Development of Problem-Based E-LKPD Using FlipHTML5 to Enhance Critical Thinking Skills in Senior High School Economics

Okta Renaldy Tama, Siti Suprihatin, Desi Budiono

Abstract


The limited use of interactive learning media and the low level of students’ critical thinking skills in economics learning highlight the need for innovative instructional tools. Integrating Problem-Based Learning (PBL) with digital media such as Electronic Student Worksheets (E-LKPD) offers potential to support more active and meaningful learning. This study employed a Research and Development (R&D) approach using the 4-D model (define, design, develop, disseminate). The product developed was a PBL-based E-LKPD assisted by FlipHTML5 for the topic of human needs. The feasibility of the product was evaluated through expert validation involving media, subject matter, and language experts. A limited trial was conducted with 27 tenth-grade students to assess practicality. Data were collected using validation sheets and student response questionnaires and analyzed descriptively using percentage scores. The validation results indicated that the E-LKPD achieved a high level of validity, with scores of 91% from media experts, 80% from subject matter experts, and 91% from language experts. The practicality test showed an average score of 92%, categorized as very practical. These findings suggest that the developed E-LKPD is appropriate in terms of content, design, and usability. The results indicate that the PBL-based E-LKPD assisted by FlipHTML5 is feasible as a digital learning medium and has the potential to support student engagement and learning activities in economics. However, further research is needed to examine its effectiveness in improving learning outcomes and critical thinking skills.

Keywords


critical thinking; E-LKPD; FlipHTML5; students’ needs; problem-based learning

Full Text:

PDF

References


Anggraeni, D. M., Prahani, B. K., Suprapto, N., Shofiyah, N., & Jatmiko, B. (2023). Systematic review of problem based learning research in fostering critical thinking skills. Thinking Skills and Creativity, 49, 101334. https://doi.org/10.1016/j.tsc.2023.101334

Arini, W. (2023). Pengaruh E-Lkpd Berbasis Physics Toolbox Sensor Suite Pada Materi Gerak Harmonik Sederhana Terhadap Pemahaman Konsep Peserta Didik.

Arni, Y., Safitri, Y., Trisna, F., & Manurung, E. S. (2024). The Effect of Interactive Learning Media on Improving Students’ Critical Thinking Skills. 4(1), 49–58.

Arya, M., & Rahmadina, R. (2024). Development of Problem-Based Learning-Based E-LKPD on Human Respiratory System Material to Improve Critical Thinking Patterns of Students at State Senior High School 5 in Tanjung Balai City. Bioscientist: Jurnal Ilmiah Biologi, 12(2), 2380–2390. https://doi.org/10.33394/bioscientist.v12i2.13959

Cynthia, R. E., & Sihotang, H. (2023). Moving forward together in the digital age: the importance of digital literacy in improving students' critical thinking and problem-solving skills. Jurnal Pendidikan Tambusai, 7(3), 31712–31723.

Daniyah, R., & Yuni, R. (2024). Development of Electronic Student Worksheets Based on Heyzine Flipbook for Grade XI Social Studies at Cerdas Murni High School. BELAINDIKA Journal (Learning and Educational Innovation), 6(3), 224–241. https://doi.org/10.52005/belaindika.v6i3.262

Devi, R. M. (2022). Development of Guided Inquiry-Based E-LKPD to Improve Critical Thinking Skills of Junior High School Students. Jurnal Eduscience, 9(2), 405–417.

Distrik, I. W., Ertikanto, C., Purwati, Y. S., Saregar, A., & Ab Rahman, N. F. (2024). Digital Problem-Based Worksheet with 3D Pageflip: An Effort to Address Concept Understanding Problems and Enhance Digital Literacy Skills. Jurnal Pendidikan IPA Indonesia, 13(1), 116–127. https://doi.org/10.15294/jpii.v13i1.48604

Fenanlampir, A., Leasa, M., & Batlolona, J. R. (2021). The development of homogeneity psycho cognition learning strategy in physical education learning. International Journal of Evaluation and Research in Education (IJERE), 10(3), 1047–1059. https://doi.org/10.11591/ijere.v10i3.21713

Hmelo-Silver, C. E. (2004). Problem-Based Learning: What and How Do Students Learn? Educational Psychology Review, 16(3), 235–266. https://doi.org/10.1023/B:EDPR.0000034022.16470.f3

Jacob, T., & Centofanti, S. (2024). Effectiveness of H5P in improving student learning outcomes in an online tertiary education setting. Journal of Computing in Higher Education, 36(2), 469–485. https://doi.org/10.1007/s12528-023-09361-6

Jauharati, J., Hardiansyah, H., & Halang, B. (2022). Development of Flip HTML5-based handouts on the circulatory system for Year 11 secondary school students. JUPEIS: Journal of Education and Social Sciences, 1(3), 140–151.

