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Showing all 13 results
Coubart, Aurélie; Izard, Véronique; Spelke, Elizabeth S.; Marie, Julien; Streri, Arlette – Developmental Science, 2014
In the first year of life, infants possess two cognitive systems encoding numerical information: one for processing the numerosity of sets of 4 or more items, and the second for tracking up to 3 objects in parallel. While a previous study showed the former system to be already present a few hours after birth, it is unknown whether the latter…
Descriptors: Neonates, Numbers, Cognitive Processes, Association (Psychology)
McCrink, Koleen; Spelke, Elizabeth S.; Dehaene, Stanislas; Pica, Pierre – Developmental Science, 2013
Much research supports the existence of an Approximate Number System (ANS) that is recruited by infants, children, adults, and non-human animals to generate coarse, non-symbolic representations of number. This system supports simple arithmetic operations such as addition, subtraction, and ordering of amounts. The current study tests whether an…
Descriptors: Foreign Countries, Number Systems, Arithmetic, American Indians
Winkler-Rhoades, Nathan; Carey, Susan C.; Spelke, Elizabeth S. – Developmental Science, 2013
In two experiments, 2.5-year-old children spontaneously used geometric information from 2D maps to locate objects in a 3D surface layout, without instruction or feedback. Children related maps to their corresponding layouts even though the maps differed from the layouts in size, mobility, orientation, dimensionality, and perspective, and even when…
Descriptors: Young Children, Toddlers, Spatial Ability, Memory
Hyde, Daniel C.; Spelke, Elizabeth S. – Developmental Science, 2011
Behavioral research suggests that two cognitive systems are at the foundations of numerical thinking: one for representing 1-3 objects in parallel and one for representing and comparing large, approximate numerical magnitudes. We tested for dissociable neural signatures of these systems in preverbal infants by recording event-related potentials…
Descriptors: Numbers, Infants, Brain, Number Concepts
Shutts, Kristin; Kinzler, Katherine D.; Katz, Rachel C.; Tredoux, Colin; Spelke, Elizabeth S. – Developmental Science, 2011
Minority-race children in North America and Europe often show less own-race favoritism than children of the majority (White) race, but the reasons for this asymmetry are unresolved. The present research tested South African children in order to probe the influences of group size, familiarity, and social status on children's race-based social…
Descriptors: Blacks, Children, Race, Social Status
Spelke, Elizabeth S.; Gilmore, Camilla K.; McCarthy, Shannon – Developmental Science, 2011
Geometrical concepts are critical to a host of human cognitive achievements, from maps to measurement to mathematics, and both the development of these concepts, and their variation by gender, have long been studied. Most studies of geometrical reasoning, however, present children with materials containing both geometric and non-geometric…
Descriptors: Maps, Kindergarten, Geometric Concepts, Geometry
Shutts, Kristin; Banaji, Mahzarin R.; Spelke, Elizabeth S. – Developmental Science, 2010
To whom do children look when deciding on their own preferences? To address this question, 3-year-old children were asked to choose between objects or activities that were endorsed by unfamiliar people who differed in gender, race (White, Black), or age (child, adult). In Experiment 1, children demonstrated robust preferences for objects and…
Descriptors: Novelty (Stimulus Dimension), Young Children, Gender Differences, Racial Differences
Lee, Sang Ah; Spelke, Elizabeth S. – Developmental Science, 2008
Research on navigation has shown that humans and laboratory animals recover their sense of orientation primarily by detecting geometric properties of large-scale surface layouts (e.g. room shape), but the reasons for the primacy of layout geometry have not been clarified. In four experiments, we tested whether 4-year-old children reorient by the…
Descriptors: Preschool Children, Geometric Concepts, Geometry, Orientation
Shusterman, Anna; Lee, Sang Ah; Spelke, Elizabeth S. – Developmental Science, 2008
Two experiments tested whether 4-year-old children extract and use geometric information in simple maps without task instruction or feedback. Children saw maps depicting an arrangement of three containers and were asked to place an object into a container designated on the map. In Experiment 1, one of the three locations on the map and the array…
Descriptors: Maps, Error Patterns, Geometric Concepts, Young Children
Spelke, Elizabeth S.; Kinzler, Katherine D. – Developmental Science, 2007
Human cognition is founded, in part, on four systems for representing objects, actions, number, and space. It may be based, as well, on a fifth system for representing social partners. Each system has deep roots in human phylogeny and ontogeny, and it guides and shapes the mental lives of adults. Converging research on human infants, non-human…
Descriptors: Infants, Knowledge Level, Cognitive Development, Animals
Shutts, Kristin; Keen, Rachel; Spelke, Elizabeth S. – Developmental Science, 2006
Previous research has shown that young children have difficulty searching for a hidden object whose location depends on the position of a partly visible physical barrier. Across four experiments, we tested whether children's search errors are affected by two variables that influence adults' object-directed attention: object boundaries and…
Descriptors: Structural Elements (Construction), Proximity, Object Permanence, Toddlers
Xu, Fei; Spelke, Elizabeth S.; Goddard, Sydney – Developmental Science, 2005
Four experiments used a preferential looking method to investigate 6-month-old infants' capacity to represent numerosity in visual-spatial displays. Building on previous findings that such infants discriminate between arrays of eight versus 16 discs, but not eight versus 12 discs (Xu & Spelke, 2000), Experiments 1 and 2 investigated whether…
Descriptors: Infants, Numeracy, Visual Stimuli, Task Analysis
Wood, Justin N.; Spelke, Elizabeth S. – Developmental Science, 2005
Are abstract representations of number--representations that are independent of the particular type of entities that are enumerated--a product of human language or culture, or do they trace back to human infancy? To address this question, four experiments investigated whether human infants discriminate between sequences of actions (jumps of a…
Descriptors: Numeracy, Infants, Numbers, Visual Stimuli

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