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Showing 1 to 15 of 22 results Save | Export
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Miriam Madsen – Discourse: Studies in the Cultural Politics of Education, 2025
While previous educational governance literature on datafication has paid attention to comparison across spatial entities like countries and schools, temporal comparison in terms of progression (including prediction) has received less attention. One of the material forms in which progression and prediction data are circulated is the visual form of…
Descriptors: Graphs, Prediction, Higher Education, Charts
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Paula Fehlinger; Sebastian Becker-Genschow; Bianca Watzka – Physical Review Physics Education Research, 2025
The ability to accurately interpret mathematical functions is crucial for understanding complex physical and mathematical concepts. Differentiating isothermal from adiabatic change of state in p-V diagrams respectively graphs of indirectly proportional functions from graphs of power functions in x-y diagrams presents a common challenge for…
Descriptors: Science Education, Grade 10, Secondary School Students, Eye Movements
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Gamze Kurt; Erdinç Çakiroglu – International Journal of Mathematical Education in Science and Technology, 2025
This case study investigated the development of prospective mathematics teachers' technological pedagogical content knowledge (TPACK) in graphical data displays with (VM) within the context of a microteaching lesson study (MLS). This research investigated how five participants integrated technology and implemented a lesson plan aimed to teach…
Descriptors: Preservice Teachers, Pedagogical Content Knowledge, Technological Literacy, Graphs
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Tufan Inaltekin; Tolga Saka – Journal of Baltic Science Education, 2025
In science, one of the most crucial representations for constructing meaning about physical events is graphs. The first graph students encounter in science class is the constant velocity motion graph. Therefore, examining students' understanding of structuring and interpreting these graphs for the relationship between distance, time, and velocity…
Descriptors: Science Instruction, Graphs, Motion, Scientific Concepts
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Camilo Andrés Rodríguez-Nieto; Flor Monserrat Rodríguez-Vásquez; Vicenç Font Moll; Sudirman Sudirman; Benilda María Cantillo-Rudas – Educational Process: International Journal, 2025
Background/purpose. One of the current problems facing mathematics students, graduates in mathematics, and engineering is the disconnection between the meanings, symbolic representations, and graphics of derivatives when solving problems, which hinders their understanding. This article analyzes engineering students' understanding activated by…
Descriptors: Knowledge Level, Problem Solving, Graphs, Mathematics Instruction
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E.?B. Merki; S.?I. Hofer; A. Vaterlaus; A. Lichtenberger – Physical Review Physics Education Research, 2025
When describing motion in physics, the selection of a frame of reference is crucial. The graph of a moving object can look quite different based on the frame of reference. In recent years, various tests have been developed to assess the interpretation of kinematic graphs, but none of these tests have specifically addressed differences in reference…
Descriptors: Graphs, Motion, Physics, Secondary School Students
Sitti Maesuri Patahuddin; Andi Mulawakkan; Ajay Ramful – Mathematics Education Research Group of Australasia, 2025
This cross-sectional study examines participants' comprehension of line graphs at different career stages, comparing first-year and third-year pre-service teachers (PSTs) with in-service teachers (ISTs). A 23-item line graph task aligned with Curcio's framework--"Reading the data, Reading between the data, and Reading beyond the…
Descriptors: Graphs, Preservice Teachers, Teacher Education, Teaching Experience
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Beni Mbwile; Jonathan Hegwa Paskali – Journal of Turkish Science Education, 2025
Tanzanian secondary school students have consistently performed poorly in the topic of motion in a straight line, which involves kinematics formulas and graphs. Despite instruction, many struggle to plot and interpret these graphs, largely due to limited conceptual understanding among both learners and teachers. This study examines the conceptual…
Descriptors: Foreign Countries, Preservice Teachers, Science Teachers, Physics
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Wenlong Yi; Xuan Huang; Sergey Kuzmin; Igor Gerasimov; Yun Luo – Education and Information Technologies, 2025
This study proposes a knowledge graph-based big data analysis model for course quality evaluation, aiming to address issues in online education course evaluations such as semantic bias, grammatical deficiencies, vocabulary limitations, false evaluations, information distortion, and imbalanced evaluation categories. The model incorporates three…
Descriptors: Electronic Learning, Online Courses, Course Evaluation, Concept Mapping
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Zhong Zhengtao; Riyan Hidayat – Mathematics Teaching Research Journal, 2025
Incorporating technology into educational processes is increasingly necessary to address the complexities of contemporary learning environments. This study investigates the impact of Augmented Reality (AR) on the academic performance of third-grade students in the areas of graphs and geometry. A quasi-experimental design was employed, comparing a…
Descriptors: Computer Simulation, Educational Technology, Technology Uses in Education, Mathematics Achievement
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Guillermo Bautista Jr.; Musa Saimon; Wahid Yunianto; Houssam Sami El-Kasti; Zsolt Lavicza; Kristof Fenyvesi – Journal of Information Technology Education: Innovations in Practice, 2025
Aim/Purpose: This study explored the limited research on the challenges and opportunities faced by students when creating function art using GeoGebra, addressing a gap in the literature that focuses on student outputs and engagement. It addressed the need to understand how students engage with function art and the difficulties they encounter in…
Descriptors: Computer Software, Mathematics Instruction, Grade 11, High School Students
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Pramudya Wahyu Pradana; Supahar – Knowledge Management & E-Learning, 2025
Sound waves are one of the important topics studied in physics. However, students' graph representation is still low, leading to their low concept understanding of physics learning. Therefore, it is necessary to optimize the learning process to improve students' graph representation by providing a valid and reliable graph representation test…
Descriptors: Graphs, Acoustics, Physics, Science Tests
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Ana Paula da Silva; Aluizio Haendchen Filho; Edilson Ferneda; Hércules Antonio do Prado; André Luís Alice Raabe – Educational Technology Research and Development, 2025
Teaching Computer Science concepts, such as graph theory, is often challenging. This study proposes an approach for teaching graph theory using an unplugged game ("GraphGame") developed through a participatory design process that includes usage observation, clarifying meaning, prototyping, and implementation. This process was carried out…
Descriptors: Educational Games, Graphs, Computer Science Education, Teaching Methods
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Ruslimin A.; Yusuf Fuad; Masriyah – Educational Process: International Journal, 2025
Background/purpose: This study analyzes the commognition of students with low Working Memory Capacity (WMC) when solving calculus problems, particularly in integral material. Commognition, which merges cognition and communication, is explored through four indicators: keywords (stating knowns and unknowns), visual mediators (graphical…
Descriptors: Foreign Countries, Religious Colleges, Undergraduate Students, Mathematics Education
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Geetika Kapoor; Athanasios Vostanis; Suzy Mejía-Buenaño; Peter E. Langdon – Journal of Behavioral Education, 2025
This study evaluated the effects of Precision Teaching in improving typically developing students' mathematical skills when delivered via teleconferencing in India. Four students received Precision Teaching, while nine acted as control participants. Precision teaching involved instruction in three mathematical skills; two prerequisite skills and…
Descriptors: Instructional Effectiveness, Mathematics Skills, Teaching Methods, Drills (Practice)
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