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A Systematic Review of the Trends Research Creative Thinking Skills in Students' Physics Learning (2015-2024) Doyan, Aris; Susilawati, Susilawati; Annam, Syarful; Muliyadi, Lalu; Megahati, Ruth Rize Paas; Hutabarat, Risnawati Agustin; Ikhsan, Muhammad; Ardianti, Nuraini Rachma; Hamidi, Hamidi
Jurnal Penelitian Pendidikan IPA Vol 10 No 6 (2024): June
Publisher : Postgraduate, University of Mataram

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.29303/jppipa.v10i6.7826

Abstract

Creative thinking skills are ability found many possible answers to a problem, where the emphasis is on quantity, appropriateness, and diversity of answers. Where the answer in question is an answer that correct and varied. This research aims to identify and analyze research trends in the creative thinking ability in physics learning. This research method is descriptive and analytical. The data used in this research was obtained from documents indexed by Google Scholar from 2015-2024 using Publish or Perish and Dimension.ai. Research procedures use PRISMA guidelines. The data identified and analyzed are the type of publication, publication source, and the title of research on creative thinking ability in physics learning that is widely cited. The data analysis method uses bibliometric analysis assisted by VOS viewer software. The results of the analysis show that research trend on the creative thinking skills in physics learning indexed by Google Scholar from 2015 to 2024 has experienced a fluctuating increase. However, in 2023 there will be a decline in the research trend on the creative thinking skills in physics learning. There are many documents in the form of articles, proceedings, chapters, preprints, edited books and monograph that discuss research into the creative thinking skills in physics learning. Key words that are often used in research on the creative thinking skills in physics learning are critical thinking, STEM, PjBL, PBL, technology, virtual laboratory, etc.
The Trends Research of Conceptual Mastery in Students' Physics Learning (2015-2024): A Systematic Review Doyan, Aris; Susilawati, Susilawati; Annam, Syarful; Muliyadi, Lalu; Megahati, Ruth Rize Paas; Hutabarat, Risnawati Agustin; Ikhsan, Muhammad; Ardianti, Nuraini Rachma
Jurnal Penelitian Pendidikan IPA Vol 10 No 6 (2024): June
Publisher : Postgraduate, University of Mataram

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.29303/jppipa.v10i6.7827

Abstract

To support the improvement of 21st century skills, students must have good concept mastery first. This is in accordance with one of the goals of education is to master the concepts studied. Mastery of concepts is important for students to have because it can determine the level of success of students in participating in learning activities and whether the teacher is successful or not in fostering enthusiasm, encouragement, interest and student learning outcomes with classroom management. This research aims to identify and analyze research trends in the conceptual mastery in physics learning. This research method is descriptive and analytical. The data used in this research was obtained from documents indexed by Google Scholar from 2015-2024 using Publish or Perish and Dimension.ai. Research procedures use PRISMA guidelines. The data identified and analyzed are the type of publication, publication source, and the title of research on conceptual mastery in physics learning that is widely cited. The data analysis method uses bibliometric analysis assisted by VOS viewer software. The results of the analysis show that the trend of research on the conceptual mastery in physics learning indexed by Google Scholar from 2015 to 2024 experienced a fluctuating increase. However, in 2023 there will be a decline in the research trend on conceptual mastery in physics learning. There are many documents in the form of articles, proceedings, book, chapters, edited books and monograph that discuss research into the conceptual mastery in physics learning. Keywords that are often used in research of conceptual mastery are conflict cognitive approach, discovery model, STEM, effectiveness, etc.
Integration of Virtual Reality in STEM to Enhance Problem Solving Skills in Science Learning in the 21st Century: A Review Almulqu, A. A. H. Ahmad; S, Ruth Rize Paas Megahati; Atmaja, Subhanjaya Angga; Hutabarat, Risnawati Agustin
Jurnal Penelitian Pendidikan IPA Vol 11 No 3 (2025): March
Publisher : Postgraduate, University of Mataram

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.29303/jppipa.v11i3.10483

Abstract

One of the most exciting innovations today is Virtual Reality. VR simulations expand the variety of real-world applications for students to explore, Virtual reality with STEM Approach is important to encourage students to actively seek or explore information and solve learning problems creatively, while thinking critically about the phenomena they encounter. For this reason, this study aims to examine the Integration of Virtual Reality in STEM to improve problem-solving skills in science learning in the 21st century: A Review. This review was conducted based on the review method. The results of this study explain about Benefits of VR in Education: Immersive Learning, Safe Practice Simulations,  Enhanced Conceptual Understanding, Enhanced Creativity, Access to Global Experiences, Adaptation to Different Learning Styles, Collaborative Learning, Increased Learning Retention, More Effective Distance Learning ; 4 aspects in STEM : Science, Technology,  Engineering, Mathematics formulate problems, solve problems and interpret solutions to mathematical problems in applying various different situations; The Role of Virtual Reality in Enhancing Problem-Solving Abilities in Science Education for the 21st Century : Visualizing Complex Ideas and Data, Collaborative Learning and Global Connections, Immersive Experiences and Real-World Simulations, Equitable Access and Inclusivity in STEM Education, Challenges and Considerations for Implementing VR in STEM Learning.