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Changizi, Mark A.; Hsieh, Andrew; Nijhawan, Romi; Kanai, Ryota; Shimojo, Shinsuke – Cognitive Science, 2008
Over the history of the study of visual perception there has been great success at discovering countless visual illusions. There has been less success in organizing the overwhelming variety of illusions into empirical generalizations (much less explaining them all via a unifying theory). Here, this article shows that it is possible to…
Descriptors: Proximity, Visual Perception, Vision, Theories
Kozhevnikov, Maria; Motes, Michael A.; Hegarty, Mary – Cognitive Science, 2007
Three studies were conducted to examine the relation of spatial visualization to solving kinematics problems that involved either predicting the two-dimensional motion of an object, translating from one frame of reference to another, or interpreting kinematics graphs. In Study 1, 60 physics-naive students were administered kinematics problems and…
Descriptors: Visualization, Motion, Graphs, Eye Movements
Bergen, Benjamin K.; Lindsay, Shane; Matlock, Teenie; Narayanan, Srini – Cognitive Science, 2007
There is mounting evidence that language comprehension involves the activation of mental imagery of the content of utterances (Barsalou, 1999; Bergen, Chang, & Narayan, 2004; Bergen, Narayan, & Feldman, 2003; Narayan, Bergen, & Weinberg, 2004; Richardson, Spivey, McRae, & Barsalou, 2003; Stanfield & Zwaan, 2001; Zwaan, Stanfield, & Yaxley, 2002).…
Descriptors: Comprehension, Sentences, Semantics, Verbs
Matlock, Teenie; Ramscar, Michael; Boroditsky, Lera – Cognitive Science, 2005
How do we understand time and other entities we can neither touch nor see? One possibility is that we tap into our concrete, experiential knowledge, including our understanding of physical space and motion, to make sense of abstract domains such as time. To examine how pervasive an aspect of cognition this is, we investigated whether thought about…
Descriptors: Time, Motion, Schemata (Cognition), Concept Formation