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Godel's Proof

New York, NY, USA: Routledge. Edited by James R. Newman (1958)

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  1. The Peikovian Doctrine of the Arbitrary Assertion.Robert L. Campbell - 2008 - Journal of Ayn Rand Studies 10 (1):85-170.
    The doctrine of the arbitrary assertion is a key part of Objectivist epistemology as elaborated by Leonard Peikoff. For Peikoff, assertions unsupported by evidence are neither true nor false; they have no context or place in the hierarchy of conceptual knowledge; they are meaningless and paralyze rational cognition; their production is proof of irrationality. A thorough examination of the doctrine reveals worrisomely unclear standards of evidence and a jumble of contradictory claims about which assertions are arbitrary, when they are arbitrary, (...)
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  • Incompleteness, complexity, randomness and beyond.Cristian S. Calude - 2002 - Minds and Machines 12 (4):503-517.
    Gödel's Incompleteness Theorems have the same scientific status as Einstein's principle of relativity, Heisenberg's uncertainty principle, and Watson and Crick's double helix model of DNA. Our aim is to discuss some new faces of the incompleteness phenomenon unveiled by an information-theoretic approach to randomness and recent developments in quantum computing.
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  • Historical development of the foundations of mathematics: Course description.Robert L. Brabenec - 1994 - Science & Education 3 (3):295-309.
  • The intentionality of formal systems.Ard Van Moer - 2006 - Foundations of Science 11 (1-2):81-119.
    One of the most interesting and entertaining philosophical discussions of the last few decades is the discussion between Daniel Dennett and John Searle on the existence of intrinsic intentionality. Dennett denies the existence of phenomena with intrinsic intentionality. Searle, however, is convinced that some mental phenomena exhibit intrinsic intentionality. According to me, this discussion has been obscured by some serious misunderstandings with regard to the concept ‘intrinsic intentionality’. For instance, most philosophers fail to realize that it is possible that the (...)
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  • Binding and axiomatics: Deleuze and Guattari’s transcendental account of capitalism.Henry Somers-Hall - 2023 - Continental Philosophy Review 56 (4):619-638.
    The aim of this paper is to develop a consistent reading of Deleuze and Guattari’s account of capitalism by taking seriously their use of Kant’s philosophy in formulating it. In Sect. 1, I will set out the two different roots of the term axiomatic in Deleuze and Guattari’s thought. The first of these is the axiomatic approach to formalising fields of mathematics, and the second the Kantian account of the indeterminate relationship between the transcendental unity of apperception and the transcendental (...)
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  • An Application of Single-Valued Neutrosophic Sets in Medical Diagnosis.G. Shahzadi, M. Akram & A. B. Saeid - 2017 - Neutrosophic Sets and Systems 18:80-88.
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  • Transactional economics: John Dewey's ways of knowing and the radical subjectivism of the austrian school.Robert Mulligan - 2006 - Education and Culture 22 (2):61-82.
    The subjectivism of the Austrian school of economics is a special case of Dewey's transactional philosophy, also known as pragmatism or pragmatic epistemology. The Austrian economists Carl Friedrich Menger (1840-1921) and Ludwig von Mises (1881-1973) adopted an Aristotelian deductive approach to economic issues such as social behavior and exchange. Like Menger and Mises, Friedrich A. Hayek (1899-1992) viewed scientific knowledge, even in the social sciences, as asserting and aiming for objective certainty. Hayek was particularly critical of attempts to apply the (...)
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  • Shouldn't We be Surprised that We are Not Surprised when We Should be Surprised?Floyd Merrell - 2005 - Semiotica 2005 (153 - 1/4):85-100.
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  • The Horizons of Science.Ernan McMullin - 1971 - Kagaku Tetsugaku 4:111-130.
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  • What is the Nature of Mathematical–Logical Objects?Stathis Livadas - 2017 - Axiomathes 27 (1):79-112.
    This article deals with a question of a most general, comprehensive and profound content as it is the nature of mathematical–logical objects insofar as these are considered objects of knowledge and more specifically objects of formal mathematical theories. As objects of formal theories they are dealt with in the sense they have acquired primarily from the beginnings of the systematic study of mathematical foundations in connection with logic dating from the works of G. Cantor and G. Frege in the last (...)
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  • Idealization and exemplification as tools of philosophy.Tommi Lehtonen - 2012 - E-Logos 19 (1):1-15.
