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Rathé, Sanne; Torbeyns, Joke; Smedt, Bert De; Verschaffel, Lieven – Mathematical Thinking and Learning: An International Journal, 2022
Children's spontaneous focusing on Arabic number symbols (SFONS) has been identified as a relevant component of their early mathematical development. This study investigated whether SFONS is a separate construct from spontaneous focusing on numerosity (SFON) and examined whether it is uniquely related to numerical abilities and mathematics…
Descriptors: Numbers, Symbols (Mathematics), Numeracy, Mathematics Skills
Rathé, Sanne; Torbeyns, Joke; De Smedt, Bert; Verschaffel, Lieven – Mathematical Thinking and Learning: An International Journal, 2020
Children's spontaneous focusing on Arabic number symbols (SFONS) has been identified as a relevant component of their early mathematical development. This study investigated whether SFONS is a separate construct from spontaneous focusing on numerosity (SFON) and examined whether it is uniquely related to numerical abilities and mathematics…
Descriptors: Numbers, Symbols (Mathematics), Numeracy, Mathematics Skills
Schneider, Michael; Merz, Simon; Stricker, Johannes; De Smedt, Bert; Torbeyns, Joke; Verschaffel, Lieven; Luwel, Koen – Child Development, 2018
The number line estimation task is widely used to investigate mathematical learning and development. The present meta-analysis statistically synthesized the extensive evidence on the correlation between number line estimation and broader mathematical competence. Averaged over 263 effect sizes with 10,576 participants with sample mean ages from 4…
Descriptors: Number Concepts, Numbers, Mathematics Instruction, Children
Bakker, Merel; Pelgrims, Elise; Torbeyns, Joke; Verschaffel, Lieven; De Smedt, Bert – Journal of Numerical Cognition, 2023
While symbolic number processing is an important correlate for typical and low mathematics achievement, it remains to be determined whether children with high mathematics achievement also have excellent symbolic number processing abilities. We investigated this question in 64 children (aged 8 to 10), i.e., 32 children with persistent high…
Descriptors: Cognitive Processes, Numbers, High Achievement, Mathematics Achievement
Rathé, Sanne; Torbeyns, Joke; De Smedt, Bert; Verschaffel, Lieven – Journal of Educational Psychology, 2022
This longitudinal cross-lagged panel study investigated the development of the structure of young children's spontaneous number focusing tendencies and their longitudinal associations with numerical abilities and mathematics achievement over the course of a 3-year period, that is, in the second and third year of kindergarten and in first grade of…
Descriptors: Numeracy, Mathematics Achievement, Mathematics Skills, Grade 1
Orrantia, Josetxu; Muñez, David; Matilla, Laura; Sanchez, Rosario; San Romualdo, Sara; Verschaffel, Lieven – Cognitive Science, 2019
A growing body of research has shown that symbolic number processing relates to individual differences in mathematics. However, it remains unclear which mechanisms of symbolic number processing are crucial--accessing underlying magnitude representation of symbols (i.e., symbol-magnitude associations), processing relative order of symbols (i.e.,…
Descriptors: Numeracy, Numbers, Symbols (Mathematics), Mathematics Instruction
Depaepe, Fien; Van Roy, Patrick; Torbeyns, Joke; Kleickmann, Thilo; Van Dooren, Wim; Verschaffel, Lieven – Educational Studies in Mathematics, 2018
The transition from natural to rational numbers is difficult for most elementary school children. A major cause for these difficulties is assumed to be the "conceptual change" they need to undergo in order to see that several natural number properties do not apply to rational numbers. To appropriately handle pupils' difficulties,…
Descriptors: Preservice Teachers, Pedagogical Content Knowledge, Numbers, Experimental Groups
Bojorque, Gina; Torbeyns, Joke; Hannula-Sormunen, Minna; Van Nijlen, Daniël; Verschaffel, Lieven – European Journal of Psychology of Education, 2017
This study explored the development of Ecuadorian Kindergartners' spontaneous focusing on numerosity (SFON) during the kindergarten year, as well as the contribution of early numerical abilities to this development. One hundred Kindergartners coming from ten classrooms received two SFON tasks, one at the beginning and one at the end of the school…
Descriptors: Foreign Countries, Kindergarten, Young Children, Numbers
Degrande, Tine; Verschaffel, Lieven; Van Dooren, Wim – European Journal of Psychology of Education, 2018
While previous studies mainly focused on children's additive and multiplicative reasoning abilities, we studied third to sixth graders' "preference" for additive or multiplicative relations. This was investigated by means of schematic problems that were "open" to both types of relations, namely arrow schemes containing three…
Descriptors: Addition, Multiplication, Mathematical Logic, Student Attitudes
Van Hoof, Jo; Verschaffel, Lieven; Van Dooren, Wim – British Journal of Educational Psychology, 2017
Background: Rational numbers are of critical importance both in mathematics and in other fields of science. However, they form a stumbling block for learners. One widely known source of the difficulty learners have with rational numbers is the natural number bias, that is the tendency to (inappropriately) apply natural number properties in…
Descriptors: Educational Psychology, Grade 6, Elementary School Students, Mathematics Skills
Rathé, Sanne; Torbeyns, Joke; Hannula-Sormunen, Minna M.; Verschaffel, Lieven – Mathematical Thinking and Learning: An International Journal, 2016
This study investigated the relationship between kindergartners' Spontaneous Focusing on Numerosity (SFON) and their number-related utterances during numerical picture book reading. Forty-eight 4- to 5-year-olds were individually interviewed via a SFON Imitation Task and a numerical picture book reading activity. We expected differences in the…
Descriptors: Kindergarten, Picture Books, Numbers, Numeracy
Do First Graders Make Efficient Use of External Number Representations? The Case of the Twenty-Frame
Obersteiner, Andreas; Reiss, Kristina; Ufer, Stefan; Luwel, Koen; Verschaffel, Lieven – Cognition and Instruction, 2014
External number representations are commonly used throughout the first years of instruction. The twenty-frame is a grid that contains two rows of 10 dots each, and within each row, dots are organized in two groups of five. The assumption is that children can make use of these structures for enumerating the dots, rather than relying on one-by-one…
Descriptors: Grade 1, Elementary School Students, Numbers, Number Concepts
van Hoof, Jo; Verschaffel, Lieven; van Dooren, Wim – Educational Studies in Mathematics, 2015
The natural number bias is known to explain many difficulties learners have with understanding rational numbers. The research field distinguishes three aspects where natural number properties are sometimes inappropriately applied in rational number tasks: density, size, and operations. The overall goal of this study was to characterize the…
Descriptors: Numbers, Elementary Secondary Education, Bias, Numeracy
Degrande, Tine; Verschaffel, Lieven; Van Dooren, Wim – Mathematical Thinking and Learning: An International Journal, 2017
In contrast to previous studies on Spontaneous Focusing on Quantitative Relations (SFOR), the present study investigated not only the "extent" to which children focus on (multiplicative) quantitative relations, but also the "nature" of children's quantitative focus (i.e., the types of quantitative relations that children focus…
Descriptors: Foreign Countries, Grade 2, Grade 4, Grade 6
Van Hoof, Jo; Lijnen, Tristan; Verschaffel, Lieven; Van Dooren, Wim – Research in Mathematics Education, 2013
Rational numbers and particularly fractions are difficult for students. It is often claimed that the "natural number bias" underlies erroneous reasoning about rational numbers. This cross-sectional study investigated the natural number bias in first and fifth year secondary school students. Relying on dual process theory assumptions that…
Descriptors: Secondary School Students, Reaction Time, Comparative Analysis, Fractions
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