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Using Inquiry-based Laboratory Activities in Lights and Optics Topic to Improve Students’ Understanding about Nature of Science (NOS) Tiara Budi Wardani; Nanang Winarno
Journal of Science Learning Vol 1, No 1 (2017): Journal of Science Learning
Publisher : Universitas Pendidikan Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.17509/jsl.v1i1.8537

Abstract

ABSTRACTThe aim of this study was to determine the effect of inquiry-based laboratory activities on the students’ understanding of the nature of science (NOS) in learning lights and optics topic. The method used in this research is quasi experiment. Sampling technique using cluster random sampling and the samples were taken from grade 8 in one of junior high school in Bandung. The sample was 45 students, consisting of the experimental class (n = 24 students) and the control class (n=21 students). The experimental class is taught by inquiry-based laboratory activities, while the control class is taught by non-inquiry laboratory activities. The result of this research shows that the experimental class got N-Gain of 0.60, while the control class got N-Gain of 0.44, and both classes proven to have statistically significant different improvement.
Global Perspectives on Kinematic Graphs in Physics Education: Student Difficulties, Instructional Strategies, and Pedagogical Recommendations for Achieving SDG 4 (Quality Education) Ratih Mega Ayu Afifah; Sutopo Sutopo; Endang Purwaningsih; Nanang Winarno; Nur Jahan Ahmad; Ahmad Taufiq
AMPLITUDO : Journal of Science and Technology Innovation Vol. 5 No. 2 (2026): August
Publisher : Balai Publikasi Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.56566/amplitudo.v5i2.688

Abstract

This study analyzed global publication trends, research instruments, student difficulties, strategies, and pedagogical recommendations related to kinematics graph topics based on articles published in scientific journals between 2015 and 2025. A systematic literature review was conducted following the PRISMA protocol, with 50 articles indexed in Scopus and Web of Science examined. Results indicated fluctuating publication trends, peaking in 2019. Germany contributed the most publications, followed by Turkey and Mexico, with quantitative methods predominating. Most studies employed test instruments, particularly the Test of Understanding Graphs in Kinematics (TUG-K), with university and high school students as the largest sample groups. Thematic analysis revealed that students’ main difficulties involved misconceptions in representation, translation, and interpretation of graphs. Effective strategies included diagnostic instruments, technology integration (eye-tracking, virtual laboratories, real-time sensors, artificial intelligence), and contextual pedagogical approaches that enhanced graph comprehension and data literacy. Recommendations emphasized the need for expanded sampling and instrument validation in future research. Learning strategies should emphasize repeated practice, contextual exploration, and technology use. Teachers were advised to strengthen professional competence and design technology-based learning, while policymakers were urged to adapt curricula and allocate more time to foster deeper understanding of kinematics graphs