Designing Interactive E-Modules Based on Differentiated Instruction and the Theory of Didactical Situations for Primary Mathematics Education
Article Number: e2025368 | Available Online: August 2025 | DOI: 10.22521/edupij.2025.17.368
Sendi Ramdhani , Novi Andri Nurcahyono , Sri Dewi Nirmala
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Abstract
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Background/purpose. This study aims to design and validate an interactive e-module for primary mathematics instruction grounded in differentiated instruction and the theory of didactical situations (TDS). Amid growing calls for inclusive and adaptive pedagogy under Indonesia’s Merdeka Curriculum, the integration of digital technologies within differentiated instruction remains hindered by didactical, epistemological, and infrastructural challenges Materials/methods. Employing a didactical design research approach, the study progressed through an interpretative phase—identifying ontogenic, didactical, and epistemological obstacles—and a critical phase involving expert validation and iterative refinement. Results. Findings indicate that while technology-enhanced modules improve student engagement, barriers persist in conceptual understanding and learning autonomy. The final design incorporates adaptive pathways, inquiry-based tasks, multi-format content, and formative assessments with real-time feedback. Expert feedback emphasized the importance of increased interactivity, clearer scaffolding, and integrated teacher support. |
Conclusion. The findings support the viability of combining TDS and differentiation frameworks to deliver scalable, inclusive, and pedagogically robust mathematics instruction for primary learners. This research contributes a validated instructional model responsive to diverse learning needs and scalable across various digital learning environments.
Keywords: Differentiated instruction, didactical design, interactive e-modules, theory of didactical situations, primary mathematics education
ReferencesAb Hajis, S., & Othman, N. (2024). Navigating Challenges and Strategies in Implementing Differentiated Instruction: A Conceptual Overview. International Journal of Academic Research in Business and Social Sciences, 14(8), 1182-1199. https://doi.org/10.6007/IJARBSS/v14-i8/22153
Achieng, M. S. B. (2024). Teacher professional development and learning outcomes in the 21st century. IJRDO-Journal of Educational Research, 10(3), 46-54. https://doi.org/10.53555/er.v10i3.6190
Adipat, S., Chotikapanich, R., Laksana, K., Busayanon, K., Piatanom, P., Ausawasowan, A., & Elbasouni, I. (2023). Technological Pedagogical Content Knowledge for Professional Teacher Development. Academic Journal of Interdisciplinary Studies, 12(1), 173-182. https://doi.org/10.36941/ajis-2023-0015
Almouloud, S. A. (2017). Modelo de ensino/aprendizagem baseado em situações-problema: aspectos teóricos e metodológicos. Revemat: Revista Eletrônica de Educação Matemática, 11(2), 109-141. https://doi.org/10.5007/1981-1322.2016v11n2p109
An, F., Yu, J., & Xi, L. (2022). Relationship between perceived teacher support and learning engagement among adolescents: Mediation role of technology acceptance and learning motivation. Frontiers in Psychology, 13, 1-12. https://doi.org/10.3389/fpsyg.2022.992464
Anderson, G., & Boud, D. (1996). Introducing Learning Contracts: A Flexible Way to Learn. Innovations in Education and Training International, 33(4), 221–227. https://doi.org/10.1080/1355800960330409
Angelo, J. H., Higgins, K. N., & Crawford, L. (2014). Communicating mathematical ideas in a digital writing environment: the impacts on mathematical reasoning for students with and without learning disabilities. 2(4), 68–84. http://www.socialwelfare.eu/index.php/sw/article/view/215/0
Anggraena, Y. (2019). Pengembangan Kurikulum Matematika Untuk Meningkatkan Kemampuan Siswa Dalam Penalaran dan Pemecahan Masalah. Alifmatika: Jurnal Pendidikan Dan Pembelajaran Matematika, 1(1), 15–27. https://doi.org/10.35316/alifmatika.2019.v1i1.15-27
Arslan, S., Baran, D., & Okumus, S. (2011). Brousseau’s Theory of Didactical Situations in Mathematics and An Application of Adidactical Situations. Necatibey Faculty of Education Electronic Journal of Science and Mathematics Education, 5(1), 204-224.
