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Showing 1 to 15 of 17 results Save | Export
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Posid, Tasha; Cordes, Sara – Developmental Psychology, 2018
While much research has focused on understanding the process by which young children learn to count, little work has explored the effects of direct instruction on this process. In the current study, we explored the impacts of training children in an explicit counting procedure on two distinct cardinality tasks. Two- to 5-year-old children first…
Descriptors: Computation, Direct Instruction, Young Children, Instructional Effectiveness
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Hurst, Michelle A.; Cordes, Sara – Developmental Psychology, 2018
When proportional information is pit against whole number numerical information, children often attend to the whole number information at the expense of proportional information (e.g., indicating 4/9 is greater than 3/5 because 4 > 3). In the current study, we presented younger (3- to 4-year-olds) and older (5- to 6-year-olds) children a task…
Descriptors: Abstract Reasoning, Numeracy, Age Differences, Preschool Children
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Anobile, Giovanni; Arrighi, Roberto; Castaldi, Elisa; Grassi, Eleonora; Pedonese, Lara; Moscoso, Paula A. M.; Burr, David C. – Developmental Psychology, 2018
Humans and other animals are able to make rough estimations of quantities using what has been termed the "approximate number system" (ANS). Much evidence suggests that sensitivity to numerosity correlates with symbolic math capacity, leading to the suggestion that the ANS may serve as a start-up tool to develop symbolic math. Many…
Descriptors: Children, Mathematics Skills, Spatial Ability, Time
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Ip, Martin Ho Kwan; Imuta, Kana; Slaughter, Virginia – Developmental Psychology, 2018
Correct counting respects the stable order principle whereby the count terms are recited in a fixed order every time. The 4 experiments reported here tested whether precounting infants recognize and prefer correct stable-ordered counting. The authors introduced a novel preference paradigm in which infants could freely press two buttons to activate…
Descriptors: Preferences, Serial Ordering, Computation, Infants
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Kim, Dan; Opfer, John E. – Developmental Psychology, 2017
Representations of numerical value have been assessed by using bounded (e.g., 0-1,000) and unbounded (e.g., 0-?) number-line tasks, with considerable debate regarding whether 1 or both tasks elicit unique cognitive strategies (e.g., addition or subtraction) and require unique cognitive models. To test this, we examined how well a mixed log-linear…
Descriptors: Computation, Numbers, Children, Cognitive Development
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Csibra, Gergely; Hernik, Mikolaj; Mascaro, Olivier; Tatone, Denis; Lengyel, Máté – Developmental Psychology, 2016
Looking times (LTs) are frequently measured in empirical research on infant cognition. We analyzed the statistical distribution of LTs across participants to develop recommendations for their treatment in infancy research. Our analyses focused on a common within-subject experimental design, in which longer looking to novel or unexpected stimuli is…
Descriptors: Eye Movements, Time, Statistical Distributions, Infants
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Kwon, Mee-Kyoung; Setoodehnia, Mielle; Baek, Jongsoo; Luck, Steven J.; Oakes, Lisa M. – Developmental Psychology, 2016
Four experiments examined how faces compete with physically salient stimuli for the control of attention in 4-, 6-, and 8-month-old infants (N = 117 total). Three computational models were used to quantify physical salience. We presented infants with visual search arrays containing a face and familiar object(s), such as shoes and flowers. Six- and…
Descriptors: Infants, Attention, Eye Movements, Visual Stimuli
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Michel, George F.; Babik, Iryna; Sheu, Ching-Fan; Campbell, Julie M. – Developmental Psychology, 2014
Handedness for acquiring objects was assessed monthly from 6 to 14 months in 328 infants (182 males). A group based trajectory model identified 3 latent groups with different developmental trajectories: those with an identifiable right preference (38%) or left preference (14%) and those without an identifiable preference (48%) but with a…
Descriptors: Infants, Handedness, Child Development, Lateral Dominance
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Cohen, Dale J.; Sarnecka, Barbara W. – Developmental Psychology, 2014
Children's understanding of numbers is often assessed using a number-line task, where the child is shown a line labeled with 0 at one end and a higher number (e.g., 100) at the other end. The child is then asked where on the line some intermediate number (e.g., 70) should go. Performance on this task changes predictably during childhood, and this…
Descriptors: Number Concepts, Computation, Measurement, Mathematics Skills
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Xu, Chang; LeFevre, Jo-Anne – Developmental Psychology, 2016
Are there differential benefits of training sequential number knowledge versus spatial skills for children's numerical and spatial performance? Three- to five-year-old children (N = 84) participated in 1 session of either sequential training (e.g., what comes before and after the number 5?) or non-numerical spatial training (i.e., decomposition of…
Descriptors: Young Children, Preschool Children, Numbers, Mathematics
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Wall, Jenna L.; Thompson, Clarissa A.; Dunlosky, John; Merriman, William E. – Developmental Psychology, 2016
Accurate monitoring and control are essential for effective self-regulated learning. These metacognitive abilities may be particularly important for developing math skills, such as when children are deciding whether a math task is difficult or whether they made a mistake on a particular item. The present experiments investigate children's ability…
Descriptors: Mathematics Instruction, Computation, Number Concepts, Metacognition
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Tosto, Maria G.; Petrill, Stephen A.; Malykh, Sergey; Malki, Karim; Haworth, Claire M. A.; Mazzocco, Michele M. M.; Thompson, Lee; Opfer, John; Bogdanova, Olga Y.; Kovas, Yulia – Developmental Psychology, 2017
Individual differences in number sense correlate with mathematical ability and performance, although the presence and strength of this relationship differs across studies. Inconsistencies in the literature may stem from heterogeneity of number sense and mathematical ability constructs. Sample characteristics may also play a role as changes in the…
Descriptors: Numeracy, Mathematics Skills, Adolescents, Computation
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Sella, Francesco; Berteletti, Ilaria; Lucangeli, Daniela; Zorzi, Marco – Developmental Psychology, 2015
In the number-to-position task, with increasing age and numerical expertise, children's pattern of estimates shifts from a biased (nonlinear) to a formal (linear) mapping. This widely replicated finding concerns symbolic numbers, whereas less is known about other types of quantity estimation. In Experiment 1, Preschool, Grade 1, and Grade 3…
Descriptors: Computation, Numbers, Preschool Children, Grade 1
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Muldoon, Kevin; Towse, John; Simms, Victoria; Perra, Oliver; Menzies, Victoria – Developmental Psychology, 2013
In response to claims that the quality (and in particular linearity) of children's mental representation of number acts as a constraint on number development, we carried out a longitudinal assessment of the relationships between number line estimation, counting, and mathematical abilities. Ninety-nine 5-year-olds were tested on 4 occasions at 3…
Descriptors: Numeracy, Intervals, Computation, Young Children
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Shetreet, Einat; Chierchia, Gennaro; Gaab, Nadine – Developmental Psychology, 2014
Behavioral investigations of the acquisition of "some" have shown that children favor its logical interpretation ("some and possibly all"). Adults, however, use the pragmatic interpretation ("some but not all") derived by a scalar implicature. Certain experimental manipulations increase children's rates of adult-like…
Descriptors: Responses, Brain Hemisphere Functions, Adults, Children
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