The Development of Science Domain Based Learning Tool Which is Integrated with Local Wisdom to Improve Science Process Skill and Scientific Attitude

A. Dwianto, I. Wilujeng, Z. K. Prasetyo, I G. P. Suryadarma

Abstract

This research was conducted to : (1) improve the science domain based learning media which is integrated with appropriate local potention for Science learning material “Object Change Around Us” for students grade VII of Junior High School, (2) know the effectiveness of science based learning media which is integrated with developed local potention to improve science process skill and scientific attitude of students grade VII of Junior High School. This research was a research and development which adapt 4D Thiagarajan model which include four steps, they were: (1) define, (2) design, (3) develop, and (4) disseminate and Borg & Gall development model which was done into 7 steps, they were: (1) research and information collecting, (2) planning, (3) developing preliminarry form of product, (4) preliminary field testing, (5) main product revision, (6) main field testing, and (7) operational product revision. The research result showed thet the science domain based learning media which was integrated with developed local potention were: (1) appropriate to be used for science learning material “Object Change around us” for students grade VII of JHS, (2) effective to improve science process skill and scientific attitude of students grade VII of JHS.

Keywords

learning media; science domain; local potention; science process skill; scientific attitude

Full Text:

PDF

References

Akcay, H., & Yager, R. E. (2010). The impact of a science/technology/society teaching approach on student learning in five domains. Journal of Science Education and Technology, 19(6), 602-611.

Alexon, A. (2010). Pembelajaran terpadu berbasis budaya. Bengkulu: Unit FKIP UNIB Press.

Atmojo, S. E. (2015). Learning Which Oriented On Local Wisdom To Grow A Positive Appreciation Of Batik Jumputan (Ikat Celup Method). Jurnal Pendidikan IPA Indonesia, 4(1), 48-55.

Azwar, S. (2014). Reliabilitas dan Validitas Edisi 4. Yogyakarta: Pustaka Pelajar.

Bimo, D. S. (2013). Penerapan lembar kegiatan siswa (LKS) discovery berorientasi keterampilan proses sains untuk meningkatkan hasil belajar IPA. Jurnal Pendidikan IPA Indonesia, 2(2), 136-141.

Borg, W.R.,& Gall, M.D. (1983). Educational Research, An Introduction 4th Edition. New York : Longman.

Borich, G.D. (1994). Observation Skill for Effective Teaching. New York: Macmillan Publishing Company.

Bundu, P. (2006). Penilaian Keterampilan Proses dan Sikap Ilmiah dalam Pembelajaran Sains SD. Jakarta: Depdiknas.

Collette, A. T., & Chiapetta, E. L. (1994). Science Instruction In the Middle and Secondary Schools, 3rd Edition. New York: Macmillan Pub. Co.

Depdiknas. (2010). Juknis Penyusunan Perangkat Penilaian Afektif di SMA. Jakarta: Depdiknas.

Erina, R., & Kuswanto, H. (2015). Pengaruh Model Pembelajaran Instad terhadap Keterampilan Proses Sains dan Hasil Belajar Kognitif Fisika Di SMA. Jurnal Inovasi Pendidikan IPA, 1(2), 202-211.

Kelly, D., Nord, C. W., Jenkins, F., Chan, J. Y., & Kastberg, D. (2013). Performance of US 15-Year-Old Students in Mathematics, Science, and Reading Literacy in an International Context. First Look at PISA 2012. NCES 2014-024. National Bureau of Economic Research.

Martin, M. O., Mullis, I. V., Foy, P., & Stanco, G. M. (2012). TIMSS 2011 International Results in Science. International Association for the Evaluation of Educational Achievement. Herengracht 487, Amsterdam, 1017 BT, The Netherlands.

McCormack, A. J. 1995. Trends and Issues in Science Curriculum. New York: Kraus International Publications.

Meltzer, D. E. (2002). The relationship between mathematics preparation and conceptual learning gains in physics: A possible “hidden variable” in diagnostic pretest scores. American journal of physics, 70(12), 1259-1268.

Raj, G. R., & Devi, N. S. (2014). Science process skills and achievement in science among high school students. Scholarly Research Journal for Interdisciplinary Studies, 2(15), 2435-2443.

Sajidan, S., Ashadi, A., & Sutikno, S. (2015). Skill of teacher candidates in integrating the concept of science with local wisdom. Jurnal Pendidikan IPA Indonesia, 4(2), 120-126.

Suastra, I. W. (2005). Merekonstruksi Sains Asli (Indigenous Science) Dalam Upaya Mengembangkan Pendidikan Sains Berbasis Budaya Lokal Di Sekolah. Jurnal Pendidikan dan Pengajaran IKIP Negeri Singaraja, 3(1), 377-396.

Sugiyono. (2014). Metode Penelitian Pendidikan (Pendekatan Kuntitatif, Kualitatif, dan R & D). Bandung: Alfabeta.

Thiagarajan, S. (1974). Instructional Development for Teacher of Exceptional Children. Bloomington: Indiana University.

Waryanto, B., & Millafati, Y. A. (2006). Transformasi Data Skala Ordinal ke Interval dengan Menggunakan Makro Minitab. Informatika Pertanian, 15, 881-895.

Widowati, A. (2012). Optimalisasi Potensi Lokal Sekolah dalam Pembelajaran Biologi Berbasis Kontruktivisme. Majalah Ilmiah Pembelajaran, 8(2).

Yager, R. (1992). Science-Technology-Society Reform Efforts around the World. Icase Yearbook, 1992, 2-8.

Yager, R.E. (2012). Developing and Defining Both Science and Science Education as Disciplines. Journal Iowa Acad.Sci, 28-30.

Refbacks

  • There are currently no refbacks.