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Gibson, Brett M.; Wasserman, Edward A.; Cook, Robert G. – Learning and Motivation, 2006
In Experiment 1, we trained four pigeons to concurrently discriminate displays of 16 same icons (16S) from displays of 16 different icons (16D) as well as between displays of same icons (16S) from displays that contained 15 same icons and one different icon (15S:1D). The birds rapidly learned to discriminate 16S vs. 16D displays, but they failed…
Descriptors: Visual Discrimination, Animal Behavior, Visual Learning, Learning Processes
Edmonds, Ed M. – 1969
The purpose of the two experiments was to assess the effects of two levels of stimulus redundancy and three levels of irrelevant visual stimulation on performance in a successive discrimination task and a reproduction task. The results indicate that increases in redundancy facilitated performance in the reproduction task but had no appreciable…
Descriptors: College Students, Concept Formation, Discrimination Learning, Learning Processes

Turati, Chiara; Simion, Francesca – Journal of Experimental Child Psychology, 2002
Four experiments investigated newborns' ability to discriminate, recognize, and learn visual information embedded in the schematic face-like patterns preferred at birth. Results indicated that newborns discriminated face-like stimuli relying on their internal features and recognized a perceptual invariance between face-like configurations in…
Descriptors: Discrimination Learning, Learning Processes, Neonates, Performance Factors
Dorman, Lynn; And Others – 1971
Visual fixation on one of two blank targets was reinforced with either visual or auditory stimuli in one of 3 intensity sequences: (1) low, medium, high; (2) medium, high, low; and (3) high, low, medium. An analysis of variance of learning scores for the 48 14-week-old infants resulted in a significant interaction of intensity and order and in a…
Descriptors: Auditory Stimuli, Eye Fixations, Infant Behavior, Learning Processes
Fiser, Jozsef; Aslin, Richard N. – Journal of Experimental Psychology: General, 2005
The authors investigated how human adults encode and remember parts of multielement scenes composed of recursively embedded visual shape combinations. The authors found that shape combinations that are parts of larger configurations are less well remembered than shape combinations of the same kind that are not embedded. Combined with basic…
Descriptors: Learning Processes, Visual Learning, Adults, Visual Stimuli