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Zumrotul ‘Aliyah; Sunaryono Sunaryono; Khusaini Khusaini; Bakhrul Rizky Kurniawan – Journal of Science Learning, 2025
In the context of physics education, it is imperative that educators prioritize the development of students' problem-solving abilities. Given the interdisciplinary nature of physics and its relevance to everyday life, students must possess robust problem-solving skills. However, conventional and uninspiring learning approaches have been shown to…
Descriptors: Feedback (Response), Web Sites, Educational Technology, Problem Solving
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Hahn, L.; Klein, P. – Physical Review Physics Education Research, 2022
Eye tracking is becoming increasingly popular in physics education research (PER). As technology has advanced considerably in recent years and has become more user friendly, it is anticipated that eye tracking will play an increasingly significant role in assessing student learning at the process level in future studies. The main objective of this…
Descriptors: Eye Movements, Physics, Science Education, Educational Research
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Secil Alniak-Daye; Feral Ogan-Bekiroglu – Science Insights Education Frontiers, 2025
The aim of this study was to examine the effects of STEM activities on students' attitudes towards STEM and problem-solving skills by taking their components into account. An experimental design with pretest-posttest control group was applied in the study. Quantitative and qualitative data collection tools were used. The participants of the study…
Descriptors: STEM Education, Science Activities, Physics, Student Attitudes
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Elina Palmgren; Tapio Rasa – Science & Education, 2024
Modelling roles of mathematics in physics has proved to be a difficult task, with previous models of the interplay between the two disciplines mainly focusing on mathematical modelling and problem solving. However, to convey a realistic view of physics as a field of science to our students, we need to do more than train them to become fluent in…
Descriptors: Physics, Mathematical Models, Science Instruction, Problem Solving
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Zhongzhou Chen; Tong Wan – Physical Review Physics Education Research, 2025
This study examines the feasibility and potential advantages of using large language models, in particular GPT-4o, to perform partial credit grading of large numbers of student written responses to introductory level physics problems. Students were instructed to write down verbal explanations of their reasoning process when solving one conceptual…
Descriptors: Grading, Technology Uses in Education, Student Evaluation, Science Education
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Chuting Lu; Yating Liu; Shaorui Xu; Shaona Zhou; Heather Mei; Xiangqun Zhang; Lan Yang; Lei Bao – Physical Review Physics Education Research, 2023
In this study, a conceptual framework of measurement uncertainty was developed and used to guide the development of a multiple-choice concept test for the assessment of students' knowledge integration in learning measurement uncertainty. Based on assessment data and interview results, students were identified into three levels of knowledge…
Descriptors: Measurement, Multiple Choice Tests, Thinking Skills, Novices
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Dazhen Tong; Yang Tao; Kangkang Zhang; Xinxin Dong; Yangyang Hu; Sudong Pan; Qiaoyi Liu – Asia Pacific Education Review, 2024
Artificial intelligence (AI) technologies have been consistently influencing the progress of education for an extended period, with its impact becoming more significant especially after the launch of ChatGPT-3.5 at the end of November 2022. In the field of physics education, recent research regarding the performance of ChatGPT-3.5 in solving…
Descriptors: Artificial Intelligence, Natural Language Processing, Technology Uses in Education, Performance
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Kartini Herlina; Abdurrahman Abdurrahman; Ahmad Naufal Umam; Ayu Nurjanah; Ghani Fadhil Rabbani; Ficha Aulia Indah Pratiwi – Journal of Technology and Science Education, 2025
Nowadays, physics learning in the classroom should no longer only focus on achieving academics. It must prepare students to face challenges in the future. One of the abilities that are important for learners is problem solving, and the problem-solving ability that is becoming increasingly important in today's digital era is computational thinking…
Descriptors: Computation, Thinking Skills, Skill Development, Worksheets
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Wider, Clarice; Wider, Walton – Journal of Baltic Science Education, 2023
A number of studies have demonstrated a connection between metacognition and the ability to solve problems. Therefore, this study aimed to examine the effect of metacognitive skills on Physics problem-solving skills among Form Four secondary school students in Sabah, Malaysia. This study included 248 students from 13 secondary schools in the Kota…
Descriptors: Metacognition, Physics, Problem Solving, Secondary School Students
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Zeynep Dulger; Feral Ogan-Bekiroglu – International Journal of Research in Education and Science, 2024
In order to effectively learn physics, students need to be actively involved in problem solving. The purpose of this study was to evaluate the relationship between students' metacognitive awareness and their problem solving strategies in physics. Conceptual framework was based on Polya's problem solving strategies and Shraw and Dennison's…
Descriptors: Correlation, Metacognition, Problem Solving, Physics
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Barron J. Montgomery; Argenta M. Price; Carl E. Wieman – Physical Review Physics Education Research, 2024
A major goal of physics education is to develop strong problem-solving skills for students. To become expert problem solvers, students must have opportunities to deliberately practice those skills. In this work, we adopt a previously described definition of problem solving that consists of a set of 29 decisions made by expert scientists. We…
Descriptors: Undergraduate Students, Physics, Decision Making, Science Education
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Salima Aldazharova; Gulnara Issayeva; Samat Maxutov; Nuri Balta – Contemporary Educational Technology, 2024
This study investigates the performance of GPT-4, an advanced AI model developed by OpenAI, on the force concept inventory (FCI) to evaluate its accuracy, reasoning patterns, and the occurrence of false positives and false negatives. GPT-4 was tasked with answering the FCI questions across multiple sessions. Key findings include GPT-4's…
Descriptors: Physics, Science Tests, Artificial Intelligence, Problem Solving
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Paul J. Emigh; Corinne A. Manogue – Physical Review Physics Education Research, 2024
Physics experts and students commonly use a variety of representations when working with partial derivatives, including symbols, graphs, and words. One especially powerful representation is the contour graph. In open-ended problem-solving interviews with nine upper-division physics students, we asked students to determine derivatives from contour…
Descriptors: Physics, Scientific Concepts, Concept Formation, Geometric Concepts
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J. Caleb Speirs; MacKenzie R. Stetzer; Beth A. Lindsey – Physical Review Physics Education Research, 2024
Over the course of the introductory calculus-based physics course, students are often expected to build conceptual understanding and develop and refine skills in problem solving and qualitative inferential reasoning. Many of the research-based materials developed over the past 30 years by the physics education research community use sequences of…
Descriptors: Physics, Science Education, Network Analysis, Calculus
Daniel A. Martens Yaverbaum – ProQuest LLC, 2024
This study investigated evidence of how students' mental models of fundamental kinematic relations evolved (i.e., developed cognitively over time) as observed during an introductory course in calculus-based classical mechanics. The core of the curriculum is based on a claim known as Galileo's principle of relativity. The course material comprised…
Descriptors: Schemata (Cognition), Motion, Physics, Science Education
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