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December 21, 2025International Journal of Instruction1 citations

Using PhET Simulations-Integrated Metacognitive Argument-Driven Inquiry to Improve Students’ Learning Outcomes in Physics

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RARonilo P. AntonioBCBelarmino S. CruzEPEmelyn DJ. Pagsanjan

Key Points

  • This study aims to evaluate the impact of PhET simulations integrated with metacognitive strategies on students' learning outcomes in physics.
  • One-group pretest-posttest design was employed.
  • Participants included 26 Grade 9 students from a state university in Central Luzon, Philippines.
  • Both quantitative and qualitative data were collected over six weeks of intervention.
  • Assessments utilized included teacher-made questionnaires and adapted tools measuring understanding and skills, along with thematic analysis of interviews.
  • Data analysis involved Wilcoxon Signed Ranks Test and paired sample t-tests.
  • Students showed significant improvements in conceptual understanding and science process skills after the intervention.
  • Quantitative analysis did not demonstrate substantial changes in attitudes towards physics, but qualitative responses suggested a positive perception shift.
  • The PhET-integrated MADI approach is identified as a promising strategy for improving educational outcomes.

Abstract

This study investigated the integration of technology, particularly Physics Education Technology (PhET) simulations, into the Metacognitive Argument-Driven Inquiry (MADI) approach to improve students’ conceptual understanding, science process skills, and attitudes toward learning Physics. Employing a one-group pretest-posttest design within the framework of pedagogical action research, the study utilized both quantitative and qualitative data. The participants were 26 Grade 9 students enrolled in a science class at a state university in Central Luzon, Philippines. Over a six-week period, students engaged in scientific inquiry and argumentation using PhET simulations within a metacognitive learning environment. Pre- and post-intervention assessments, including teacher-made and adapted questionnaires, measured students' conceptual understanding, science process skills, and attitudes toward Physics. Quantitative data were analyzed using the Wilcoxon Signed Ranks Test, paired sample t-tests, and effect size calculations, while qualitative data were examined through thematic analysis. The results revealed significant improvements in students' conceptual understanding and science process skills. While no substantial changes were found in students’ attitudes toward Physics based on the quantitative analysis, their interview responses highlighted a positive shift in their perceptions of the subject. These findings suggest that the PhET-integrated MADI approach is a promising pedagogical strategy for enhancing student outcomes in Physics and holds potential for broader application in teaching other scientific disciplines.

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Cite This Study

Antonio et al. (2025) studied this question.

synapsesocial.com/papers/69473b64db9c958d0dfca7d4https://doi.org/10.29333/iji.2026.19127a
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