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Showing 1 to 15 of 81 results Save | Export
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Maria Al Dehaybes; Johan Deprez; Paul van Kampen; Mieke De Cock – Physical Review Physics Education Research, 2025
This study investigated how students reason about the partial derivative and the directional derivative of a multivariable function at a given point, using different graphical representations for the function in the problem statement. Questions were formulated to be as isomorphic as possible in both mathematics and physics contexts and were given…
Descriptors: Physics, Calculus, Graphs, Abstract Reasoning
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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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Fajar Kurnianto; Anggi Datiatur Rahmat; Heru Kuswanto – Pegem Journal of Education and Instruction, 2024
Learning activities related to students' real-life experiences may create meaningful learning. Integrating traditional games into the physics classroom can reconstruct local knowledge into scientific knowledge. The use of technology can affect student learning achievement. One of the technologies currently attracting attention is Augmented reality…
Descriptors: Computer Simulation, Educational Technology, Critical Thinking, Graphs
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A. Lynn Stephens – Journal of Research in Science Teaching, 2024
It is widely recognized that we need to prepare students to think with data. This study investigates student interactions with digital data graphs and seeks to identify what might prompt them to shift toward using their graphs as thinking tools in the authentic activity of doing science. Drawing from video screencast data of three small groups…
Descriptors: Graphs, Data, Interaction, Electronic Learning
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Sokolowski, Andrzej – Physics Education, 2019
This paper is a continuation of an earlier discussion in this journal about adhering to principles of mathematics while presenting function graphs in physics. As in the previous paper, the importance of the vertical line test was examined, this paper delves more in-depth, and it pinpoints a need for presenting graphs with a continuous rate of…
Descriptors: Graphs, Physics, Mathematics Education, Calculus
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Weissman, M. B. – Physical Review Physics Education Research, 2021
Sound educational policy recommendations require valid estimates of causal effects, but observational studies in physics education research sometimes have loosely specified causal hypotheses. The connections between the observational data and the explicit or implicit causal conclusions are sometimes misstated. The link between the causal…
Descriptors: Physics, Science Education, Attribution Theory, Educational Policy
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dos Santos, Paulo José Sena; dos Santos, Toni Fernando Mendes – Physics Education, 2021
Many researches show that students have difficulties in understanding graphics in kinematics. Some authors argue that we can use different instructional strategies to reduce these difficulties. Based on these studies, we developed and applied a didactic sequence using educational robotics to teach graphic analysis in movements in a dimension with…
Descriptors: Teaching Methods, Physics, Science Education, Graphs
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Ramos, David Brito; Ramos, Ilmara Monteverde Martins; Gasparini, Isabela; Teixeira de Oliveira, Elaine Harada – International Journal of Distance Education Technologies, 2021
This work presents a new approach to the learning path model in e-learning systems. The model uses data from the database records from an e-learning system and uses graphs as representation. In this work, the authors show how the model can be used to represent visually the learning paths, behavior analysis, help to suggest group formation for…
Descriptors: Electronic Learning, Models, Graphs, Integrated Learning Systems
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Wu, Chao-Jung; Liu, Chia-Yu – Physical Review Physics Education Research, 2021
The purpose of this study was to explore how students with high- and low-prior-knowledge employed multiple representations in argumentation evaluation and generation tasks. The argumentation performance and eye-movement behaviors of 96 college students in these tasks were investigated. The number of participants who proposed complex argumentation…
Descriptors: Eye Movements, Prior Learning, Persuasive Discourse, College Students
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Klein, P.; Küchemann, S.; Brückner, S.; Zlatkin-Troitschanskaia, O.; Kuhn, J. – Physical Review Physics Education Research, 2019
The understanding of graphs and extraction of relevant information from graphs plays a major role in physics education and is also important in several related fields. Recently, Susac "et al." [Phys. Rev. Phys. Educ. Res. 14, 020109 (2018)] compared physics and psychology students' understanding of graphs in the contexts of physics and…
Descriptors: Graphs, College Freshmen, Physics, Science Education
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Hwang, Wu-Yuin; Purba, Siska Wati Dewi; Bao, Shih-Jyun; Ma, Jhao-Heng – IEEE Transactions on Learning Technologies, 2022
This article integrated inquiry behaviors and a guided learning map (gMap) into a mobile app called Ubiquitous-Physics (U-Physics), which helps students to explore inclined plane phenomena in authentic contexts. The article investigated inquiry behaviors such as interpreting graphs, applying formulas, drawing conclusions, and peer collaboration,…
Descriptors: Physics, Science Education, Science Instruction, Computer Oriented Programs
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Susac, Ana; Bubic, Andreja; Kazotti, Elizabeta; Planinic, Maja; Palmovic, Marijan – Physical Review Physics Education Research, 2018
Previous studies have identified physics students' difficulties with graph slope and area under a graph in different contexts. In this study we compared physics and nonphysics (psychology) students' understanding of graphs; i.e., we evaluated the effects of concept (graph slope vs area under graph), type of question (qualitative vs quantitative),…
Descriptors: Physics, Graphs, Psychology, Comprehension
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Wee, Loo Kang; Lee, Tat Leong; Chew, Charles; Wong, Darren; Tan, Samuel – Physics Education, 2015
This paper reports a computer model simulation created using Easy Java Simulation (EJS) for learners to visualize how the steady-state amplitude of a driven oscillating system varies with the frequency of the periodic driving force. The simulation shows (N = 100) identical spring-mass systems being subjected to (1) a periodic driving force of…
Descriptors: Foreign Countries, Computer Simulation, Physics, Motion
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Espinoza, Fernando – Journal of Computers in Mathematics and Science Teaching, 2015
The incorporation of engaging and meaningful learning experiences is essential for the enhancement of critical thinking and the development of scientific literacy. The study engaged several groups of students in activities designed to elicit their understanding of a graphical representation of motion, and to determine the kinesthetic effect of…
Descriptors: Graphs, Motion, Physics, Science Education
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Holbert, Nathan R.; Wilensky, Uri – Technology, Knowledge and Learning, 2014
While video games have become a source of excitement for educational designers, creating informal game experiences that players can draw on when thinking and reasoning in non-game contexts has proved challenging. In this paper we present a design principle for creating educational video games that enables players to draw on knowledge resources…
Descriptors: Video Games, Design, Educational Games, Science Education
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