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  1. The Scientific Image.William Demopoulos & Bas C. van Fraassen - 1982 - Philosophical Review 91 (4):603.
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  • Exceeding our grasp: science, history, and the problem of unconceived alternatives.P. Kyle Stanford - 2006 - New York: Oxford University Press.
    The incredible achievements of modern scientific theories lead most of us to embrace scientific realism: the view that our best theories offer us at least roughly accurate descriptions of otherwise inaccessible parts of the world like genes, atoms, and the big bang. In Exceeding Our Grasp, Stanford argues that careful attention to the history of scientific investigation invites a challenge to this view that is not well represented in contemporary debates about the nature of the scientific enterprise. The historical record (...)
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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 Structure of Scientific Revolutions.Thomas Samuel Kuhn - 1962 - Chicago: University of Chicago Press. Edited by Otto Neurath.
    A scientific community cannot practice its trade without some set of received beliefs. These beliefs form the foundation of the "educational initiation that prepares and licenses the student for professional practice". The nature of the "rigorous and rigid" preparation helps ensure that the received beliefs are firmly fixed in the student's mind. Scientists take great pains to defend the assumption that scientists know what the world is like...To this end, "normal science" will often suppress novelties which undermine its foundations. Research (...)
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  • The Structure of Scientific Revolutions.Thomas S. Kuhn - 1962 - Chicago, IL: University of Chicago Press. Edited by Ian Hacking.
    Thomas S. Kuhn's classic book is now available with a new index.
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  • The argument from underconsideration as grounds for anti‐realism: A defence.K. Brad Wray - 2008 - International Studies in the Philosophy of Science 22 (3):317 – 326.
    The anti-realist argument from underconsideration focuses on the fact that, when scientists evaluate theories, they only ever consider a subset of the theories that can account for the available data. As a result, when scientists judge one theory to be superior to competitor theories, they are not warranted in drawing the conclusion that the superior theory is likely true with respect to what it says about unobservable entities and processes. I defend the argument from underconsideration from the objections of Peter (...)
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  • The pessimistic induction and the exponential growth of science reassessed.K. Brad Wray - 2013 - Synthese 190 (18):4321-4330.
    My aim is to evaluate a new realist strategy for addressing the pessimistic induction, Ludwig Fahrbach’s (Synthese 180:139–155, 2011) appeal to the exponential growth of science. Fahrbach aims to show that, given the exponential growth of science, the history of science supports realism. I argue that Fahrbach is mistaken. I aim to show that earlier generations of scientists could construct a similar argument, but one that aims to show that the theories that they accepted are likely true. The problem with (...)
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  • Epistemic Privilege and the Success of Science.K. Brad Wray - 2010 - Noûs 46 (3):375-385.
    Realists and anti-realists disagree about whether contemporary scientists are epistemically privileged. Because the issue of epistemic privilege figures in arguments in support of and against theoretical knowledge in science, it is worth examining whether or not there is any basis for assuming such privilege. I show that arguments that try to explain the success of science by appeal to some sort of epistemic privilege have, so far, failed. They have failed to give us reason to believe (i) that scientists are (...)
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  • The scientific image.C. Van Fraassen Bas - 1980 - New York: Oxford University Press.
    In this book van Fraassen develops an alternative to scientific realism by constructing and evaluating three mutually reinforcing theories.
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  • The Scientific Image by Bas C. van Fraassen. [REVIEW]Michael Friedman - 1982 - Journal of Philosophy 79 (5):274-283.
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  • Grasping at Realist Straws. [REVIEW]Juha Saatsi, Stathis Psillos, Rasmus Grønfeldt Winther & Kyle Stanford - 2009 - Metascience 18 (3):355-390.
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  • Some Difficulties for the Problem of Unconceived Alternatives.Samuel Ruhmkorff - 2011 - Philosophy of Science 78 (5):875-886.
    P. Kyle Stanford defends the problem of unconceived alternatives, which maintains that scientists are unlikely to conceive of all the scientifically plausible alternatives to the theories they accept. Stanford’s argument has been criticized on the grounds that the failure of individual scientists to conceive of relevant alternatives does not entail the failure of science as a corporate body to do so. I consider two replies to this criticism and find both lacking. In the process, I argue that Stanford does not (...)
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  • Meaning and the Moral Sciences.Kent Bach - 1979 - Philosophy and Phenomenological Research 40 (1):137-139.
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  • Meaning and the moral sciences.Hilary Putnam - 1978 - Boston: Routledge and Kegan Paul.
    INTRODUCTION Before Kant almost every philosopher subscribed to the view that truth is some kind of correspondence between ideas and 'what is the case'. ...
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  • Should Scientists Embrace Scientific Realism or Antirealism?Seungbae Park - 2019 - Philosophical Forum 50 (1):147-158.
