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Student Approaches to Generating Mathematical Examples: Comparing E-Assessment and Paper-Based Tasks
George Kinnear; Paola Iannone; Ben Davies – Educational Studies in Mathematics, 2025
Example-generation tasks have been suggested as an effective way to both promote students' learning of mathematics and assess students' understanding of concepts. E-assessment offers the potential to use example-generation tasks with large groups of students, but there has been little research on this approach so far. Across two studies, we…
Descriptors: Mathematics Skills, Learning Strategies, Skill Development, Student Evaluation
Janina Krawitz; Stanislaw Schukajlow; Luisa Hartmann – Educational Studies in Mathematics, 2025
Problem posing is a promising teaching method for enhancing motivation and performance in mathematics and more specifically in mathematical modelling. Hence, the goals of our study were twofold: (1) to examine the effects of problem posing on modelling performance, self-efficacy, and task values in solving modelling problems, and (2) to analyze…
Descriptors: Problem Solving, Self Efficacy, Performance, Mathematics Skills
Theresa Elise Wege; Camilla Gilmore; Matthew Inglis – Journal of Numerical Cognition, 2025
Children learn the cardinalities of the first numbers one, two, three and four before they learn how counting tracks cardinality for all numbers. It may be that when children start to understand counting, they also discover how numbers relate to one another in a structured number system. Do children who understand that the cardinality of a set is…
Descriptors: Numeracy, Number Concepts, Arithmetic, Mathematics Skills
Sevim Nuraydin; Johannes Stricker; Michael Schneider – Child Development, 2024
The number line estimation task is frequently used to measure children's numerical magnitude understanding. It is unclear whether the resulting straight, horizontal, left-to-right-oriented estimate patterns indicate task constraints or children's intuitive number--space mapping. Three- to six-year-old children (N = 72, M[subscript age] = 4.89, 56%…
Descriptors: Preschool Children, Numbers, Mathematics Skills, Numeracy
Baroody, Arthur J.; Mix, Kelly S.; Kartal, Gamze; Lai, Meng-lung – Journal of Numerical Cognition, 2023
Number-recognition tasks, such as the how-many task, involve set-to-word mapping, and number-creation tasks, such as the give-n task, entail word-to-set mapping. The present study involved comparing sixty 3-year-olds' performance on the two tasks with collections of one to three items over three time points about 3 weeks apart. Inconsistent with…
Descriptors: Number Concepts, Recall (Psychology), Task Analysis, Preschool Children
Josh Medrano; Dana Miller-Cotto – British Journal of Educational Psychology, 2025
Background: High working memory capacity is associated with improved mathematical problem-solving skills. A leading theory about why working memory enhances problem-solving suggests that capable problem solvers might offload information from their working memory for later use. Aims: This study examined whether the ability to offload information…
Descriptors: Mathematics Skills, Problem Solving, State Universities, Short Term Memory
Caviedes Barrera, Sofía; de Gamboa, Genaro; Badillo Jiménez, Edelmira Rosa – International Journal of Mathematical Education in Science and Technology, 2023
The area concept may appear in a wide range of problem situations. The representations used (geometrical, numerical and algebraic) in such situations entail particular practices that condition the partial area meanings. Thus, this study aims to characterize the partial area meanings mobilized in the resolution of area tasks. Each of the area…
Descriptors: Geometry, Geometric Concepts, Problem Solving, Mathematics Skills
Leikin, Roza; Elgrably, Haim – ZDM: Mathematics Education, 2022
One of the well-known approaches to creativity differentiates between creative person, process, product, and press. In the study presented in this paper we focus on creative process and product associated with Problem Posing through Investigation (PPI) by experts in mathematical problem solving. We link the creative process to creativity of PPI…
Descriptors: Creative Thinking, Problem Solving, Investigations, Task Analysis
Johnson, Heather Lynn – Mathematical Thinking and Learning: An International Journal, 2022
It is well known that students benefit from opportunities to interpret and create different representations (e.g., diagrams, graphs, tables, symbols) of mathematical ideas. Employing Marton's Variation theory as a lens, I argue for an expansion of the use of multiple representations in task design for graphs: Incorporate two different forms of the…
Descriptors: Task Analysis, Mathematics Instruction, Thinking Skills, Graphs
Calah J. Ford; Ellen L. Usher – Social Psychology of Education: An International Journal, 2025
Self-efficacy, the beliefs learners hold about what they can do, develops largely from whether learners perceive and interpret their experiences as successful (i.e., perceived mastery). In mathematics, the relationship between perceived mastery and self-efficacy has been well established. Less is known about the factors that may influence…
Descriptors: Early Adolescents, Mastery Learning, Mathematics Skills, Task Analysis
Jonas Kanefke; Stanislaw Schukajlow – Journal of Mathematics Teacher Education, 2024
Students' emotions (e.g., enjoyment, boredom) while doing math and their situational interest in mathematics are important for their learning of mathematics, but examinations of teachers' judgments of students' emotions and interest while solving tasks are rare. Moreover, we do not know much about the predictors of teachers' judgments of students'…
Descriptors: Preservice Teachers, Evaluative Thinking, Student Evaluation, Learner Engagement
Paul Hernandez-Martinez; Therese Keane – International Journal of Mathematical Education in Science and Technology, 2025
Storytelling is a valuable form of human expression that allows audience members to connect their own experiences with the narrative. As a pedagogical tool, storytelling has been explored mainly in primary school education but rarely in higher education. However, its potential for assisting students in learning mathematics and the societal…
Descriptors: Story Telling, Mathematics Instruction, Task Analysis, Learning Experience
Way, Jennifer; Cartwright, Katherin – Mathematics Education Research Group of Australasia, 2023
This paper presents an initial analysis of 10 Preschool children's responses to a look-draw-trace-draw task. The findings suggest that figure-tracing helped half the children to produce a more accurate representation of the geometric figure presented to them, in their second drawing.
Descriptors: Freehand Drawing, Mathematics Instruction, Preschool Children, Preschool Education
Borriello, Giulia A.; Grenell, Amanda; Vest, Nicholas A.; Moore, Kyler; Fyfe, Emily R. – Child Development, 2023
This study examined repeating and growing pattern knowledge and their associations with procedural and conceptual arithmetic knowledge in a sample of U.S. children (N = 185; M[subscript age] = 79.5 months; 55% female; 88% White) and adults (N = 93; M[subscript age] = 19.5 years; 62% female; 66% White) from 2019 to 2020. Three key findings emerged:…
Descriptors: Mathematics Instruction, Pattern Recognition, Prediction, Correlation
Allison L. Gantt; Teo Paoletti; Srujana V. Acharya; Claudine Margolis – North American Chapter of the International Group for the Psychology of Mathematics Education, 2023
Emergent graphical shape thinking (EGST) entails conceiving a graph as being dynamically generated via the trace of a moving point constrained by two changing quantities. As such, Paoletti et al. (2023) argue that meanings for quantities within a situation and meanings for graphical representations must be connected, or bridged, to engage in EGST.…
Descriptors: Graphs, Mathematics Instruction, Task Analysis, Thinking Skills

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