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  1. 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 Varieties of Reference.Gareth Evans - 1982 - Oxford: Oxford University Press. Edited by John Henry McDowell.
  • The Scientific Image by Bas C. van Fraassen. [REVIEW]Michael Friedman - 1982 - Journal of Philosophy 79 (5):274-283.
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  • Kitcher on reference.Stathis Psillos - 1997 - International Studies in the Philosophy of Science 11 (3):259 – 272.
    In his (1978) and parts of (1993), Philip Kitcher advances a new context-sensitive theory of reference which he applies to abandoned theoretical expression-types, such as Joseph Priestley’s ‘dephlogisticated air’, in order to show that, although qua types they fail to refer uniformly, they nonetheless have referential tokens. This piece offers a critical examination of Kitcher’s theory. After a general investigation into the overall adequacy of Kitcher’s theory as a general account of reference, I focus on the case of abandoned theoretical (...)
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  • Theory, intervention and realism.Margaret Morrison - 1990 - Synthese 82 (1):1 - 22.
  • Scientific realism and the stratagema de divide et impera.Timothy D. Lyons - 2006 - British Journal for the Philosophy of Science 57 (3):537-560.
    In response to historical challenges, advocates of a sophisticated variant of scientific realism emphasize that theoretical systems can be divided into numerous constituents. Setting aside any epistemic commitment to the systems themselves, they maintain that we can justifiably believe those specific constituents that are deployed in key successful predictions. Stathis Psillos articulates an explicit criterion for discerning exactly which theoretical constituents qualify. I critique Psillos's criterion in detail. I then test the more general deployment realist intuition against a set of (...)
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  • How to define theoretical terms.David Lewis - 1970 - Journal of Philosophy 67 (13):427-446.
  • How to Define Theoretical Terms.David Lewis - 1970 - Journal of Symbolic Logic 36 (2):321-321.
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  • Understanding Philosophy of Science.S. Mumford - 2003 - Mind 112 (446):353-355.
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  • Structural realism versus standard scientific realism: the case of phlogiston and dephlogisticated air.James Ladyman - 2011 - Synthese 180 (2):87 - 101.
    The aim of this paper is to revisit the phlogiston theory to see what can be learned from it about the relationship between scientific realism, approximate truth and successful reference. It is argued that phlogiston theory did to some extent correctly describe the causal or nomological structure of the world, and that some of its central terms can be regarded as referring. However, it is concluded that the issue of whether or not theoretical terms successfully refer is not the key (...)
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  • Theoretical terms and the causal view of reference.Frederick W. Kroon - 1985 - Australasian Journal of Philosophy 63 (2):143 – 166.
  • Causal descriptivism.Frederick W. Kroon - 1987 - Australasian Journal of Philosophy 65 (1):1 – 17.
  • 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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  • Genes.Philip Kitcher - 1982 - British Journal for the Philosophy of Science 33 (4):337-359.
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  • In defense of convergent realism.Clyde L. Hardin & Alexander Rosenberg - 1982 - Philosophy of Science 49 (4):604-615.
    Many realists have maintained that the success of scientific theories can be explained only if they may be regarded as approximately true. Laurens Laudan has in turn contended that a necessary condition for a theory's being approximately true is that its central terms refer, and since many successful theories of the past have employed central terms which we now understand to be non-referential, realism cannot explain their success. The present paper argues that a realist can adopt a view of reference (...)
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  • Representing and Intervening: Introductory Topics in the Philosophy of Natural Science.Jarrett Leplin - 1985 - Philosophy of Science 52 (2):314-315.
  • Review of H ow Experiments End.Ian Hacking - 1990 - Journal of Philosophy 87 (2):103-106.
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  • What is a gene?—Revisited.Raphael Falk - 2010 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 41 (4):396-406.
  • What is a gene?—Revisited.Raphael Falk - 2010 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 41 (4):396-406.
    The dialectic discourse of the ‘gene’ as the unit of heredity deduced from the phenotype, whether an intervening variable or a hypothetical construct, appeared to be settled with the presentation of the molecular model of DNA: the gene was reduced to a sequence of DNA that is transcribed into RNA that is translated into a polypeptide; the polypeptides may fold into proteins that are involved in cellular metabolism and structure, and hence function. This path turned out to be more bewildering (...)
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  • The Causal Theory of Names.Gareth Evans - 1973 - Aristotelian Society Supplementary Volume 47 (1):187–208.
  • Empiricism vs. Realism: High Points in the Debate During the Past 150 Years.Craig Dilworth - 1990 - Studies in History and Philosophy of Science Part A 21 (3):431.
