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  1. Artificial moral agents are infeasible with foreseeable technologies.Patrick Chisan Hew - 2014 - Ethics and Information Technology 16 (3):197-206.
    For an artificial agent to be morally praiseworthy, its rules for behaviour and the mechanisms for supplying those rules must not be supplied entirely by external humans. Such systems are a substantial departure from current technologies and theory, and are a low prospect. With foreseeable technologies, an artificial agent will carry zero responsibility for its behavior and humans will retain full responsibility.
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  • Al and cargo cult science.James Moor - 1981 - Behavioral and Brain Sciences 4 (4):544-545.
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  • The dichotomous predicament of contemporary psychology.V. Pinkava - 1981 - Behavioral and Brain Sciences 4 (4):546-547.
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  • Simulation?Joseph Agassi - 1981 - Behavioral and Brain Sciences 4 (4):535-536.
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  • Modeling a paranoid mind.Kenneth Mark Colby - 1981 - Behavioral and Brain Sciences 4 (4):515-534.
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  • Self-cultivation, moral motivation, and moral imagination : A study of Zhu Xi's virtue ethics.Chan Lee - unknown
    Thesis (Ph.D.)--University of Hawaii at Manoa, 2008.
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  • A-life, organism and body: The semiotics of emergent levels.Claus Emmeche - manuscript
    1Center for the Philosophy of Nature and Science Studies, Blegdamsvej 17, DK-2100 Copenhagen, Denmark. Published pp. 117-124 in: Mark Bedeau, Phil Husbands, Tim Hutton, Sanjev Kumar and Hideaki Suzuki : Workshop and Tutorial Proceedings. Ninth International Conference on the Simulation and Synthesis of Living Systems.
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  • Representing Metarepresentations: Is there Theory of Mind-specific cognition?Marc Egeth - 2009 - Consciousness and Cognition 18 (1):244-254.
    What cognitive mechanisms do people use to represent other people's mental states? Do children who have difficulty processing other people's higher-level mental states such as beliefs also have difficulty processing higher-level non-mental representations such as meta-photographs? See the preprint here or find the final version in print or on the journal website.
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  • Non-reductive materialism and the spectrum of mind-body identity theories.Andrew Kernohan - 1988 - Dialogue 27 (3):475-88.
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  • The Computational Boundary of a “Self”: Developmental Bioelectricity Drives Multicellularity and Scale-Free Cognition.Michael Levin - 2019 - Frontiers in Psychology 10.
    All epistemic agents physically consist of parts that must somehow comprise an integrated cognitive self. Biological individuals consist of subunits (organs, cells, molecular networks) that are themselves complex and competent in their own context. How do coherent biological Individuals result from the activity of smaller sub-agents? To understand the evolution and function of metazoan bodies and minds, it is essential to conceptually explore the origin of multicellularity and the scaling of the basal cognition of individual cells into a coherent larger (...)
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  • Parrying.Kenneth Mark Colby - 1981 - Behavioral and Brain Sciences 4 (4):550-560.
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  • Modeling paranoia: The cargo cult metaphor.Keith Oatley - 1981 - Behavioral and Brain Sciences 4 (4):545-546.
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  • Colby's paranoia model: An old theory in a new frame?C. E. Izard & F. A. Masterson - 1981 - Behavioral and Brain Sciences 4 (4):539-540.
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  • On the generality of PARRY, Colby's paranoia model.Manfred Kochen - 1981 - Behavioral and Brain Sciences 4 (4):540-541.
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  • Psychiatry and computers: An uneasy synthesis.William H. Reid & John F. Riedler - 1981 - Behavioral and Brain Sciences 4 (4):547-547.
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  • Paranoia concerning program-resistant aspects of the mind - and let's drop rocks on Turing's toes again.Keith Gunderson - 1981 - Behavioral and Brain Sciences 4 (4):537-539.
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  • Theorizing change in artificial intelligence: inductivising philosophy from economic cognition processes. [REVIEW]Debasis Patnaik - 2015 - AI and Society 30 (2):173-181.
    Economic value additions to knowledge and demand provide practical, embedded and extensible meaning to philosophizing cognitive systems. Evaluation of a cognitive system is an empirical matter. Thinking of science in terms of distributed cognition (interactionism) enlarges the domain of cognition. Anything that actually contributes to the specific quality of output of a cognitive system is part of the system in time and/or space. Cognitive science studies behaviour and knowledge structures of experts and categorized structures based on underlying structures. Knowledge representation (...)
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  • Evolutionary Flatland.Root Gorelick - 2006 - Biological Theory 1 (2):203-205.
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  • Process Re-engineering and formal ontology.David W. Rodick - 2015 - Philosophy and Social Criticism 41 (6):557-576.
