Reorientasi Capaian Pembelajaran Matematika Fase E Berbasis Kompetensi ESD
DOI:
10.29303/jm.v7i4.10653Published:
2025-12-31Downloads
Abstract
This study aims to analyze and reorient the Mathematics Learning Outcomes (Capaian Pembelajaran/CP) of Phase E to align with eight key competencies of Education for Sustainable Development (ESD). Using a modified Krippendorff’s content analysis model with three stages, unitizing, coding, and reorienting, supported by a survey of high school students' perceptions in East Java, the study found that current Mathematics CPs remain largely conceptual-procedural and lack explicit sustainability integration. Nevertheless, each domain shows reorientation potential: Number through contexts of energy efficiency and sustainable resource use; Algebra and Functions through mathematical modeling of sustainability issues such as population growth and carbon emissions; Geometry through environmentally responsive spatial design; and Data and Probability through data literacy and ethical reasoning using environmental data. Survey findings indicate students’ strong cognitive and affective readiness for contextual and sustainability-oriented mathematics learning. Overall, the study highlights the need to shift mathematics education from learning about sustainability toward learning as and for sustainability, positioning mathematics as a tool for systemic, reflective, and ethical reasoning in addressing real-world sustainability challenges.
Keywords:
learning outcomes reorientation sustainable mathematics education ESD sustainability competencies Merdeka CurriculumReferences
Bowen, G.A. (2009). Document Analysis as a Qualitative Research Method. Qualitative Research Journal. https://doi.org/10.3316/QRJ0902027
Cresswell, J. W. & Cresswell, J.D. (2018). Fifth Edition Research Design: Qualitative, Quantitative, and Mixed Methods Approaches. Los Angeles: SAGE.
Godino, J. D., Batanero, C., Burgos, M., & Wilhelmi, M. R. (2024). Understanding the onto-semiotic approach in mathematics education through the lens of the cultural historical activity theory. ZDM – Mathematics Education. https://doi.org/10.1007/s11858-024-01590-y
Helliwell, T. & Oi-Lam Ng (2022) Imagining possibilities: innovating mathematics (teacher) education for sustainable futures. Research in Mathematics Education. https://doi.org/10.1080/14794802.2022.2079553
JDIH KEMDIKDASMEN. (2025). SK BSKAP NOMOR 046/H/KR/2025. Tentang Capaian Pembelajaran pada Pendidikan Anak Usia Dini, Jenjang Pendidikan Dasar, dan Jenjang Pendidikan Menengah.
Krippendorf, K. (2019). Fourth Edition Content Analysis: An Introduction to Its Methodology. California: SAGE Publications, Inc.
Kurniati, D., Wahyuna, I., Dwi, D., Sepeng, P., & Osman, S. (2024). Development of Numeracy Problems Based on Education for Sustainable Development (ESD) to Measure Critical Thinking Ability. TEM Journal. https://doi.org/10.18421/TEM133-19
Lestari, S. A. P., Nurapriani, F., & Kusumaningrum, D. S. (2024). Integrating Sustainable Development Principles in Learning Mathematics to Stimulate Sustainable Skills in Future Generations. Jurnal Rekayasa Sistem Industri. https://doi.org/10.26593/jrsi.v13i1.7167.1-10
Lina, S. I., Johar, R., & Anwar. (2025). The role of mathematics education in shaping sustainable futures: A systematic literature review. Jurnal Elemen. https:/doi.org/10.29408/jel.v11i3.29706
Makramalla, M., Coles, A., Roux, K., & Wagner, D. (2025). Mathematics education for sustainable futures: a strengths‑based survey of the feld to invite further research action. Educational Studies in Mathematics. https://doi.org/10.1007/s10649-025-10389-x
Malik, F. (2024). The Role of Education in Promoting Enviromental Awereness and Sustainable Practise. Frontiers in Enviromental Science and Sustainability (Vol. 1(2), pp. 242 – 254).
Pascual, R., Liu, P., Baldonado, J., Pascual, A. G., & Mina, G. (2025). The Role Of Education In Promoting Sustainability And Social Responsibility. International Journal of Environmental Sciences. https://doi.org/10.64252/xx0wjk25
Rieckmann, M., Shephard, K., & Barth, M. (2018). Seeking sustainability competence and capability in the ESD and HESD literature: an international philosophical hermeneutic analysis. Environmental Education Research. https://doi.org/10.1080/13504622.2018.1490947
Sumarna, M. S., Nindiasari, H., Pujiastuti, H., & Yuhana, Y. (2025). Systematic Literature Review: Penerapan Realistic Mathematics Education Meningkatkan Kemampuan Komunikasi dan Pemahaman Konsep Matematis Siswa. Edukasiana: Jurnal Inovasi Pendidikan, 4(3), 946–956. https://doi.org/10.56916/ejip.v4i3.1606
Tesfamicael, S. A., & Enge, O. (2024). Revitalizing Sustainability in Mathematics Education: The Case of the New Norwegian Curriculum. Education Sciences, 14(2), 174. https://doi.org/10.3390/educsci14020174
Toruan, H.L., Simamora, R.E., & Rahayu, S.W. (2024). Efektivitas Realistic Mathematics Education Terhadap Berpikir Kritis Matematis Siswa Kelas VII Sekolah Menengah Pertama. EDU-MAT: Jurnal Pendidikan Matematika, 12(2). https://dx.doi.org/10.20527/edumat.v12i2.19875
UNESCO. (2014a). Shaping the Future We Want: UN Decade of Education for Sustainable Development (2005-2014) Final Report. Luxembourg.
UNESCO. (2017). Education for Sustainable Development Goals: Learning Objectives. Paris. https://doi.org/10.54675/CGBA9153
UNESCO. (2020). Education for Sustainable Development Goals: A roadmap. Paris. https://doi.org/10.54675/YFRE1448
UNESCO. (2021). Reimagining Our Futures Together: A new social contract for education. Paris. https://doi.org/10.54675/ASRB4722
Vásquez, C., Alsina, Á., Seckel, M. J., & García-Alonso., I. (2023). Integrating sustainability in mathematics education and statistics education: A systematic review. Eurasia Journal of Mathematics, Science and Technology Education. https://doi.org/10.29333/ejmste/13809
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