  • Designation.Michael Devitt - 1981 - New York: Columbia University Press.
  • Designation.Thomas McKay - 1984 - Noûs 18 (2):357-367.
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  • The Scientific Image.William Demopoulos & Bas C. van Fraassen - 1982 - Philosophical Review 91 (4):603.
  • Defensible territory for entity realism.Steve Clarke - 2001 - British Journal for the Philosophy of Science 52 (4):701-722.
    In the face of argument to the contrary, it is shown that there is defensible middle ground available for entity realism, between the extremes of scientific realism and empiricist antirealism. Cartwright's ([1983]) earlier argument for defensible middle ground between these extremes, which depended crucially on the viability of an underdeveloped distinction between inference to the best explanation (IBE) and inference to the most probable cause (IPC), is examined and its defects are identified. The relationship between IBE and IPC is clarified (...)
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  • Preservative realism and its discontents: Revisiting caloric.Hasok Chang - 2003 - Philosophy of Science 70 (5):902-912.
    A popular and plausible response against Laudan's “pessimistic induction” has been what I call “preservative realism,” which argues that there have actually been enough elements of scientific knowledge preserved through major theory‐change processes, and that those elements can be accepted realistically. This paper argues against preservative realism, in particular through a critical review of Psillos's argument concerning the case of the caloric theory of heat. Contrary to his argument, the historical record of the caloric theory reveals that beliefs about the (...)
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  • How the Laws of Physics Lie.Malcolm R. Forster - 1985 - Philosophy of Science 52 (3):478-480.
  • How the laws of physics lie.Nancy Cartwright - 1983 - New York: Oxford University Press.
    In this sequence of philosophical essays about natural science, the author argues that fundamental explanatory laws, the deepest and most admired successes of modern physics, do not in fact describe regularities that exist in nature. Cartwright draws from many real-life examples to propound a novel distinction: that theoretical entities, and the complex and localized laws that describe them, can be interpreted realistically, but the simple unifying laws of basic theory cannot.
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  • The Varieties of Reference.Louise M. Antony - 1987 - Philosophical Review 96 (2):275.
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  • Representing and Intervening.Ian Hacking - 1983 - British Journal for the Philosophy of Science 35 (4):381-390.
     
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  • Every thing must go: metaphysics naturalized.James Ladyman & Don Ross - 2007 - New York: Oxford University Press. Edited by Don Ross, David Spurrett & John G. Collier.
    Every Thing Must Go aruges that the only kind of metaphysics that can contribute to objective knowledge is one based specifically on contemporary science as it ...
  • The ontological status of theoretical entities.Grover Maxwell - 1962 - In Herbert Feigl & Grover Maxwell (eds.), Scientific Explanation, Space, and Time: Minnesota Studies in the Philosophy of Science. University of Minnesota Press. pp. 181-192.
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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 to be. 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 modern skeptical empiricism. Scientific Realism explains that the (...)
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  • Understanding Philosophy of Science.James Ladyman - 2001 - New York: Routledge.
    Few can imagine a world without telephones or televisions; many depend on computers and the Internet as part of daily life. Without scientific theory, these developments would not have been possible. In this exceptionally clear and engaging introduction to philosophy of science, James Ladyman explores the philosophical questions that arise when we reflect on the nature of the scientific method and the knowledge it produces. He discusses whether fundamental philosophical questions about knowledge and reality might be answered by science, and (...)
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  •  .Stathos Psillos - unknown
    means exhaust the insults. This is unfortunate as their attitude turns a useful book, with valuable contributions from a number of writers, into a polemic.
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  • How Experiments End.P. Galison - 1990 - Synthese 82 (1):157-162.
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  • Meanings just ain't in the head.Michael Devitt - 1990 - In George S. Boolos (ed.), Meaning and Method: Essays in Honor of Hilary Putnam. Cambridge University Press. pp. 79--104.
  • Designation.M. Devitt - 1983 - Mind 92 (368):622-624.
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  • Representing and Intervening.Ian Hacking - 1987 - Revue de Métaphysique et de Morale 92 (2):279-279.
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  • Experimentation in early genetics: The implications of the historical character of science for scientific realism.Marga Vicedo - 2000 - In Richard Creath & Jane Maienschein (eds.), Biology and Epistemology. Cambridge University Press. pp. 215--243.
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  • The sad but true story of entity realism.Herman de Regt - 1994 - In A. A. Derksen (ed.), The Scientific Realism of Rom Harré. Tilburg University Press.
     
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