Artigue, M., Haspekian, M., & Corblin-Lenfant, A. (2014). Introduction to the Theory of Didactical Situations (TDS) (pp. 47–65). Springer International Publishing. https://doi.org/10.1007/978-3-319-05389-9_4
Bagla, M. (2025). Challenges and Opportunities in Rural Education: Bridging Gaps Through Innovation. International Journal for Multidisciplinary Research, 7(1), 1-7. https://doi.org/10.36948/ijfmr.2025.v07i01.35200
Bahn, J., & Winsløw, C. (2019). Doing and Investigating Lesson Study with the Theory of Didactical Situations (pp. 83–101). https://doi.org/10.1007/978-3-030-04031-4_5
Barana, A., Marchisio, M., & Sacchet, M. (2021). Interactive feedback for learning mathematics in a digital learning environment. Education Sciences, 11(6), 279. https://doi.org/10.3390/EDUCSCI11060279
Basri, H. (2024). The Effectiveness of Blended Learning, Digital Literacy Programs, and Teacher Training on Student Outcomes in 2024. Global International Journal of Innovative Research, 2(8), 1745–1752. https://doi.org/10.59613/global.v2i8.249
Biller, D., Andres, L. A., & Dappe, M. H. (2014). Infrastructure gap in South Asia: inequality of access to infrastructure services. World Bank Group. https://doi.org/10.1596/1813-9450-7033
Blaz, D. (2016). Differentiated Instruction. Routledge. https://doi.org/10.4324/9781315695648
Brousseau, G. (1997). Theory of Didactical Situations in Mathematics. Kluwer, Dordrecht.
Camburn, E. M., & Han, S. W. (2015). Infrastructure for teacher reflection and instructional change: An exploratory study. Journal of Educational Change, 16(4), 511–533. https://doi.org/10.1007/S10833-015-9252-6
Carreira, S. (2015). Mathematical Problem Solving Beyond School: Digital Tools and Students’ Mathematical Representations (pp. 93–113). Springer, Cham. https://doi.org/10.1007/978-3-319-17187-6_6
Castle, S., Deniz, C. B., & Tortora, M. (2005). Flexible Grouping and Student Learning in a High-Needs School. Education and Urban Society, 37(2), 139–150. https://doi.org/10.1177/0013124504270787
Cavalcanti, A. P., Rolim, V., Mello, R. F., & de Freitas, F. L. G. (2020). Uma Análise entre Boas Práticas de Feedback em Ambientes Virtuais de Aprendizagem. In Simpósio Brasileiro de Informática na Educação (SBIE) (pp. 962-971). SBC. https://doi.org/10.5753/CBIE.SBIE.2020.962
Choudhary, H., & Bansal, N. (2022). Addressing Digital Divide through Digital Literacy Training Programs: A Systematic Literature Review. Digital Education Review, 41, 224–248. https://doi.org/10.1344/der.2022.41.224-248
Colón, G., Zgliczynski, T., & Maheady, L. (2022). Using Flexible Grouping. In High Leverage Practices for Inclusive Classrooms (pp. 265–281). Routledge. https://doi.org/10.4324/9781003148609-23
Crompton, H. (2015). Preparing teachers to use technology effectively using the technological, pedagogical, content knowledge (tpack) framework. Glokalde, 1(2), 82-92. https://digitalcommons.odu.edu/cgi/viewcontent.cgi?article=1047&context=teachinglearning_fac_pubs
Dewi, S., Alfiandra, A., & Safitri, S. (2024). Enhancing Pancasila Education through Differentiated Learning: The Role of E-Modules Developed with Flip PDF Professional. AL-ISHLAH: Jurnal Pendidikan, 16(4), 4630–4640. https://doi.org/10.35445/alishlah.v16i4.5337
