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  1. (1 other version)Science and Partial Truth: A Unitary Approach to Models and Scientific Reasoning.Newton C. A. Da Costa & Steven French - 2003 - New York, US: Oup Usa.
    Da Costa and French explore the consequences of adopting a 'pragmatic' notion of truth in the philosophy of science. Their framework sheds new light on issues to do with belief, theory acceptance, and the realism-antirealism debate, as well as the nature of scientific models and their heuristic development.
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  • Causality and Chance in Modern Physics.David Bohm - 1960 - British Journal for the Philosophy of Science 10 (40):321-338.
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  • (1 other version)Causality and Chance in Modern Physics.David Bohm - 1957 - London: Routledge.
    In this classic, David Bohm was the first to offer us his causal interpretation of the quantum theory. _Causality and Chance in Modern Physics_ continues to make possible further insight into the meaning of the quantum theory and to suggest ways of extending the theory into new directions.
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  • Scientific Realism: How Science Tracks Truth.Stathis Psillos - 1999 - New York: Routledge.
    Scientific realism is the optimistic view that modern science is on the right track: that the world really is the way our best scientific theories describe it. In his book, Stathis Psillos gives us a detailed and comprehensive study which restores the intuitive plausibility of scientific realism. We see that throughout the twentieth century, scientific realism has been challenged by philosophical positions from all angles: from reductive empiricism, to instrumentalism and to modern sceptical empiricism. _Scientific Realism_ explains that the history (...)
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  • The advancement of science: science without legend, objectivity without illusions.Philip Kitcher - 1993 - New York: Oxford University Press.
    During the last three decades, reflections on the growth of scientific knowledge have inspired historians, sociologists, and some philosophers to contend that scientific objectivity is a myth. In this book, Kitcher attempts to resurrect the notions of objectivity and progress in science by identifying both the limitations of idealized treatments of growth of knowledge and the overreactions to philosophical idealizations. Recognizing that science is done not by logically omniscient subjects working in isolation, but by people with a variety of personal (...)
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  • A novel defense of scientific realism.Jarrett Leplin - 1997 - New York: Oxford University Press.
    Leplin attempts to reinstate the common sense idea that theoretical knowledge is achievable, indeed that its achievement is part of the means to progress in empirical knowledge. He sketches the genesis of the skeptical position, then introduces his argument for Minimalist Scientific Realism -- the requirement that novel predicitons be explained, and the claim that only realism about scientific theories can explain the importance of novel prediction.
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  • What should philosophers of science learn from the history of the electron?Jonathan Bain & John Norton - 2001 - In A. Warwick (ed.), Histories of the Electron: The Birth of Microphysics. MIT Press. pp. 451--465.
    We have now celebrated the centenary of J. J. Thomson’s famous paper (1897) on the electron and have examined one hundred years of the history of our first fundamental particle. What should philosophers of science learn from this history? To some, the fundamental moral is already suggested by the rapid pace of this history. Thomson’s concern in 1897 was to demonstrate that cathode rays are electrified particles and not aetherial vibrations, the latter being the “almost unanimous opinion of German physicists” (...)
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  • Scientific Realism and the Divide et Impera Strategy: The Ether Saga Revisited.Alberto Cordero - 2011 - Philosophy of Science 78 (5):1120-1130.
    Using the optical ether as a case study, this article advances four lines of consideration to show why synchronic versions of the divide et impera strategy of scientific realism are unlikely to work. The considerations draw from the nineteenth-century theories of light, the rise of surprising implication as an epistemic value from the time of Fresnel on, assessments of the ether in end-of-century reports around 1900, and the roots of ether theorizing in now superseded metaphysical assumptions. The typicality of the (...)
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  • Approximate application of empirical theories: A general explication. [REVIEW]C. Ulises Moulines - 1976 - Erkenntnis 10 (2):201 - 227.
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  • (1 other version)An Architectonic for Science.Wolfgang Balzer, C. Ulises Moulines & Joseph D. Sneed - 1990 - Philosophy of Science 57 (2):349-350.
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  • A logical reconstruction of simple equilibrium thermodynamics.C. Ulises Moulines - 1975 - Erkenntnis 9 (1):101-130.
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  • (1 other version)A Novel Defense of Scientific Realism.R. Healey - 2001 - Mind 110 (439):777-780.
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