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Lau, Nathan T. T.; Merkley, Rebecca; Tremblay, Paul; Zhang, Samuel; De Jesus, Stefanie; Ansari, Daniel – Developmental Psychology, 2021
Research has shown that two different, though related, ways of representing magnitude play foundational roles in the development of numerical and mathematical skills: a nonverbal approximate number system and an exact symbolic number system. While there have been numerous studies suggesting that the two systems are important predictors of math…
Descriptors: Kindergarten, Symbols (Mathematics), Mathematics Instruction, Predictor Variables
Hurst, Michelle; Anderson, Ursula; Cordes, Sara – Journal of Cognition and Development, 2017
In mathematically literate societies, numerical information is represented in 3 distinct codes: a verbal code (i.e., number words); a digital, symbolic code (e.g., Arabic numerals); and an analogical code (i.e., quantities; Dehaene, 1992). To communicate effectively using these numerical codes, our understanding of number must involve an…
Descriptors: Preschool Children, Numbers, Cognitive Mapping, Models
McCrink, Koleen; Perez, Jasmin; Baruch, Erica – Developmental Psychology, 2017
Toddlers performed a spatial mapping task in which they were required to learn the location of a hidden object in a vertical array and then transpose this location information 90° to a horizontal array. During the vertical training, they were given (a) no labels, (b) alphabetical labels, or (c) numerical labels for each potential spatial location.…
Descriptors: Prompting, Spatial Ability, Cognitive Mapping, Toddlers
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
Mortici, Cristinel – International Journal of Mathematical Education in Science and Technology, 2012
The floor function maps a real number to the largest previous integer. More precisely, floor(x)=[x] is the largest integer not greater than x. The square bracket notation [x] for the floor function was introduced by Gauss in his third proof of quadratic reciprocity in 1808. The floor function is also called the greatest integer or entier (French…
Descriptors: Numbers, Number Concepts, Geometric Concepts, Mathematics Education
Sella, Francesco; Sader, Elie; Lolliot, Simon; Cohen Kadosh, Roi – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2016
Recent studies have highlighted the potential role of basic numerical processing in the acquisition of numerical and mathematical competences. However, it is debated whether high-level numerical skills and mathematics depends specifically on basic numerical representations. In this study mathematicians and nonmathematicians performed a basic…
Descriptors: Numbers, Cognitive Processes, Mathematics Skills, Professional Personnel
Todorova, Alexandra – ProQuest LLC, 2013
Numbers are ubiquitous in life. At the same time, the symbols for numbers are highly abstract and their visual appearance does not carry any direct relation to their magnitude. This poses an important question for researchers interested in how numbers are mentally processed. Whereas research on numeric cognition suggests that culturally based…
Descriptors: Bilingualism, Second Language Learning, Numbers, Cognitive Processes
Newcombe, Nora S.; Levine, Susan C.; Mix, Kelly S. – Grantee Submission, 2015
There are many continuous quantitative dimensions in the physical world. Philosophical, psychological and neural work has focused mostly on space and number. However, there are other important continuous dimensions (e.g., time, mass). Moreover, space can be broken down into more specific dimensions (e.g., length, area, density) and number can be…
Descriptors: Correlation, Spatial Ability, Numbers, Teaching Methods
Gebuis, Titia; Gevers, Wim – Cognition, 2011
de Hevia and Spelke (de Hevia and Spelke (2009). Spontaneous mapping of number and space in adults and young children, "Cognition, 110", 198-207) investigated the mapping of number onto space. To this end, they introduced a non-symbolic flanker task. Here subjects have to bisect a line that is flanked by a 2-dot and a 9-dot array. Similar to the…
Descriptors: Cues, Cognitive Processes, Investigations, Cognitive Mapping
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
Nicoladis, Elena; Pika, Simone; Marentette, Paula – Cognitive Development, 2010
Some researchers have argued that children's earliest symbols are based on their sensorimotor experience and that arbitrary symbol-referent mapping poses a challenge for them. If so, exposure to iconic symbols (such as one-finger-for-one-object manual gestures) might help children in a difficult domain such as number. We assessed 44 preschoolers'…
Descriptors: Numbers, Nonverbal Communication, Vocabulary, Cognitive Mapping
Barth, Hilary; Starr, Ariel; Sullivan, Jessica – Cognitive Development, 2009
Previous studies have suggested that children's learning of the relation between number words and approximate numerosities depends on their verbal counting ability, and that children exhibit no knowledge of mappings between number words and approximate numerical magnitudes for number words outside their productive verbal counting range. In the…
Descriptors: Numbers, Exhibits, Cognitive Mapping, Computation
Castronovo, Julie; Seron, Xavier – Journal of Experimental Psychology: Human Perception and Performance, 2007
Vision was for a long time considered to be essential in the elaboration of the semantic numerical representation. However, early visual deprivation does not seem to preclude the development of a spatial continuum oriented from left to right to represent numbers (J. Castronovo & X. Seron, 2007; D. Szucs & V. Csepe, 2005). The authors investigated…
Descriptors: Blindness, Semantics, Numbers, Computation
Lipton, Jennifer S.; Spelke, Elizabeth S. – Child Development, 2005
Five-year-old children categorized as skilled versus unskilled counters were given verbal estimation and number word comprehension tasks with numerosities 20-120. Skilled counters showed a linear relation between number words and nonsymbolic numerosities. Unskilled counters showed the same linear relation for smaller numbers to which they could…
Descriptors: Preschool Children, Numbers, Cognitive Mapping, Task Analysis
Notebaert, Wim; Gevers, Wim; Verguts, Tom; Fias, Wim – Journal of Experimental Psychology: Human Perception and Performance, 2006
In 4 experiments, the authors investigated the reversal of spatial congruency effects when participants concurrently practiced incompatible mapping rules (J. G. Marble & R. W. Proctor, 2000). The authors observed an effect of an explicit spatially incompatible mapping rule on the way numerical information was associated with spatial responses. The…
Descriptors: Numbers, Scientific Concepts, Experiments, Spatial Ability
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