Duggi, N., Bhadri, S., & Varala, C. R. (2025). Gaps in the Grid: Access and the Digital Inequality Crisis. Digital Crossroads: Integrating Humanities, Science and Technology Edition 1, 152-162. https://doi.org/10.9734/bpi/mono/978-93-48859-10-5/ch13
Fabian, K., Smith, S., & Taylor‐Smith, E. (2024). Being in Two Places at the Same Time: a Future for Hybrid Learning Based on Student Preferences. TechTrends, 68(4), 693-704. https://doi.org/10.1007/s11528-024-00974-x
Fuadiah, N. F. (2021). Theory Of Didactical Situation (TDS), Kajian Karakteristik dan Penerapannya dalam Pembelajaran Matematika. Jurnal Pendidikan Matematika (JUDIKA EDUCATION), 4(2), 160–169. https://doi.org/10.31539/judika.v4i2.3054
Genc, M., & Ergan, S. (2022). Teaching geometry through didactical situations: the case of the triangle inequality. Acta Didactica Napocensia, 15(2), 123-141. https://doi.org/10.24193/adn.15.2.8
Glassmeyer, D., Colclasure, M., & Alevy, L. (2022). Providing Virtual Mathematics Feedback: Connecting Research to Practice. Georgia Educational Researcher, 19(1), 47-61. https://doi.org/10.20429/ger.2022.190103
Groover, R. C. (2014). Effective Professional Development: Which Factors Matter in Implementation? (Doctoral dissertation). https://deepblue.lib.umich.edu/handle/2027.42/110310
Hajis, S. A., & Othman, N. (2024). Navigating Challenges and Strategies in Implementing Differentiated Instruction: A Conceptual Overview. International Journal of Academic Research in Business and Social Sciences, 14(8), 766-784. https://doi.org/10.6007/ijarbss/v14-i8/22153
Han, M., Yang, Y., & Sun, Y. (2024). Cultivation of Creative Thinking of Middle School Students Under Gamification Teaching Mode. In 2024 13th International Conference on Educational and Information Technology (ICEIT) (pp. 67-71). IEEE. https://doi.org/10.1109/iceit61397.2024.10540856
Hapsari, T., Darhim, & Dahlan, J. A. (2018). Understanding and responding the students in learning mathematics through the differentiated instruction. In Journal of Physics: Conference Series (Vol. 1013, No. 1, p. 012136). IOP Publishing. https://doi.org/10.1088/1742-6596/1013/1/012136
Hasan, H., Lesmawan, I. W., & Suastra, I. W. (2024). Implementasi Kurikulum Merdeka Pada Sekolah Dasar Systematic Literature Review. Equilibrium: Jurnal Pendidikan, 12(3), 295–305. https://doi.org/10.26618/equilibrium.v12i3.15652
Hernández, R. V. R., Mendoza, A. L., & Hernández, R. S. (2024). Perceived instructor presence, interactive tools, student engagement, and satisfaction in hybrid education post-COVID-19 lockdown in Mexico. Heliyon, 10 (6), e27342. https://doi.org/10.1016/j.heliyon.2024.e27342
Hoang, D. T. N., & Hoang, T. H. (2022). Ready or not? An exploration of university students’ online learning readiness and intention to use during COVID-19 pandemic. E-learning and Digital Media, 20(5), 442-459. https://doi.org/10.1177/20427530221117330
Holisoh, A., Nurhalimah, N., & Hamda, N. (2023). Analysis of the benefits of using e-modules as distance learning media: can it help students improve cognitive and affective aspects of students?. Gema Wiralodra, 14(2), 592-597. https://doi.org/10.31943/gw.v14i2.313
Ismaya, E., & Yusritawati, I. (2023). Analisis Penerapan Kurikulum Merdeka dalam Meningkatkan Kemampuan Representasi Matematis Siswa. Indo-MathEdu Intellectuals Journal, 4(2), 90–98. https://doi.org/10.54373/imeij.v4i2.123
