modul diukur berdasarkan tanggapan pendidik, tanggapan peserta didik, dan hasil observasi terhadap keterlaksanaan modul. Validator memberikan penilaian validitas tinggi dan dikatakan valid. Berdasarkan uji coba terbatas tanggapan pendidik terhadap modul, pada aspek kesesuaian isi dengan kurikulum, konstruk, keterbacaan, dan grafika memiliki kriteria sangat tinggi, serta tanggapan peserta didik pada aspek grafika dan keterbacaan memiliki kriteria sangat tinggi. Berdasarkan hasil observasi dan respon positif peserta didik terhadap pembelajaran dengan modul dikatakan praktis.

Kata kunci: modul, multipel representasi, garam hidrolisis


Full Text:

PDF

References


Arikunto, S. 2010. Prosedur Penelitian Suatu Pendekatan Taktik Edisi Revisi. Jakarta: Rineka Cipta.

Astuti, W. dan Mulyati. 2013. Pengembangan LKS Untuk Pembelajaran Yang Menggunakan Model Group Investigation Pada Materi Relasi dan Fungsi. Jurnal Pendidikan dan Pembalajaran Matematika.

Bucat, B. and Mocerino, M. 2009. Learning at the Submicro Level: Structural Representations. In Multiple Representations in Chemical Education. (Eds: Gilbert, J.K. and Treagust D.). Austria: Springer.

Chittleborough, G. D. 2004. The Role of Teaching Models and Chemical Representations in Developing Students Metal Models of Chemical Phenomena. Thesis (unpublished). Curtin University of Technology.

Chittleborough, G. D. dan Treagust D.F. 2007. The Modeling Ability of NonMajor Chemistry Students and Their Understanding of the Submicroscopic Level. Chemistry Education Research and Practice.8 (3), 274-292.

Desyana, V., Erlina, dan Melati, H. A. 2014. Analisis Kemampuan Multipel Representasi Siswa SMP di Kota Pontianak pada Materi Klasifikasi Benda. Jurnal Ilmu Pendidikan, 3 (11): 1-13

Djamarah, S.B dan Zain, A. 2005. Strategi Belajar Mengajar. Jakarta: PT. Rineka Cipta

Gilbert, J.K. and Treagust D. 2008. Multiple Representations in Chemical Education: Models and Modeling in Science Education. Austria: Springer.

Hernawan, A. dan Dewi, L. 2008. Pengembangan Bahan Ajar. Bandung: Universitas Pendidikan Indonesia

Jansoon, N., Cool, R. K., and Somsook E. 2009. Understanding Mental Models of Dilution in Thai Student. International Journal of Environmental & Science Education. 4 (2): 147-168.

Johnstone, A. H. 1982. Macro and Micro Chemistry. School Science Review. 64 (227), 377-379.

Kozma , R. B., dan Russel, J. (1997). Multimedia and understanding: Expert and novice responsesto different representations of chemical phenomena. Journal of Research in Science Teaching. 39 (4): 949-968.

Majid, A. 2007. Perencanaan Pembelajaran (Mengembangkan Standar Kompetensi Guru). Bandung: PT Remaja Rosdakarya

Nastiti, R.D., Fadiawati, N., dan Kadaritna N. 2012. Development Module Of Reaction Rate Based On Multiple Representations. Jurnal Pendidikan dan Pembelajaran Kimia. 1(2).

Oktaviani, E., Diawati, C., dan Kadaritna N. 2012. Development Module Of Acid Base Based On Multiple Representations. Jurnal Pendidikan dan Pembelajaran Kimia. 1(2)

Prasetyo, W. 2012. Pengembangan Lembar Kegiatan Siswa (LKS) Dengan Pendekatan PMR Pada Materi Lingkaran di Kelas VIII SMPN 2 Kepohbaru Bojonegoro. Mathedunesa Journal. 1(1), 1-8.

Ranti, M.G. 2014. Pengembangan Perangkat Pembelajaran Matematika Untuk SMA Kelas X. Jurnal Pendidikan dan Pembelajaran Matematika. 1 (9).

Simanjuntak, A., Kadaritna N., dan Rosilawati, I. 2014. Pengembangan Modul Kelarutan dan Hasil Kali Kelarutan Berbasis Multipel Representasi. Jurnal Pendidikan dan Pembelajaran Kimia. 3(1).

Sudarman, L, G. 2008. Pengembangan Bahan Ajar IPA Terpadu Berbasis Sains Lingkungan Teknologi Masyarakat (Salingtemas) Untuk SMP Kelas VII Semester I. [online]http://www.pembelajaran-fisika.blogspot.com/.../pengembangan-bahan-ajar-ipa-terpadu.html-.Diakses 9.15pm tanggal 30 September 2016.

Sudjana, N. 2005. Metode Statistika. Bandung: PT Tarsito.

Sukiman. 2012. Pengembangan Media Pembelajaran. Yogyakarta: PT. Pustaka Insan Madani

Taber, K. S. 2009. Learning at the symbolic level. In Multiple Representations in Chemical Education. (Eds: Gilbert, J.K. and Treagust D.). Austria: Springer.

Talanquer, V. 2011. Macro, Submicro, and Symbolic: Themany faces of the chemistry triplet. International Journal Science Education, 33(2): 179-195.

Tim Penyusun. 2013. Permendikbud No.65 tahun 2013 Tentang Standar Proses Pendidikan Dasar dan Menengah. Jakarta. Kemendikbud

Tim Penyusun. 2014. Standar Isi Mata Pelajaran Kimia SMA/MA. Jakarta. BSNP

Wahono. 2013. Buku Guru Ilmu Pengetahuan Alam . Jakarta. Erlangga


Refbacks

  • There are currently no refbacks.