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  1. Critical Notices.Ilkka Niiniluoto - 2007 - Philosophy and Phenomenological Research 69 (1):227-246.
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  • Empiricism, Semantics, and Ontology.Rudolf Carnap - 1950 - Bobbs-Merrill.
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  • Philosophy of Natural Science.Carl G. Hempel - 1967 - British Journal for the Philosophy of Science 18 (1):70-72.
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  • What Is This Thing Called Science?A. F. Chalmers - 1979 - Erkenntnis 14 (3):393-404.
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  • A Metaphysics for Scientific Realism: Knowing the Unobservable.Anjan Chakravartty - 2007 - Cambridge: Cambridge University Press.
    Scientific realism is the view that our best scientific theories give approximately true descriptions of both observable and unobservable aspects of a mind-independent world. Debates between realists and their critics are at the very heart of the philosophy of science. Anjan Chakravartty traces the contemporary evolution of realism by examining the most promising strategies adopted by its proponents in response to the forceful challenges of antirealist sceptics, resulting in a positive proposal for scientific realism today. He examines the core principles (...)
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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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  • 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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  • Pessimistic Inductions: Four Varieties.K. Brad Wray - 2015 - International Studies in the Philosophy of Science 29 (1):61-73.
    The pessimistic induction plays an important role in the contemporary realism/anti-realism debate in philosophy of science. But there is some disagreement about the structure and aim of the argument. And a number of scholars have noted that there is more than one type of PI in the philosophical literature. I review four different versions of the PI. I aim to show that PIs have been appealed to by philosophers of science for a variety of reasons. Even some realists have appealed (...)
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  • Pragmatism: A New Name for Some Old Ways of Thinking.William James - 2019 - Gorham, ME: Timely Classics in Education. Edited by Eric C. Sheffield.
    "The lectures that follow were delivered at the Lowell Institute in Boston in November and December, 1906, and in January, 1907, at Columbia University, in New York."-Preface, pg. 3.
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  • Mathematics, Matter and Method. Philosophical Papers.Hilary Putnam - 1975 - Philosophy of Science 45 (1):151-155.
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  • What Are Scientific Revolutions?Thomas S. Kuhn - 1981 - Center for Cognitive Science, Massachusetts Institute of Technology.
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  • (1 other version)What is this Thing Called Science?: An Assessment of the Nature and Status of Science and Its Methods.Alan Francis Chalmers - 1976 - St. Lucia, Q.: Univ. Of Queensland Press.
    Co-published with the University of Queensland Press. HPC holds rights in North America and U. S. Dependencies. Since its first publication in 1976, Alan Chalmers's highly regarded and widely read work--translated into eighteen languages--has become a classic introduction to the scientific method, known for its accessibility to beginners and its value as a resource for advanced students and scholars. In addition to overall improvements and updates inspired by Chalmers's experience as a teacher, comments from his readers, and recent developments in (...)
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  • Scientific progress without increasing verisimilitude: In response to Niiniluoto.Darrell Patrick Rowbottom - 2015 - Studies in History and Philosophy of Science Part A 51:100-104.
    First, I argue that scientific progress is possible in the absence of increasing verisimilitude in science’s theories. Second, I argue that increasing theoretical verisimilitude is not the central, or primary, dimension of scientific progress. Third, I defend my previous argument that unjustified changes in scientific belief may be progressive. Fourth, I illustrate how false beliefs can promote scientific progress in ways that cannot be explicated by appeal to verisimilitude.
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  • Science and Values: The Aims of Science and Their Role in Scientific Debate.Larry Laudan - 1984 - University of California Press.
    Laudan constructs a fresh approach to a longtime problem for the philosopher of science: how to explain the simultaneous and widespread presence of both agreement and disagreement in science. Laudan critiques the logical empiricists and the post-positivists as he stresses the need for centrality and values and the interdependence of values, methods, and facts as prerequisites to solving the problems of consensus and dissent in science.
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  • The Pessimistic Induction: A Bad Argument Gone Too Far.Moti Mizrahi - 2013 - Synthese 190 (15):3209-3226.
