Meta-Synthesis of Metacognition’s Role in Enhancing Mathematical Critical Thinking

Authors

  • Dimas Ghulam Istiqlal Universitas Negeri Semarang
  • Bambang Eko Susilo Universitas Negeri Semarang
  • Scolastika Mariani Universitas Negeri Semarang
  • Isnaini Rosyida Universitas Negeri Semarang

DOI:

https://doi.org/10.24235/eduma.v14i2.24753

Keywords:

Metacognition, Mathematical critical thinking, Meta-Synthesis

Abstract

This study aims to analyze and synthesize various research findings on the role of metacognition in developing students’ mathematical critical thinking skills. The method employed is a qualitative meta-synthesis using a systematic literature review approach on six published articles from 2020 to 2025 that are relevant to metacognition and critical thinking in mathematics learning. The analysis was conducted through thematic coding and cross-study interpretation to identify patterns, distinctions, and theoretical development directions. The synthesis results indicate that metacognition functions as a regulatory mechanism of intellectual awareness, guiding students to plan, monitor, and evaluate their thinking processes reflectively. The relationship between metacognition and critical thinking is reciprocal and hierarchical: metacognition serves as the foundation for critical thinking, while critical thinking reinforces metacognitive awareness through continuous reflection. These findings highlight a paradigm shift from metacognition as a teaching strategy to metacognition as a cognitive architecture. This study recommends the development of a conceptual model of the metacognitive–critical thinking cycle within mathematics learning contexts that are adaptive to students’ cognitive and cultural characteristics.

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References

Arini, L., Duskri, M., & Yani, M. (2022). Penerapan Strategi Metakognitif Terhadap Kemampuan Berpikir Kritis Matematis Siswa. Pedagogik: Jurnal Ilmiah Pendidikan Dan Pembelajaran, 9(1), 111–120.

Campbell, M., McKenzie, J. E., Sowden, A., Katikireddi, S. V., Brennan, S. E., Ellis, S., Hartmann-Boyce, J., Ryan, R., Shepperd, S., Thomas, J., Welch, V., & Thomson, H. (2020). Synthesis without meta-analysis (SWiM) in systematic reviews: Reporting guideline. The BMJ, 368, 1–6. https://doi.org/10.1136/bmj.l6890

de Almeida, L. M. W., & de Castro, É. M. V. (2023). Metacognitive Strategies in Mathematical Modelling Activities: Structuring an Identification Instrument. Redimat, 12(3), 210–228. https://doi.org/10.17583/redimat.12926

Elmawati, E., & Juandi, D. (2022). Mathematical Critical Thinking Ability In Indonesia: Systematic Literature Review (SLR). Symmetry: Pasundan Journal of Research in Mathematics Learning and Education, 7(2), 210–221. https://doi.org/10.23969/symmetry.v7i2.6426

Faiziyah, N., & Priyambodho, B. L. (2022). Analisis Kemampuan Berpikir Kritis Dalam Menyelesaikan Soal Hots Ditinjau Dari Metakognisi Siswa. AKSIOMA: Jurnal Program Studi Pendidikan Matematika, 11(4), 2823. https://doi.org/10.24127/ajpm.v11i4.5918

Fitaloka, R. D., Netriwati, N., & Fadila, A. (2022). Pengaruh Model Pembelajaran Problem Based Learning Dengan Pendekatan Metakognitif Terhadap Kemampuan Berpikir Kritis Dan Pemahaman Konsep Matematis. Hipotenusa Journal of Research Mathematics Education (HJRME), 5(2), 74–89. https://doi.org/10.36269/hjrme.v5i2.847

Güner, P., & Erbay, H. N. (2021). Metacognitive Skills and Problem-Solving. International Journal of Research in Education and Science, 7(3), 715–734. https://doi.org/10.46328/ijres.1594

Habib Ramadhani, M., Yayah Haenilah, E., Lampung, U., & Ir Sumantri Brojonegoro, J. (2020). Efektivitas Model Problem Based Learning Bersasis Metakognitif Terhadap Kemampuan Berpikir Kritis Matematis. 04(02), 1064–1071.

Hetty Marhaeny, N., & Faza Fariha, N. (2024). Persepsi Kemampuan Berpikir Kritis Melalui Pendekatan Metakognisi Berbasis ETNOMATEMATIKA. In Jurnal Rinjani Pendidikan Guru Sekolah Dasar (Vol. 2, Issue 01). https://jurnalrinjanipendidikan.com/index.php/JR-PGSD

Hunaifi, H., & Juandi, D. (2023). The effect of metacognitive strategies on mathematical problem-solving ability: A systematic literature review. AIP Conference Proceedings, 2734(1). https://doi.org/10.1063/5.0175086

Liani, A. M., Hamid, A., & Abidin, M. R. (2025). Eksplorasi Strategi Metakognitif Untuk Meningkatkan Kemampuan Berpikir Kritis Matematika Siswa. Jupika: Jurnal Pendidikan Matematika, 8(1), 91–100. https://doi.org/10.37478/jupika.v8i1.5404

Muncer, G., Higham, P. A., Gosling, C. J., Cortese, S., Wood-Downie, H., & Hadwin, J. A. (2022). A Meta-Analysis Investigating the Association Between Metacognition and Math Performance in Adolescence. In Educational Psychology Review (Vol. 34, Issue 1). Educational Psychology Review. https://doi.org/10.1007/s10648-021-09620-x

Říčan, J., Chytrý, V., & Medová, J. (2022). Aspects of self-regulated learning and their influence on the mathematics achievement of fifth graders in the context of four different proclaimed curricula. Frontiers in Psychology, 13. https://doi.org/10.3389/fpsyg.2022.963151

Syaiful, Huda, N., Mukminin, A., & Kamid. (2022). Using a metacognitive learning approach to enhance students’ critical thinking skills through mathematics education. SN Social Sciences, 2(4), 1–26. https://doi.org/10.1007/s43545-022-00325-8

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Published

2025-12-31

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Articles

How to Cite

Meta-Synthesis of Metacognition’s Role in Enhancing Mathematical Critical Thinking. (2025). EduMa: Mathematics Education Learning and Teaching, 14(2), 483-495. https://doi.org/10.24235/eduma.v14i2.24753

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