Cognitive–Cultural Balance in Designing Culture-Based HOTS Tasks: Evidence from Prospective Mathematics Teachers

Authors

  • Alifiani Universitas Islam Malang, Indonesia
  • Susana Labuem Universitas Pattimura, Indonesia
  • Vivi Suwanti Universitas PGRI Kanjuruhan Malang, Indonesia
  • Muneeroh Phadung Yala Rajabath University, Thailand

DOI:

https://doi.org/10.33394/jk.v12i1.19417

Keywords:

Cognitive–Cultural Balance, Culture-Based HOTS Tasks, Prospective Mathematics Teachers

Abstract

This study aims to investigate how prospective mathematics teachers integrate cognitive and cultural dimensions in designing culture-based Higher Order Thinking Skills (HOTS) tasks. Using a qualitative descriptive approach, data were collected through task analysis, observation, and in-depth interviews. Data analysis in this study employed thematic analysis using a hybrid inductive–deductive approach. The study involved seventh-semester Mathematics Education students who had completed core pedagogical and professional courses as well as teaching practicum and were therefore considered ready as prospective teachers. Their task designs were analyzed using the Cognitive Demand and Cultural Value Framework, resulting in three classifications: cognitive dominance, cultural dominance, and cognitive–cultural balance, with one participant representing each category. Participants with cognitive dominance demonstrated strong mathematical reasoning and structured problem design but tended to disregard cultural authenticity and traditional norms. Conversely, culturally dominant participants displayed rich cultural sensitivity yet neglected mathematical coherence and contextual logic. Only participants achieving cognitive–cultural balance successfully integrated analytical rigor with cultural meaning, producing problems that were both mathematically valid and culturally grounded. These findings highlight that cognitive and cultural dimension are complementary rather than opposing forces. The study concludes that developing dual cognitive and cultural literacy is essential for prospective mathematics teachers to design transformative learning experiences that connect logical reasoning with cultural understanding, underscoring the need for teacher education institutions (LPTK) to integrate this balance explicitly into curriculum design to better prepare future teachers.

References

Alsina, Á., & Mulà, I. (2019). Advancing towards a transformational professional competence model through reflective learning and sustainability: The case of mathematics teacher education. Sustainability (Switzerland), 11(15). https://doi.org/10.3390/su11154039

Astuti, A. P., Aziz, A., Sumarti, S. S., & Bharati, D. A. L. (2019). Preparing 21st Century Teachers: Implementation of 4C Character’s Pre-Service Teacher through Teaching Practice. Journal of Physics: Conference Series, 1233(1). https://doi.org/10.1088/1742-6596/1233/1/012109

Creswell, J. W. (2012). Research Design: Qualitative, Quantitative, and Mixed Methods Approach (Third Edit). Pearson Education, Inc.

Daniel, F., Turmudi, T., Juandi, D., & Kusnandi, K. (2025). Exploring Mathematical Concepts in Buna Woven Fabric Motifs of the Amanuban Community and Their Integration into Mathematics Education. Journal La Edusci, 6(2), 230–247. https://doi.org/10.37899/journallaedusci.v6i2.2117

Dilekçi, A., & Karatay, H. (2023). The effects of the 21st-century skills curriculum on the development of students’ creative thinking skills. Thinking Skills and Creativity, 47. https://doi.org/10.1016/J.TSC.2022.101229

Fongkanta, P., & Buakanok, F. S. (2024). Development novice teachers’ higher-order thinking skills throughan online problem-based learning platform: A mixed-method experimental research. Cakrawala Pendidikan, 43(3), 756–764. https://doi.org/10.21831/cp.v43i3.72338

Gradini, E., Umar, A., Firmansyah, F., Effendi, Y., & Winardi, W. (2024). Fostering Higher Order Thinking Skills in Mathematics Learning: A Scoping Review of Teacher Development Initiatives. Unram Journal of Community Service, 5(1), 9–14. https://doi.org/10.29303/UJCS.V5I1.570

Jailani, Retnawati, H., Rafi, I., Mahmudi, A., Arliani, E., Zulnaidi, H., Hamid, H. S. A., & Prayitno, H. J. (2023). A phenomenological study of challenges that prospective mathematics teachers face in developing mathematical problems that require higher-order thinking skills. Eurasia Journal of Mathematics, Science and Technology Education, 19(10). https://doi.org/10.29333/ejmste/13631

Kosasih, A., Supriyadi, T., Firmansyah, M. I., & Rahminawati, N. (2022). Higher-Order Thinking Skills in Primary School: Teachers’ Perceptions of Islamic Education. Journal of Ethnic and Cultural Studies, 9(1), 56–76. https://doi.org/10.29333/ejecs/994

Labuem, S., Sa’dijah, C., Parta, N., & Sulandra, M. (2025). Mathematics in the Tordauk jerpara tel tradition: Contribution of local wisdom to mathematics education innovation in elementary schools. Journal on Mathematics Education, 16(3), 955–980. https://doi.org/10.22342/jme.v16i3.pp955-980

