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Research Trends of Pre-Service Physics Teachers’ Critical Thinking Skills During 2001 to 2022 Binar Kurnia Prahani; Hanandita Veda Saphira; Budi Jatmiko; Dwikoranto Dwikoranto; Tan Amelia; Muslimin Muslimin; Lutfhi Abdil Khuddus; Lindsay N. Bergsma
International Journal of Emerging Research and Review Vol. 1 No. 2 (2023): June
Publisher : IKIP Widya Darma Surabaya

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.56707/ijoerar.v1i2.2

Abstract

Objective: This research tends to visualize the trend research of PsPT CTS between 2001 and 2022. At the same time, no previous study has used bibliometrics to analyze the PsPT CTS in higher education. The main implication of this research are to find the novelty of the PsPT CTS research to increase their ability to teach physics critical thinking to students. Method: This research is a bibliometric analysis using Scopus as the primary metadata source. The document analyzed is a document between 2001 and 2022 or the last twenty years. Results: The trend of PsPT CTS tends to be interesting to future research, building upon the increase in the publication in PsPT CTS each year. The conference paper is the most used type of document in PsPT CTS due to its practice. It has a more visible impact since it is shown at a conference for many specialists from several disciplines to observe. The most widely used language in PsPT CTS publications is English due to it flexibility of readers around the world to have a good grip of the paper. For future research, it is still possible to develop or improve the obstacle PsT. Specifically, integrated STEM to enhance PsPT CTS due to its minimal keywords. Novelty: One of the 21st-century components is critical thinking, the trend of critical thinking research has become an exciting topic in the era of society 5.0. Therefore, to improve and develop the movements of critical thinking, especially in physics, an effort must be made.
The Integration of Digital Technology into Physics Education for Sustainable Development: A Literature Review Ike Anggraini Anggraini; Rahmatta Thoriq Lintangesukmanjaya; Dwikoranto Dwikoranto; Salma Hasna Hamiydah; Lindsay Natalia Bergsma; Neisya Azaria Adinda Putri
Journal of Innovative Technology and Sustainability Education Vol. 2 No. 2 (2026): August
Publisher : Sekolah Tinggi Agama Islam Sabilul Muttaqin Mojokerto

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.63230/jitse.2.2.139

Abstract

Objective: This study aims to identify various forms of digital technology used in physics learning to support sustainable education, analyze how these technologies are integrated into the physics learning process, and examine the challenges and opportunities of implementing technology-enhanced physics education for sustainable development. Method: This study employed a qualitative approach, using a literature review to examine prior research on technology-enhanced physics education. The dataset consisted of 20 journal articles published between 2017 and 2025, retrieved from Scopus and Google Scholar. Results: The findings indicate that various forms of digital technology, such as simulations, virtual laboratories, augmented reality (AR), virtual reality (VR), and digital learning resources, are widely used in physics education. These technologies support the visualization of abstract physics concepts, increase students’ engagement and motivation, and improve conceptual understanding and problem-solving skills. The reviewed studies also show that digital technologies are frequently integrated with pedagogical approaches such as problem-based learning, flipped classroom learning, and scaffolding strategies to create more interactive and student-centered learning environments. In addition, several challenges were identified, including limitations in technological infrastructure and teachers’ readiness to integrate digital tools in teaching practices. Novelty: This study contributes to the existing literature by synthesizing recent research on integrating digital technology into physics education for sustainable development. It identifies the types of digital technologies, their pedagogical integration, and the challenges and opportunities associated with their implementation, providing insights for future research and the development of more effective technology-enhanced physics learning.
Learning Analytics and Adaptive Learning Systems for Supporting Problem-Solving Skills: A Systematic Review toward Sustainable Education Qurrota A'yun; Rahmatta Thoriq Lintangesukmanjaya; Dwikoranto Dwikoranto; Neisya Azaria Adinda Putri; Noval Maleakhi Hulu
Journal of Innovative Technology and Sustainability Education Vol. 2 No. 3 (2026): December
Publisher : Sekolah Tinggi Agama Islam Sabilul Muttaqin Mojokerto

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.63230/jitse.2.3.142

Abstract

Objective: This study aims to systematically examine publication trends, dominant technologies, implementation strategies, educational impacts, challenges, and future directions in learning analytics and adaptive learning systems to improve students’ problem-solving skills in sustainable education contexts. Method: Research employed a Systematic Literature Review (SLR) approach following the Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA) guidelines. Articles were collected from Scopus, Web of Science, ScienceDirect, Springer, IEEE Xplore, and Google Scholar using predefined inclusion and exclusion criteria. From 1,487 initial records, 20 articles published between 2022 and 2026 in Scopus-indexed Q1–Q3 journals were selected for in-depth thematic analysis.  Results:  The findings reveal a growing research trend toward intelligent and personalized learning systems. Intelligent tutoring systems, adaptive learning platforms, predictive analytics, augmented reality, and gamification emerged as the most frequently used technologies. These technologies were found to improve self-regulated learning, collaboration, higher-order thinking, and students’ problem-solving performance across various educational contexts.  Novelty: This review offers a comprehensive analytical framework that integrates learning analytics, adaptive learning systems, problem-solving skills, and sustainable education, which have largely been examined separately in prior reviews.
Mapping Learning Management System–Based Flipped Classroom Research Trends in Physics Education (2020-2025): A Bibliometric Analysis Panji Putra Islamaulana; Rahmatta Thoriq Lintangesukmanjaya; Dwikoranto Dwikoranto; Neisya Azaria Adinda Putri
Journal of Digitalization in Physics Education Vol. 2 No. 2 (2026): August
Publisher : Universitas Negeri Surabaya

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.26740/jdpe.v2i2.57189

Abstract

Objective: A bibliometric analysis was conducted to comprehensively map publication trends, conceptual structures, shifts in research focus, and knowledge gaps regarding Learning Management System (LMS)-based flipped classrooms in physics education between 2020 and 2025. Method: A quantitative descriptive approach was employed via bibliometric analysis guided by the PRISMA 2020 screening protocol. We processed 239 documents retrieved from the Scopus database using Scopus Web Analytics for statistical performance analysis and science mapping techniques. Results: Findings indicate that annual publication dynamics fluctuated but rebounded in 2025, accumulating 2,872 citations and an h-index of 24. The research's conceptual network is divided into seven main clusters representing the relationships between flipped classroom pedagogy, e-learning, and learning analytics. A thematic evolution map reveals a paradigm shift from emergency adaptation responses to remote learning (2020–2021) toward the utilization of data analytics, the development of critical thinking skills, and self-regulated learning (2024–2025). Novelty: This research maps the LMS as a conceptual dimension integrated with the pedagogical characteristics of physics education, particularly in supporting the learning of abstract physics concepts. These findings expand understanding of flipped classroom evolution by showing the trajectory of LMS development from mere digital learning infrastructure to environments that support pre-class diagnostic quizzes, interactive simulations (such as PhET), learning analytics, and the cultivation of critical thinking and self-regulated learning skills. Consequently, this study provides a conceptual foundation for developing LMS-based flipped classroom designs that are more adaptive and aligned with the specific characteristics of physics learning.