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No Child Left Behind Act 20011
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Rotem Abdu; Sofia Tancredi; Dor Abrahamson; Ramesh Balasubramaniam – Educational Studies in Mathematics, 2025
This paper combines recent developments in theories of knowledge (complex dynamic systems), technologies (embodied interactions), and research tools (multimodal data collection and analysis) to offer new insights into how conceptual mathematical understanding can emerge. A complex dynamic system view models mathematics learning in terms of a…
Descriptors: Mathematical Concepts, Mathematics Skills, Eye Movements, Coordination
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Ren, Bingqian; Liang, Xiaotong; Li, Jingyi; Cao, Luyi; Zhou, Xinlin – Psychology in the Schools, 2024
Mathematical performance plays a vital role in students' academic development. Studies have shown that some basic cognitive processes, including inductive reasoning, are critical for the development of mathematical performance. However, little empirical evidence has been accumulated regarding the association between inductive reasoning and…
Descriptors: Nonverbal Communication, Logical Thinking, Predictor Variables, Middle School Students
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Mamolo, Ami; Glynn-Adey, Parker – ZDM: Mathematics Education, 2023
We report on a group theory activity in which learners explored dihedral symmetries through a tangible geometric model. This approach has historical roots in the work of Felix Klein's Erlangen Program and his "Elementary Mathematics from an Advanced Standpoint." We situate our study with respect to this history as well as current…
Descriptors: Mathematics Education, Elementary School Mathematics, Calculators, Geometry
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Gilligan-Lee, Katie A.; Hawes, Zachary C. K.; Williams, Ashley Y.; Farran, Emily K.; Mix, Kelly S. – Child Development, 2023
Studies show that spatial interventions lead to improvements in mathematics. However, outcomes vary based on whether physical manipulatives (embodied action) are used during training. This study compares the effects of embodied and non-embodied spatial interventions on spatial and mathematics outcomes. The study has a randomized, controlled,…
Descriptors: Spatial Ability, Manipulative Materials, Instructional Effectiveness, Training
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Hamilton L. Hardison – North American Chapter of the International Group for the Psychology of Mathematics Education, 2023
Angularity is a persistent quantity throughout K-12+ school mathematics, and many studies have shown that individuals often conflate angularity with linear attributes (e.g., the length of an angle model's sides). However, few studies have examined the productive ways in which students might reason about angularity while attending to linear…
Descriptors: Mathematics Skills, Thinking Skills, Geometry, Spatial Ability
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T. Vessonen; H. Hellstrand; P. Aunio; A. Laine – International Journal of Early Childhood, 2024
The aim of this study was to investigate individual differences in mathematical problem-solving among 3- to 5-year-old children (N = 328; n[subscript 3-year-olds] = 115, n[subscript 4-year-olds] = 167, n[subscript 5-year-olds] = 46). First, we examined the extent to which children in this age group were able to solve open and closed non-routine…
Descriptors: Individual Differences, Mathematics Skills, Problem Solving, Preschool Children
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Giannis Karagiannakis; Marie-Pascale Noël; Anna Baccaglini-Frank; Cristiano Termine – Discover Education, 2024
By the end of primary school, children are expected to acquire a range of mathematical skills that progressively develop. This study aimed to gain insight into how a large number of numerical and geometrical measures are grouped and whether the structures shift or remain invariant along child's development based on the data obtained from a sample…
Descriptors: Mathematics Skills, Classification, Elementary School Students, Geometry
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Rajendran Govender; Godfred Amevor – Pythagoras, 2025
Geometry learning has a long history with the connection to human cognitive development. The ability to mentally or physically orient 2D shapes or 3D objects in space is believed to support achievement in science, technology, engineering, and mathematics (STEM) disciplines. Thus, geometry by its description is characterised by space; hence its…
Descriptors: Foreign Countries, High School Students, Grade 11, Mathematics Skills
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Ylenia Passiatore; Sara Costa; Giuseppe Grossi; Giuseppe Carrus; Sabine Pirchio – Social Psychology of Education: An International Journal, 2024
In this paper, we investigated the contribution of both cognitive and affective factors to mathematical skills. In particular, we looked at the protective role of self-concept for mathematical learning and performance. In a field study, we tested the relation of math self-concept and short-term visuo-spatial working memory to the mathematical…
Descriptors: Foreign Countries, Elementary School Students, Cognitive Processes, Self Concept
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Guez, Ava; Piazza, Manuela; Pinheiro-Chagas, Pedro; Peyre, Hugo; Heude, Barbara; Ramus, Franck – Developmental Science, 2023
A converging body of evidence from neuroimaging, behavioral, and neuropsychology studies suggests that different arithmetic operations rely on distinct neuro-cognitive processes: while addition and subtraction may rely more on visuospatial reasoning, multiplication would depend more on verbal abilities. In this paper, we tested this hypothesis in…
Descriptors: Language Skills, Spatial Ability, Preschool Children, Prediction
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Hawes, Zachary C. K.; Gilligan-Lee, Katie A.; Mix, Kelly S. – Developmental Psychology, 2022
Prior research has revealed robust and consistent relations between spatial and mathematical skills. Yet, establishing a causal relation has been met with mixed effects. To better understand whether, to what extent, and under what conditions mathematics performance can be improved through spatial training, we conducted a systematic meta-analysis…
Descriptors: Spatial Ability, Mathematics Achievement, Meta Analysis, Mathematics Skills
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Larissa Hahn; Pascal Klein – Educational Studies in Mathematics, 2025
In mathematics education, students are repeatedly confronted with the tasks of interpreting and relating different representations. In particular, switching between equations and diagrams plays a major role in learning mathematical procedures and solving mathematical problems. In this article, we investigate a rather unexplored topic with…
Descriptors: Undergraduate Students, Mathematics Instruction, Equations (Mathematics), Mathematics Skills
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Glaser, Maria; Knops, André – Journal of Numerical Cognition, 2023
The notion that mental arithmetic is associated with shifts of spatial attention along a spatially organised mental number representation has received empirical support from three lines of research. First, participants tend to overestimate results of addition and underestimate those of subtraction problems in both exact and approximate formats.…
Descriptors: Spatial Ability, Mental Computation, Arithmetic, Attention
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McDougal, Emily; Silverstein, Priya; Treleaven, Oscar; Jerrom, Lewis; Gilligan-Lee, Katie A.; Gilmore, Camilla; Farran, Emily K. – Child Development, 2023
There is a known association between LEGO® construction ability and mathematics achievement, yet the mechanisms which drive this association are largely unknown. This study investigated the spatial mechanisms underlying this association, and whether this differs for concrete versus digital construction. Between January 2020 and July 2021, children…
Descriptors: Mathematics Achievement, Mathematics Education, Manipulative Materials, Spatial Ability
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Dinah Reuter; Frank Reinhold – International Electronic Journal of Mathematics Education, 2025
The perception and manipulation of spatial information are essential for mathematical learning, and research highlights gender differences in spatial abilities. The present study contributes to the question of whether these differences are evident at earlier ages and how they interact with task complexity in mental rotation. We developed the…
Descriptors: Elementary School Students, Spatial Ability, Mathematics Instruction, Gender Differences
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