Kemampuan Pemecahan Masalah Matematis: Sebuah Tinjauan Literatur Sistematis

Siti Zakiyah, Dadang Juandi, Didi Suryadi

Abstract


Mathematical problem-solving ability is a core 21st-century competency that constitutes a major focus of mathematics learning. Research on this topic has grown rapidly but remains scattered across diverse contexts, necessitating a systematic synthesis. This study aims to map publication trends, the distribution of countries, the educational levels of research subjects, and the learning approaches employed. The method used is a Systematic Literature Review (SLR) following the PRISMA 2020 guidelines applied to Scopus-indexed articles published between 2016 and 2026. From the 144 articles identified, 35 articles that positioned problem-solving as the main variable were obtained. The results indicate an increasing publication trend, peaking in 2024, a predominant contribution from Indonesia, a coverage of educational levels ranging from early childhood education to higher education with the largest concentration at the higher education and primary school levels as well as a diversity of approaches such as PBL, RME, STEM/STEAM, ethnomathematics, and technology integration. These findings can serve as a reference for the development of problem-solving-oriented mathematics learning and for further research.

Keywords


mathematical problem-solving; systematic literature review; PRISMA; mathematics education; 21st century skills

Full Text:

PDF

References


.[1] National Council of Teachers of Mathematics, Principles and Standards for School Mathematics. Reston, VA: NCTM, 2000.

B. Trilling and C. Fadel, 21st Century Skills: Learning for Life in Our Times. San Francisco, CA: Jossey-Bass, 2009.

Organisation for Economic Co-operation and Development, PISA 2018 Results (Volume I): What Students Know and Can Do. Paris: OECD Publishing, 2019.

Y. Nakakoji and R. Wilson, “Interdisciplinary learning in mathematics and science: Transfer of learning for 21st century problem solving at university,” J. Intell., vol. 8, no. 3, p. 32, Aug. 2020.

Organisation for Economic Co-operation and Development, PISA 2022 Results (Volume I): The State of Learning and Equity in Education. Paris: OECD Publishing, 2023.

A. H. Schoenfeld, “Learning to think mathematically: Problem solving, metacognition, and sense making in mathematics,” J. Educ., vol. 196, no. 2, pp. 1–38, Apr. 2016.

P. Liljedahl, M. Santos-Trigo, U. Malaspina, and R. Bruder, Problem Solving in Mathematics Education. Cham: Springer, 2016.

M. Santos-Trigo, “Problem solving in mathematics education: Tracing its foundations and current research-practice trends,” ZDM Math. Educ., vol. 56, no. 2, pp. 211–222, Apr. 2024.

B. Kitchenham and S. Charters, “Guidelines for performing systematic literature reviews in software engineering,” Keele Univ. and Durham Univ., EBSE Tech. Rep. EBSE-2007-01, 2007.

M. J. Page et al., “The PRISMA 2020 statement: An updated guideline for reporting systematic reviews,” BMJ, vol. 372, p. n71, Mar. 2021.

H. Nindiasari et al., “The use of augmented reality to improve students’ geometry concept problem-solving skills through the STEAM approach,” Infin. J., vol. 13, no. 1, pp. 119–138, 2024.

W. Susilawati, S. Sharov, M. Pasqa, and H. Malik, “Integrating realistic mathematics education, AI, and gamification to enhance students’ learning motivation and problem-solving skills,” J. Math. Educ., vol. 16, no. 4, pp. 1257–1282, 2025.

Y. Ying and R. Tiemann, “Investigating the factors influencing collaborative problem-solving in chemistry education: A cross-national study of German and Chinese students,” Int. J. Sci. Math. Educ., vol. 24, no. 2, 2026.

O. K. Cook, A. E. Westover, and J. L. Coffman, “Children’s early math problem-solving: The role of parent numeracy practices, numeracy expectations, and math attitudes,” J. Numer. Cogn., vol. 11, 2025.

L. C. Nguyễn, H. Q. Hoa, and L. H. P. Hien, “Integrating design thinking into STEM education: Enhancing problem-solving skills of high school students,” Eurasia J. Math. Sci. Technol. Educ., vol. 21, no. 4, pp. 1–11, 2025.

S. Lit, M. Kool, and P. Drijvers, “Teacher knowledge and skills for mathematical problem solving: A systematic literature review,” J. Math. Teach. Educ., 2026.

R. Cai and F.-K. Chiang, “A laser-cutting-centered STEM course for improving engineering problem-solving skills of high school students in China,” STEM Educ., vol. 1, no. 3, pp. 199–224, 2021.

H. Fernandes, H. Jacinto, and H. Oliveira, “Bridging problem-solving and problem-posing: Third graders learning to formulate mathematical problems in geometry and measurement,” Av. Investig. Educ. Mat., no. 28, pp. 31–53, 2025.

M. Ersoy and M. Dağyar, “The effect of problem-posing activities on secondary students’ mathematical problem-solving perceptions,” Eurasia J. Math. Sci. Technol. Educ., vol. 22, no. 7, 2026.