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  • Myślenie za pomocą reprezentacji zewnętrznych.David Kirsh - 2014 - Avant: Trends in Interdisciplinary Studies 5 (1):94-125.
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  • Gödel’s metaphor.Michael R. Jackson - 1994 - Semiotica 98 (1-2):5-48.
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  • Godel on the mathematician's mind and Turing Machine.Inês Hipólito - 2014 - E-Logos 21 (1):1-11.
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  • Joseph F. Rychlak, artificial intelligence and human reason: A teleological critique. [REVIEW]Marek Hetmański - 1999 - Minds and Machines 9 (3):421-424.
  • Formalization and the Meaning of “Theory” in the Inexact Biological Sciences.James Griesemer - 2013 - Biological Theory 7 (4):298-310.
    Exact sciences are described as sciences whose theories are formalized. These are contrasted to inexact sciences, whose theories are not formalized. Formalization is described as a broader category than mathematization, involving any form/content distinction allowing forms, e.g., as represented in theoretical models, to be studied independently of the empirical content of a subject-matter domain. Exactness is a practice depending on the use of theories to control subject-matter domains and to align theoretical with empirical models and not merely a state of (...)
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  • Use and Misuse of Godel's Theorem.Shingo Fujita - 2003 - Annals of the Japan Association for Philosophy of Science 12 (1):1-14.
  • Physics of brain-mind interaction.John C. Eccles - 1990 - Behavioral and Brain Sciences 13 (4):662-663.
  • The Origin of Metazoa: An Algorithmic View of Life.Rafaele Di Giacomo, Jeffrey H. Schwartz & Bruno Maresca - 2013 - Biological Theory 8 (3):221-231.
    We propose that the sudden emergence of metazoans during the Cambrian was due to the appearance of a complex genome architecture that was capable of computing. In turn, this made defining recursive functions possible. The underlying molecular changes that occurred in tandem were driven by the increased probability of maintaining duplicated DNA fragments in the metazoan genome. In our model, an increase in telomeric units, in conjunction with a telomerase-negative state and consequent telomere shortening, generated a reference point equivalent to (...)
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  • Artificial intelligence and consciousness.Drew McDermott - 2007 - In Philip David Zelazo, Morris Moscovitch & Evan Thompson (eds.), Cambridge Handbook of Consciousness. Cambridge: Cambridge University Press. pp. 117--150.
  • A Critique of Meillassoux’s Reflections on Mathematics From the Perspective of Bunge’s Philosophy.Martín Orensanz - 2020 - Mεtascience: Scientific General Discourse 1:115-133.
    Quentin Meillassoux is one of the leading French philosophers of today. His first book, Après la finitude : Essai sur la nécessité de la contingence, (2006, translated into English in 2008), has already become a cult classic. It features a préface by his former mentor, Alain Badiou. One of Meillassoux’s main goals is to rehabilitate the distinction between primary and secondary qualities, typical of pre-Kantian philosophies. Specifically, he claims that mathematics is capable of disclosing the primary qualities of any object (...)
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  • Nature, Science, Bayes 'Theorem, and the Whole of Reality‖.Moorad Alexanian - manuscript
    A fundamental problem in science is how to make logical inferences from scientific data. Mere data does not suffice since additional information is necessary to select a domain of models or hypotheses and thus determine the likelihood of each model or hypothesis. Thomas Bayes’ Theorem relates the data and prior information to posterior probabilities associated with differing models or hypotheses and thus is useful in identifying the roles played by the known data and the assumed prior information when making inferences. (...)
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  • An alternative view of schizophrenic cognition.Douglas M. Snyder - unknown
    An alternative view to the traditionally held view that schizophrenia is characterised by severely disordered cognition is presented. It is possible that apparently self- contradictory expressions of schizophrenics are well-formed communicative expressions of highly ordered cognitive systems. Building on the premise that behavior is in general communicative, and using Godel’s Incompleteness Theorem from logic as a model, it is shown that the most characteristic symptoms of schizophrenia may indicate truths that cannot be derived within highly ordered cognitive systems.
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  • Revisiting science in culture: Science as story telling and story revising.Paul Grobstein - 2005 - Journal of Research Practice 1 (1):Article M1.
    Both science itself, and the human culture of which it is a part, would benefit from a story of science that encourages wider engagement with and participation in the processes of scientific exploration. Such a story, based on a close analysis of scientific method, is presented here. It is the story of science as story telling and story revising. The story of science as story suggests that science can and should serve three distinctive functions for humanity: providing stories that may (...)
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