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Ratcliff, Roger; Love, Jessica; Thompson, Clarissa A.; Opfer, John E. – Child Development, 2012
Children (n = 130; M[subscript age] = 8.51-15.68 years) and college-aged adults (n = 72; M[subscript age] = 20.50 years) completed numerosity discrimination and lexical decision tasks. Children produced longer response times (RTs) than adults. R. Ratcliff's (1978) diffusion model, which divides processing into components (e.g., quality of…
Descriptors: Children, Young Adults, Older Adults, Reaction Time
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Nummenmaa, Lauri; Peets, Katlin; Salmivalli, Christina – Child Development, 2008
This study provides experimental evidence for automatic, relationship-specific social information processing in 13-year-old adolescents. Photographs of participants' liked, disliked, and unknown peers were used as primes in an affective priming task with happy and angry facial expression probes and in a hypothetical vignette task. For the…
Descriptors: Nonverbal Communication, Adolescents, Cognitive Processes, Information Processing
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Blank, Marion; And Others – Child Development, 1975
Intra- and crossmodal performance of normal and retarded third-grade readers were compared in a reaction-time task. Results suggest that the demands of stimulus complexity within the visual modality rather than the demands of crossmodal shifting were related to reading ability. (Author/ED)
Descriptors: Auditory Perception, Difficulty Level, Elementary School Students, Learning Modalities
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Muir, Darwin; Field, Jeffrey – Child Development, 1979
In two experiments, the majority of 21 newborn infants who were maintained in an alert state consistently turned their heads toward a continuous sound source presented 90 degrees from midline. For most infants, this orientation response was rather slow, taking median latencies of 2.5 seconds to begin and 5.5 seconds to end. (JMB)
Descriptors: Auditory Perception, Neonates, Preschool Children, Reaction Time
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Weiner, Alan S. – Child Development, 1975
Differences in the rates of visual information-processing in 8- and 10-year-old reflective and impulsive children were measured. (JMB)
Descriptors: Cognitive Processes, Conceptual Tempo, Elementary Education, Reaction Time
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Loughlin, Kathleen A.; Daehler, Marvin W. – Child Development, 1973
Descriptors: Cues, Discrimination Learning, Memory, Perception
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Cohen, Leslie B. – Child Development, 1972
Results support the contention that infant attention should be divided into separate attention-getting and attention-holding processes. (Author)
Descriptors: Attention, Attention Span, Eye Fixations, Infants
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Frick, Janet E.; Colombo, John; Saxon, Terrill F. – Child Development, 1999
Investigated whether individual and developmental differences in look duration were correlated with latency to disengage fixation from a visual stimulus for 3- and 4-month olds. Found that look duration was correlated with disengagement latency. Three-month olds showed slower latencies than 4-month olds. Long-looking infants showed greater…
Descriptors: Age Differences, Individual Differences, Infant Behavior, Infants
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Jacobson, Sandra W.; And Others – Child Development, 1992
Six-month-old African-American infants' expectation of a visual stimulus was related to developmental measures. Reaction time was related to eye fixation in tests that measured visual recognition memory (VRM) and presented objects of different shapes to the infant. Reaction time and infants' stimulus expectation predicted VRM novelty preference.…
Descriptors: Blacks, Cognitive Processes, Expectation, Eye Fixations
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Bosco, James – Child Development, 1972
The data indicated that disadvantaged children required more time to process visual information than did middle-class children, but the processing speed for the 2 groups tended to become more similar as grade level was increased. (Author)
Descriptors: Cognitive Processes, Data Analysis, Disadvantaged Youth, Elementary School Students
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Reznick, J. Steven; Chawarska, Katarzyna; Betts, Stephanie – Child Development, 2000
Two experiments used Visual Expectations Procedure to investigate development of expectations in infants up to 12 months old. Reaction time improved and the percentage of anticipations increased between 6 and 9 months using an alternation pattern or a complex pivot pattern, and between 4 and 8 months when using a left-right alternation or a…
Descriptors: Age Differences, Cognitive Development, Cognitive Processes, Expectation