PENGEMBANGAN MODEL PEMBELAJARAN PHYSICS METACOGNITION LEARNING; PEMBELAJARAN INOVATIF DI INDONESIA

Muhammad Nasir, Madlazim Madlazim, I Gusti Made Sanjaya

Abstract


Abstract. The initial research showed that in general, the problem solving skills and students’ metacognition in several secondary high schools in Samarinda such as SMAN 8, Kunjang, SMAN 14 Loa Bakung, SMAN 3 Ulu, and SMAN 10  Seberang are still low.  Therefore, the researcher intend to develop physics metacognition learning model to improve problem solving skills and students’ metacognition. This study aims to develop physics metacognition learning model to increase problem solving skills and students’ metacognition. The data collection method used Focus Group Discussion (FGD. The validity of the model was evaluated based on content and construct validity. Validation result by expert showed that physics metacognition learning model and the learning devices can be categorized as valid. The physics metacognition learning model can be implemented in physics to increase problem solving skill and students’ metacognition.

 

Keywords: content validity, construct validity, physics metacognition learning model

 

Abstrak. Hasil studi awal menunjukkan bahwa secara umum, keterampilan pemecahan masalah dan metakognisi siswa SMA Negeri 8 Sungai Kunjang Samarinda, SMA Negeri 14 Loa Bakung, SMA Negeri 3 Samarinda Ulu, dan SMA Negeri 10 Samarinda Seberang masih rendah. Oleh karena itu peneliti bermaksud mengembangkan model physics metacognition learning. Tujuan penelitian ini adalah untuk mengembangkan model physics metacognition learning untuk meningkatkan keterampilan pemecahan masalah dan metakognisi siswa. Metode pengumpulan data validasi menggunakan Focus Group Discussion (FGD). Validitas model pembelajaran physics metacognition learning dinilai berdasarkan validitas isi dan validitas konstruk. Hasil validasi oleh pakar melalui FGD menunjukkan bahwa model physics metacognition learning dan perangkatnya untuk meningkatkan keterampilan pemecahan masalah dan metakognisi siswa dalam penelitian ini termasuk dalam kategori valid. Model physics metacognition learning dapat diimplementasikan dalam pembelajaran fisika  untuk meningkatkan keterampilan pemecahan masalah, dan metakognisi siswa.

 

Kata Kunci: Validitas isi, validitas konstruk, dan model physics metacognition learning


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References


Ageorgers, P., Bacila, A., Poutot, G., & Blandin, B. (2014). Some Lessons from A 3-Year Experiment of Problem Based Learning in Physics in A French School of Engineering. American Journal of Educational Research, 2(8), 564-567.

Arends, R. (2012). Learning to Teach: Fifth Edition. New York: McGraw-Hill.

Batdi, V. (2014). The Effects of Problem Based Learning Approach on Students Attitude Levels: A meta-analysis. Educational Research and Reviews, 9(9), 272-276.

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

Brok, P. d., Taconis, R., & Fisher, D. (2010). How Well Do Science Teachers Do? Differences in Teacher-Student Interpersonal Behavior Between Science Teachers and Teachers of Other (School) Subjects. The Open Education Journal, 3, 44-53.

Celik, P., Onder, F., & Silay, I. (2011). The Effects of Problem-Based Learning on Students Succes in Physics Course. Procedia-Social and Behavioral Sciences, 28, 656-600.

Chi, M. T., & VanLehn, K. A. (1991). The Content of Physics Self-Explanations. Journal of the Learning Sciences, 1(1), 69-105.

Clark, J. M., & Paivio, A. (1991). Dual coding theory and education. Educational Psychology Review, 3(3), 149-170.

Costa, A. L., & Pressceisen, B. Z. (1985). Develoving Minds: A Resourse Book For Teaching Thinking. Alexandria: ASCD .

dalam Candrasari, A., & Sugiarto, B. (2014). Korelasi Antara Keterampilan Metakognisi dengan Hasil Belajar Hidrolisis Garam Menggunakan Model Pembelaaran Kooperatif Tipe Think-Pair-Share di MAN Mojosari. Unesa Journal of Chemical Education, 3(3), 232-238.

Darling-Hammond, L., Austin, K., Cheung, M., & Martin, D. (2003). Thinking About Thinking. Stanford: University School of Education.

