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  1. Herbert Simon’s Silent Revolution.Werner Callebaut - 2007 - Biological Theory 2 (1):76-86.
    Simon’s bounded rationality , the first scientific research program to seriously take the cognitive limitations of decision makers into account, has often been conflated with his more restricted concept of satisficing—choosing an alternative that meets or exceeds specified criteria, but that is not guaranteed to be unique or in any sense “the best.” Proponents of optimization often dismiss bounded rationality out of hand with the following “hallway syllogism” : bounded rationality “boils down to” satisficing; satisficing is “simply” a theory of (...)
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  • Discovering relativity beliefs: Towards a socio-cognitive model for Einstein's relativity theory formation.Andrea Cerroni - 2002 - Mind and Society 3 (1):93-109.
    The research on which the present paper makes a point in aimed at designing a cognitive model of Albert Einstein's discovery that is based on fundamental Einstein's publications and placed, ideally, at a meso-level, between macro-historical and micro-cognitive reconstructions (e.g. protocol analysis). As in a cognitive-historical analysis, we will trace some discovery heuristics in the construction of representations, that are on a continuum with those we employ in ordinary problem solving. Firstly, some theory-specific, reflexive heuristics—named orientative heuristics—are traced: inner perfection, (...)
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  • Understanding scientific study via process modeling.Robert W. P. Luk - 2010 - Foundations of Science 15 (1):49-78.
    This paper argues that scientific studies distinguish themselves from other studies by a combination of their processes, their (knowledge) elements and the roles of these elements. This is supported by constructing a process model. An illustrative example based on Newtonian mechanics shows how scientific knowledge is structured according to the process model. To distinguish scientific studies from research and scientific research, two additional process models are built for such processes. We apply these process models: (1) to argue that scientific progress (...)
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  • On the Moral Agency of Computers.Thomas M. Powers - 2013 - Topoi 32 (2):227-236.
    Can computer systems ever be considered moral agents? This paper considers two factors that are explored in the recent philosophical literature. First, there are the important domains in which computers are allowed to act, made possible by their greater functional capacities. Second, there is the claim that these functional capacities appear to embody relevant human abilities, such as autonomy and responsibility. I argue that neither the first (Domain-Function) factor nor the second (Simulacrum) factor gets at the central issue in the (...)
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  • Spatial Models Design Reasons and the Construction of Spatial Meaning.John Peponis, Iris Lycourioti & Iphigenia Mari - 2002 - Philosophica 70 (2).
    Based on architectural projects which interpret literature as program we discuss design reasoning when no routine models of problem solving apply. We address three aspects of formulation: defining the design charge so that it can be retrospectively stated independent of the actual proposal; defining a language of formal operations; and defining the intrinsic aims of design that are only intimated through the proposal itself. The coherence of the project is a function of the way in which formal properties interact, and (...)
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  • Problématique de la preuve en épistémologie contemporaine.Robert Nadeau - 1980 - Philosophiques 7 (2):217-246.
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  • Rethinking Right: Moral Epistemology in Management Research.Tae Wan Kim & Thomas Donaldson - 2018 - Journal of Business Ethics 148 (1):5-20.
    Most management researchers pause at the threshold of objective right and wrong. Their hesitation is understandable. Values imply a “subjective,” personal dimension, one that can invite religious and moral interference in research. The dominant epistemological camps of positivism and subjectivism in management stumble over the notion of moral objectivity. Empirical research can study values in human behavior, but hard-headed scientists should not assume that one value can be objectively better than another. In this article, we invite management researchers to rethink (...)
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  • Rezensionen.John J. Furlong, Joop Schopman, Richard F. Kitchener & Johanna Seibt M. A. - 1988 - Zeitschrift Für Allgemeine Wissenschaftstheorie 19 (1):148-170.
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  • Automatic Generation of Cognitive Theories using Genetic Programming.Enrique Frias-Martinez & Fernand Gobet - 2007 - Minds and Machines 17 (3):287-309.
    Cognitive neuroscience is the branch of neuroscience that studies the neural mechanisms underpinning cognition and develops theories explaining them. Within cognitive neuroscience, computational neuroscience focuses on modeling behavior, using theories expressed as computer programs. Up to now, computational theories have been formulated by neuroscientists. In this paper, we present a new approach to theory development in neuroscience: the automatic generation and testing of cognitive theories using genetic programming (GP). Our approach evolves from experimental data cognitive theories that explain “the mental (...)