Lochmiller, C. R. (2021). Conducting Thematic Analysis with Qualitative Data. The Qualitative Report, 26(6), 2029–2044. https://doi.org/https://doi.org/10.46743/2160-3715/2021.5008

Lopez, S., & Viswanathappa, G. (2025). Pedagogical Competencies in Mathematics at Secondary Level: A Systematic Review of Pre-Service Teacher Training Programs. Asian Journal of Education and Social Studies, 51(8), 720–734. https://doi.org/10.9734/ajess/2025/v51i82272

Luzano, J. F. P. (2025). Culturally-Responsive Mathematics Teaching Strategies in the Contemporary Academic Tapestry: A Scoping Review. International Journal on Studies in Education, 7(2), 373–387. https://doi.org/10.46328/IJONSE.347

Madriaga, B., & Cajandig, A. J. (2025). Unveiling the Worldview of Mathematics Teachers Towards Culturally Responsive Mathematics Teaching: A Phenomenological Analysis. Psychology and Education: A Multidisciplinary Journal, 36(9), 979–989. https://doi.org/10.70838/pemj.360901

Makmuri, Aziz, T. A., & Kharis, S. A. A. (2021). Characteristics of problems for developing higher-order thinking skills in mathematics. Journal of Physics: Conference Series, 1882(1). https://doi.org/10.1088/1742-6596/1882/1/012074

Maulina, S., Isa, M., Helmi, R., Riski, N., & Safitri, E. (2025). Development of Mathematical Literacy Problems Based on the Ethnomathematics of Acehnese Culture. Jurnal Pendidikan MIPA, 26(4), 2077–2100.

Mei, A., Marsigit, Purwastuti, L. A., Hidayat, R., & Ayub, A. F. M. (2025). Problem-Solving Learning Model Based on Ethnomathematics to Improve Student’s Creative Thinking in Elementary School. Malaysian Journal of Mathematical Sciences, 19(1), 289–309. https://doi.org/10.47836/mjms.19.1.15

Mintohari, M., Suryanti, S., Suprayitno, S., Julianto, J., Wiryanto, W., & Yoka Putri, A. (2025). Integrating Primary School Teacher Education Students’ TPACK Competence in Developing C6-Level HOTS Questions. IJORER : International Journal of Recent Educational Research, 6(4), 1301–1313. https://doi.org/10.46245/ijorer.v6i4.851

Murti, R. C. (2023). Culturally Responsive Teaching to Support Meaningful Learning in Mathematics Primary School: A Content Analysis in Student’s Textbook. Jurnal Prima Edukasia, 11(2), 294–302. https://journal.uny.ac.id/index.php/jpe/article/view/63239

Nolan, K., & Keazer, L. (2021). Developing as Culturally Responsive Mathematics Teacher Educators: Reviewing and Framing Perspectives in the Research. International Journal of Humanities, Social Sciences and Education, 8(9), 151–163. https://doi.org/10.20431/2349-0381.0809015

Nursyahidah, F., Wardono, Mariani, S., & Wijayanti, K. (2025). Integrating technology, Javanese ethnomathematics, and realistic mathematics education in supporting prospective mathematics teachers’ numeracy skills: A learning trajectory. Journal on Mathematics Education, 16(2), 671–688. https://doi.org/10.22342/jme.v16i2.pp671-688

Payadnya, I. P. A. A., Putri, G. A. M. A., Suwija, I. K., Saelee, S., & Jayantika, I. G. A. N. T. (2025). Cultural integration in AI-enhanced mathematics education: insights from Southeast Asian educators. Journal for Multicultural Education, 19(1), 58–72. https://doi.org/10.1108/JME-09-2024-0119

Qadar, R., Efwinda, S., Syam, M., Haerani, R. P. R., Dinurrohmah, S., Aryaputra, A. R., & Farida, S. D. W. P. (2025). Assessment of Competence of Pre-service Mathematics and Science Teachers in Classifying Cognitive Processes and Knowledge Dimensions through the Revised Bloom’s Taxonomy. International Journal of STEM Education for Sustainability, 5(2), 248–256. https://doi.org/10.53889/ijses.v5i2.725

Radmehr, F. (2023). Toward a theoretical framework for task design in mathematics education. Journal on Mathematics Education, 14(2), 189–204. https://doi.org/10.22342/jme.v14i2.pp189-204

Rezeki, S., Fitriani, I., & Ramadhani, F. (2025). Implementasi Higher Order Thinking Skills (HOTS) terhadap Hasil Belajar Siswa pada Pembelajaran MIPA. Quadratic: Journal of Innovation and Technology in Mathematics and Mathematics Education, 4(02). https://doi.org/10.14421/QUADRATIC.2024.042-02

