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Drew, Trafton; Horowitz, Todd S.; Vogel, Edward K. – Cognition, 2013
In the multiple object tracking task, participants are asked to keep targets separate from identical distractors as all items move randomly. It is well known that simple manipulations such as object speed and number of distractors dramatically alter the number of targets that are successfully tracked, but very little is known about what "causes"…
Descriptors: Attention, Experiments, Spatial Ability, Prediction
Zhang, Hui; Mou, Weimin; McNamara, Timothy P. – Cognition, 2011
Three experiments examined the role of reference directions in spatial updating. Participants briefly viewed an array of five objects. A non-egocentric reference direction was primed by placing a stick under two objects in the array at the time of learning. After a short interval, participants detected which object had been moved at a novel view…
Descriptors: Experiments, Spatial Ability, Intervals, Test Results
Olofson, Eric L.; Baldwin, Dare – Cognition, 2011
We investigated infants' ability to recognize the similarity between observed and implied goals when actions differed in surface-level motion details. In two experiments, 10- to 12-month-olds were habituated to an actor manipulating an object and then shown test actions in which the actor contacted the object with a novel hand configuration that…
Descriptors: Infants, Motion, Object Manipulation, Experiments
Beck, Sarah R.; Apperly, Ian A.; Chappell, Jackie; Guthrie, Carlie; Cutting, Nicola – Cognition, 2011
Tool making evidences intelligent, flexible thinking. In Experiment 1, we confirmed that 4- to 7-year-olds chose a hook tool to retrieve a bucket from a tube. In Experiment 2, 3- to 5-year-olds consistently failed to innovate a simple hook tool. Eight-year-olds performed at mature levels. In contrast, making a tool following demonstration was easy…
Descriptors: Experiments, Children, Thinking Skills, Age Differences

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