M. C. Passolunghi, E. Cargnelutti, and S. Pellizzoni, “The relation between cognitive and emotional factors and arithmetic problem-solving,” Educ. Stud. Math., vol. 100, no. 3, pp. 271–290, 2019.

R. Trinchero and G. Sala, “Chess training and mathematical problem-solving: The role of teaching heuristics in transfer of learning,” Eurasia J. Math. Sci. Technol. Educ., vol. 12, no. 3, pp. 655–668, 2016.

J. O. Leonardo and R. A. Ortega-Dela Cruz, “Problem-based learning on improving the problem-solving skills, attitudes, and study habits in mathematics,” Ann. Univ. Paedagog. Crac. Stud. Didact. Math. Pertin., vol. 16, pp. 43–67, 2024.

P. Hlongwana, V. Mudaly, and M. W. Zulu, “Enhancing geometry problem-solving through visualization for multilingual learners,” Eurasia J. Math. Sci. Technol. Educ., vol. 21, no. 7, p. em2658, 2025.

F. Hasan, S. W. Dj. Pomalato, and H. B. Uno, “Pengaruh pendekatan Realistic Mathematics Education (RME) terhadap hasil belajar matematika ditinjau dari motivasi belajar,” Jambura J. Math. Educ., vol. 1, no. 2, pp. 49–55, 2020.

N. Özreçberoğlu and Ç. K. Çağanağa, “Making it count: Strategies for improving problem-solving skills in mathematics for students and teachers’ classroom management,” Eurasia J. Math. Sci. Technol. Educ., vol. 14, no. 4, pp. 1253–1261, 2018.

F. Ukobizaba, G. Nizeyimana, and A. Mukuka, “Assessment strategies for enhancing students’ mathematical problem-solving skills: A review of literature,” Eurasia J. Math. Sci. Technol. Educ., vol. 17, no. 3, pp. 1–10, 2021.

D. Olivares, J. L. Lupiáñez, and I. Segovia, “Roles and characteristics of problem solving in the mathematics curriculum: A review,” Int. J. Math. Educ. Sci. Technol., vol. 52, no. 7, pp. 1079–1096, 2021.

M. K. Cho and M. K. Kim, “Investigating elementary students’ problem solving and teacher scaffolding in solving an ill-structured problem,” Int. J. Educ. Math. Sci. Technol., vol. 8, no. 4, pp. 274–289, 2020.

T. Susanna, E. Lasse, N. J. Henrik, and H.-N. Sari, “From problem-solving to reflection: Activating diverse metacognitive skills across age cohorts,” Int. J. Sci. Math. Educ., vol. 24, no. 2, 2026.

S. Taş and S. Deniz, “Prediction concerning the learned helplessness about mathematics, problem-solving skills and cognitive flexibility of secondary school students,” Turk. J. Comput. Math. Educ., vol. 9, no. 3, pp. 618–635, 2018.

Y. E. Prasetyo, N. Katminingsih, and A. Andri, “Kemampuan pemecahan masalah matematis pada penyelesaian soal jumping task berdasarkan adversity quotient peserta didik,” Jambura J. Math. Educ., vol. 6, no. 1, pp. 19–33, 2025.

E. M. M. Ballon, F. L. R. Gomez, A. E. L. F. Castro, and M. R. F. C. Linares, “Evaluating problem-solving and procedural skills of first-year university students in the transition to higher education,” Eurasia J. Math. Sci. Technol. Educ., vol. 20, no. 2, p. em2406, 2024.

T. Damayanti, B. R. Takaendengan, P. E. Kobandaha, and W. Gombah, “Development of ‘Stafolding’: A computer-based scaffolding interactive learning media to enhance students’ mathematical problem-solving ability,” Jambura J. Math. Educ., vol. 6, no. 2, pp. 94–109, 2025.

S. Turşucu, J. Spandaw, and M. J. de Vries, “The effectiveness of activation of prior mathematical knowledge during problem-solving in physics,” Eurasia J. Math. Sci. Technol. Educ., vol. 16, no. 4, p. em1837, 2020.




DOI: https://doi.org/10.37905/jmathedu.v7i1.23960

Refbacks

  • There are currently no refbacks.


Copyright (c) 2026 Jambura Journal of Mathematics Education

Creative Commons License
This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.


Jambura Journal of Mathematics Education has been indexed by:


                         EDITORIAL OFFICE OF JAMBURA JOURNAL OF MATHEMATICS EDUCATION

 Department of Mathematics, Universitas Negeri Gorontalo
Jl. Prof. Dr. Ing. B. J. Habibie, Moutong, Tilongkabila, Kabupaten Bone Bolango, Gorontalo 96554, Indonesia
 Email: [email protected]
 +6285255745923 (Call/SMS/WA)
 Jambura Journal of Mathematics Education (JMathEdu | eISSN: 2721-7477) by Department of Mathematics Universitas Negeri Gorontalo is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.  Powered by Public Knowledge Project OJS.