Design and Evaluation of a Culturally Responsive Flipbook E-Module on Quantities and Units for Improving Students’ Critical Thinking Skills

Ellianawati Ellianawati(1,Mail), Figi Anggun Yossindy(2), Bambang Subali(3), Suharto Linuwih(4), Lolly Jean C. Simbulas(5) | CountryCountry:


(1) Physics Education Study Program, Universitas Negeri Semarang, Indonesia
(2) Physics Education Study Program, Universitas Negeri Semarang, Indonesia
(3) Physics Education Study Program, Universitas Negeri Semarang, Indonesia
(4) Physics Education Study Program, Universitas Negeri Semarang, Indonesia
(5) University of the Immaculate Conception, Philippines

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© 2026 Ellianawati Ellianawati, Figi Anggun Yossindy, Bambang Subali, Suharto Linuwih, Lolly Jean C. Simbulas

This study reports the development and empirical evaluation of a culturally responsive flipbook e-module for teaching quantities and units in Indonesian senior secondary physics. Developed using the ADDIE framework and grounded in Culturally Responsive Teaching (CRT), the module integrates local measurement systems, mud, tala, lot, and deben, as epistemic resources for scientific reasoning. A quasi-experimental field trial involved 117 Grade 10 students across three intact classes: two experimental groups (digital: n = 41; print: n = 40) and one control group (conventional worksheets: n = 36). Expert validation confirmed strong content validity (Aiken’s V = 0.87), particularly in cultural authenticity and alignment with critical thinking constructs. Student surveys indicated high practicality (89.55%) and positive perceptions (85.75%), with learners highlighting how culturally familiar contexts, such as zakat unit analysis or land measurement using lots, enhanced relevance and cognitive engagement. To evaluate learning impact, a pretest–posttest design was implemented, with critical thinking measured via a validated open-response instrument. Analysis of covariance (ANCOVA), controlling for pretest scores, revealed a statistically significant effect of instructional modality on posttest performance, F(2, 113) = 58.34, p < 0.001, with a large effect size (partial η² = 0.513). Adjusted means showed that the experimental groups significantly outperformed the control group (Madj = 79.14 (digital); Madj = 80.72 (print); Madj = 42.13 (control); p < 0.001), while there was no meaningful difference between the delivery modes (p = 0.682). These findings suggest that the CRT-based design, rather than the medium, influences learning outcomes, supporting scalable implementation across diverse infrastructural contexts. When cultural knowledge is structurally integrated into disciplinary reasoning, students engage more deeply, affirming the module’s potential as an equitable, contextually relevant tool for improving rigorous science education.

 

Keywords: critical thinking skills, e-module, culturally responsive teaching.

Ainy, H. Q., Supeno, & Ahmad, N. (2024). Pengembangan e-modul berbantuan flipbook digital untuk meningkatkan kemampuan problem solving siswa SMP pada pembelajaran IPA [Development of e-modules assisted by digital flipbooks to improve problem-solving skills of junior high school students in science learning]. Jurnal Ilmiah Pendidikan Citra Bakti, 11(1), 102–115. https://doi.org/10.38048/jipcb.v11i1.3090

Arifah, N., Kadir, F., & Nuroso, H. (2021). Hubungan antara model pembelajaran problem-based learning dengan kemampuan berpikir kritis pada pembelajaran fisika siswa [The relationship between the problem-based learning model and critical thinking skills in students' physics learning]. Karst: Jurnal Pendidikan Fisika dan Terapannya, 4(1), 14–20. https://doi.org/10.46918/karst.v4i1.946

Bang, M., Faber, L., & Warren, B. (2023). Culturally sustaining assessment in science education: Centering indigenous epistemologies in validity arguments. Journal of Research in Science Teaching, 60(1), 1–24. https://doi.org/10.1002/tea.21812

Buchori, A., & Harun, L. (2020). Desain e-modul flipbook berbasis culturally responsive teaching (CRT) pada materi transformasi geometri di sekolah menengah kejuruan [Design of a flipbook e-module based on culturally responsive teaching (CRT) on geometric transformation material in vocational high schools.]. Lebesgue: Jurnal Ilmiah Pendidikan Matematika, Matematika dan Statistika, 1(1), 63–73. http://lebesgue.lppmbinabangsa.id/index.php/home

