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Beyond Accuracy: Reaction Time and Task Format Effects in Early Mathematical Processing
Yuan-Horng Lin1, I-Ping Wan2,3
1Department of Mathematics Education, National Taichung University of Education, Taichung 403060, Taiwan.
Behavioral Sciences (Basel, Switzerland)
|July 28, 2026
Summary
This study on early math learning found accuracy varied by task format, not gender. Reaction times (RT) also differed by task and accuracy, suggesting complex cognitive processes in young learners.
Area of Science:
- Cognitive Psychology
- Educational Psychology
- Developmental Psychology
Background:
- Traditional math assessments focus on accuracy, potentially overlooking cognitive processing.
- Reaction time (RT) offers insights into temporal processing patterns during problem-solving.
- Understanding gender-related variations in early math is crucial for equitable education.
Purpose of the Study:
- To explore associations between task format, gender, accuracy, and RT in early mathematics.
- To investigate how different math task formats influence performance in first-grade students.
- To examine gender differences in mathematical accuracy and response speed.
Main Methods:
- Thirty-seven first-grade students (21 girls, 16 boys) completed computerized formula-based and competency-based math tasks.
- PsychoPy/Pavlovia software was used for task implementation.
- Mixed-effects models analyzed accuracy and RT at participant and item levels.
Main Results:
- Accuracy was higher for formula-based tasks compared to competency-based tasks.
- No significant overall gender effect on accuracy was found, though numerical differences appeared in specific conditions.
- Reaction times were longer for competency-based tasks, with significant interactions between accuracy, task format, and gender.
Conclusions:
- Task format significantly impacts accuracy in early math, with formula-based problems yielding higher scores.
- While overall gender differences in accuracy were not significant, RT patterns suggest gender-related variations in cognitive processing.
- Future research should consider task order effects and employ more nuanced measures of mathematical cognition.
