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  1. Structure‐Mapping: A Theoretical Framework for Analogy.Dedre Gentner - 1983 - Cognitive Science 7 (2):155-170.
    A theory of analogy must describe how the meaning of an analogy is derived from the meanings of its parts. In the structure‐mapping theory, the interpretation rules are characterized as implicit rules for mapping knowledge about a base domain into a target domain. Two important features of the theory are (a) the rules depend only on syntactic properties of the knowledge representation, and not on the specific content of the domains; and (b) the theoretical framework allows analogies to be distinguished (...)
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  • Why Can Only 24% Solve Bayesian Reasoning Problems in Natural Frequencies: Frequency Phobia in Spite of Probability Blindness.Patrick Weber, Karin Binder & Stefan Krauss - 2018 - Frontiers in Psychology 9:375246.
    For more than 20 years, research has proven the beneficial effect of natural frequencies when it comes to solving Bayesian reasoning tasks (Gigerenzer & Hoffrage, 1995). In a recent meta-analysis, McDowell & Jacobs (2017) showed that presenting a task in natural frequency format increases performance rates to 24% compared to only 4% when the same task is presented in probability format. Nevertheless, on average three quarters of participants in their meta-analysis failed to obtain the correct solution for such a task (...)
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  • Teaching Bayesian reasoning in less than two hours.Peter Sedlmeier & Gerd Gigerenzer - 2001 - Journal of Experimental Psychology: General 130 (3):380.
  • The link between deductive reasoning and mathematics.Kinga Morsanyi, Teresa McCormack & Eileen O'Mahony - 2018 - Thinking and Reasoning 24 (2):234-257.
    Recent studies have shown that deductive reasoning skills are related to mathematical abilities. Nevertheless, so far the links between mathematical abilities and these two forms of deductive inference have not been investigated in a single study. It is also unclear whether these inference forms are related to both basic maths skills and mathematical reasoning, and whether these relationships still hold if the effects of fluid intelligence are controlled. We conducted a study with 87 adult participants. The results showed that transitive (...)
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  • Evolutionary modules and Bayesian facilitation: The role of general cognitive resources.Elise Lesage, Gorka Navarrete & Wim De Neys - 2013 - Thinking and Reasoning 19 (1):27 - 53.
    (2013). Evolutionary modules and Bayesian facilitation: The role of general cognitive resources. Thinking & Reasoning: Vol. 19, No. 1, pp. 27-53. doi: 10.1080/13546783.2012.713177.
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  • Understanding and solving word arithmetic problems.Walter Kintsch & James G. Greeno - 1985 - Psychological Review 92 (1):109-129.
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  • Comprehension and computation in Bayesian problem solving.Eric D. Johnson & Elisabet Tubau - 2015 - Frontiers in Psychology 6:137658.
    Humans have long been characterized as poor probabilistic reasoners when presented with explicit numerical information. Bayesian word problems provide a well-known example of this, where even highly educated and cognitively skilled individuals fail to adhere to mathematical norms. It is widely agreed that natural frequencies can facilitate Bayesian reasoning relative to normalized formats (e.g. probabilities, percentages), both by clarifying logical set-subset relations and by simplifying numerical calculations. Nevertheless, between-study performance on “transparent” Bayesian problems varies widely, and generally remains rather unimpressive. (...)
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  • Uncontrolled logic: intuitive sensitivity to logical structure in random responding.Stephanie Howarth, Simon Handley & Vince Polito - 2022 - Thinking and Reasoning 28 (1):61-96.
    It is well established that beliefs provide powerful cues that influence reasoning. Over the last decade research has revealed that judgments based upon logical structure may also pre-empt deliberative reasoning. Evidence for ‘intuitive logic’ has been claimed using a range of measures (i.e. confidence ratings or latency of response on conflict problems). However, it is unclear how well such measures genuinely reflect logical intuition. In this paper we introduce a new method designed to test for evidence of intuitive logic. In (...)
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  • Uncontrolled logic: intuitive sensitivity to logical structure in random responding.Stephanie Howarth, Simon Handley & Vince Polito - 2022 - Thinking and Reasoning 28 (1):61-96.
    It is well established that beliefs provide powerful cues that influence reasoning. Over the last decade research has revealed that judgments based upon logical structure may also pre-empt deliberative reasoning. Evidence for ‘intuitive logic’ has been claimed using a range of measures (i.e. confidence ratings or latency of response on conflict problems). However, it is unclear how well such measures genuinely reflect logical intuition. In this paper we introduce a new method designed to test for evidence of intuitive logic. In (...)
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  • Solving probabilistic and statistical problems: a matter of information structure and question form.Vittorio Girotto & Michel Gonzalez - 2001 - Cognition 78 (3):247-276.
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  • How to improve Bayesian reasoning without instruction: Frequency formats.Gerd Gigerenzer & Ulrich Hoffrage - 1995 - Psychological Review 102 (4):684-704.
  • Cognitive Reflection and Decision Making.Shane Frederick - 2005 - Journal of Economic Perspectives 19 (4):25-42.
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  • Matching Bias in Conditional Reasoning: Do We Understand it After 25 Years?Jonathan StB. T. Evans - 1998 - Thinking and Reasoning 4 (1):45-110.
    The phenomenon known as matching bias consists of a tendency to see cases as relevant in logical reasoning tasks when the lexical content of a case matches that of a propositional rule, normally a conditional, which applies to that case. Matching is demonstrated by use of the negations paradigm that is by using conditionals in which the presence and absence of negative components is systematically varied. The phenomenon was first published in 1972 and the present paper reviews the history of (...)
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  • Frequency versus probability formats in statistical word problems.Jonathan StB. T. Evans, Simon J. Handley, Nick Perham, David E. Over & Valerie A. Thompson - 2000 - Cognition 77 (3):197-213.
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  • Frequency versus probability formats in statistical word problems.Jonathan St B. T. Evans, Simon J. Handley, Nick Perham, David E. Over & Valerie A. Thompson - 2000 - Cognition 77 (3):197-213.
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  • Word problems: a review of linguistic and numerical factors contributing to their difficulty. [REVIEW]Gabriella Daroczy, Magdalena Wolska, Walt Detmar Meurers & Hans-Christoph Nuerk - 2015 - Frontiers in Psychology 6.
  • Are humans good intuitive statisticians after all? Rethinking some conclusions from the literature on judgment under uncertainty.L. Cosmides - 1996 - Cognition 58 (1):1-73.
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  • Base-rate respect: From ecological rationality to dual processes.Aron K. Barbey & Steven A. Sloman - 2007 - Behavioral and Brain Sciences 30 (3):241-254.
    The phenomenon of base-rate neglect has elicited much debate. One arena of debate concerns how people make judgments under conditions of uncertainty. Another more controversial arena concerns human rationality. In this target article, we attempt to unpack the perspectives in the literature on both kinds of issues and evaluate their ability to explain existing data and their conceptual coherence. From this evaluation we conclude that the best account of the data should be framed in terms of a dual-process model of (...)
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