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Flipped Learning with Nearpod Media: Enhancing Digital Learning Outcomes in Primary Mathematics Sari, Riska Monicca; Rusnilawati, Rusnilawati; Ali, Siti Rahaimah
Profesi Pendidikan Dasar Vol. 10, No. 2, Agustus 2023
Publisher : Universitas Muhammadiyah Surakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.23917/ppd.v10i2.4511

Abstract

This investigation examines the efficacy of the Flipped Learning Model, supplemented with Nearpod media, on the academic outcomes of fifth-grade students in the subject of fractions. Utilising a quantitative methodology within a quasi-experimental research design, the Flipped Learning Model was deployed over three sessions. Nearpod media was employed to stimulate student engagement and enhance academic outcomes. A comparative study was conducted between students who were subjected to the Flipped Learning Model with Nearpod media (N=12) and a control group (N=12) that utilised the Direct Learning Model with image media. The analysis revealed a significant discrepancy in academic outcomes between the two groups (0.023, p < 0.05). Throughout the investigation, students who were exposed to the Flipped Learning Model with Nearpod media showed an improvement in academic outcomes (Mchange= 0.000, p < 0.05), indicating a significant influence on students' mathematical learning. The integration of the Flipped Learning Model with Nearpod media was found to be notably effective in improving students' academic outcomes (0.67, 0.03<g<0.7). This confirms that the implementation of the Flipped Learning Model with Nearpod media has a significant impact on enhancing classroom academic outcomes.
Measuring Changes in Students’ Science Literacy through E-Module-Based Physics Learning Using Rasch Analysis Nugraha, Abdurrohman Khotim; Rochman, Chaerul; Nasrudin, Dindin; Mileniati, Fajriati Ramadhini Nur; Ali, Siti Rahaimah; Patahuddin, Sitti Maesuri; Hossain, Mosaddek; Noor, Dato Norsabrina Mohd
Journal of Natural Science and Integration Vol 9, No 1 (2026): Journal of Natural Science and Integration
Publisher : Universitas Islam Negeri Sultan Syarif Kasim Riau

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24014/jnsi.v9i1.39096

Abstract

This study aims to measure changes in students' scientific literacy in physics learning through e-modules focused on momentum and impulse, using the stacking and racking Rasch model techniques. The study used a one-group pretest-posttest design involving 30 10th-grade students at a high school in Bandung. Data were analyzed using the stacking and racking Rasch model techniques to identify changes in students' scientific literacy and in item difficulty levels on the logit scale. Stacking analysis results showed that e-module-based learning could increase students' scientific literacy by 1.90 logits, while racking results indicated a decrease in item difficulty levels by -1.90 logits, suggesting that the improvement in scientific literacy directly affects how students respond to the measurement instruments. These findings indicate that integrating stacking and racking techniques provides a comprehensive view of the effectiveness of e-module-based physics learning, both in terms of changes in students' abilities and the functioning of test items. This study confirms that the Rasch model is a relevant approach for examining changes in science literacy in physics learning. Keywords: e-module, physics, Rasch model, scientific literacy, science education