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  1. A Contextual Approach to Scientific Understanding.Henk W. de Regt & Dennis Dieks - 2005 - Synthese 144 (1):137-170.
    Achieving understanding of nature is one of the aims of science. In this paper we offer an analysis of the nature of scientific understanding that accords with actual scientific practice and accommodates the historical diversity of conceptions of understanding. Its core idea is a general criterion for the intelligibility of scientific theories that is essentially contextual: which theories conform to this criterion depends on contextual factors, and can change in the course of time. Our analysis provides a general account of (...)
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  • Existence of “free will” as a problem of physics.Asher Peres - 1986 - Foundations of Physics 16 (6):573-584.
    The proof of Bell's inequality is based on the assumption that distant observers can freely and independently choose their experiments. As Bell's inequality isexperimentally violated, it appears that distant physical systems may behave as a single, nonlocal, indivisible entity. This apparent contradiction is resolved. It is shown that the “free will” assumption is, under usual circumstances, an excellent approximation.I have set before you life and death, blessing and cursing: therefore choose life.... —Deuteronomy XXX, 19.
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  • Unconscious cerebral initiative and the role of conscious will in voluntary action.Benjamin Libet - 1985 - Behavioral and Brain Sciences 8 (4):529-66.
    Voluntary acts are preceded by electrophysiological (RPs). With spontaneous acts involving no preplanning, the main negative RP shift begins at about200 ms. Control experiments, in which a skin stimulus was timed (S), helped evaluate each subject's error in reporting the clock times for awareness of any perceived event.
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  • Galileo’s Interventionist Notion of “Cause‘.Steffen Ducheyne - 2006 - Journal of the History of Ideas 67 (3):443-464.
    In this essay, I shall argue that Galileo introduced a new scientifically useful notion of causality. This new notion of causality was an interventionist notion, according to which causal relations can be discovered by actively exploring and manipulating natural processes. The presence of this conception can be seen from Galileo's explanation of floating bodies and his theory of the tides. I shall point to the similarity between Galileo's notion of "cause" and recent interventionist accounts of causation in the philosophy of (...)
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  • The Free Will Theorem.John Conway & Simon Kochen - 2006 - Foundations of Physics 36 (10):1441-1473.
    On the basis of three physical axioms, we prove that if the choice of a particular type of spin 1 experiment is not a function of the information accessible to the experimenters, then its outcome is equally not a function of the information accessible to the particles. We show that this result is robust, and deduce that neither hidden variable theories nor mechanisms of the GRW type for wave function collapse can be made relativistic and causal. We also establish the (...)
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  • Characterizing quantum theory in terms of information-theoretic constraints.Rob Clifton, Jeffrey Bub & Hans Halvorson - 2002 - Foundations of Physics 33 (11):1561-1591.
    We show that three fundamental information-theoretic constraints -- the impossibility of superluminal information transfer between two physical systems by performing measurements on one of them, the impossibility of broadcasting the information contained in an unknown physical state, and the impossibility of unconditionally secure bit commitment -- suffice to entail that the observables and state space of a physical theory are quantum-mechanical. We demonstrate the converse derivation in part, and consider the implications of alternative answers to a remaining open question about (...)
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  • Non-Representationalist Theories of Knowledge and Quantum Mechanics.Michel Bitbol - 2001 - SATS 2 (1):37-61.
    Quantum Mechanics has imposed strain on traditional (dualist and representationalist) epistemological conceptions. An alternative was offered by Bohr and Heisenberg, according to whom natural science does not describe nature, but rather the interplay between nature and ourselves. But this was only a suggestion. In this paper, a systematic development of the Bohr-Heisenberg conception is outlined, by way of a comparison with the modern self-organizational theories of cognition. It is shown that a perfectly consistent non-representationalist (and/or relational) reading of quantum mechanics (...)
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  • The hidden premise in the causal argument for physicalism.Robert C. Bishop - 2005 - Analysis 66 (1):44-52.
    The causal argument for physicalism is anayzed and it's key premise--the causal closure of physics--is found wanting. Therefore, a hidden premise must be added to the argument to gain its conclusion, but the hidden premise is indistinguishable from the conclusion of the causal argument. Therefore, it begs the question on physicalism.
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  • The anthropic cosmological principle.John D. Barrow - 1986 - New York: Oxford University Press. Edited by Frank J. Tipler.
    Ever since Copernicus, scientists have continually adjusted their view of human nature, moving it further and further from its ancient position at the center of Creation. But in recent years, a startling new concept has evolved that places it more firmly than ever in a special position. Known as the Anthropic Cosmological Principle, this collection of ideas holds that the existence of intelligent observers determines the fundamental structure of the Universe. In its most radical version, the Anthropic Principle asserts that (...)
  • The Large, the Small and the Human Mind.Roger Penrose - 1997 - Cambridge University Press.
    This book is a fascinating and accessible summary of Roger Penrose's current thinking on those areas of physics in which he feels there are major...
  • Epistemic and ontic quantum realities.Harald Atmanspacher & Hans Primas - 2002
    Quantum theory has provoked intense discussions about its interpretation since its pioneer days. One of the few scientists who have been continuously engaged in this development from both physical and philosophical perspectives is Carl Friedrich von Weizsaecker. The questions he posed were and are inspiring for many, including the authors of this contribution. Weizsaecker developed Bohr's view of quantum theory as a theory of knowledge. We show that such an epistemic perspective can be consistently complemented by Einstein's ontically oriented position.
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  • Consciousness as a contextually emergent property of self-sustaining systems.J. Scott Jordan & Marcello Ghin - 2006 - Mind and Matter 4 (1):45-68.
    The concept of contextual emergence has been introduced as a speci?c kind of emergence in which some, but not all of the conditions for a higher-level phenomenon exist at a lower level. Further conditions exist in contingent contexts that provide stability conditions at the lower level, which in turn accord the emergence of novelty at the higher level. The purpose of the present paper is to propose that consciousness is a contextually emergent property of self-sustaining systems. The core assumption is (...)
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  • The Large, the Small and the Human Mind.Roger Penrose - 1997 - Philosophy 73 (283):125-128.
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  • If the eye were an animal... the problem of representation in understanding, meaning and intelligence.John M. Horner - 1996 - Journal of Consciousness Studies 3 (2):127-138.
    Theories of epistemology have come a long way since Leucippus’ account of objects emitting copies of themselves that are taken up by the senses and presented to the soul, but much of modern psychology and epistemology are still based upon a representational theory of knowledge -- that there is something in our head which ‘stands for’ the things in our world. This view has been challenged since Aristotle by an alternative view that knowledge is simply a change in the organism (...)
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