Koimah, S. M., Zahra, N. A., Prasitini, E., Sasmita, S. K., & Sari, N. (2024). Implementasi Pembelajaran Berdiferensiasi untuk Memenuhi Kebutuhan Belajar Siswa yang Beragam. Jurnal Ilmu Sosial Dan Budaya Indonesia, 2(2), 58–66. https://doi.org/10.61476/49j96838
Lapets, A. (2012). Accessible integrated formal reasoning environments in classroom instruction of mathematics. Computer Science Department, Boston University. https://open.bu.edu/handle/2144/11403
Loi, C. K., Lim, J. M.-H., & Suki, N. (2024). Exploring University Students’ Online Learning Readiness: A Mixed Methods Study of Forced Online Learning. Journal of Language and Education, 10(1 (37)), 49-67. https://doi.org/10.17323/jle.2024.16016
Loureiro de Lima, G., Lutaif Bianchini, B., & Gomes, E. (2019). Comparação entre a teoria das Situações Didáticas de Brousseau e a Matemática no Contexto das Ciências de Camarena<br>Comparison between Brousseau’s Theory of Didactic Situations and Mathematics in the Context of Camarena Sciences. Educação Matemática Pesquisa: Revista Do Programa de Estudos Pós-Graduados Em Educação Matemática, 21(5). https://doi.org/10.23925/1983-3156.2019v21i5p151-161
Macharia, N. (2023). TAM’s perceived usefulness influence on social network site preference for accessing reproductive health information among university students. International Research Journal Of Modernization In Engineering Technology and Science, 5(7), 3289-3300. https://doi.org/10.56726/irjmets43586
Magalhães, P. J., & Teixeira, J. M. (2014). Um pouco da Teoria das Situações Didáticas (TSD) de Guy Brousseau Some of the theory of didactic situations (tsd) Guy Brousseau. Zetetiké, 21(1), 155-168. https://www.fe.unicamp.br/revistas/ged/zetetike/article/view/4327
Maier, U., & Klotz, C. (2022). Personalized feedback in digital learning environments: Classification framework and literature review. Computers & Education: Artificial Intelligence, 3, 100080. https://doi.org/10.1016/j.caeai.2022.100080
Manasrah, A., Masoud, M., Jaradat, Y., Jannoud, I., & Alheyasat, O. (2024). Ready, Click, Go! Evaluating the Readiness and Usability of an E-learning Portal from Students’ Point of View. The Eurasia Proceedings of Educational and Social Sciences, 33, 112-120. https://doi.org/10.55549/epess.1413347
Manggala, M. A., Nyanasuryanadi, P., & Suherman, H. (2024). Innovative Learning Using E-Modules. Journal of Education Technology Information Social Sciences and Health, 3(1), 550-557. https://doi.org/10.57235/jetish.v3i1.1983
Mangiante-Orsola, C., Perrin-Glorian, M.-J., & Strømskag, H. (2018). Theory of didactical situations as a tool to understand and develop mathematics teaching practices. Annales de Didactique et de Sciences Cognitives, Special issue, 145–174. https://doi.org/10.4000/adsc.334
Maphumulo, T., & Biccard, P. (2024). Mainstream Primary School Mathematics Classrooms. Unnes Journal of Mathematics Education, 13(1), 55. https://doi.org/10.15294/ccwb1a43
Mardhatillah, M., & Suharyadi, S. (2023). Differentiated Instruction: Challenges and Opportunities in EFL Classroom. Journal of English Language Teaching and Linguistics, 8(1), 69. https://doi.org/10.21462/jeltl.v8i1.1022
Marlina, D. (2020). Strategi pembelajaran berdiferensiasi di sekolah inklusif (Edisi ke-1, Cetakan Desember 2020). Cv. Afifa Utama.