Eggen, P., & Kaucak, D. (2012). Strategi dan Model Pembelajaran. Jakarta: PT Indeks.

Eggen, P., & Kauchak, D. (1996). Strategies and Models for Teaher: Teaching Content and Thinking Skills, 6th Edition . Boston: Pearson Education Inc.

Garrett, A. J., Mazzocco, M. M., & Baker, L. (2006). Development of the Metacognitive Skills of Prediction and Evaluation in Children With or Without Math Disability. Learning Disabilities Researchsearch & Practice, 21(2), 77-87.

Giancoli. (2001). Fisika Jilid 1. Jakarta: Erlangga.

Gok, T. (2010). The General Assesment of Problem Solving Processes and Metacognition in Physics Education. Eurasian Journal of Physics and Chemistry Education, 2(2), 110-122.

Gok, T., & Silay, I. (2008). Effect of Problem Solving Strategy Teaching on the problem solving attitude of . Journal of Theory and practice in education, 4(2), 235-266.

Greenstein, T. N., & Davis, S. N. (2012). Methods of family research. Sage.

Griffin, P., & Care, E. (2015). Assessment and Teaching of 21st Century Skills.Methods and Approach. Dordrecht: Springer.

Hinton, P. R., McMurray, I., & Brownlow, C. (2014). SPSS Explained: Second edition. New York: Routledge.

Hofstein, A., Navon, O., Kipnis, M., & Mamlok-Naaman, R. (2005). Developing Students'Ability to Ask More and Better Questions Resulting from Inquiry-Type Chemstry Laboratories. Journal of Research in Science teaching , 42(7), 791-806.

Holt, J. (2012). Bagaimana Siswa Belajar. Jakarta: Erlangga.

Ibrahim, M. (2012). Pembelajaran Berdasarkan Masalah (PBM).

Imafuku, R., Kataoka, R., Mayahara, M., Suzuki, H., & Saiki, T. (2014). Students Experiences in Group Interaction. Interdisciplinaru Journal of Problem-Based Learning, 8(2), 1-19.

Indarini, E., Sadono, T., & Onate, M. E. (2013). Pengetahuan Metakognitif untuk Pendidik dan Peserta Didik. Satya Widya, 29(1), 40-46.

Iswadi, G. (2010). Pengaruh Pembelajaran Berbasis Metakognisi Terhadap Kualitas Penalaran Mahasiswa. Surakarta: FKIP UNS .

Joyce, B., & Weil, M. (2003). Models of Teaching 5th Edition. Pearson Education Inc.

Keller, J. M. (1987). Strategies for stimulating the motivation to learn. Performance and Intruction, 26(8), 1-7.

Klegaris, A., Bahniwal, M., & Hurren, H. (2013). Improvement in Generic Problem Solving Abilities of Students by Use of Tutor-Less Problem-Based Learning in a Large Classroom Setting. Life Sciences Education, 12, 73-79.

Lauca, E. P. (2003). The concept and instruction of metacognition. Teacher Development, 7(1), 9-30.

Marrelli, A. F. (2008). Collecting Data Through Focus Groups. Performance Improvement, 47(4), 39-45.

Moreno, R. (2010). Educational Psychology. John Wiley and Sons.

Nasir, M., Madlazim, & Sanjaya, I. G. (2016). Studi Pendahuluan Keterampilan Pemecahan Masalah Dan Metakognisi Siswa SMA Berbasis UAPAC + SE. (Madlazim & I. G. Sanjaya, Eds.) Prisma Sains, 4(1), 42-52.

Nieveen, N. (1999). Prototyping to Reach Product Quality. Netherlands: Spinger.

Nieveen, N., McKenny, S., & Akker, V. (2007). Educational Design Research. New York: Routledge.

Nur, M. (2011). Model Pembelajaran Bedasarkan Masalah. Surabaya: Pusat Sains dan Matematika Sekolah Unesa.

Nur, M. (2008). Pengajaran Berpusat pada Siswa dan Pendekatan Kontruktivis Dalam Pengajaran. Surabaya: Pusat Sains dan Matematika Sekolah Universitas Negeri Surabaya.

