Sunardi Sunardi
Education Department of Bandung City, Indonesia

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Bibliometric analysis: Trends of gamification in physics learning from 2019 to 2023 Surya Haryandi; Rossy Arlinda; Misbah Misbah; Muhdi Harto; Nurlaela Muhammad; Sunardi Sunardi
Momentum: Physics Education Journal Vol. 8 No. 2 (2024)
Publisher : Universitas PGRI Kanjuruhan Malang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.21067/mpej.v8i2.9877

Abstract

This research aims to analyze research trends related to the topic of Gamification from 2019 to 2023* through bibliometric analysis using the Scopus database. Based on the criteria, 56 articles were obtained from 326 documents. These articles have been translated from international journals indexed by Scopus. The selection references were then managed using reference management software, namely Mendeley. After working on the database, this research classifies and visualizes it using VOSviewer software. The results indicate that Gamification research is gradually increasing every year. The United States, China and Japan contribute the most research globally. Visualizing gamification research trends for 2019-2023* reveal six clusters. The results of this research can support researchers regarding Gamification research trends worldwide and provide direction for further research. Overall, these reflections provide an excellent reference point for further research on Gamification.
Enhanced learning: Designing bifocal modeling practicum tools with ESP32 for exploring kinetic theory of gases Sujito Sujito; Sulur Sulur; Muhammad Nur Hudha; Nanang Winarno; Sunardi Sunardi
Momentum: Physics Education Journal Vol. 8 No. 2 (2024)
Publisher : Universitas PGRI Kanjuruhan Malang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.21067/mpej.v8i2.10046

Abstract

This research was conducted to obtain an initial design for a laboratory practical tool based on bifocal modeling assisted by an ESP32 microcontroller for kinetic gas theory. This study was conducted to obtain an initial design for a practical laboratory tool based on bifocal modeling assisted by the ESP32 microcontroller on the kinetic theory of gases. This study was conducted descriptively through a literature review of various book articles and materials. Interviews were conducted with students and physics teachers in high schools (9 students and two teachers in Malang, 15 students and three teachers in Bandung) in Indonesia. Interviews were conducted to obtain an overview of the application of physics learning and reveal other potential problems students and teachers face. The design of the bifocal modeling tool developed has been consulted with physics and ICT learning experts. The results are that it needs to be further developed and maintained until the manufacturing stage. Bifocal modeling based on the design developed in this study has the potential to facilitate students to conduct scientific experiments related to the kinetic theory of gases. Based on the equipment to be developed, it is expected that students will be able to observe macroscopic gas phenomena through actual experiments, monitor microscopic phenomena visualized through computer models, collect data in actual experiments and computer simulations, and compare data. Students' understanding of the concept of the kinetic theory of gases has the potential to be improved by conducting practical work using bifocal modeling-based tools.