Cruz, R. A., Manchanda, S., Firestone, A. R., & Rodl, J. E. (2020). An examination of teachers' culturally responsive teaching Journal of Teacher Education, 71(5), 442–455. https://doi.org/10.1177/0888406419875194

Dewi, A. K., Ayuwanti, I., & Setyawati, A. (2024). Perbandingan model pembelajaran problem posing dengan pembelajaran konvensional terhadap hasil belajar matematika siswa kelas VIII [Comparison of problem posing learning models with conventional learning on mathematics learning outcomes of class VIII students]. Jurnal Ilmiah Matematika Realistik, 5(1), 84–89. https://doi.org/10.33365/ji-mr.v5i1.5097

Ennis, R. H. (1987). A logical basis for measuring critical thinking skills. Educational Leadership, 45(2), 44–48.

Ennis, R. H. (2011). Critical thinking: Reflection and perspective—Part II. Inquiry: Critical Thinking Across the Disciplines, 26(2), 5–19. https://doi.org/10.5840/inquiryctnews20112627

Ford, D. J., & Smith, W. S. (2023). Critical thinking in physics: Beyond argumentation to epistemic vigilance. International Journal of Science Education, 45(8), 1245–1263. https://doi.org/10.1080/09500693.2023.2198761

Harris, J. A., Patel, R., Omondi, E., & García, M. (2024). The role of cultural relevance in digital learning: A meta-analysis of STEM interventions in low- and middle-income countries. Computers & Education, 210, Article 105162. https://doi.org/10.1016/j.compedu.2024.105162

Kane, M. T. (2021). The argument-based approach to validation. Review of Educational Research, 91(6), 916–940. https://doi.org/10.3102/00346543211042017

Lee, J., Tan, A. L., & Lim, K. Y. (2023). Hybrid print-digital learning in low-connectivity contexts: Design principles from a quasi-experimental study in rural Indonesia. Computers & Education, 194, Article 104692. https://doi.org/10.1016/j.compedu.2022.104692

Lee, J., & Tan, A. L. (2024). When technology becomes a thinking partner: How culturally adaptive digital tools shape students’ epistemic agency in science. Science Education, 108(2), 321–345. https://doi.org/10.1002/sce.21846

Maryam, M., Kusmiyati, K., Merta, I. W., & Artayasa, I. P. (2020). Pengaruh model pembelajaran inkuiri terhadap keterampilan berpikir kritis siswa [The influence of the inquiry learning model on students' critical thinking skills]. Jurnal Pijar Mipa, 15(3), 206–213. https://doi.org/10.29303/jpm.v15i3.1355

Mayer, R. E. (2009). Multimedia learning (2nd ed.). Cambridge University Press.

Miskiyyah, Z., Buchori, A., & Muhtarom. (2023). Pengembangan e-modul dengan pendekatan culturally responsive teaching pada materi sistem persamaan linear dua variabel [Development of e-modules with a culturally responsive teaching approach to the material of two-variable linear equation systems]. Enggang: Jurnal Pendidikan, Bahasa, Sastra, Seni, dan Budaya, 3(1), 1–9.

Nguyen, T. T., & Riconsolido, J. (2024). Designing for cognitive-affective coherence: How culturally responsive scaffolds reduce science anxiety and improve reasoning. Contemporary Educational Psychology, 76, Article 102205. https://doi.org/10.1016/j.cedpsych.2023.102205

Özüdoğru, F. (2022). Turkish teachers’ culturally responsive classroom management self-efficacy: Reflections of culturally responsive teaching. Croatian Journal of Education, 24(4), 1229–1258. https://doi.org/10.15516/cje.v24i4.4309

Penuel, W. R., Van Horne, K., & Bell, P. (2021). Design-based implementation research: An emerging model for transforming the design and testing of interventions. In F. K. Oser, P. A. Alexander, & E. J. DeCorte (Eds.), International handbook of the learning sciences (pp. 414–425). Routledge. https://doi.org/10.4324/9780429424152-42

Pho, K. H., & Truong, B. C. (2023). Pearson chi-squared and unweighted residual sum of squares tests of fit for a probit model. Communications in Statistics: Simulation and Computation, 53(12), 5842–5857. https://doi.org/10.1080/03610918.2023.2202369

