KOMPONEN KETERAMPILAN METAKOGNISI SISWA DALAM PEMECAHAN MASALAH MATEMATIKA DI SMA AL-AZHAR MANDIRI PALU

Authors

  • Sudarman Bennu Universitas Tadulako
  • Multazam Multazam Universitas Tadulako

DOI:

https://doi.org/10.32585/absis.v3i1.1381

Abstract

This research aims to identified and obtain a description metacognition skill components of students in SMA Al-Azhar Mandiri Palu to solving mathematical problem about linear program based on the level of mathematical ability of the students. The type of this research is qualitative research. The subject of this research is the students of class XII D SMA-Al-Azhar Mandiri Palu who have high, medium and low math ability. Data were collected by video recording, test method and interview. The results of this study indicate that subjects with high math ability, namely NF has a complete metacognition skill components that is prediction, planning, monitoring, and evaluation with regular and repetitive patterns. Subjects with medium math ability, namely HN also has a complete metacognition skill components that is prediction, planning, monitoring, and evaluation but the patterns is irregular and repetitive. And the subject of low math ability, namely TS has only three metacognition skill components that is prediction, planning, and evaluation with non-repetitive patterns.

References

Brown, A. L., & Baker, L. (1980). Metacognitive Skill and Reading. Bolt, Beranek and Newman, Inc. Cambridge, Mass.

Fatin Aliah Phang. (2006). The Patterns of Physics Problem-Solving From the Perspective of Metacognition [University of Cambridge]. https://www.academia.edu/298432/The_Patterns_of_Physics_Problem_Solving_From_the_Perspective_of_Metacognition

Hasibuan, E. K. (2018). Analisis Kesulitan Belajar Matematika Siswa Pada Pokok Bahasan Bangun Ruang Sisi Datar Di Smp Negeri 12 Bandung. AXIOM : Jurnal Pendidikan Dan Matematika, 7(1), 18–30. https://doi.org/10.30821/axiom.v7i1.1766

Intan Sari, M. (2016). Cognitive and Metacognitive Reading Strategy Use and Reading Comprehension Performance of Indonesian EFL Pre-service Teachers. Journal of Foreign Languange Teaching and Learning, 1(2). https://doi.org/10.18196/ftl.1213

J. H. Flavell. (1979). Metacognition and cognitive monitoring: A new area of cognitive-developmental inquiry. American Psychologist, 34(10), 906–911.

Kirkley, J. (2003). Principles for Teaching Problem Solving. Plato Learning Inc.

Kuzle, A. (2013). Patterns of metacognitive behavior during mathematics problem-solving in a dynamic geometry environment. International Electronic Journal of Mathematics Education, 8(1), 20–40.

Livingston, J. a. (2003). Metacognition: an overview. Psychology, 13, 259–266. http://gse.buffalo.edu/fas/shuell/CEP564/Metacog.htm

Miles, M. B., Huberman, A. M., & Saldana, J. (2014). Qualitative Data Analysis: A Methods Sourcebook (3rd ed.). Sage Publications. https://books.google.co.id/books?id=p0wXBAAAQBAJ&lpg=PP1&hl=id&pg=PR4#v=onepage&q&f=false

Niess, M. L. (2005). Preparing teachers to teach science and mathematics with technology: Developing a technology pedagogical content knowledge. Teaching and Teacher Education, 21(5), 509–523. https://doi.org/10.1016/j.tate.2005.03.006

Paul, R., & Elder, L. (2005). A Guide For Educators to Critical Thinking Competency Standards : Standards, Principles, Performance Indicators, and Outcomes With a Critical Thinking Master Rubric. The Foundation for Critical Thinking. www.criticalthinking.org

Schoenfeld, A. H. (1985). Mathematical Problem Solving. Academic Press Inc. https://www.amazon.com/Mathematical-Problem-Solving-Alan-Schoenfeld/dp/1493305999

Schoenfeld, A. H. (2016). Learning to Think Mathematically: Problem Solving, Metacognition, and Sense Making in Mathematics (Reprint). Journal of Education, 196(2), 1–38. https://doi.org/10.1177/002205741619600202

Stephanou, G., & Mpiontini, M.-H. (2017). Metacognitive Knowledge and Metacognitive Regulation in Self-Regulatory Learning Style, and in Its Effects on Performance Expectation and Subsequent Performance across Diverse School Subjects. Psychology, 08(12), 1941–1975. https://doi.org/10.4236/psych.2017.812125

Telaumbanua, Y. N., Sinaga, B., Mukhtar, & Surya, E. (2017). Development of Mathematics Module Based on Metacognitive Strategy in Improving Students’ Mathematical Problem Solving Ability at High School. Journal of Education and Practice, 10(8), 12.

Yudha, F. (2019). Peran Pendidikan Matematika Dalam Meningkatkan Sumber Daya Manusia Guna Membangun Masyarakat Islam Modern. JPM : Jurnal Pendidikan Matematika, 5(2), 87. https://doi.org/10.33474/jpm.v5i2.2725

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Published

2021-03-20

How to Cite

Bennu, S., & Multazam, M. (2021). KOMPONEN KETERAMPILAN METAKOGNISI SISWA DALAM PEMECAHAN MASALAH MATEMATIKA DI SMA AL-AZHAR MANDIRI PALU. Absis: Mathematics Education Journal, 3(1), 13–39. https://doi.org/10.32585/absis.v3i1.1381

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