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  1. Hypothesis Testing: How We Foresee Falsification in Competitive Games.Michelle Cowley-Cunningham - 2017 - Saarbrücken, Germany: Lambert Academic Publishing.
    Each day people are presented with circumstances that may require speculation. Scientists may ponder questions such as why a star is born or how rainbows are made, psychologists may ask social questions such as why people are prejudiced, and military strategists may imagine what the consequences of their actions might be. Speculations may lead to the generation of putative explanations called hypotheses. But it is by checking if hypotheses accurately reflect the encountered facts that lead to sensible behaviour demonstrating a (...)
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  • Editorial.Valerie Thompson - 2012 - Thinking and Reasoning 18 (1):1-4.
  • Representation and knowledge are not the same thing.Leslie Smith - 1999 - Behavioral and Brain Sciences 22 (5):784-785.
    Two standard epistemological accounts are conflated in Dienes & Perner's account of knowledge, and this conflation requires the rejection of their four conditions of knowledge. Because their four metarepresentations applied to the explicit-implicit distinction are paired with these conditions, it follows by modus tollens that if the latter are inadequate, then so are the former. Quite simply, their account misses the link between true reasoning and knowledge.
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  • A hypothesis-assessment model of categorical argument strength.John McDonald, Mark Samuels & Janet Rispoli - 1996 - Cognition 59 (2):199-217.
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  • Introduction to Cognition in Science and Technology.Michael E. Gorman - 2009 - Topics in Cognitive Science 1 (4):675-685.
    Cognitive studies of science and technology have had a long history of largely independent research projects that have appeared in multiple outlets, but rarely together. The emergence of a new International Society for Psychology of Science and Technology suggests that this is a good time to put some of the latest work in this area into topiCS in a way that will both acquaint readers with the cutting edge in this domain and also give them a hint of its history. (...)
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  • A theory of implicit and explicit knowledge.Zoltan Dienes & Josef Perner - 1999 - Behavioral and Brain Sciences 22 (5):735-808.
    The implicit-explicit distinction is applied to knowledge representations. Knowledge is taken to be an attitude towards a proposition which is true. The proposition itself predicates a property to some entity. A number of ways in which knowledge can be implicit or explicit emerge. If a higher aspect is known explicitly then each lower one must also be known explicitly. This partial hierarchy reduces the number of ways in which knowledge can be explicit. In the most important type of implicit knowledge, (...)
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  • Chess Masters' Hypothesis Testing in Games of Dynamic Equilibrium.Michelle B. Cowley-Cunningham - 2016 - SSRN Econometrics: Econometric and Statistical Methods – General eJournal, Vol. 9, Issue 5: Jan 12, 2016.
    The purpose of this paper is to provide a detailed technical protocol analysis of chess masters' evaluative expertise, paying particular attention to the analysis of the structure of their memory process in evaluating foreseen possibilities in games of dynamic equilibrium. The paper has two purposes. First, to publish a results chapter from my DPhil thesis (in revised journal article form) attending to the measurement of foresight in chess masters' evaluation process, testing alternative theories of cognitive expertise in the domain of (...)
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  • Hypothesis Falsification in the 2-4-6 Number Sequence Test: Introducing Imaginary Counterparts.Michelle B. Cowley-Cunningham - 2015 - Philosophy of Mind eJournal 8 (41).
    Two main cognitive theories predict that people find refuting evidence that falsifies their theorising difficult, if not impossible to consider, even though such reasoning may be pivotal to grounding their everyday thoughts in reality (i.e., Poletiek, 1996; Klayman & Ha, 1987). In the classic 2-4-6 number sequence task devised by psychologists to test such reasoning skills in a simulated environment – people fail the test more often than not. In the 2-4-6 task participants try to discover what rule the number (...)
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  • Chess Masters' Hypothesis Testing.Michelle B. Cowley-Cunningham - 2004 - In K. D. Forbus, D. Gentner & Regier (eds.), Proceedings of the Twenty- Sixth Annual Conference of the Cognitive Science Society. Chicago, IL, USA: pp. pp. 250- 255..
    Falsification may demarcate science from non-science as the rational way to test the truth of hypotheses. But experimental evidence from studies of reasoning shows that people often find falsification difficult. We suggest that domain expertise may facilitate falsification. We consider new experimental data about chess experts’ hypothesis testing. The results show that chess masters were readily able to falsify their plans. They generated move sequences that falsified their plans more readily than novice players, who tended to confirm their plans. The (...)
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