Prasasti, R. D., & Anas, N. (2023). Pengembangan media digital berbasis flipbook untuk meningkatkan kemampuan berpikir kritis pada peserta didik. Munaddhomah: Jurnal Manajemen Pendidikan Islam, 4(3), 694–705. https://doi.org/10.31538/munaddhomah.v4i3.589

Rahmawati, Y., & Taylor, P. C. (2020). Culturally responsive pedagogy in Indonesian science classrooms: Overcoming the “Western science” hegemony. Cultural Studies of Science Education, 15(3), 733–754. https://doi.org/10.1007/s11422-019-09977-8

Rusmiyati, A., Marwoto, P., Subali, B., & Rusilowati, A. (2024). The effectiveness of Moodle-based e-learning media to improve students’ inductive thinking skills in an integrated science project course. Unnes Science Education Journal, 13(3), 189–195.

Sandari, T. (2021). Identifikasi pemahaman siswa terhadap hasil belajar fisika pada materi besaran dan satuan di SMA N 1 Batanghari [Identification of students' understanding of physics learning outcomes on the material of quantities and units at SMA N 1 Batanghari]. Integrated Science Education Journal, 2(3), 94–97. https://doi.org/10.37251/isej.v2i3.176

Shadish, W. R., Cook, T. D., & Campbell, D. T. (2002). Experimental and quasi-experimental designs for generalized causal inference. Houghton Mifflin.

Siry, C., & Martin, A. M. (2022). Positioning students as knowers: Identity and epistemic agency in elementary science classrooms. Journal of the Learning Sciences, 31(4), 516–552. https://doi.org/10.1080/10508406.2022.2061234

Soleh, A. R., & Arifin, Z. (2021). Integrasi keterampilan abad 21 dalam pengembangan perangkat pembelajaran pada konsep community of inquiry [Integration of 21st century skills in the development of learning tools on the concept of community of inquiry]. Qalamuna: Jurnal Pendidikan, Sosial, dan Agama, 13(2), 473–490. https://doi.org/10.37680/qalamuna.v13i2.995

Sriyanti, I., Almafie, M. R., Marlina, L., & Jauhari, J. (2021). The effect of using flipbook-based e-modules on student learning outcomes. Kasuari: Physics Education Journal, 3(2), 69–75. https://doi.org/10.37891/kpej.v3i2.156

Sugiarti, M. I., & Dwikoranto, D. (2021). Peningkatan kemampuan berpikir kritis peserta didik melalui pembelajaran blended inquiry learning berbantuan Schoology pada pembelajaran fisika: Literature review [Improving students' critical thinking skills through blended inquiry learning assisted by Schoology in physics learning: Literature review]. Quantum: Jurnal Inovasi Pendidikan Sains, 12(1), 49–64. https://doi.org/10.20527/quantum.v12i1.10262

Tabachnick, B. G., & Fidell, L. S. (2019). Using multivariate statistics (7th ed.). Pearson.

Tan, E., & Choy, D. (2021). Designing for epistemic empathy in science learning: How perspective-taking with cultural contexts fosters critical analysis. Science Education, 105(6), 1158–1184. https://doi.org/10.1002/sce.21672

UNESCO. (2023). Technology in education: A tool on whose terms? Global Education Monitoring Report. https://www.unesco.org/gem-report/en/technology

Varelas, M., Pappas, C. C., & Arsenault, A. (2022). Culturally sustaining pedagogy and assessment in elementary science: A design-based approach. Cultural Studies of Science Education, 17(1), 1–22. https://doi.org/10.1007/s11422-021-10070-8

Wahyudi, D., Idris, J., & Abidin, Z. (2023). Tren dan isu penelitian uji-t dan chi kuadrat dalam bidang pendidikan. Journal of Mathematics Education, 4(2), 182–196.

Widodo, A., Danoebroto, S. W., Samsudin, A., & Handayani, L. (2022). Ethnomathematics in physics education: Integrating traditional measurement systems to enhance conceptual understanding. Journal of Physics: Conference Series, 2215(1), Article 012003. https://doi.org/10.1088/1742-6596/2215/1/012003

Zhang, M., Chen, L., & Huang, R. (2024). Design validity of AI-enhanced digital learning tools: A framework integrating usability, equity, and pedagogical fidelity. Computers & Education, 209, Article 105127. https://doi.org/10.1016/j.compedu.2024.105127

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