Martin, A. J., & Dowson, M. (2009). Interpersonal Relationships, Motivation, Engagement, and Achievement: Yields for Theory, Current Issues, and Educational Practice. Review of Educational Research, 79(1), 327–365. https://doi.org/10.3102/0034654308325583
Martin, L. E., & Mulvihill, T. M. (2022). Voices in Education: Successful Professional Development for Educators: What Does It Look Like and Who Should Be Involved?. The Teacher Educator, 58(1), 1–14. https://doi.org/10.1080/08878730.2023.2145716
Masjudin, M. (2024). Strengthening 21st Century Skills Through an Independent Curriculum In Mathematics Education In Indonesia: Challenges, Potential, And Strategies. International Journal of Applied Science and Sustainable Development (IJASSD), 6(2), 92–113. https://doi.org/10.36733/ijassd.v6i2.9087
Matematiksel, Ö., Yaşatılması, S., Erdoğan, A., & Özdemir Erdoğan, E. (2013). Didaktik Durumlar Teorisi Işığında İlköğretim. In Ahi Evran Üniversitesi Kırşehir Eğitim Fakültesi Dergisi (KEFAD) Cilt (Vol. 14).
Memon, F. N., & Memon, S. N. (2025). Digital divide and equity in education: Bridging gaps to ensure inclusive learning. In Impact of Digitalization on Education and Social Sustainability (pp. 107-130). IGI Global. https://doi.org/10.4018/979-8-3693-1854-6.ch004
Mirawati, I. G. A., Suwastini, N. K. A., Haryanti, N. D., & Jayantini, I. G. A. S. R. (2022). Differentiated instructions: Relevant studies on its implementation. Prasi, 17(1), 11-21. https://doi.org/10.23887/prasi.v17i1.41867
Mulia, A. C., Sa'dijah, C., & Susanto, H. (2024). Implementasi Asesmen Berbasis Open-Ended Mathematics Problems Pada Siswa Smp Yang Mendukung Kurikulum Merdeka [Implementation of an Open-Ended Based Assessment With Middle School Mathematics Students That Supports the Merdeka Curriculum]. JOHME: Journal of Holistic Mathematics Education, 8(1), 1-17. https://doi.org/10.19166/johme.v8i1.7721
Niu, N. (2009). On the Principles of Differentiated Instruction. Journal of Lincang Teachers’ College.
Obioma, D. M. N. C. (2023). Unlocking Potential: The Crucial Link between School Infrastructure and Educational Quality. International Journal of Research and Innovation in Social Science, 7(9), 404-413. https://doi.org/10.47772/ijriss.2023.70934
OECD. (2023). Shaping Digital Education: Enabling Factors for Quality, Equity and Efficiency. OECD Publishing. https://doi.org/10.1787/bac4dc9f-en
Oquendo, A. M., & Macancela, L. E. M. (2017). Las situaciones prácticas en el proceso de enseñanza aprendizaje de las matemáticas. Revista Ciencias Pedagógicas e Innovación, 4(1), 93-100. https://doi.org/10.26423/RCPI.V4I1.121
Padmavathi, M. (2017). Preparing teachers for technologybased teaching-learning using TPACK. Journal on School Educational Technology, 12(3), 1-9. https://doi.org/10.26634/JSCH.12.3.10384
Pawar, R. B., & Dhawale, V. (2025). A Comparative Analysis of Online Learning and Traditional Learning: Towards a Hybrid Learning Model. Indian Scientific Journal of Research in Engineering and Management, 09(01), 1–9. https://doi.org/10.55041/ijsrem40711
Pettalongi, S. S., Londol, M. M., & Umboh, S. E. (2024). Disparities in Digital Education: Socioeconomic Barriers to Accessing Online Learning Resources. International Journal of Social and Human., 1(3), 181–189. https://doi.org/10.59613/be6gdv98
Prast, E., Weijer-Bergsma, E., Kroesbergen, E., & Luit, J. (2018). Differentiated instruction in primary mathematics: Effects of teacher professional development on student achievement. Learning and Instruction, 54, 22–34. https://doi.org/10.1016/J.LEARNINSTRUC.2018.01.009
Putri, W. F., Hidayanti, D. N., Muzhafran, M., & Ramadhan, I. F. (2024). Analisis Problematika Kurikulum Merdeka pada Pembelajaran Matematika di SDN 012 Babakan Ciparay Kota Bandung. Jurnal Riset Rumpun Matematika dan Ilmu Pengetahuan Alam, 3(1), 119-128. https://doi.org/10.55606/jurrimipa.v3i1.2288
Rahayu, A., & Rosti, R. (2023). Interactive Digital Teaching Module Based on Differentiated Instruction and Its Impact on Students' Problem-Solving Skills. Jurnal Penelitian Pendidikan IPA, 9(SpecialIssue), 1128-1136. https://doi.org/10.29303/jppipa.v9ispecialissue.5072
