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  1. Sensitivity to Shared Information in Social Learning.Andrew Whalen, Thomas L. Griffiths & Daphna Buchsbaum - 2018 - Cognitive Science 42 (1):168-187.
    Social learning has been shown to be an evolutionarily adaptive strategy, but it can be implemented via many different cognitive mechanisms. The adaptive advantage of social learning depends crucially on the ability of each learner to obtain relevant and accurate information from informants. The source of informants’ knowledge is a particularly important cue for evaluating advice from multiple informants; if the informants share the source of their information or have obtained their information from each other, then their testimony is statistically (...)
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  • Psychophysics and metaphysics.David J. Weiss - 1989 - Behavioral and Brain Sciences 12 (2):298-299.
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  • Unity and diversity of neurelectric and psychophysical functions: The invariance question.Gerald S. Wasserman & Lolin T. Wang-Bennett - 1989 - Behavioral and Brain Sciences 12 (2):297-298.
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  • Sensory magnitudes and their physical correlates.Richard M. Warren - 1989 - Behavioral and Brain Sciences 12 (2):296-297.
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  • Option 4: Forswear the psychophysical law.Lawrence M. Ward - 1989 - Behavioral and Brain Sciences 12 (2):295-296.
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  • Statistical Learning of Unfamiliar Sounds as Trajectories Through a Perceptual Similarity Space.Felix Hao Wang, Elizabeth A. Hutton & Jason D. Zevin - 2019 - Cognitive Science 43 (8):e12740.
    In typical statistical learning studies, researchers define sequences in terms of the probability of the next item in the sequence given the current item (or items), and they show that high probability sequences are treated as more familiar than low probability sequences. Existing accounts of these phenomena all assume that participants represent statistical regularities more or less as they are defined by the experimenters—as sequential probabilities of symbols in a string. Here we offer an alternative, or possibly supplementary, hypothesis. Specifically, (...)
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  • Fantasies in psychophysical scaling: Do category estimates reflect the true psychophysical scale?Mark Wagner - 1989 - Behavioral and Brain Sciences 12 (2):294-295.
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  • Sensory scaling: Unanswered questions.Michel Treisman - 1989 - Behavioral and Brain Sciences 12 (2):293-294.
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  • Magnitude scales, category scales, and number scales.Stanley J. Rule - 1989 - Behavioral and Brain Sciences 12 (2):288-288.
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  • Psychophysics: On the possibility of another approach.Tarow Indow - 1989 - Behavioral and Brain Sciences 12 (2):276-277.
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  • Reconciling Fechner and Stevens: Toward a unified psychophysical law.Lester E. Krueger - 1989 - Behavioral and Brain Sciences 12 (2):251-267.
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  • Unified psychophysics: Wouldn't it be loverly….Robert Teghtsoonian & Martha Teghtsoonian - 1989 - Behavioral and Brain Sciences 12 (2):292-292.
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  • Linear correlates in the speech signal: The orderly output constraint.Harvey M. Sussman, David Fruchter, Jon Hilbert & Joseph Sirosh - 1998 - Behavioral and Brain Sciences 21 (2):241-259.
    Neuroethological investigations of mammalian and avian auditory systems have documented species-specific specializations for processing complex acoustic signals that could, if viewed in abstract terms, have an intriguing and striking relevance for human speech sound categorization and representation. Each species forms biologically relevant categories based on combinatorial analysis of information-bearing parameters within the complex input signal. This target article uses known neural models from the mustached bat and barn owl to develop, by analogy, a conceptualization of human processing of consonant plus (...)
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  • On the origin and function of the psychophysical transformation.Roger N. Shepard - 1989 - Behavioral and Brain Sciences 12 (2):290-291.
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  • Representational geometry: integrating cognition, computation, and the brain.Nikolaus Kriegeskorte & Rogier A. Kievit - 2013 - Trends in Cognitive Sciences 17 (8):401-412.
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  • Is there really only one representation for stimulus intensity?Bruce Schneider - 1989 - Behavioral and Brain Sciences 12 (2):290-290.
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  • Conjuring Fechner's spirit.Eckart Scheerer - 1989 - Behavioral and Brain Sciences 12 (2):288-290.
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  • Statistical learning of syllable sequences as trajectories through a perceptual similarity space.Wendy Qi & Jason D. Zevin - 2024 - Cognition 244 (C):105689.
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  • Uncertain size of exponent when judging without familiar units.E. C. Poulton - 1989 - Behavioral and Brain Sciences 12 (2):286-288.
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  • Psychophysical law: Some doubts about unification.Scott Parker - 1989 - Behavioral and Brain Sciences 12 (2):286-286.
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  • The Fechner-Stevens law is the law of transmission of information.Kenneth H. Norwich - 1989 - Behavioral and Brain Sciences 12 (2):285-285.
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  • Nineteenth-century attempts to decide between psychophysical laws.David J. Murray - 1989 - Behavioral and Brain Sciences 12 (2):284-285.
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  • Correspondence Theory of Semantic Information.Marcin Miłkowski - 2023 - British Journal for the Philosophy of Science 74 (2):485-510.
