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Jenny Yang; Seokhee Cho – Journal for the Education of the Gifted, 2024
In this qualitative case study, we investigated the role of an advanced math curriculum with language scaffolding on the development of geometric and visual-spatial reasoning skills in young mathematically promising English learners (MPELs). Specifically, we examined the effects of providing MPELs with challenging and supportive math curriculum to…
Descriptors: Mathematics Instruction, Academically Gifted, Curriculum Implementation, English Language Learners
Kocabas, Sezai; Zhu, Yi; Liang, Yiheng; Bofferding, Laura – North American Chapter of the International Group for the Psychology of Mathematics Education, 2022
Block building activities help develop students' spatial reasoning, but few studies focus on the development of block building skills beyond preschool. We worked with four kindergarten, four first grade, and four second grade students to learn more about their Lego block building. We compared students' accuracy, building strategies, and spatial…
Descriptors: Toys, Learning Activities, Accuracy, Grade 2
Widder, Mirela; Berman, Avi; Koichu, Boris – Journal for Research in Mathematics Education, 2019
Aiming to enhance understanding of visual obstacles inherent in two-dimensional (2-D) sketches used in high school spatial geometry instruction, we propose a measure of visual difficulty based on two attributes of the sketches: potentially misleading geometrical information (PMI) and potentially helpful geometrical information (PHI). The…
Descriptors: High School Students, Spatial Ability, Visual Perception, Geometry
Zhang, Dake; Indyk, Amanda; Greenstein, Steven – Learning Disability Quarterly, 2021
Schematic chunks denote patterns, schemes, or sophisticated rules and knowledge stored in the long-term memory in the form of chunks. We investigated whether schematic chunking is effective in improving the performance of students with math difficulties (MD) and students at risk of math failure, and how the complexity level of geometry problems…
Descriptors: Teaching Methods, Geometry, Mathematics Instruction, At Risk Students
Lin, Hao-Chiang Koong; Chen, Mei-Chi; Chang, Chih-Kai – Interactive Learning Environments, 2015
This study integrates augmented reality (AR) technology into teaching activities to design a learning system that assists junior high-school students in learning solid geometry. The following issues are addressed: (1) the relationship between achievements in mathematics and performance in spatial perception; (2) whether system-assisted learning…
Descriptors: Geometry, Secondary School Mathematics, Instructional Effectiveness, Mathematics Instruction
Novak, Elena; Tassell, Janet Lynne – British Journal of Educational Technology, 2015
This dataset includes a series of 30 education-related majors' performance measures before and after they completed a 10-hour video game practice in a computer lab. The goal of the experimental study was to examine the effects of action video gaming on students' mathematics performance and mathematics anxiety as mediated by the effect of attention…
Descriptors: Video Games, Drills (Practice), Educational Games, Teaching Methods
Widder, Mirela; Gorsky, Paul – Journal of Computers in Mathematics and Science Teaching, 2013
In schools, learning spatial geometry is usually dependent upon a student's ability to visualize three dimensional geometric configurations from two dimensional drawings. Such a process, however, often creates visual obstacles which are unique to spatial geometry. Useful software programs which realistically depict three dimensional geometric…
Descriptors: Computer Simulation, Mathematics Instruction, High School Students, Learning Processes
Peer reviewedBethell-Fox, Charles E.; And Others – Intelligence, 1984
This study of individual differences in performance of a geometric analogies task included four-alternative test items and studied eye movements and confidence judgments as well as latency and error. Results were interpreted using two hypothesized performance strategies: constructive matching and response elimination. (Author/BW)
Descriptors: Cognitive Processes, Confidence Testing, Difficulty Level, Eye Movements

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