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  1. The best explanation: Criteria for theory choice.Paul R. Thagard - 1978 - Journal of Philosophy 75 (2):76-92.
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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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  • (4 other versions)The cement of the universe, a study of causation.J. Mackie - 1975 - Revue Philosophique de la France Et de l'Etranger 165 (2):179-179.
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  • (4 other versions)The Cement of the Universe: A Study of Causation.J. L. Mackie - 1975 - British Journal for the Philosophy of Science 26 (4):353-355.
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  • MAC/FAC: A Model of Similarity‐Based Retrieval.Kenneth D. Forbus, Dedre Gentner & Keith Law - 1995 - Cognitive Science 19 (2):141-205.
    We present a model of similarity‐based retrieval that attempts to capture three seemingly contradictory psychological phenomena: (a) structural commonalities are weighed more heavily than surface commonalities in similarity judgments for items in working memory; (b) in retrieval, superficial similarity is more important than structural similarity; and yet (c) purely structural (analogical) remindings e sometimes experienced. Our model, MAC/FAC, explains these phenomena in terms of a two‐stage process. The first stage uses a computationally cheap, non‐structural matcher to filter candidate long‐term memory (...)
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  • A theory of the discovery and predication of relational concepts.Leonidas A. A. Doumas, John E. Hummel & Catherine M. Sandhofer - 2008 - Psychological Review 115 (1):1-43.
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  • The Roles of Similarity in Transfer: Separating Retrievability from Inferential Soundness.Kenneth D. Forbus, Dedre Gentner & Mary Jo Rattermann - 1993 - Cognitive Psychology 25 (4).
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  • Systematicity and Surface Similarity in the Development of Analogy.Dedre Gentner & Cecile Toupin - 1986 - Cognitive Science 10 (3):277-300.
    This research investigates the development of analogy: In particular, we wish to study the development of systematicity in analogy. Systematicity refers to the mapping of systems of mutually constraining relations, such as causal chains or chains of implication. A preference for systematic mappings is a central aspect of analogical processing in adults (Gentner, 1980, 1983). This research asks two questions: Does systematicity make analogical mapping easier? And, if so, when, developmentally, do children become able to utilize systematicity?Children aged 5–7 and (...)
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  • Bootstrapping the Mind: Analogical Processes and Symbol Systems.Dedre Gentner - 2010 - Cognitive Science 34 (5):752-775.
    Human cognition is striking in its brilliance and its adaptability. How do we get that way? How do we move from the nearly helpless state of infants to the cognitive proficiency that characterizes adults? In this paper I argue, first, that analogical ability is the key factor in our prodigious capacity, and, second, that possession of a symbol system is crucial to the full expression of analogical ability.
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  • Reviving Inert Knowledge: Analogical Abstraction Supports Relational Retrieval of Past Events.Dedre Gentner, Jeffrey Loewenstein, Leigh Thompson & Kenneth D. Forbus - 2009 - Cognitive Science 33 (8):1343-1382.
    We present five experiments and simulation studies to establish late analogical abstraction as a new psychological phenomenon: Schema abstraction from analogical examples can revive otherwise inert knowledge. We find that comparing two analogous examples of negotiations at recall time promotes retrieving analogical matches stored in memory—a notoriously elusive effect. Another innovation in this research is that we show parallel effects for real‐life autobiographical memory (Experiments 1–3) and for a controlled memory set (Experiments 4 and 5). Simulation studies show that a (...)
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  • Causal Systems Categories: Differences in Novice and Expert Categorization of Causal Phenomena.Benjamin M. Rottman, Dedre Gentner & Micah B. Goldwater - 2012 - Cognitive Science 36 (5):919-932.
    We investigated the understanding of causal systems categories—categories defined by common causal structure rather than by common domain content—among college students. We asked students who were either novices or experts in the physical sciences to sort descriptions of real-world phenomena that varied in their causal structure (e.g., negative feedback vs. causal chain) and in their content domain (e.g., economics vs. biology). Our hypothesis was that there would be a shift from domain-based sorting to causal sorting with increasing expertise in the (...)
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  • The Role of Surface Similarity in Analogical Retrieval: Bridging the Gap Between the Naturalistic and the Experimental Traditions.Máximo Trench & Ricardo A. Minervino - 2015 - Cognitive Science 39 (6):1292-1319.
    Blanchette and Dunbar have claimed that when participants are allowed to draw on their own source analogs in the service of analogical argumentation, retrieval is less constrained by surface similarity than traditional experiments suggest. In two studies, we adapted this production paradigm to control for the potentially distorting effects of analogy fabrication and uneven availability of close and distant sources in memory. Experiment 1 assessed whether participants were reminded of central episodes from popular movies while generating analogies for superficially similar (...)
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  • Aether/Or: The Creation of Scientific Concepts.Nancy J. Nersessian - 1984 - Studies in History and Philosophy of Science Part A 15 (3):175.
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  • Observed Methods for Generating Analogies in Scientific Problem Solving.John Clement - 1988 - Cognitive Science 12 (4):563-586.
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  • Relational labeling unlocks inert knowledge.Anja Jamrozik & Dedre Gentner - 2020 - Cognition 196 (C):104146.
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  • The scientist in vivo: How scientists think and reason in the laboratory.Kevin Dunbar - 1999 - In L. Magnani, Nancy Nersessian & Paul Thagard, Model-Based Reasoning in Scientific Discovery. Kluwer/Plenum. pp. 89--98.
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  • The Impact of Analogies on Creative Concept Generation: Lessons From an In Vivo Study in Engineering Design.Joel Chan & Christian Schunn - 2015 - Cognitive Science 39 (1):126-155.
    Research on innovation often highlights analogies from sources outside the current problem domain as a major source of novel concepts; however, the mechanisms underlying this relationship are not well understood. We analyzed the temporal interplay between far analogy use and creative concept generation in a professional design team's brainstorming conversations, investigating the hypothesis that far analogies lead directly to very novel concepts via large steps in conceptual spaces . Surprisingly, we found that concepts were more similar to their preceding concepts (...)
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