    If scientists embrace scientific realism, they can use a scientific theory to explain and predict observables and unobservables. If, however, they embrace scientific antirealism, they cannot use a scientific theory to explain observables and unobservables, and cannot use a scientific theory to predict unobservables. Given that explanation and prediction are means to make scientific progress, scientists can make more scientific progress, if they embrace scientific realism than if they embrace scientific antirealism.
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  • Scientific Realism Versus Antirealism in Science Education.Seungbae Park - 2016 - Santalka: Filosofija, Komunikacija 24 (1):72-81.
    Scientific realists believe both what a scientific theory says about observables and unobservables. In contrast, scientific antirealists believe what a scientific theory says about observables, but not about unobservables. I argue that scientific realism is a more useful doctrine than scientific antirealism in science classrooms. If science teachers are antirealists, they are caught in Moore’s paradox when they help their students grasp the content of a scientific theory, and when they explain a phenomenon in terms of a scientific theory. Teachers (...)
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  • Explaining the Success of a Scientific Theory.Timothy D. Lyons - 2003 - Philosophy of Science 70 (5):891-901.
    Scientific realists have claimed that the posit that our theories are (approximately) true provides the best or the only explanation for their success . In response, I revive two non-realists explanations. I show that realists, in discarding them, have either misconstrued the phenomena to be explained or mischaracterized the relationship between these explanations and their own. I contend nonetheless that these non-realist competitors, as well as their realist counterparts, should be rejected; for none of them succeed in explaining a significant (...)
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  • Progress and Its Problems: Toward a Theory of Scientific Growth.Larry Laudan - 1980 - Erkenntnis 15 (1):91-103.
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  • Baseball, pessimistic inductions and the turnover fallacy.M. Lange - 2002 - Analysis 62 (4):281-285.
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  • Baseball, pessimistic inductions and the turnover fallacy.Marc Lange - 2002 - Analysis 62 (4):281–285.
    Among the niftiest arguments for scientific anti-realism is the ‘pessimistic induction’ (also sometimes called ‘the disastrous historical meta-induction’). Although various versions of this argument differ in their details (see, for example, Poincare 1952: 160, Putnam 1978: 25, and Laudan 1981), the argument generally begins by recalling the many scientific theories that posit unobservable entities and that at one time or another were widely accepted. The anti-realist then argues that when these old theories were accepted, the evidence for them was quite (...)
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  • The Structure of Scientific Revolutions.David Bohm - 1964 - Philosophical Quarterly 14 (57):377-379.
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  • Meaning and the Moral Sciences.Hilary Putnam - 1978 - Boston: Routledge.
    First published in 1978, this reissue presents a seminal philosophical work by professor Putnam, in which he puts forward a conception of knowledge which makes ethics, practical knowledge and non-mathematic parts of the social sciences just as much parts of 'knowledge' as the sciences themselves. He also rejects the idea that knowledge can be demarcated from non-knowledge by the fact that the former alone adheres to 'the scientific method'. The first part of the book consists of Professor Putnam's John Locke (...)
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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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  • The Structure of Scientific Revolutions. [REVIEW]R. J. B. - 1963 - Review of Metaphysics 16 (4):804-804.
    A provocative contribution to the new approach to the history and philosophy of science which emphasizes the role of radically new paradigms in scientific revolutions. While normal science proceeds as puzzle-solving within a relatively fixed paradigm, scientific crises lead to new paradigms where data, scientific problems, procedures, and standards for solutions are all altered. Scientific revolutions do not simply modify our understanding of a world which exists independently--they change the data and the world in which the scientist works. The essay (...)
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  • Defense of Epistemic Reciprocalism.Seungbae Park - 2017 - Filosofija. Sociologija 28 (1):56-64.
    Scientific realists and antirealists believe that a successful scientific theory is true and merely empirically adequate, respectively. In contrast, epistemic reciprocalists believe that realists’ positive theories are true, and that antirealists’ positive theories are merely empirically adequate, treating their target agents as their target agents treat other epistemic agents. Antirealists cannot convince reciprocalists that their positive theories are true, no matter how confident they might be that they are true. In addition, reciprocalists criticize antirealists’ positive theories exactly in the way (...)
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  • The Structure of Scientific Revolutions.Kuhn Thomas - 1962 - International Encyclopedia of Unified Science 2 (2).
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  • Progress and its problems: Towards a theory of scientific growth.L. Laudan - 1978 - British Journal for the Philosophy of Science 32 (1):57-71.
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  • Accepting Our Best Scientific Theories.Seungbae Park - 2015 - Filosofija. Sociologija 26 (3):218-227.
    Dawes (2013) claims that we ought not to believe but to accept our best scientific theories. To accept them means to employ them as premises in our reasoning with the goal of attaining knowledge about unobservables. I reply that if we do not believe our best scientific theories, we cannot gain knowledge about unobservables, our opponents might dismiss the predictions derived from them, and we cannot use them to explain phenomena. We commit an unethical speech act when we explain a (...)
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