Ramdhani, S., Nirmala, S. D., & Nurcahyono, N. A. (2025). Challenges in Online Mathematics Education for Elementary Schools: A Teacher’s Perspective from Indonesia. Indonesian Journal of Educational Development (IJED), 6(1), 109-123. https://doi.org/10.59672/ijed.v6i1.4640
Ratnawati, K., Artini, N. L. P., & Kusuma, I. P. I. (2024). Interactive E-Modules Assisted By Google Sites in Efl: Its Effect on Students'critical Thinking and Learning Engagement. Indonesian Journal of Educational Development (IJED), 5(2), 194-207. https://doi.org/10.59672/ijed.v5i2.4032
Rifqi, M. S. (2024). Exploring Challenges of Differentiated Instruction in English Foreign Language Classroom. LET: Linguistics, Literature and English Teaching Journal, 14(1), 77-97. https://doi.org/10.18592/let.v14i1.12174
Rønning, F. (2021). Opportunities for language enhancement in a learning environment designed on the basis of the theory of didactical situations. ZDM–Mathematics education, 53(2), 305-316. https://doi.org/10.1007/S11858-020-01199-X
Saenboonsong, S., & Poonsawad, A. (2024). The Development of Students’ Creative Problem-Solving Skills Through Learning Model in Gamification Environment Together with Cartoon Animation Media. Journal of Education and Learning, 13(2), 138-148. https://doi.org/10.5539/jel.v13n2p138
Sanmas, M., Qadir, A., Nahria, N., & Laili, I. (2024). The Role of Interpersonal Communication in Enhancing Teamwork Effectiveness in the Digital Era. LITERATUS, 5(2). https://doi.org/10.37010/lit.v5i2.1503
Schaeffer, M. W., Rozek, C. S., Maloney, E. A., Berkowitz, T., Levine, S. C., & Beilock, S. L. (2021). Elementary school teachers’ math anxiety and students’ math learning: A large‐scale replication. Developmental Science, 24(4), e13080. https://doi.org/10.1111/desc.13080
Setambah, M. A. B., Saad, M. I. M., & Adnan, M. (2024). A comprehensive synthesis of differentiated instruction approaches in mathematics. LUMAT: International Journal on Math, Science and Technology Education, 12(4), 1-18. https://doi.org/10.31129/LUMAT.12.4.2371
Shaya, N. (2024). Assessment of Student Readiness, Willingness and Acceptance for Effective Transitioning Toward Online Instruction (pp. 35–47). Springer International Publishing. https://doi.org/10.1007/978-3-031-49393-5_6
Smets, W., & Struyven, K. (2018). Aligning with complexity: system-theoretical principles for research on differentiated instruction. Frontline Learning Research, 6(2), 66–80. https://doi.org/10.14786/flr.v6i2.340
Suastika, I. K. (2023). The Practicality and Effectiveness of E-Modules with an Inquiry Approach in Geometry Learning Courses for Elementary School Teacher Education Students. JTAM (Jurnal Teori Dan Aplikasi Matematika), 7(4), 1118. https://doi.org/10.31764/jtam.v7i4.16543
Sun, D., Wang, J., Yang, L., Chou, K.-l., Song, Z., & Zheng, Z. (2024, November 25). AI‑driven feedback for enhancing students’ mathematical problem‑solving: The ScaffoldiaMyMaths system. In Proceedings of the 32nd International Conference on Computers in Education (ICCE 2024). Asia‑Pacific Society for Computers in Education. https://doi.org/10.58459/icce.2024.5054
Sun, X., & Yusof, S. M. (2024). Implementation of and challenges in differentiated L2 language instruction: A systematic literature review (2014-2023). Salud, Ciencia y Tecnología-Serie de Conferencias, 3, 1249. https://doi.org/10.56294/sctconf2024.1249
Syaiful, S., Salam, U., & Maria, H. T. (2023). Pengembangan E-Modul Interaktif Dalam Meningkatkan Hasil Belajar Sistem Ekskresi Pada Manusia. Academy of Education Journal, 14(2), 854–872. https://doi.org/10.47200/aoej.v14i2.1936
Tamba, K. P. (2022, November). Digital task design using theory of didactical situation. In AIP Conference Proceedings (Vol. 2566, No. 1, p. 020031). AIP Publishing LLC. https://doi.org/10.1063/5.0114199
Tammaro, R., & D’Alessio, A. (2016). Teacher Training and Digital Competence: A Pedagogical Recommendation. International Journal of Digital Literacy and Digital Competence, 7(2), 1–10. https://doi.org/10.4018/IJDLDC.2016040101
Tomlinson, C. A. (2014). The differentiated classroom: Responding to the needs of all learners (2nd ed.). ASCD.