    In this paper, I consider the pessimistic induction construed as a deductive argument (specifically, reductio ad absurdum) and as an inductive argument (specifically, inductive generalization). I argue that both formulations of the pessimistic induction are fallacious. I also consider another possible interpretation of the pessimistic induction, namely, as pointing to counterexamples to the scientific realist’s thesis that success is a reliable mark of (approximate) truth. I argue that this interpretation of the pessimistic induction fails, too. If this is correct, then (...)
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  • How to Split a Theory: Defending Selective Realism and Convergence without Proximity.David Harker - 2013 - British Journal for the Philosophy of Science 64 (1):79-106.
    The most influential arguments for scientific realism remain centrally concerned with an inference from scientific success to the approximate truth of successful theories. Recently, however, and in response to antirealists' objections from radical discontinuity within the history of science, the arguments have been refined. Rather than target entire theories, realists narrow their commitments to only certain parts of theories. Despite an initial plausibility, the selective realist strategy faces significant challenges. In this article, I outline four prerequisites for a successful selective (...)
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  • Facts and Mental Symbols.Ernst Mach - 1892 - The Monist 2 (2):198-208.
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  • (3 other versions)Pragmatism.William James - 1931 - New York [etc.]: Longmans, Green and co.. Edited by William James & Doris Olin.
    Noted psychologist and philosopher develops his own brand of pragmatism, based on theories of C. S. Peirce. Emphasis on "radical empiricism," versus the transcendental and rationalist tradition. One of the most important books in American philosophy. Note.
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  • Philosophy of natural science.Carl Gustav Hempel - 1966 - Englewood Cliffs, N.J.,: Prentice-Hall.
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  • How the growth of science ends theory change.Ludwig Fahrbach - 2011 - Synthese 180 (2):139-155.
    This paper outlines a defense of scientific realism against the pessimistic meta- induction which appeals to the phenomenon of the exponential growth of science. Here, scientific realism is defined as the view that our current successful scientific theories are mostly approximately true, and pessimistic meta- induction is the argument that projects the occurrence of past refutations of successful theories to the present concluding that many or most current successful scientific theories are false. The defense starts with the observation that at (...)
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  • Structural realism: The best of both worlds?John Worrall - 1989 - Dialectica 43 (1-2):99-124.
    The no-miracles argument for realism and the pessimistic meta-induction for anti-realism pull in opposite directions. Structural Realism---the position that the mathematical structure of mature science reflects reality---relieves this tension.
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  • (1 other version)Objective knowledge: an evolutionary approach.Karl Raimund Popper - 1972 - New York: Oxford University Press.
    The essays in this volume represent an approach to human knowledge that has had a profound influence on many recent thinkers. Popper breaks with a traditional commonsense theory of knowledge that can be traced back to Aristotle. A realist and fallibilist, he argues closely and in simple language that scientific knowledge, once stated in human language, is no longer part of ourselves but a separate entity that grows through critical selection.
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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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  • Critical scientific realism.Ilkka Niiniluoto - 1999 - New York: Oxford University Press.
    This book comes to the rescue of scientific realism, showing that reports of its death have been greatly exaggerated. Philosophical realism holds that the aim of a particular discourse is to make true statements about its subject matter. Ilkka Niiniluoto surveys different kinds of realism in various areas of philosophy and then sets out his own critical realist philosophy of science.
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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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  • 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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  • (1 other version)Refusing the devil's bargain: What kind of underdetermination should we take seriously?P. Kyle Stanford - 2001 - Proceedings of the Philosophy of Science Association 2001 (3):S1-.
    Advocates have sought to prove that underdetermination obtains because all theories have empirical equivalents. But algorithms for generating empirical equivalents simply exchange underdetermination for familiar philosophical chestnuts, while the few convincing examples of empirical equivalents will not support the desired sweeping conclusions. Nonetheless, underdetermination does not depend on empirical equivalents: our warrant for current theories is equally undermined by presently unconceived alternatives as well-confirmed merely by the existing evidence, so long as this transient predicament recurs for each theory and body (...)
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  • (2 other versions)Thomas Kuhn.Alexander Bird - 2018 - Stanford Encyclopedia of Philosophy.
