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  1. Mental Images and Their Transformations.Roger N. Shepard & Lynn N. Cooper - 1982 - MIT Press.
    This book collects some of the most exciting pioneering work in perceptual and cognitive psychology. The authors' quantitative approach to the study of mental images and their representation is clearly depicted in this invaluable volume of research which presents, interprets, evaluates, and extends their work. The selections are preceded by a thorough review of the history of their experiments, and all of the articles have been updated with reviews of the current literature. The book's first part focuses on mental rotation; (...)
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  • Image and Mind.Stephen Michael Kosslyn - 1980 - Harvard University Press.
    The book also introduces a host of new experimental techniques and major hypotheses to guide future research.
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  • Problem-solving with diagrammatic representations.Brian V. Funt - 1980 - Artificial Intelligence 13 (3):201-230.
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  • Toward an Epistemology of Physics.Andrea diSessa - 1993 - Ethics and Behavior 10 (2):105-225.
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  • The development of children's problem solving in a gears task: A problem space perspective.Kathleen E. Metz - 1985 - Cognitive Science 9 (4):431-471.
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  • Categorization and representation of physics problems by experts and novices.Michelene T. H. Chi, Paul J. Feltovich & Robert Glaser - 1981 - Cognitive Science 5 (2):121-52.
    The representation of physics problems in relation to the organization of physics knowledge is investigated in experts and novices. Four experiments examine the existence of problem categories as a basis for representation; differences in the categories used by experts and novices; differences in the knowledge associated with the categories; and features in the problems that contribute to problem categorization and representation. Results from sorting tasks and protocols reveal that experts and novices begin their problem representations with specifiably different problem categories, (...)
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  • Modeling simultaneous actions and continuous processes.Gary G. Hendrix - 1973 - Artificial Intelligence 4 (3-4):145-180.
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  • Causal model progressions as a foundation for intelligent learning environments.Barbara Y. White & John R. Frederiksen - 1990 - Artificial Intelligence 42 (1):99-157.
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  • (1 other version)Dual Space Search During Scientific Reasoning.David Klahr & Kevin Dunbar - 1988 - Cognitive Science 12 (1):1-48.
    The purpose of the two studies reported here was to develop an integrated model of the scientific reasoning process. Subjects were placed in a simulated scientific discovery context by first teaching them how to use an electronic device and then asking them to discover how a hitherto unencountered function worked. To do this task, subjects had to formulate hypotheses based on their prior knowledge, conduct experiments, and evaluate the results of their experiments. In the first study, using 20 adult subjects, (...)
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  • The Role of a Mental Model in Learning to Operate a Device.David E. Kieras & Susan Bovair - 1984 - Cognitive Science 8 (3):255-273.
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  • Studies in Cognitive Growth. [REVIEW]Robert Schwartz - 1968 - Journal of Philosophy 65 (6):172-179.
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  • (1 other version)Dual Space Search During Scientific Reasoning.David Klahr & Kevin Dunbar - 1988 - Cognitive Science 12 (1):1-48.
    The purpose of the two studies reported here was to develop an integrated model of the scientific reasoning process. Subjects were placed in a simulated scientific discovery context by first teaching them how to use an electronic device and then asking them to discover how a hitherto unencountered function worked. To do this task, subjects had to formulate hypotheses based on their prior knowledge, conduct experiments, and evaluate the results of their experiments. In the first study, using 20 adult subjects, (...)
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  • The use of aggregation in causal simulation.Daniel S. Weld - 1986 - Artificial Intelligence 30 (1):1-34.
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  • Perceptual-cognitive universals as reflections of the world.Roger N. Shepard - 2001 - Behavioral and Brain Sciences 24 (4):581-601.
    The universality, invariance, and elegance of principles governing the universe may be reflected in principles of the minds that have evolved in that universe – provided that the mental principles are formulated with respect to the abstract spaces appropriate for the representation of biologically significant objects and their properties. (1) Positions and motions of objects conserve their shapes in the geometrically fullest and simplest way when represented as points and connecting geodesic paths in the six-dimensional manifold jointly determined by the (...)
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  • Mental models of meaning.Philip N. Johnson-Laird - 1981 - In Aravind K. Joshi, Bonnie L. Webber & Ivan A. Sag (eds.), Elements of Discourse Understanding. Cambridge, UK: Cambridge University Press. pp. 106--126.
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  • Placental Transfer and Synthesis of Hormones.John H. Holland - 1973
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  • Children and adults as intuitive scientists.Deanna Kuhn - 1989 - Psychological Review 96 (4):674-689.
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  • The Role of Mental Knowledge in Learning to Operate a Device.D. E. Kieras & S. Bovair - 1984 - Cognitive Science 8 (3):191-219.
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