    A novel account of semantic information is proposed. The gist is that structural correspondence, analysed in terms of similarity, underlies an important kind of semantic information. In contrast to extant accounts of semantic information, it does not rely on correlation, covariation, causation, natural laws, or logical inference. Instead, it relies on structural similarity, defined in terms of correspondence between classifications of tokens into types. This account elucidates many existing uses of the notion of information, for example, in the context of (...)
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  • Rubber scales and partial quantification.William J. McGill - 1989 - Behavioral and Brain Sciences 12 (2):283-284.
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  • G and S go fishing.Lawrence E. Marks - 1989 - Behavioral and Brain Sciences 12 (2):282-283.
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  • Psychophysical laws: A call for deregulation.Neil A. Macmillan, Louis D. Braida & Nathaniel I. Durlach - 1989 - Behavioral and Brain Sciences 12 (2):282-282.
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  • On various ways of establishing a psychophysical function empirically.Josef Lukas - 1989 - Behavioral and Brain Sciences 12 (2):281-282.
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  • Experimental evidence for Fechner's and Stevens's laws.Donald Laming - 1989 - Behavioral and Brain Sciences 12 (2):277-281.
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  • Psychophysical law: Keep it simple.Lester E. Krueger - 1989 - Behavioral and Brain Sciences 12 (2):299-320.
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  • Is Stevens's power law valid?Rhona P. Hellman - 1989 - Behavioral and Brain Sciences 12 (2):276-276.
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  • Chaining and the growth of linguistic categories.Amir Ahmad Habibi, Charles Kemp & Yang Xu - 2020 - Cognition 202 (C):104323.
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  • Are the power exponents of magnitude estimation functions too high?George A. Gescheider - 1989 - Behavioral and Brain Sciences 12 (2):275-275.
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  • Psychophysical law: The need for more than one level of explanation.Hans-Georg Geissler - 1989 - Behavioral and Brain Sciences 12 (2):274-275.
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  • View combination: A generalization mechanism for visual recognition.Alinda Friedman, David Waller, Tyler Thrash, Nathan Greenauer & Eric Hodgson - 2011 - Cognition 119 (2):229-241.
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  • Representational systems.Tomer Fekete - 2010 - Minds and Machines 20 (1):69-101.
    The concept of representation has been a key element in the scientific study of mental processes, ever since such studies commenced. However, usage of the term has been all but too liberal—if one were to adhere to common use it remains unclear if there are examples of physical systems which cannot be construed in terms of representation. The problem is considered afresh, taking as the starting point the notion of activity spaces—spaces of spatiotemporal events produced by dynamical systems. It is (...)
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  • Measures of Similarity.Karin Enflo - 2020 - Theoria 86 (1):73-99.
    This article analyses the relationship between the concept of single aspect similarity and proposed measures of similarity. More precisely, it compares eleven measures of similarity in terms of how well they satisfy a list of desiderata, chosen to capture common intuitions concerning the properties of similarity and the relations between similarity and dissimilarity. Three types of measures are discussed: similarity as commonality, similarity as a function of dissimilarity, and similarity as a joint function of commonality and difference. Relative to the (...)
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  • Jnds and ROCs.Donald D. Dorfman - 1989 - Behavioral and Brain Sciences 12 (2):273-274.
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  • Similarity After Goodman.Lieven Decock & Igor Douven - 2011 - Review of Philosophy and Psychology 2 (1):61-75.
    In a famous critique, Goodman dismissed similarity as a slippery and both philosophically and scientifically useless notion. We revisit his critique in the light of important recent work on similarity in psychology and cognitive science. Specifically, we use Tversky’s influential set-theoretic account of similarity as well as Gärdenfors’s more recent resuscitation of the geometrical account to show that, while Goodman’s critique contained valuable insights, it does not warrant a dismissal of similarity.
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  • From Universal Laws of Cognition to Specific Cognitive Models.Nick Chater & Gordon D. A. Brown - 2008 - Cognitive Science 32 (1):36-67.
    The remarkable successes of the physical sciences have been built on highly general quantitative laws, which serve as the basis for understanding an enormous variety of specific physical systems. How far is it possible to construct universal principles in the cognitive sciences, in terms of which specific aspects of perception, memory, or decision making might be modelled? Following Shepard (e.g.,1987), it is argued that some universal principles may be attainable in cognitive science. Here, 2 examples are proposed: the simplicity principle (...)
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  • Unifying psychophysics: And what if things are not so simple?Marc Brysbaert & Géry D'Ydewalle - 1989 - Behavioral and Brain Sciences 12 (2):271-273.
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  • About assumptions and exponents.Robert M. Boynton - 1989 - Behavioral and Brain Sciences 12 (2):271-271.
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  • To resolve Fechner versus Stevens: Settle the dispute concerning “ratios” and “differences”.Michael H. Birnbaum - 1989 - Behavioral and Brain Sciences 12 (2):270-271.
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  • The fickle measuring instrument.John C. Baird - 1989 - Behavioral and Brain Sciences 12 (2):269-270.
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  • Integration psychophysics.Norman H. Anderson - 1989 - Behavioral and Brain Sciences 12 (2):268-269.
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  • Is a unified psychophysical law realistic?Jüri Allik - 1989 - Behavioral and Brain Sciences 12 (2):267-268.
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