    Thomas Samuel Kuhn (1922–1996) is one of the most influential philosophers of science of the twentieth century, perhaps the most influential. His 1962 book The Structure of Scientific Revolutions is one of the most cited academic books of all time. Kuhn’s contribution to the philosophy of science marked not only a break with several key positivist doctrines, but also inaugurated a new style of philosophy of science that brought it closer to the history of science. His account of the development (...)
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  • On Popper's definitions of verisimilitude.Pavel Tichý - 1974 - British Journal for the Philosophy of Science 25 (2):155-160.
    2 Popper's Logical Definition of Verisimilitude. 3 Popper's Probabilistic Definition of Verisimilitude. 4 Conclusion.
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  • What is constructive empiricism?Gideon Rosen - 1994 - Philosophical Studies 74 (2):143 - 178.
    Van Fraassen defines constructive empiricism as the view that science aims to produce empirically adequate theories. But this account has been misunderstood. Constructive empiricism in not, as it seems, a description of the intentional features of scientific practice, nor is it a normative prescription for their revision. It is rather a fiction about the practice of science that van Fraassen displays in the interests of a broader empiricism. The paper concludes with a series of arguments designed to show that constructive (...)
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  • Gideon Rosen on constructive empiricism.Bas C. Fraassen - 1994 - Philosophical Studies 74 (2):179 - 192.
    In response to parts I-III of G Rosen's "What is Constructive Empiricism?", "Philosophical Studies", 74, 1994, 143-178, this paper examines several construals of the position of constructive empiricism. At issue, in part, is the equation of intentional aspects of science with the intentions and opinions of scientists. In addition it is necessary to distinguish the constructive empiricist -- a philosopher holding that acceptance of theories in science need not involve belief that they are true -- from the scientific agnostic' who (...)
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  • Popper’s qualitative theory of verisimilitude.David Miller - 1974 - British Journal for the Philosophy of Science 25 (2):166-177.
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  • (1 other version)A confutation of convergent realism.Larry Laudan - 1981 - Philosophy of Science 48 (1):19-49.
    This essay contains a partial exploration of some key concepts associated with the epistemology of realist philosophies of science. It shows that neither reference nor approximate truth will do the explanatory jobs that realists expect of them. Equally, several widely-held realist theses about the nature of inter-theoretic relations and scientific progress are scrutinized and found wanting. Finally, it is argued that the history of science, far from confirming scientific realism, decisively confutes several extant versions of avowedly 'naturalistic' forms of scientific (...)
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  • Truth, Rationality and the Growth of Knowledge.K. R. Popper - 1963 - Routledge and Kegan Paul.
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  • (4 other versions)The Road since Structure.Thomas S. Kuhn - 1990 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1990:3-13.
    A highly condensed account of the author's present view of some philosophical problems unresolved in The Structure of Scientific Revolutions. The concept of incommensurability, now considerably developed, remains at center stage, but the evolutionary metaphor, introduced in the final pages of the book, now also plays a principal role.
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  • (1 other version)A Confutation of Convergent Realism.Larry Laudan - 2001 - In Yuri Balashov & Alexander Rosenberg (eds.), Philosophy of Science: Contemporary Readings. New York: Routledge. pp. 211.
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  • Are Unconceived Alternatives a Problem for Scientific Realism?Michael Devitt - 2011 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 42 (2):285-293.
    Stanford, in Exceeding Our Grasp , presents a powerful version of the pessimistic meta-induction. He claims that theories typically have empirically inequivalent but nonetheless well-confirmed, serious alternatives which are unconceived. This claim should be uncontroversial. But it alone is no threat to scientific realism. The threat comes from Stanford’s further crucial claim, supported by historical examples, that a theory’s unconceived alternatives are “radically distinct” from it; there is no “continuity”. A standard realist reply to the meta-induction is that past failures (...)
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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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  • Scientific progress as increasing verisimilitude.Ilkka Niiniluoto - 2014 - Studies in History and Philosophy of Science Part A 46:73-77.
    According to the foundationalist picture, shared by many rationalists and positivist empiricists, science makes cognitive progress by accumulating justified truths. Fallibilists, who point out that complete certainty cannot be achieved in empirical science, can still argue that even successions of false theories may progress toward the truth. This proposal was supported by Karl Popper with his notion of truthlikeness or verisimilitude. Popper’s own technical definition failed, but the idea that scientific progress means increasing truthlikeness can be expressed by defining degrees (...)
