Spatial Foundations of Symbolic Numeracy Skills in Young Children
Effective Years: 2015-2021
Spatial skills strongly predict STEM achievement in children and adults. This project, led by a researcher at Temple University, aims to understand the relationship between spatial and numerical skills at a more fine-grained level, among pre-k through 4th graders, with the ultimate goal of harnessing this relationship to improve math achievement. This project (1) investigates how, when, and why spatial skills influence numerical skills; (2) examines how spatial and numerical skills develop among children at risk for under-representation in STEM fields, namely girls and students from low-socioeconomic-status (SES) backgrounds; and (3) establishes causal relationships between spatial and numerical skills. To accomplish goals (1) and (2), Study 1 uses a two-year longitudinal design, with students from a range of SES backgrounds starting in pre-k, 1st-, and 3rd-grades. Researchers assesses students twice a year, measuring multiple aspects of spatial skills (e.g., mental rotation, proportional reasoning, spatial working memory), numerical skills (e.g., cardinality, arithmetic, fraction concepts), and number line knowledge, a "bridge skill' that integrates space and number. Reading achievement is assessed as a control measure. The researchers hypothesize that initial spatial skills will predict growth over time in numerical skills; that spatial skills will be most important for numerical skills when new number concepts are first introduced; and that number line knowledge will help to explain the relations between spatial and numerical skills. To accomplish goal (3), Studies 2-4 use randomized experiments to improve spatial skills and number line knowledge, testing the hypothesis that improving these skills leads to improvement in numerical skills. The project also looks at potential gender differences and individual differences in spatials skills that might predict differences in numerical skills. The project integrates the research and educational activities both through university teaching and mentoring as well as through the establishment of work circles with practicing teachers. This project identifies specific skills and training techniques that increase children's numeracy skills, which may be especially important for girls and children from low-SES families. This foundational research builds a strong basis for the development of curricular interventions aimed at improving math learning and STEM representation in at-risk children.
16 Publications Related to This Project:
- Number Gestures Predict Learning of Number Words
- Causal Effects of Parent Number Talk on Preschoolers' Number Knowledge
- Reciprocal Relations Among Motivational Frameworks, Math Anxiety, and Math Achievement in Early Elementary School
- Children's Flexible Attention to Numerical and Spatial Magnitudes in Early Childhood
- Learning Improper Fractions with the Number Line and the Area Model
- Fathers' and Mothers' Praise and Spatial Language During Play with First Graders: Patterns of Interaction and Relations to Math Achievement
- Spatial Skills, but not Spatial Anxiety, Mediate the Gender Difference in Number Line Estimation
- The Number Line is a Critical Spatial-Numerical Representation: Evidence from a Fraction Intervention
- Parent Praise to Toddlers Predicts Fourth Grade Academic Achievement via Children's Incremental Mindsets
- The Role of Inhibitory Control in Strategy Change: The Case of Linear Measurement
- Malleability of Whole-Number and Fraction Biases in Decimal Comparison
- Relations Among Spatial Skills, Number Line Estimation, and Exact and Approximate Calculation in Young Children
- The Dynamic Nature of Children's Strategy Use After Receiving Accuracy Feedback in Decimal Comparisons
- Number Line Unidimensionality is a Critical Feature for Promoting Fraction Magnitude Concepts
- Meaning Before Order: Cardinal Principle Knowledge Predicts Improvement in Understanding the Successor Principle and Exact Ordering
- Verbal Labels Influence Children's Processing of Decimal Magnitudes
You are viewing a record from the ECR Projects database. Click here to search the ECR Projects Database or the ECR Publications Database.