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  • Learning by Arguing About Evidence and Explanations.John Dowell & Marzieh Asgari-Targhi - 2008 - Argumentation 22 (2):217-233.
    Collaborative learning with cases characteristically involves discussing and developing shared explanations. We investigated the argumentation scheme which learners use in constructing shared explanations over evidence. We observed medical students attempting to explain how a judge had arrived at his verdict in a case of medical negligence. The students were learning within a virtual learning environment and their communication was computer mediated. We identify the dialogue type that these learners construct and show that their argumentation conforms with an abductive form of (...)
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  • Constructing a Philosophy of Science of Cognitive Science.William Bechtel - 2009 - Topics in Cognitive Science 1 (3):548-569.
    Philosophy of science is positioned to make distinctive contributions to cognitive science by providing perspective on its conceptual foundations and by advancing normative recommendations. The philosophy of science I embrace is naturalistic in that it is grounded in the study of actual science. Focusing on explanation, I describe the recent development of a mechanistic philosophy of science from which I draw three normative consequences for cognitive science. First, insofar as cognitive mechanisms are information‐processing mechanisms, cognitive science needs an account of (...)
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  • The role of robotics and AI in technologically mediated human evolution: a constructive proposal.Jeffrey White - 2020 - AI and Society 35 (1):177-185.
    This paper proposes that existing computational modeling research programs may be combined into platforms for the information of public policy. The main idea is that computational models at select levels of organization may be integrated in natural terms describing biological cognition, thereby normalizing a platform for predictive simulations able to account for both human and environmental costs associated with different action plans and institutional arrangements over short and long time spans while minimizing computational requirements. Building from established research programs, the (...)
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  • About the “Trinity Thesis” Regarding the Ontology of Computer Programs.Henri Stephanou - 2020 - Philosophy and Technology 33 (2):323-330.
    This review of Turner’s “Computational Artifacts” focuses on one of the key novelties of the book, namely the proposal to understand the nature of computer programs as a “trinity” of specification, symbolic program, and physical process, replacing the traditional dualist views of programs as functional/structural or as symbolic/physical. This trinitarian view is found to be robust and helpful to solve typical issues of dualist views. Drawing comparisons with Simon’s view of the artifact as an interface, the author suggests that this (...)
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  • Alive Beyond Death! Ricoeur and the Immortalizing Narrative of the Self.Tracy Llanera - 2010 - Philosophical Frontiers: A Journal of Emerging Thought 5 (1):37-42.
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  • The role of inversion in the genesis, development and the structure of scientific knowledge.Nagarjuna G. - manuscript
    The main thrust of the argument of this thesis is to show the possibility of articulating a method of construction or of synthesis--as against the most common method of analysis or division--which has always been (so we shall argue) a necessary component of scientific theorization. This method will be shown to be based on a fundamental synthetic logical relation of thought, that we shall call inversion--to be understood as a species of logical opposition, and as one of the basic monadic (...)
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  • Pluralists about Pluralism? Versions of Explanatory Pluralism in Psychiatry.Jeroen Van Bouwel - 2014 - In Thomas Uebel (ed.), New Directions in the Philosophy of Science. Cham: Springer. pp. 105-119.
    In this contribution, I comment on Raffaella Campaner’s defense of explanatory pluralism in psychiatry (in this volume). In her paper, Campaner focuses primarily on explanatory pluralism in contrast to explanatory reductionism. Furthermore, she distinguishes between pluralists who consider pluralism to be a temporary state on the one hand and pluralists who consider it to be a persisting state on the other hand. I suggest that it would be helpful to distinguish more than those two versions of pluralism – different understandings (...)
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  • Biomorphism and Models in Design.Cameron Shelley - 2015 - In Woosuk Park, Ping Li & Lorenzo Magnani (eds.), Philosophy and Cognitive Science Ii: Western & Eastern Studies. Cham: Springer Verlag.
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  • Uses of cognitive science to science education.W. Jung - 1993 - Science & Education 2 (1):31-56.
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