    John Dewey viewed philosophy as an intelligent means of realizing change, emphasizing the ubiquity of process, context and relations. The revolution in Organizational Behavior known as Process Re-engineering (PR) is an approach to organizational thinking recognizing the importance of process, context and relations at all levels of organizational activity. Because Dewey’s philosophy affords primacy to process and change, context and relations, it is fundamentally aligned with PR. Compelling connections between PR and Dewey’s philosophy are established concerning primacy of process, importance (...)
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  • In the quest for novelty.Anton Markoš - 2004 - Sign Systems Studies 32 (1-2):309-326.
    The emergence of novelty in the realm of the living remains, despite the long tradition of evolutionary biology, unwelcome, calling for explanation by old, established knowledge. The prevailing neodarwinian evolutionary paradigm approaches living beings as passive outcomes of external (and extraneous, hence “blind”) formative forces. Many teachings opposing Darwinism also take the existence of eternal, immutable and external laws as a necessary prerequisite. Ironically enough, authors who oppose Darwinian theory, and admit that living beings possess a “self”, often accentuate internal, (...)
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  • The Ontology of Vision. The Invisible, Consciousness of Living Matter.Giorgia Fiorio - 2016 - Frontiers in Psychology 7.
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  • The Liar Paradox in Plato.Richard McDonough - 2015 - Meta: Research in Hermeneutics, Phenomenology, and Practical Philosophy (1):9-28.
    Although most scholars trace the Liar Paradox to Plato’s contemporary, Eubulides, the paper argues that Plato builds something very like the Liar Paradox into the very structure of his dialogues with significant consequences for understanding his views. After a preliminary exposition of the liar paradox it is argued that Plato builds this paradox into the formulation of many of his central doctrines, including the “Divided Line” and the “Allegory of the Cave” and the “Ladder of Love”. Thus, Plato may have (...)
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  • Body Thinking, Story Thinking, Religion.Wu Kuang-Ming - 2013 - Open Journal of Philosophy 3 (4):479.
    This essay offers two novel thinking-modes, “body thinking” and “story thinking,” both intrinsically interrelated, as alternative reasoning to usual analytical logic, and claims that they facilitate understanding “religion” as our ultimate living in the Beyond. Thus body thinking, story thinking, and religion naturally gather into a threefold thinking synonymy. This essay adumbrates in story-thinking way this synonymy in four theme-stages, one, appreciating body thinking primal at our root, to, two, go through story-thinking that expresses body thinking to catalyze religion, to, (...)
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  • On the inherent incompleteness of scientific theories.Jolly Mathen - 2004
    We examine the question of whether scientific theories can ever be complete. For two closely related reasons, we will argue that they cannot. The first reason is the inability to determine what are “valid empirical observations”, a result that is based on a self-reference Gödel/Tarski-like proof. The second reason is the existence of “meta-empirical” evidence of the inherent incompleteness of observations. These reasons, along with theoretical incompleteness, are intimately connected to the notion of belief and to theses within the philosophy (...)
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  • Problems with profligate platonism.Colin Cheyne - 1999 - Philosophia Mathematica 7 (2):164-177.
    According to standard mathematical platonism, mathematical entities (numbers, sets, etc.) are abstract entities. As such, they lack causal powers and spatio-temporal location. Platonists owe us an account of how we acquire knowledge of this inaccessible mathematical realm. Some recent versions of mathematical platonism postulate a plenitude of mathematical entities, and Mark Balaguer has argued that, given the existence of such a plenitude, the attainment of mathematical knowledge is rendered non-problematic. I assess his epistemology for such a profligate platonism and find (...)
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  • Incompleteness, mechanism, and optimism.Stewart Shapiro - 1998 - Bulletin of Symbolic Logic 4 (3):273-302.
    §1. Overview. Philosophers and mathematicians have drawn lots of conclusions from Gödel's incompleteness theorems, and related results from mathematical logic. Languages, minds, and machines figure prominently in the discussion. Gödel's theorems surely tell us something about these important matters. But what?A descriptive title for this paper would be “Gödel, Lucas, Penrose, Turing, Feferman, Dummett, mechanism, optimism, reflection, and indefinite extensibility”. Adding “God and the Devil” would probably be redundant. Despite the breath-taking, whirlwind tour, I have the modest aim of forging (...)
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  • Evers & Walker and forms of knowledge.Jim Mackenzie - 1985 - Journal of Philosophy of Education 19 (2):199–209.
    Jim Mackenzie; Evers & Walker and Forms of Knowledge, Journal of Philosophy of Education, Volume 19, Issue 2, 30 May 2006, Pages 199–209, https://doi.org/10.
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  • Authority.Jim Mackenzie - 1988 - Journal of Philosophy of Education 22 (1):57-67.
