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  1. Can quantum probability provide a new direction for cognitive modeling?Emmanuel M. Pothos & Jerome R. Busemeyer - 2013 - Behavioral and Brain Sciences 36 (3):255-274.
    Classical (Bayesian) probability (CP) theory has led to an influential research tradition for modeling cognitive processes. Cognitive scientists have been trained to work with CP principles for so long that it is hard even to imagine alternative ways to formalize probabilities. However, in physics, quantum probability (QP) theory has been the dominant probabilistic approach for nearly 100 years. Could QP theory provide us with any advantages in cognitive modeling as well? Note first that both CP and QP theory share the (...)
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  • Is there something special with probabilities? – Insight vs. computational ability in multiple risk combination.Peter Juslin, Marcus Lindskog & Bastian Mayerhofer - 2015 - Cognition 136 (C):282-303.
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  • Order effects and display persistence in probabilistic opinion revision.Robert A. Edenborough - 1975 - Bulletin of the Psychonomic Society 5 (1):39-40.
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  • Background beliefs and evidence interpretation.Aidan Feeney, Jonathan StB. T. Evans & John Clibbens - 2000 - Thinking and Reasoning 6 (2):97-124.
    In this paper we argue that it is often adaptive to use one's background beliefs when interpreting information that, from a normative point of view, is incomplete. In both of the experiments reported here participants were presented with an item possessing two features and were asked to judge, in the light of some evidence concerning the features, to which of two categories it was more likely that the item belonged. It was found that when participants received evidence relevant to just (...)
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  • A Quantum Probability Account of Order Effects in Inference.Jennifer S. Trueblood & Jerome R. Busemeyer - 2011 - Cognitive Science 35 (8):1518-1552.
    Order of information plays a crucial role in the process of updating beliefs across time. In fact, the presence of order effects makes a classical or Bayesian approach to inference difficult. As a result, the existing models of inference, such as the belief-adjustment model, merely provide an ad hoc explanation for these effects. We postulate a quantum inference model for order effects based on the axiomatic principles of quantum probability theory. The quantum inference model explains order effects by transforming a (...)
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  • Correlation as a deceiving measure of fit.James Shanteau - 1977 - Bulletin of the Psychonomic Society 10 (2):134-136.
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  • Reducing cognitive biases in probabilistic reasoning by the use of logarithm formats.Peter Juslin, Håkan Nilsson, Anders Winman & Marcus Lindskog - 2011 - Cognition 120 (2):248-267.
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  • Averaging rules and adjustment processes in Bayesian inference.Lola L. Lopes - 1985 - Bulletin of the Psychonomic Society 23 (6):509-512.
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  • Is the mind Bayesian? The case for agnosticism.Jean Baratgin & Guy Politzer - 2006 - Mind and Society 5 (1):1-38.
    This paper aims to make explicit the methodological conditions that should be satisfied for the Bayesian model to be used as a normative model of human probability judgment. After noticing the lack of a clear definition of Bayesianism in the psychological literature and the lack of justification for using it, a classic definition of subjective Bayesianism is recalled, based on the following three criteria: an epistemic criterion, a static coherence criterion and a dynamic coherence criterion. Then it is shown that (...)
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  • Inferences and predictions: Normative vs representative responding.R. James Holzworth & Michael E. Doherty - 1974 - Bulletin of the Psychonomic Society 3 (4):300-302.
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