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Suanda, Sumarga H.; Tompson, Whitney; Brannon, Elizabeth M. – Infancy, 2008
When are the precursors of ordinal numerical knowledge first evident in infancy? Brannon (2002) argued that by 11 months of age, infants possess the ability to appreciate the greater than and less than relations between numerical values but that this ability experiences a sudden onset between 9 and 11 months of age. Here we present 5 experiments…
Descriptors: Cues, Infants, Age Differences, Habituation
Jordan, Kerry E.; Suanda, Sumarga H.; Brannon, Elizabeth M. – Cognition, 2008
Intersensory redundancy can facilitate animal and human behavior in areas as diverse as rhythm discrimination, signal detection, orienting responses, maternal call learning, and associative learning. In the realm of numerical development, infants show similar sensitivity to numerical differences in both the visual and auditory modalities. Using a…
Descriptors: Infants, Associative Learning, Redundancy, Cognitive Ability
Brannon, Elizabeth M.; Suanda, Sumarga; Libertus, Klaus – Developmental Science, 2007
Time perception is important for many aspects of human behavior, and a large literature documents that adults represent intervals and that their ability to discriminate temporal intervals is ratio dependent. Here we replicate a recent study by vanMarle and Wynn (2006 ) that used the visual habituation paradigm and demonstrated that temporal…
Descriptors: Intervals, Infants, Discrimination Learning, Time Factors (Learning)

Brannon, Elizabeth M. – Cognition, 2002
Two experiments examined development of the ordinality concept in infants. Found that 11-month-olds successfully discriminated, whereas 9-month-olds failed to discriminate sequences that descended in numerical value from sequences increasing in numerical value. Nine-month-olds could discriminate the ordinal direction of sequences that varied in…
Descriptors: Age Differences, Cognitive Development, Cross Sectional Studies, Developmental Stages