DEVELOPMENT OF TEACHING MATERIALS BASED ON SKILLS OF HYDROCARBON MATERIALS SCIENCE PROCESS FOR VOCATIONAL SCHOOL STUDENTS

Authors

  • Galuh Isna Permata Universitas Negeri Surabaya
  • rusmini rusmini Universitas Negeri Surabaya

DOI:

https://doi.org/10.26740/jcer.v7n1.p160-168

Keywords:

Teaching Materials, Science Process Skills, Hydrocarbons

Abstract

Abstract. This study aims to determine the validity, practicality, and effectiveness of teaching materials based on science process skills in hydrocarbon compound material for vocational students. This type of research is development research using 4-D models proposed by Thiagarajan. The targets of this study were 34 students of class XI SMK Negeri 5 Surabaya. The data obtained were analyzed using quantitative analysis methods. The results of the study concluded that science-based teaching skills on the material process of hydrocarbon compounds were declared valid with an average percentage value of 78.00%, expressed very practical with an average percentage interpretation value of 95.15%, and declared effective based on the results of the gain score test which states an increase in science process skills and completeness of student learning outcomes.

 

Keywords: teaching materials, science process skills, hydrocarbon.

References

Kementrian Pendidikan dan Kebudayaan. 2016. Permendikbud Nomor 24 Tahun 2016 tentang Kompetensi Inti (KI) dan Kompetensi Dasar (KD) pada Kurikulum 2013 pada Pendidikan Dasar dan Pendidikan Menengah. Jakarta: Kemendikbud.

Hamalik, O. (2004). Perencanaan Pendidikan Berdasarkan Pendekatan Sistem. Jakarta: Bumi Aksara.

Kozma, R dan Russel I. (1997). Multimedia and Understanding: Expert and Novice Responses to Different Representations of Chemical Phenomena. Journal Of Research in Science Teaching,34(9), 949-968.

Sirhan, G. (2007). Learning Difficulties in Chemistry Overview. Journal Of Turkish Science Education,4(2), 2-20.

Mulyasa. (2013). Pengembangan dan Implementasi Kurikulum 2014. Bandung: Rosdakarya.

Kheng, Y. T. (2008). Science Process Skills Form 1. Malaysia: Pearson.

Dimyati dan Mudjiono. (2009). Belajar dan Pembelajaran. Jakarta: Rineka Cipta.

Gultepe, N. (2016). High School Science Teacher’s Views On Science Process Skills. International Journal Of Environmental & Science Education,11(5), 779-800.

Ambross, J., Meiring, L., & Blignaut, S. (2014). The Implementation And Development Of Science Process Skills In The Natural Sciences: A Case Study Of Teachers’ Perceptions. Africa Education Review,11(3), 459-474.

Abungu, H. E. O., Okere, M. I. O., Wachanga, S. W. (2014). The Effect Of Scientific Process Skills Teaching Strategy On Boys and Girls’ Achievement In Chemistry In Nyando District, Kenya. Journal Of Education And Practice, 5(15), 42-49.

Cigrik, E., & Ozkan, M. (2015). The Investigation Of The Effect Of Visiting Science Center On Scientific Process Skills. Procedia-Social And Behavioral Science,197, 1312-1316.

Murniasih, L., dkk. (2013). Pengelolaan Pembelajaran IPA: Studi Kasus Pada SMP di Daerah Terdepan, Terluar, Dan Tertinggal. E-journal Program Pasca Universitas Pendidikan Ganesa, Program Studi Administrasi Pendidikan, 4 (3), 34- 56.

Yumusak, G. K. (2016). Science Process Skills In Science Curricula Applied In Turkey. Journal of Education and Practice,7(20), 94-98.

Deters, K., M. (2005). Student Opinions Regarding Inquiry-Based Labs. Journal Of Chemical Education,82(8), 1178- 1180..

Karsli, F., & Sahin, C. (2009). Developing Worksheet Based On Science Process Skills: Factors Affecting Solubility. Asia-Pasicif Forum On science learning and teaching (10,1).

Semiawan, Conny. (1992). Pendekatan Keterampilan Proses. Jakarta: Gramedia.

Kusumaningtyas, R D dan Haryani, S. (2017). Bahan Ajar Kimia untuk SMK/MAK. Jakarta: Direktorat Pembinaan SMK Kementerian Pendidikan dan Kebudayaan Republik Indonesia.

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

Riduwan. (2015). Skala Pengukuran Variabel-Variabel Penelitian. Bandung: Alfabeta.

Depdiknas. (2013). Kurikulum 2013. Jakarta: Depdiknas.

Salam A., Miriam, S., Arifudin, M., & Ihsan, Imam N. (2016). Pengembangan Bahan Ajar Berbasis Lingkungan Bantaran Sungai Barito untuk Melatihkan Keterampilan Proses Sains Siswa. Prosiding Seminar Nasional Lahan Basah, 684-688.

Sholiha, A. (2018). Pengembangan LKS Berorientasi Model Learning Cycle7-E Untuk Melatihkan Keterampilan Proses Sains Siswa Kelas X Pada Materi Elektrolit Dan Non Elektrolit. UNESA Journal Of Chemical Education, 388-393.

Trianto. (2012). Model Pembelajaran Terpadu. Jakarta : Bumi Aksara.

Sanjaya, W. (2011). Strategi Pembelajaran Berorientasi Standar Proses Pendidikan. Jakarta: Kencana Media Predana.

Ariani, M., Hamid, A., & Leny., L.(2015). Meningkatkan Keterampilan Proses Sains Dan Hasil Belajar Siswa Pada Materi Koloid Dengan Model Inquiry Terbimbing Kelas XI IPA 1 SMA Negeri 11 Banjarmasin. Quantum, Jurnal Inovasi Pendidikan Sains, 6(1),98-10.

Erta, Novia Awanda, & Poedjiastoeti, Sri. (2016). Pengembangan Lembar Kegiatan Siswa (LKS) Berorientasi CTL Untuk Melatihkan Keterampilan Proses Sains dan Hasil Belajar Siswa Pada Materi Elektrolit dan Non Elektrolit Kelas X SMA. Jurnal Pendidikan Kimia, 5(1),134-14.

Damopoliii, I., Hasan., A., & Kandowangko, N. (2015). Pengaruh Strategi Pembelajaran Inkuiri Bebas Dimodifikasi dan Kemampuan Memecahkan Masalah Terhadap Mahasiswa Pada Praktikum Fisiologi Tumbuhan. Pancaran, 4(3),191-200.

Ningsih, R., K. (2019). The Effectiviness Of Chemical Practicum Kit To Train Science Process Skills In 10Th Grade. Journal Of Chemistry Education Research, 3(1),1-8.

Aktamis, H., & Ergin, O.(2008). The Effect Of Scientific Process Skills Education On Student’s Scientific Creativity, Science Attitudes And Academic Achievements. Asia-Pacific Forum On Science Learning And Teaching,9(1),1-21.

Downloads

Published

2023-07-02
Abstract views: 124 , PDF Downloads: 149