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Nadine Koch; Johannes Lohmann; Martin V. Butz; Hans-Christoph Nuerk – Journal of Numerical Cognition, 2024
Magnitude information, for instance, regarding weight, distance, or velocity, is crucial for planning goal-directed interactions. Accordingly, magnitude information, including numerical magnitude, can affect actions: Responses to small numbers are faster with the left hand than the right and vice versa (hand-based SNARC effect). Previous…
Descriptors: Spatial Ability, Numbers, Number Concepts, Task Analysis
de Hevia, Maria Dolores – Child Development Perspectives, 2021
The propensity to use a spatial framework to organize other pieces of information is a widespread phenomenon that permeates humans' representation of diverse concepts, including numerical quantities. Developmental studies on numerical cognition have revealed that humans possess a system for abstract quantity representation that is functional at…
Descriptors: Cognitive Processes, Numbers, Brain, Spatial Ability
Branyan, Helen; Cooper, Elisheva; Shaki, Samuel; McCrink, Koleen – Journal of Cognition and Development, 2023
During the preschool years, children are simultaneously undergoing a reshaping of their mental number line and becoming increasingly sensitive to the social norms expressed by those around them. In the current study, 4- and 5-year-old American and Israeli children were given a task in which an experimenter laid out chips with numbers (1-5),…
Descriptors: Preschool Children, Memory, Spatial Ability, Number Concepts
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
Schröder, Elin; Gredebäck, Gustaf; Forssman, Linda; Lindskog, Marcus – Developmental Science, 2022
How do children construct a concept of natural numbers? Past research addressing this question has mainly focused on understanding how children come to acquire the cardinality principle. However, at that point children already understand the first number words and have a rudimentary natural number concept in place. The question therefore remains;…
Descriptors: Child Development, Numbers, Number Concepts, Concept Formation
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
Libertus, Melissa E.; Starr, Ariel; Brannon, Elizabeth M. – Developmental Psychology, 2014
Over the past few decades, there has been extensive debate as to whether humans represent number abstractly and, if so, whether perceptual features of a set such as cumulative surface area or contour length are extracted more readily than number from the external world. Here we show that 7-month-old infants are sensitive to smaller ratio changes…
Descriptors: Infants, Numbers, Spatial Ability, Number Concepts
Priftis, Konstantinos; Albanese, Silvia; Meneghello, Francesca; Pitteri, Marco – Brain and Cognition, 2013
Arabic numerals are diffused and language-free representations of number magnitude. To be effectively processed, the digits composing Arabic numerals must be spatially arranged along a left-to-right axis. We studied one patient (AK) to show that left neglect, after right hemisphere damage, can selectively impair the computation of the spatial…
Descriptors: Spatial Ability, Brain Hemisphere Functions, Number Concepts, Neurological Impairments
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
Shaki, Samuel; Fischer, Martin H. – Journal of Experimental Psychology: Human Perception and Performance, 2012
A recent cross-cultural comparison (Shaki, Fischer, & Petrusic, 2009) suggested that spatially consistent processing habits for words and numbers are a necessary condition for the spatial representation of numbers (Spatial-Numerical Association of Response Codes; SNARC effect). Here we reexamine the SNARC in Israelis who read text from right…
Descriptors: Cross Cultural Studies, Number Concepts, Numbers, Spatial Ability
Rodríguez-Santos, José Miguel; Calleja, Marina; García-Orza, Javier; Iza, Mauricio; Damas, Jesús – American Annals of the Deaf, 2014
Deaf Children usually achieve lower scores on numerical tasks than normally hearing peers. Explanations for mathematical disabilities in hearing children are based on quantity representation deficits (Geary, 1994) or on deficits in accessing these representations (Rousselle & Noël, 2008). The present study aimed to verify, by means of symbolic…
Descriptors: Evidence, Deafness, Partial Hearing, Number Concepts
Hung, Yi-hui; Hung, Daisy L.; Tzeng, Ovid J.-L.; Wu, Denise H. – Cognition, 2008
The spatial component of numerical and ordinal information has been explored in previous research. However, how such mapping emerges and how it is affected by the learning experience are issues still under debate. In the current study, we examined the orientation of the mental number line for different numerical notations in Chinese readers. Our…
Descriptors: Learning Experience, Numbers, Number Concepts, Cognitive Processes
Santens, Seppe; Gevers, Wim – Cognition, 2008
In this study, we directly contrast two approaches that have been proposed to explain the SNARC effect. The traditional direct mapping account suggests that a direct association exists between the position of a number on the mental number line and the location of the response. On the other hand, accounts are considered that propose an intermediate…
Descriptors: Numbers, Mental Computation, Number Systems, Number Concepts
van Galen, Mirte S.; Reitsma, Pieter – Journal of Experimental Child Psychology, 2008
The SNARC (spatial-numerical association of response codes) effect refers to the finding that small numbers facilitate left responses, whereas larger numbers facilitate right responses. The development of this spatial association was studied in 7-, 8-, and 9-year-olds, as well as in adults, using a task where number magnitude was essential to…
Descriptors: Number Concepts, Numeracy, Children, Adults
Bobis, Janette – Australian Primary Mathematics Classroom, 2008
Number sense has been recognised as central to young children's development of mathematics for a number of decades. A student with a "good" sense of number normally has a thorough understanding of relationships among numbers and operations--being able flexibly to partition and combine numbers in convenient ways to allow appropriate…
Descriptors: Numbers, Young Children, Number Concepts, Early Childhood Education
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