Kamila, O. R. (2022). Development of Electronic Student Worksheets (E-LKPD) Using Wizer. Me Probability Material for Compulsory Mathematics Group for Grade XII MA Annur Rambipuji. Thesis. Development of Electronic Student Worksheets (E-LKPD) Using Wizer. Me Probability Material for Compulsory Mathematics Group for Grade XII MA Annur Rambipuji.

Laili, R. (2023). Development of Interactive E-Modules Using Flip PDF Based on Problem-Based Learning (PBL) to Improve Students' Critical Thinking Skills in the Independent Learning Curriculum. UIN RADEN INTAN LAMPUNG.

Mahombar, A., & Mihardi, S. (2025). The Impact of Using Interactive E-LKPD Using Liveworksheets on Understanding Fluid Concepts. Journal of Physics Education Research, 10(3), 187–192. https://doi.org/10.36709/jipfi.v10i3.178

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

Miranda, A. (2023). Development of Electronic Handouts Using the Double Loop Problem Solving (DLPS) Model in Physics Materials for Grade X High School/MA Students. UIN RADEN INTAN LAMPUNG.

Mustafa, S., & Maming, K. (2024). Innovative Media : A Successful Approach to Improve Learning Quality. 03(07), 1258–1265. https://doi.org/10.58806/ijirme.2024.v3i7n11

Mutawa, A. M., Al Muttawa, J. A. K., & Sruthi, S. (2023). The Effectiveness of Using H5P for Undergraduate Students in the Asynchronous Distance Learning Environment. Applied Sciences, 13(8), 4983. https://doi.org/10.3390/app13084983

Nieveen, N. (1999). Prototyping to Reach Product Quality. In J. van den Akker, R. M. Branch, K. Gustafson, N. Nieveen, & T. Plomp (Eds.), Design Approaches and Tools in Education and Training (pp. 125–135). Kluwer Academic Publishers.

Noviyanti, R., & Mariana, N. (2025). Critical Thinking Skills in Mathematics Learning through a Differentiated Learning Approach in the Era of Independent Curriculum : Systematic Literature Review. 4(3), 856–865.

Rachmawati, N. Y., & Rosy, B. (2021). The effect of problem-based learning (PBL) on critical thinking and problem-solving skills in general administration for Year 10 OTKP students at SMK Negeri 10 Surabaya. Journal of Office Administration Education (JPAP), 9(2), 246–259.

Ramadani, S. (2025). The Effectiveness of Using E-Lkpd Assisted by Liveworksheet on Improving Mathematics Learning Outcomes of Grade VIII Students at Mtsn 2 Luwu. Palopo State Islamic University.

Reski, R., Hutapea, N., & Saragih, S. (2019). The role of problem-based learning (PBL) models in mathematical problem-solving skills and student learning independence. JURING (Journal for Research in Mathematics Learning), 2(1), 49–57.

Riduwan, & Akdon. (2020). Formulas and data in statistical analysis (7th ed.). Alfabeta.

Ristanto, R. H., Suryanda, A., & Indraswari, L. A. (2023). The development of ecosystem misconception diagnostic test. International Journal of Evaluation and Research in Education (IJERE), 12(4), 2246–2259. https://doi.org/10.11591/ijere.v12i4.25200

Safitri. (2022). Development of Problem-Based Learning Models to Improve Critical Thinking Skills. Journal of Education, 23(2), 145–156.

Sani, R. A., & Ambarwati, R. (2024). Implementation of Problem-Based Learning in the Merdeka Curriculum. Journal of Educational Innovation, 10(1), 33–45.

Sumandya, I. W., Elvi, & Rosmery, T. (2025). Development of PBL-Based Learning Tools to Improve Learning Outcomes. Journal of Educational Technology, 27(1), 1–12.

Sweller, J. (1988). Cognitive Load During Problem Solving: Effects on Learning. Cognitive Science, 12(2), 257–285.

Thiagarajan, S., Semmel, D. S., & Semmel, M. I. (1974). Instructional development for training teachers of exceptional children: A sourcebook. Leadership Training Institute/Special Education, University of Minnesota.

Waruwu, M. (2024). Research and development (R&D) methods: concepts, types, stages and advantages. Scientific Journal of Education Profession, 9(2), 1220–1230.

Wenno, I. H., Limba, A., & Silahoy, Y. G. M. (2022). The development of physics learning tools to improve critical thinking skills. International Journal of Evaluation and Research in Education (IJERE), 11(2), 863–869. https://doi.org/10.11591/ijere.v11i2.21621

Yaniawati, P., Maat, S. M., Supianti, I. I., & Fisher, D. (2022). Mathematics Mobile Blended Learning Development: Student-Oriented High Order Thinking Skill Learning. European Journal of Educational Research, 11(1), 69–81. https://doi.org/10.12973/eu-jer.11.1.69




DOI: https://doi.org/10.35445/alishlah.v18i1.9132

Refbacks

  • There are currently no refbacks.


Copyright (c) 2026 Okta Renaldy Tama, Siti Suprihatin, Desi Budiono

Al-Ishlah Jurnal Pendidikan Abstracted/Indexed by:

    

 


 

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