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Tosatto, Laure; Fagot, Joël; Nemeth, Dezso; Rey, Arnaud – Cognitive Science, 2022
Chunking mechanisms are central to several cognitive processes and notably to the acquisition of visuo-motor sequences. Individuals segment sequences into chunks of items to perform visuo-motor tasks more fluidly, rapidly, and accurately. However, the exact dynamics of chunking processes in the case of extended practice remain unclear. Using an…
Descriptors: Cognitive Processes, Schemata (Cognition), Visual Perception, Sequential Learning
Koopman, Sarah E.; Mahon, Bradford Z.; Cantlon, Jessica F. – Cognitive Science, 2017
Language and culture endow humans with access to conceptual information that far exceeds any which could be accessed by a non-human animal. Yet, it is possible that, even without language or specific experiences, non-human animals represent and infer some aspects of similarity relations between objects in the same way as humans. Here, we show that…
Descriptors: Evolution, Animals, Discrimination Learning, Inferences
Ware, Elizabeth A.; Gelman, Susan A. – Cognitive Science, 2014
This set of seven experiments examines reasoning about the inheritance and acquisition of physical properties in preschoolers, undergraduates, and biology experts. Participants (N = 390) received adoption vignettes in which a baby animal was born to one parent but raised by a biologically unrelated parent, and they judged whether the offspring…
Descriptors: Vignettes, Adoption, Animals, Genetics
Shtulman, Andrew; Schulz, Laura – Cognitive Science, 2008
Historians of science have pointed to essentialist beliefs about species as major impediments to the discovery of natural selection. The present study investigated whether such beliefs are impediments to learning this concept as well. Participants (43 children aged 4-9 and 34 adults) were asked to judge the variability of various behavioral and…
Descriptors: Evolution, Student Attitudes, Historians, Children
Hills, Thomas T. – Cognitive Science, 2006
Foraging-and feeding-related behaviors across eumetazoans share similar molecular mechanisms, suggesting the early evolution of an optimal foraging behavior called area-restricted search (ARS), involving mechanisms of dopamine and glutamate in the modulation of behavioral focus. Similar mechanisms in the vertebrate basal ganglia control motor…
Descriptors: Animals, Animal Behavior, Evolution, Neurological Organization

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