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Parsons, John-Dennis; Davies, Jim – Cognitive Science, 2022
Analogical reasoning is a core facet of higher cognition in humans. Creating analogies as we navigate the environment helps us learn. Analogies involve reframing novel encounters using knowledge of familiar, relationally similar contexts stored in memory. When an analogy links a novel encounter with a familiar context, it can aid in problem…
Descriptors: Correlation, Thinking Skills, Schemata (Cognition), Inferences
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van Rooij, Iris – Cognitive Science, 2008
The recognition that human minds/brains are finite systems with limited resources for computation has led some researchers to advance the "Tractable Cognition thesis": Human cognitive capacities are constrained by computational tractability. This thesis, if true, serves cognitive psychology by constraining the space of computational-level theories…
Descriptors: Psychologists, Misconceptions, Cognitive Mapping, Theses
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Krawczyk, Daniel C.; Holyoak, Keith J.; Hummel, John E. – Cognitive Science, 2005
Theories of analogical reasoning have assumed that a 1-to-1 constraint discourages reasoners from mapping a single element in 1 analog to multiple elements in another. Empirical evidence suggests that reasoners sometimes appear to violate the one-to-one constraint when asked to generate mappings, yet virtually never violate it when asked to…
Descriptors: Inferences, Cognitive Mapping, Theories, Logical Thinking
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Larkey, Levi B.; Markman, Arthur B. – Cognitive Science, 2005
Similarity underlies fundamental cognitive capabilities such as memory, categorization, decision making, problem solving, and reasoning. Although recent approaches to similarity appreciate the structure of mental representations, they differ in the processes posited to operate over these representations. We present an experiment that…
Descriptors: Cognitive Processes, Cognitive Structures, Cognitive Mapping, Models
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Howes, Andrew; Young, Richard M. – Cognitive Science, 1996
The study of human-computer interactions has revealed that highly interactive devices are often easier to learn to use than keyboard-based devices. Describes an integrated cognitive model designed to exhibit interactions between people and computers while learning task-action mappings such as the action sequences for opening a file in a word…
Descriptors: Cognitive Mapping, Computer Interfaces, Computer Software Development, Integrated Learning Systems