Task-Level Variation in Elementary Students' Scientific Literacy Performance
DOI:
https://doi.org/10.28926/pej.v6i3.3284Keywords:
Profile Competency, Elementary Education, Student EngagementAbstract
Scientific literacy is commonly reported as an overall score or as scores for individual competencies. However, this form of reporting may obscure differences in students' performance across tasks designed to measure the same competency. This study aimed to analyze primary school students' scientific literacy performance at the item level and identify patterns of variation across and within three scientific literacy competencies. A descriptive-exploratory design was employed, involving 402 students from three primary schools. The participants completed 10 dichotomously scored items assessing their ability to explain phenomena scientifically, interpret data and evidence scientifically, and evaluate and design scientific inquiry. The data were analyzed at the overall, competency, and item levels using score distributions and proportions of correct responses. This analysis was followed by a conceptual examination of the demands of each task. The results showed that the proportions of correct responses across the three competencies were 64.0%, 74.7%, and 72.6%, respectively. Greater variation was found at the item level, where the proportion of correct responses ranged from 32.4% to 89.7%. Substantial variation was also observed among items assessing the same competency. For example, within the competency of explaining phenomena scientifically, the proportion of correct responses ranged from 32.4% to 89.7% across items. These findings indicate that competency-level scores may not fully capture variations in students' performance across individual tasks. Therefore, scientific literacy assessments should consider not only the competencies being measured but also the characteristics and demands of the tasks used to assess those competencies.
References
Chinn, C. A., & Malhotra, B. A. (2002). Epistemologically authentic inquiry in schools: A theoretical framework for evaluating inquiry tasks. Science Education, 86(2), 175–218. https://doi.org/10.1002/sce.10001
Chalmers, R. P. (2012). mirt: A multidimensional item response theory package for the R environment. Journal of Statistical Software, 48(6), 1–29. https://doi.org/10.18637/jss.v048.i06
Chen, Q., Zheng, H., Fan, H., & Mo, L. (2023). Construction of a reading literacy test item bank for fourth graders based on item response theory. Frontiers in Psychology, 14, 1103853. https://doi.org/10.3389/fpsyg.2023.1103853
Desstya, A., Sayekti, I. C., Rahmawati, F. P., Hidayati, Y. M., Kaltsum, H. U., Mahya, Y. M. Z., Kamila, S. J. P., Khotimah, N. A., Fidyastuti, N., & Diaz, A. M. (2024). Development of a natural and social sciences learning model based on socio-scientific issues to strengthen scientific literacy of Islamic elementary school students. Jurnal Penelitian Pendidikan IPA, 10(11), 8703–8711. https://doi.org/10.29303/jppipa.v10i11.9094
El Masri, Y. H., Baird, J.-A., & Graesser, A. (2016). Language effects in international testing: The case of PISA 2006 science items. Assessment in Education: Principles, Policy & Practice, 23(4), 427–450. https://doi.org/10.1080/0969594X.2016.1218323
Fensham, P. J. (2009). Real world contexts in PISA science: Implications for context-based science education. Journal of Research in Science Teaching, 46(8), 884–896. https://doi.org/10.1002/tea.20334
Fives, H., Huebner, W., Birnbaum, A. S., & Nicolich, M. (2014). Developing a measure of scientific literacy for middle school students. Science Education, 98(4), 549–580. https://doi.org/10.1002/sce.21115
Jerrim, J., López-Agudo, L. A., & Marcenaro-Gutiérrez, O. D. (2022). The impact of test language on PISA scores: New evidence from Wales. British Educational Research Journal, 48(3), 420–445. https://doi.org/10.1002/berj.3774
Le Hébel, F., Montpied, P., & Tiberghien, A. (2017). Sources of difficulty in assessment: Example of PISA science items. International Journal of Science Education, 39(4), 468–487. https://doi.org/10.1080/09500693.2017.1294784
Muniroh, N., Rusilowati, A., & Isnaeni, W. (2022). Instrument development of science literacy assessment with socio-sciences contains in natural science learning for elementary school. Journal of Research and Educational Research Evaluation, 11(1). https://doi.org/10.15294/jere.v11i1.55421
Nurhasanah, Astari, T., Cahyanita, E., & Nuriman. (2025). Psychometric properties of a local wisdom-based science literacy instrument for primary school students: An item response theory approach. Jurnal Penelitian Pendidikan IPA, 11(11). https://doi.org/10.29303/jppipa.v11i11.12973
Organisation for Economic Co-operation and Development. (2016). PISA 2015 assessment and analytical framework: Science, reading, mathematic and financial literacy. OECD Publishing. https://doi.org/10.1787/9789264255425-en
Organisation for Economic Co-operation and Development. (2017). PISA 2015 assessment and analytical framework: Science, reading, mathematic, financial literacy and collaborative problem solving (Rev. ed.). OECD Publishing. https://doi.org/10.1787/9789264281820-en
Organisation for Economic Co-operation and Development. (2025). PISA 2025 science framework. OECD.
