Harman Amir
Department of Physics, Padang State University, Padang

Published : 2 Documents Claim Missing Document
Claim Missing Document
Check
Articles

Found 2 Documents
Search

Effectiveness of Electronic Student Worksheet using Problem Based Learning Model on Heat and Heat Transfer Material on the Learning Outcomes of Grade XI Students Mutiara Puspita; Hidayati Hidayati; Harman Amir; Selma Riyasni
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.v11i2.19

Abstract

In the current era of digital transformation in education, the quality and variety of learning resources play a crucial role in fostering meaningful learning experiences. However, how student learning outcomes remain a critical issue at MAN Kota Solok, particularly due to the limited variety and lack of attractiveness of the teaching materials currently used. This problem underscores the urgency of developing innovative learning resources that can increase student engagement and conceptual understanding. As a solution, this study implements an Electronic Student Worksheet based on the Problem-Based Learning model, which is designed to make learning more interactive and meaningful. The purpose of this study was to determine the effectiveness of the PBL-based Electronic Student Worksheet in improving student learning outcomes. This research employed a quasi-experimental design with a Posttest-Only Control Design, involving two groups: an experimental group using the PBL-based Electronic Student Worksheet and a control group using the conventional worksheets provided by the school. Data were collected through cognitive posttests and psychomotor assessments during the learning process. The findings revealed that the experimental group achieved higher average scores in both cognitive and psychomotor domains than the control group. Furthermore, hypothesis testing showed that the calculated t-value exceeded the critical t-value, indicating a significant difference between the two groups. These results demonstrate that implementing the PBL-based Electronic Student Worksheet effectively enhances student learning outcomes. This study contributes to the development of innovative digital learning resources that not only foster active student participation but also promote deeper conceptual understanding.
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.