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  • Thomas Kuhn.Alexander Bird - 2000 - Routledge.
    Thomas Kuhn transformed the philosophy of science. His seminal 1962 work "The Structure of Scientific Revolutions" introduced the term 'paradigm shift' into the vernacular and remains a fundamental text in the study of the history and philosophy of science. This introduction to Kuhn's ideas covers the breadth of his philosophical work, situating "The Structure of Scientific Revolutions" within Kuhn's wider thought and drawing attention to the development of his ideas over time. Kuhn's work is assessed within the context of other (...)
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  • The Melanchthon Circle, Rheticus, and the Wittenberg Interpretation of the Copernican Theory.Robert S. Westman - 1975 - Isis 66 (2):165-193.
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  • (1 other version)Refusing the Devil’s bargain: What kind of underdetermination should we take seriously?P. Kyle Stanford - 2001 - Philosophy of Science 68 (S3):S1-S12.
    Advocates have sought to prove that underdetermination obtains because all theories have empirical equivalents. But algorithms for generating empirical equivalents simply exchange underdetermination for familiar philosophical chestnuts, while the few convincing examples of empirical equivalents will not support the desired sweeping conclusions. Nonetheless, underdetermination does not depend on empirical equivalents: our warrant for current theories is equally undermined by presently unconceived alternatives as well-confirmed merely by the existing evidence, so long as this transient predicament recurs for each theory and body (...)
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  • The Road Since Structure.Kuhn Thomas (ed.) - 2000 - University of Chicago Press.
    A highly condensed account of the author's present view of some philosophical problems unresolved in The Structure of Scientific Revolutions. The concept of incommensurability, now considerably developed, remains at center stage, but the evolutionary metaphor, introduced in the final pages of the book, now also plays a principal role.
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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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  • Objective knowledge, an evolutionary approach.Karl R. Popper - 1974 - Revue Philosophique de la France Et de l'Etranger 166 (1):72-73.
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  • Kuhn's Evolutionary Social Epistemology.K. Brad Wray - 2011 - Cambridge, UK: Cambridge University Press.
    Kuhn's Structure of Scientific Revolutions has been enduringly influential in philosophy of science, challenging many common presuppositions about the nature of science and the growth of scientific knowledge. However, philosophers have misunderstood Kuhn's view, treating him as a relativist or social constructionist. In this book, Brad Wray argues that Kuhn provides a useful framework for developing an epistemology of science that takes account of the constructive role that social factors play in scientific inquiry. He examines the core concepts of Structure (...)
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  • Aimless science.Darrell Patrick Rowbottom - 2014 - Synthese 191 (6):1211-1221.
    This paper argues that talk of ‘the aim of science’ should be avoided in the philosophy of science, with special reference to the way that van Fraassen sets up the difference between scientific realism and constructive empiricism. It also argues that talking instead of ‘what counts as success in science as such’ is unsatisfactory. The paper concludes by showing what this talk may be profitably replaced with, namely specific claims concerning science that fall into the following categories: descriptive, evaluative, normative, (...)
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  • The relations between the history and the philosophy of sciences.Thomas S. Kuhn - 1981 - In David Zaret (ed.), Review of Thomas S. Kuhn The Essential Tension: Selected Studies in Scientific Tradition and Change. Duke University Press. pp. 3-20.
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  • The nature of philosophical problems and their roots in science.K. R. Popper - 1952 - British Journal for the Philosophy of Science 3 (10):124-156.
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  • Science and Selection: Essays on Biological Evolution and the Philosophy of Science.David L. Hull - 2000 - Cambridge University Press.
    One way to understand science is as a selection process. David Hull, one of the dominant figures in contemporary philosophy of science, sets out in this 2001 volume a general analysis of this selection process that applies equally to biological evolution, the reaction of the immune system to antigens, operant learning, and social and conceptual change in science. Hull aims to distinguish between those characteristics that are contingent features of selection and those that are essential. Science and Selection brings together (...)
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