Tomlinson, C. A., & Moon, T. R. (2013). Assessment and student success in a differentiated classroom. Alexandria, VA: Association for Supervision and Curriculum Development (ASCD).
Wahyudin, D., Subkhan, E., Malik, A., Hakim, M. A., Sudiapermana, E., Alhapip, L., Anggraena, Y., Maisura, R., Amalia, N., & Solihin, L. (2024). Kajian Akademik Kurikulum Merdeka. Jakarta: Pusat Kurikulum Dan Pembelajaran, Badan Standar, Kurikulum, Dan Asesmen Pendidikan, Kementerian Pendidikan, Kebudayaan, Riset Dan Teknologi.
Wahyuni, S., Iqbal, M., & Baharuddin. (2024). Evaluasi efektivitas penerapan kurikulum merdeka dalam meningkatkan hasil belajar dan keterampilan literasi siswa sekolah dasar. Idarah Tarbawiyah: Journal of Management in Islamic Education, 5(3), 360–368. https://doi.org/10.32832/itjmie.v5i3.16736
Whiting, J., Haniya, S., & Evans, J. R. (2023). Conceptualizing Recursive Feedback in Digital Learning Spaces (pp. 152–164). IGI Global. https://doi.org/10.4018/978-1-6684-5124-3.ch008
Winangun, I. M. A. (2024). Interactive E-Modules with Cases of Local Wisdom in Learning Animal Diversity to Improve Student Learning Outcomes. Jurnal Imiah Pendidikan Dan Pembelajaran, 8(1), 118–124. https://doi.org/10.23887/jipp.v8i1.69028
Xu, Q. (2024). The Impact of New Media Technology Applications on Educational Equity in Rural Areas. Education Journal, 13(5), 284–293. https://doi.org/10.11648/j.edu.20241305.15
Yanti, Y., Juliansyah, M. E., Erlina, E., Hijriah, U., & Irfani, B. (2024). Peranan Guru dalam Mewujudkan Pendidikan Karakter Era Kurikulum Merdeka. Thawalib: Jurnal Kependidikan Islam, 5(2), 513–524. https://doi.org/10.54150/thawalib.v5i2.497
Zulkarnaen, R., Darmawan, B. A., & Ruli, R. M. (2022). PENGEMBANGAN LEMBAR KERJA SISWA DALAM MATERI MATEMATIKA PADA KELAS VIII BERBASIS THEORY OF DIDACTICAL SITUATION. Teorema: Teori Dan Riset Matematika, 7(2), 365. https://doi.org/10.25157/teorema.v7i2.7322
Λαμπρόπουλος, Γ., & Sidiropoulos, A. (2024). Impact of Gamification on Students’ Learning Outcomes and Academic Performance: A Longitudinal Study Comparing Online, Traditional, and Gamified Learning. Education Sciences, 14(4), 367. https://doi.org/10.3390/educsci14040367