Dea Stivani Suherman
Department of Physics, Padang State University, Padang

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Role of Physics Student Worksheet Integrated PBL Model to Improve the 21st Century: A Systematic Literature Review Sharvina Salsabil; Pakhrur Razi; Hufri Hufri; Dea Stivani Suherman
Jurnal Penelitian Pembelajaran Fisika Vol. 11 No. 2 (2025): JPPF (Jurnal Penelitian Pembelajaran Fisika)
Publisher : Universitas Negeri Padang in collaboration with Association of Mathematics and Natural Sciences Institution for Education of Teaching Staff Indonesia (AMLI)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24036/jppf.v11i2.32

Abstract

This study aims to systematically analyze the role of Problem-Based Learning (PBL)-b Student Worksheets in improving 21st-century skills, which include critical, creative, collaborative, and communicative thinking skills in physics learning. The method employed is a literature review, examining 15 relevant national and international articles published between 2015-2025. The results of the study show that the implementation of PBL-based student worksheet is consistently able to improve critical thinking skills through scientific analysis and reflection activities, as well as encourage students' creativity in producing innovative ideas based on contextual problems. In addition, the incorporation of collaboration rubrics and digital-based activities has been proven to strengthen interaction, responsibility, and communication between students in physics learning. The integration of digital collaboration aspects and authentic assessment makes the student worksheet not only a learning medium but also a means of strengthening scientific character and social skills in the 21st century. This research makes an important contribution to the development of PBL-based physics learning tools that are relevant to the challenges of the digital era and can be used as a reference for teachers and curriculum developers to create active, reflective, and collaborative learning.
Meta-Analysis of Mobile Learning’s Effect on High School Students' Physics Learning Outcomes: Data Analysis Using the JASP Application Aldi Ryan Pratama; Dea Stivani Suherman; Asrizal Asrizal; Harman Amir
Jurnal Penelitian Pembelajaran Fisika Vol. 12 No. 2 (2026): JPPF (Jurnal Penelitian Pembelajaran Fisika) : In Progress
Publisher : Universitas Negeri Padang in collaboration with Association of Mathematics and Natural Sciences Institution for Education of Teaching Staff Indonesia (AMLI)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24036/jppf.v12i2.81

Abstract

The development of digital technology drives the need for innovation in education, particularly regarding instructional media in high school physics. However, most research on implementing android-based mobile learning still yields varied and inconsistent results. Therefore, this meta-analysis synthesizes and evaluates the influence of Android-based mobile learning on the physics learning outcomes of high school students. Guided by PRISMA standards, 24 quasi experimental primary studies were collected and quantitatively analyzed using JASP software via a random-effects model. The analysis revealed a pooled effect size of 1.42 (p < 0.001), categorized as a very large effect. Although the heterogeneity index was remarkably high (  = 95.43%), a deeper examination indicated that effect sizes approaching zero or taking on negative values were driven by internal student factors and variations in methodological quality of primary studies, rather than limitations of android technology itself. Consequently, android-based mobile learning is highly effective in enhancing students’ cognitive outcomes in physics. This study is expected to provide a scientific contribution and offers recommendations for practitioners to optimize android-based media by integrating it with active learning models and structured classroom management to foster self-regulated learning.