Sadijah, C., Murtafiah, W., Anwar, L., Nurhakiki, R., & Cahyowati, E. T. D. (2021). Teaching higher-order thinking skills in mathematics classrooms: Gender differences. Journal on Mathematics Education, 12(1), 159–179. https://doi.org/10.22342/JME.12.1.13087.159-180

Sari, Y. M., Kohar, A. W., El Milla, Y. I., Fiangga, S., & Rahayu, D. S. (2024). Aligning numeracy task design with SDG goals: Nutrition facts as a context for prospective mathematics teachers’ problem posing. Journal on Mathematics Education, 15(1), 191–206. https://doi.org/10.22342/jme.v15i1.pp191-206

Septripiyani, K., Hidayat, W., & Putra, H. D. (2025). The Development of Contextual Approach Teaching Materials to Improve Students’ Higher Order Thinking Skills (HOTS). (JIML) JOURNAL OF INNOVATIVE MATHEMATICS LEARNING, 8(1), 45–64. https://doi.org/10.22460/JIML.V8I1.22485

Tanudjaya, C. P., & Doorman, M. (2020). Examining higher-order thinking in Indonesian lower secondary mathematics classrooms. Journal on Mathematics Education, 11(2), 277–300. https://doi.org/10.22342/JME.11.2.11000.277-300

Tanujaya, B., Mumu, J., & Margono, G. (2017). The Relationship between Higher Order Thinking Skills and Academic Performance of Student in Mathematics Instruction. International Education Studies, 10(11), 78. https://doi.org/10.5539/ies.v10n11p78

Tatira, B. (2023). A Survey of Mathematics Pre-Service Teachers’ End-of-Teaching Practice Reflections of Educational Contexts. International Journal of Learning, Teaching and Educational Research, 22(7), 535–546. https://doi.org/10.26803/ijlter.22.7.28

Thornhill-Miller, B., Camarda, A., Mercier, M., Burkhardt, J. M., Morisseau, T., Bourgeois-Bougrine, S., Vinchon, F., El Hayek, S., Augereau-Landais, M., Mourey, F., Feybesse, C., Sundquist, D., & Lubart, T. (2023). Creativity, Critical Thinking, Communication, and Collaboration: Assessment, Certification, and Promotion of 21st Century Skills for the Future of Work and Education. Journal of Intelligence, 11(3). https://doi.org/10.3390/JINTELLIGENCE11030054

Toheri, T., & Muchyidin, A. (2025). Improving the Ability of Madrasah Aliyah Mathematics Teachers to Develop HOTS Questions through Training and Mentoring. Journal of General Education and Humanities, 4(1), 197–210. https://doi.org/10.58421/gehu.v4i1.386

Umbara, U., Prabawanto, S., & Jatisunda, M. G. (2023). Combination of Mathematical Literacy With Ethnomathematics: How To Perspective Sundanese Culture. Infinity Journal, 12(2), 393–414. https://doi.org/10.22460/infinity.v12i2.p393-414

Varveris, D., Saltas, V., & Tsiantos, V. (2023). Exploring the Role of Metacognition in Measuring Students’ Critical Thinking and Knowledge in Mathematics: A Comparative Study of Regression and Neural Networks. Knowledge, 3(3), 333–348. https://doi.org/10.3390/knowledge3030023

Vindigni, G. (2024). Overcoming Barriers to Inclusive and Equitable Education: A Systematic Review Towards Achieving Sustainable Development Goal 4 (SDG 4). European Journal of Arts, Humanities and Social Sciences, 1(5), 3–47. https://doi.org/10.59324/ejahss.2024.1(5).01

Wulandari, D. U., Mariana, N., Wiryanto, W., & Amien, M. S. (2024). Integration of Ethnomathematics Teaching Materials in Mathematics Learning in Elementary School. IJORER : International Journal of Recent Educational Research, 5(1), 204–218. https://doi.org/10.46245/ijorer.v5i1.542

Wulandari, R., Hariastuti, R. M., & Listiwikono, E. (2024). Etnomatematika Permainan Tradisional Nusantara Dalam Kajian Literatur. Differential: Journal on Mathematics Education, 2(2), 126–140. https://doi.org/10.32502/differential.v2i2.277

Zana, F. M., Sa’dijah, C., & Susiswo, S. (2022). LOTS to HOTS: How do mathematics teachers improve students’ higher-order thinking skills in the class? International Journal of Trends in Mathematics Education Research, 5(3), 251–260. https://doi.org/10.33122/IJTMER.V5I3.143

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Published

2026-03-14

How to Cite

Alifiani, Labuem, S., Suwanti, V., & Phadung, M. (2026). Cognitive–Cultural Balance in Designing Culture-Based HOTS Tasks: Evidence from Prospective Mathematics Teachers. Jurnal Kependidikan : Jurnal Hasil Penelitian Dan Kajian Kepustakaan Di Bidang Pendidikan, Pengajaran, Dan Pembelajaran, 12(1), 74–86. https://doi.org/10.33394/jk.v12i1.19417

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