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The physicist's conception of nature

Westport, Conn.,: Greenwood Press (1958)

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  1. Review article.[author unknown] - 1994 - Semiotica 99 (1-2):101-234.
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  • Toward an elemental grounding of microphysics.Joseph H. Spigelman - 1978 - Foundations of Physics 8 (9-10):759-785.
    Contemporary physics has no answer to the question: What are the ultimate constituents of physical reality? (The variety of quarks hypothesized, and the multiplicity of their assumed properties, make it increasingly difficult to regard them as the ultimates.) The approach to an answer that is proposed in this paper starts with the assumption that there are utterly simple, uncomposed, indivisible elements and elemental events; and then attempts to draw inferences from this assumption, and particularly from the representation of the elements (...)
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  • Prolegomena to an understanding of play.John Shotter - 1973 - Journal for the Theory of Social Behaviour 3 (1):47–89.
  • Statistical explanation in physics: The copenhagen interpretation.Richard Schlegel - 1970 - Synthese 21 (1):65 - 82.
    The statistical aspects of quantum explanation are intrinsic to quantum physics; individual quantum events are created in the interactions associated with observation and are not describable by predictive theory. The superposition principle shows the essential difference between quantum and non-quantum physics, and the principle is exemplified in the classic single-photon two-slit interference experiment. Recently Mandel and Pfleegor have done an experiment somewhat similar to the optical single-photon experiment but with two independently operated lasers; interference is obtained even with beam intensity (...)
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  • Responsible ethics for global technology.Egbert Schuurman - 2010 - Axiomathes 20 (1):107-127.
    Technical thinking predominates in industrial society. It also predominates ethics. Virtually everything is viewed in terms of the technical model or—more broadly—the reductionistic machine model. Neither of these models has any room for life as a fundamental and decisive factor. Huge problems have been the result. Our appreciation of technology will change completely if the will to power and mastery will be exchanged for respect for all that lives, in all its multi-coloured variety and multiplicity. The aim of technology should (...)
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  • On a possibility to find experimental evidence for the many-worlds interpretation of quantum mechanics.R. Plaga - 1997 - Foundations of Physics 27 (4):559-577.
    The many-worlds interpretation of quantum mechanics predicts the formation of distinct parallel worlds as a result, of a quantum mechanical measurement. Communication among these parallel worlds would experimentally rule out alternatives to this interpretation. A possible procedure for “interworld” exchange of information and energy, using only state of the art quantum optical equipement, is described. A single ion is isolated from its environment in an ion trap. Then a quantum mechanical measurement with two discrete outcomes is performed on another system, (...)
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  • The dynamics of culture, innovation and organisational change: a nano-psychology future perspective of the psycho-social and cultural underpinnings of innovation and technology.Eunice McCarthy - 2013 - AI and Society 28 (4):471-482.
    This article addresses salient conceptual issues in social organisational psychology in probing change in organisational systems, e.g., culture, innovation and implementation, reflective practice and change models. Insights from chaos–complexity research in the natural sciences which underpin the dynamics of flux and change to unravel the hidden, the unexplained, the disordered will be built on to explore the phenomena of change from a social psychological perspective. The concept of nano-psychology is introduced to open up a creative debate in the social psychological (...)
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  • Simplicity and observability: When are particles elementary?Kostas Gavroglu - 1989 - Synthese 79 (3):89 - 100.
    It is not possible to dismiss the atomistic paradigm because the proposed elementary particles are too many (and, hence, it is claimed, they do not provide a simple account of nature) or because it is not possible to observe quarks in an isolated manner. The developments in particle physics have brought about radical changes to our notions of simplicity and observability, and in this paper we elaborate on these changes. It is as a result of these changes that the present (...)
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  • A matter of culture.Robert Cooper - 2001 - Cultural Values 5 (2):163-197.
    The nature of culture as the symbolic expression of inarticulate matter is explored from a range of different cultural perspectives. Raymond Williams's work on culture, especially his ideas on material and symbolic production, serves to introduce an analysis of matter and its place in cultural production. The mutable nature of matter is explored through the modern physics of quantum theory as well as modern art, especially the work of Jasper Johns. Late‐modern culture is viewed in terms of a mutable space (...)
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  • Who Wants a Postmodern Physics?Cathryn Carson - 1995 - Science in Context 8 (4):635-655.
    The ArgumentTheorists of science and culture, seeking to explicate the implications of chaos theory, quantum mechanics, or special and general relativity, have drawn parallels to the constellation of intellectual and social phenomena collected in the concept of postmodernism. The notion thereby invoked of a postmodern physics is suggestive and worth exploring. But it remains ungrounded so long as the argument moves in the realm of parallels. Moreover, these discussions prove to be tacitly constrained by a preexisting genre of physicists' own (...)
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  • Einstein and Bohr's Rhetoric of Complementarity.Mara Beller - 1993 - Science in Context 6 (1):241-255.
    The ArgumentThe aim of this paper is to provide a critical perspective for Einstein's opposition to the Copenhagen interpretation of quantum physics, by analyzing the ingenious rhetoric of Bohr's principle of complementarity. I argue that what Bohr presents as arguments of “inevitability” are in fact merely arguments for the consistency of the quantum-mechanical scheme. Einstein's resistance to being persuaded by this potent technique of argumentation, and his rejection of Bohr's interpretation of quantum physics, appear consequently as an eminently reasonable position (...)
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  • Complementarity in quantum mechanics: A logical analysis.Hugo Bedau & Paul Oppenheim - 1961 - Synthese 13 (3):201 - 232.
  • Understanding Quantum Mechanics.Christian de Ronde - unknown
    Quantum Mechanics has faced deep controversies and debates since its origin when Werner Heisenberg proposed the first mathematical formalism capable to operationally account for what had been recently discovered as the new field of quantum phenomena. Today, even though we have reached a standardized version of QM which is taught in Universities all around the world, there is still no consensus regarding the conceptual reference of the theory and, if or if not, it can refer to something beyond measurement outcomes. (...)
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