Oliver, M., McConney, A., & Woods-McConney, A. (2021). The efficacy of inquiry-based instruction in science: A comparative analysis of six countries using PISA 2015. Research in Science Education, 51(Suppl. 2), 595–616. https://doi.org/10.1007/s11165-019-09901-0
Pedaste, M., Baucal, A., & Reisenbuk, E. (2021). Towards a science inquiry test in primary education: Development of items and scales. International Journal of STEM Education, 8(1), Article 44. https://doi.org/10.1186/s40594-021-00278-z
Pessoa, P., de Lima, J., Piacentini, V., Realdon, G., Jeffries, A., Ometto, L., Lopes, J. B., Zeidler, D. L., Fonseca, M. J., Sousa, B., Pinto, A., & Sá-Pinto, X. (2025). A framework to identify opportunities to address socioscientific issues in the elementary school curricula: A case study from England, Italy, and Portugal. PLoS ONE, 20(3), e0308901. https://doi.org/10.1371/journal.pone.0308901
Prasetyo, Z. K., Syawaludin, A., & Desstya, A. (2024). Integration indigenous science in merdeka curriculum to strengthen scientific literacy and environmental care in elementary schools: Need analysis. Edelweiss Applied Science and Technology, 8(5), 1062–1070. https://doi.org/10.55214/25768484.v8i5.1806
Rusydiana, U., Widodo, W., & Suprapto, N. (2023). The development of picture story book to improve the science literacy skills of grade 4 elementary school student. Studies in Philosophy of Science and Education, 4(1), 22–34. https://doi.org/10.46627/sipose.v4i1.274
Tekkumru-Kisa, M., Stein, M. K., & Schunn, C. (2015). A framework for analyzing cognitive demand and content-practices integration: Task analysis guide in science. Journal of Research in Science Teaching, 52(5), 659–685. https://doi.org/10.1002/tea.21208
Uesaka, Y., Suzuki, M., & Ichikawa, S. (2022). Analyzing students' learning strategies using item response theory: Toward assessment and instruction for self-regulated learning. Frontiers in Education, 7, 921844. https://doi.org/10.3389/feduc.2022.921844
Wan, D., Lee, Y.-J., Chen, S., & Yu, Q. (2024). How scientific literacy is conceptualized in tasks from junior secondary physics textbooks. International Journal of Science Education. Advance online publication. https://doi.org/10.1080/09500693.2024.2429045
Widyasari, A., & Haryanto, H. (2022). Analysis of students' initial scientific literacy of science in elementary school teacher education student. Jurnal Inovasi Pendidikan IPA, 8(1), 57–66. https://doi.org/10.21831/jipi.v8i1.41667
Wijaya, I. K. W. B., Suryaningsih, N. M. A., Astiti, K. A., Poerwati, C. E., & Syahputra, A. (2024). Socio scientific issue (SSI) approach as a momentum to instill cultural literacy and scientific literacy through natural science learning. Jurnal Pendidikan MIPA, 25(2), 972–985. https://doi.org/10.23960/jpmipa/v25i2.pp972-985
Zarkasih, Z., Diniya, D., Permana, N. D., & Kirana, I. (2023). Development of science e-modules based on socio-scientific issues integrated with the Quran verses to establish Pancasila student profiles. Journal of Natural Science and Integration, 6(1), 63–75. https://doi.org/10.24014/jnsi.v6i1.21855
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2026 Linda Hania Fasha, Wahyu Sopandi, Atep Sujana, Muslim

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


