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Jialing Zeng; Peng Zhang; Junyi Zhou; Junjie Shang; John B. Black – Educational Technology Research and Development, 2025
Current literature indicates the significance of embodied scaffoldings in enhancing the effectiveness of interactive learning technologies for STEM conceptual learning and relevant cognitive skill development. However, there is limited research on pedagogical approaches for integrating mixed embodied scaffoldings in learning with interactive…
Descriptors: Scaffolding (Teaching Technique), Educational Games, Learning Processes, STEM Education
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Erman, Erman; Wakhidah, Nur – Asia-Pacific Education Researcher, 2023
This study aims to help concrete thinkers learn science through the use of Piagets' cognitive processes (CPs) during scientific inquiry. A total of 203 fourth-grade students participated as volunteers in a pre-post control group study. The students were from urban, remote rural, and suburban regions of Indonesia. Data analysis demonstrated that…
Descriptors: Foreign Countries, Elementary School Students, Grade 4, Cognitive Processes
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Kobiela, Marta; Lehrer, Richard – Mathematical Thinking and Learning: An International Journal, 2019
Design research was conducted to investigate the development of dynamic conceptions of area. Students used simple physical instruments, squeegees, and paint, to generate rectangular areas continuously as a sweeping motion of one length through another. Then, they dissected the resulting swept space into discrete units of measure by coordinating…
Descriptors: Geometric Concepts, Measurement, Concept Formation, Spatial Ability
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Wang, Tzu-Ling; Tseng, Yi-Kuan – Journal of Computer Assisted Learning, 2020
The purpose of this study was to investigate not only the effectiveness of dynamic versus static visualizations on learning star motions but also the influence of students' spatial abilities with these two types of visualizations on their learning. We assigned 155 fifth-grade students to either a dynamic or a static condition. We used a science…
Descriptors: Teaching Methods, Computer Assisted Instruction, Spatial Ability, Science Achievement
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Kusmaryono, Imam; Jupriyanto; Kusumaningsih, Widya – European Journal of Educational Research, 2021
This article highlights the main ideas that underlie the differences in potential pragmatic knowledge constructs students experience when solving problems, between the zone of proximal development (ZPD) and the zone of potential construction (ZPC). This qualitative research is based on a phenomenological approach to finding the meaning of things…
Descriptors: Sociocultural Patterns, Problem Solving, Mathematics Instruction, Teaching Methods
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Matlen, Bryan J.; Richland, Lindsey E.; Klostermann, Ellen C.; Lyons, Emily – Grantee Submission, 2018
Mathematical problem solving typically involves manipulating visual symbols (e.g., equations), and prior research suggests that those symbols serve as diagrammatic representations (e.g., Landy & Goldstone, 2010). The present work examines the ways that instructional design of student engagement with these diagrammatic representations may…
Descriptors: Visual Aids, Mathematics Instruction, Instructional Effectiveness, Incidence
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Revina, Shintia; Zulkardi; Darmawijoyo; van Galen, Frans – Indonesian Mathematical Society Journal on Mathematics Education, 2011
Many prior researches found that most of students in grade five tended to have difficulty in fully grasping the concept of volume measurement because they have to build their competence in spatial structuring. The unit of volume "packing" measurement must be integrated and coordinated in three-dimension. On the other hand, it is revealed…
Descriptors: Foreign Countries, Measurement, Grade 5, Spatial Ability