    Jim Mackenzie; Authority, Journal of Philosophy of Education, Volume 22, Issue 1, 30 May 2006, Pages 57–65, https://doi.org/10.1111/j.1467-9752.1988.tb00177.x.
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  • The intentional stance reexamined.Radu J. Bogdan - 1985 - Behavioral and Brain Sciences 8 (4):759-760.
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  • Testing the components of a computer model.Brendan A. Maher - 1981 - Behavioral and Brain Sciences 4 (4):543-543.
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  • Judgment dissociation theory: An analysis of differences in causal, counterfactual and covariational reasoning.David R. Mandel - 2003 - Journal of Experimental Psychology: General 132 (3):419.
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  • When does the intentional stance work?Daniel C. Dennett - 1985 - Behavioral and Brain Sciences 8 (4):763-766.
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  • Is PARRY paranoid?David W. Swanson - 1981 - Behavioral and Brain Sciences 4 (4):548-549.
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  • Emergence in Cognitive Science.James L. McClelland - 2010 - Topics in Cognitive Science 2 (4):751-770.
    The study of human intelligence was once dominated by symbolic approaches, but over the last 30 years an alternative approach has arisen. Symbols and processes that operate on them are often seen today as approximate characterizations of the emergent consequences of sub- or nonsymbolic processes, and a wide range of constructs in cognitive science can be understood as emergents. These include representational constructs (units, structures, rules), architectural constructs (central executive, declarative memory), and developmental processes and outcomes (stages, sensitive periods, neurocognitive (...)
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  • Non-wellfounded set theory.Lawrence S. Moss - 2008 - Stanford Encyclopedia of Philosophy.
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  • On traits as dispositions: An alleged truism.Jaap van Heerden & Anton J. Smolenaars - 1989 - Journal for the Theory of Social Behaviour 19 (3):297–309.
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  • Aristotle, final cause, and the intentional stance.Aaron Ben-Zeev - 1985 - Behavioral and Brain Sciences 8 (4):758-759.
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  • Colby's model for paranoia: It's made well, but what is it?Peter A. Magaro & Harvey G. Shulman - 1981 - Behavioral and Brain Sciences 4 (4):542-543.
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  • Issues in computer modeling of cognitive phenomena: An artificial intelligence perspective.Jaime G. Carbonell - 1981 - Behavioral and Brain Sciences 4 (4):536-537.
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  • Science and environmental stewardship.Mario Carmelo Cirillo - 2014 - Global Bioethics 25 (2):114-124.
    People's vision of world phenomena is still based on the traditional mechanistic concept, which implies that process outcomes can be fully predicted and controlled. The new scientific concept that our world is characterized by complex, self-organizing processes, is so far acknowledged by few insiders. Mass media, advertising companies and information programmes tend to emphasize the success of technology, which significantly contributes to support and spread that mechanistic concept. This situation heavily impacts the management of the environment both in terms of (...)
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  • Clinical artificial intelligence.Virginia Teller & Hartvig Dahl - 1981 - Behavioral and Brain Sciences 4 (4):549-550.
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  • How smart must you be to be crazy?Robert Lindsay - 1981 - Behavioral and Brain Sciences 4 (4):541-542.
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  • PARRY and the evaluation of cognitive models.James R. Miller - 1981 - Behavioral and Brain Sciences 4 (4):543-544.
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  • Deep and shallow simulations.Aaron Sloman - 1981 - Behavioral and Brain Sciences 4 (4):548-548.
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  • On explicating the concept the power of an arithmetical theory.Jörgen Sjögren - 2008 - Journal of Philosophical Logic 37 (2):183 - 202.
    In this paper I discuss possible ways of measuring the power of arithmetical theories, and the possiblity of making an explication in Carnap's sense of this concept. Chaitin formulates several suggestions how to construct measures, and these suggestions are reviewed together with some new and old critical arguments. I also briefly review a measure I have designed together with some shortcomings of this measure. The conclusion of the paper is that it is not possible to formulate an explication of the (...)
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  • What does linear vection tell us about the optokinetic pathway?Xavier M. Sauvan - 1994 - Behavioral and Brain Sciences 17 (2):330-330.
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  • Evaluation of a model's test.Russell Revlin - 1981 - Behavioral and Brain Sciences 4 (4):547-548.
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  • Beyond Burrhus and behaviorism: Dennett defused.Thomas Gray - 1985 - Behavioral and Brain Sciences 8 (4):762-763.
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  • Dennett on cognitive ethology: A broader view.Bo Dahlbom - 1985 - Behavioral and Brain Sciences 8 (4):760-762.
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  • Free Will, Subjectivity and the Physics of the Nervous System.Mauro Ceroni & Giovanni Maria Prosperi - 2018 - Open Journal of Philosophy 8 (3):317-341.
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