Nuryana, E., & Bambang. (2012). Hubungan Keterampilan Metakognitif dengan Hasil Belajar Siswa pada Materi Reduksi Oksidasi (Redoks) Kelas X-1 SMAN 3 Sidoarjo. Journal of Chemical Education, 1(1), 83-91.

Prahani, B. K., Nur, M., & Yuanita, L. (2016). Model Group Science Learning untuk Meningkatkan Keterampilan Pemecahan Masalah Kolaboratif, Keterampilan Proses Sains, dan Kepercayaan Diri Siswa SMA . Surabaya: Unesa.

Prahani, B. K., Pandiangan, P., & Nasir, M. (2015). Penilaian: Penghargaan Prestasi Kelompok Penyelesaian Masalah Kolaborasi. “Pembelajaran dan Penilaian Sains Sesuai Tuntutan Kurikulum 2013” (pp. 188-193). Surabaya: Prosiding Seminar Nasional Pendidikan Sains Tahun 2015.

R, F. J., Wallen, N. E., & Hyun, H. H. (2012). How to Desig and Evaluate Research in Education (8th edition). New York: McGraw-Hill.

Rickey, D., & Stacey, A. (2000). The Role of Metacognition in Learning Chemistry. Journal of Chemical Education, 77(7) , 915-920.

Rivers, W. (2001). Autonomy at All Costs: An Ethnography of Metacognitive Self-Assessment and Self-Management among Experienced Language Learners. The modern language journal, 85(2), 279-290.

Rosen, Y. (2014). Comparability of Conflict Opportunities in Human-to-Human and Human-to-Agent Online Collaborative Problem Solving. Technology, Knowledge and Learning , 19, 147–164.

Rustaman, N. Y. (2005). Perkembangan Penelitian Pembelajaran Berbasis Inkuiri Dalam Pendidikan Sains. Bandung: Fakultas Pendidikan dan Ilmu Pengetahuan Alam.

Schraw, G., & Dennison, R. (1994). Assessing metacognitive awareness. Contemporary Educational Psychology, 19 , 460-475.

Setyaningsih. (2012). Pengembangan Perangkat dan Model Pembelajaran Berbasis Konstruktivistik Matakuliah Statsitika melalui Pendekatan Lesson Study. Jurnal Penelitian Humaniora, 13(1), 46-61.

Skinner, V. J., Braunack-Mayer, A., & Winning, T. A. (2015). The Purpose and Value for Students of PBL Groups for Learning. Interdisciplinary Journal of Problem-based Learning, 9(1), 18-32.

Slavin, R. E. (2006). Educational Psycology: Theory and Pratice 8th Edition. Boston: Allyn & Bacon.

Sockalingan, N., & Schmidt, H. G. (2011). Characteristics of Problem for Problem-Based Learning: The Students Perspective. Interdisciplinary Journal of Problem-Based Learning, 5(1), 6-33.

Suparno. (1997). Filsafat konstruktivisme dalam pendidikan. Yogyakarta: Penerbit Kanisius.

Susantini, E. (2004). Memperbaiki Kualitas Proses Belajar Genetika Melalui Strategi Metakognitif dalam Pembelajaran Kooperatif pada Siswa SMU. Disertasi Doktor. Tidak Diterbitkan. Program Pascasarjana Universitas Negeri Malang.

Temel, S. (2014). The Effects of Problems Based Learning on Pre Service Teacher's Critical Thinking Dispotitions and Perceptions of Problems Solving Ability. South African Journal of Education, 34(1), 1-20.

Wahyudi. (2006). Upaya peningkatan prestasi belajar Fisika dengan memvisualkan konsep Fisika dalam kehidupan nyata sehari-hari. Dinamika Pendidikan .

Walsh, L. N., Howard, R. G., & Bowe, B. (2007). Phenomenographic study of students’ problem solving approaches in physics. Physics Education Research, 3(2), 1-12.

Yasir, M., Susantini, E., & Isnawati. (2013). Pengembangan Lembar Kerja Siswa (LKS) Berbasis Strategi Belajar Metakognitif untuk Meningkatkan Hasil Belajar pada Materi Pewarisan Sifat Manusia. BioEdu, 2(1), 77-83




DOI: http://dx.doi.org/10.20527/jvk.v33i2.5644

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