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Aimless science

Synthese 191 (6):1211-1221 (2014)

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  1. The Scientific Image by Bas C. van Fraassen. [REVIEW]Michael Friedman - 1982 - Journal of Philosophy 79 (5):274-283.
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  • The Logic of Scientific Discovery.K. Popper - 1959 - British Journal for the Philosophy of Science 10 (37):55-57.
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  • Book Review of Newton-Smith The Rationality of Science. [REVIEW]David Christensen - 1984 - Philosophical Review 93 (3):471.
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  • The Scientific Image.William Demopoulos & Bas C. van Fraassen - 1982 - Philosophical Review 91 (4):603.
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  • The Rationality of Science.W. Newton-Smith - 1981 - Boston: Routledge.
    First published in 2002. Routledge is an imprint of Taylor & Francis, an informa company.
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  • Stances and paradigms: a reflection.Darrell Patrick Rowbottom - 2011 - Synthese 178 (1):111-119.
    This paper compares and contrasts the concept of a stance with that of a paradigm qua disciplinary matrix, in an attempt to illuminate both notions. First, it considers to what extent it is appropriate to draw an analogy between stances and disciplinary matrices. It suggests that despite first appearances, a disciplinary matrix is not simply a stance writ large. Second, it examines how we might reinterpret disciplinary matrices in terms of stances, and shows how doing so can provide us with (...)
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  • Popper’s Critical Rationalism: A Philosophical Investigation.Darrell P. Rowbottom - 2010 - New York: Routledge.
    _Popper’s Critical Rationalism_ presents Popper’s views on science, knowledge, and inquiry, and examines the significance and tenability of these in light of recent developments in philosophy of science, philosophy of probability, and epistemology. It develops a fresh and novel philosophical position on science, which employs key insights from Popper while rejecting other elements of his philosophy. Central theses include: Crucial questions about scientific method arise at the level of the group, rather than that of the individual. Although criticism is vital (...)
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  • Novum organum- (interpretación de la naturaleza y predominio del hombre).Francis Bacon & Joseph Devey (eds.) - 1933 - Madrid: [Imp. de L. Rubio].
    The Novum Organum, (or Novum Organum Scientiarum - "New Instrument of Science"), is a philosophical work by Francis Bacon, originally published in 1620. The title is a reference to Aristotle's work Organon, which was his treatise on logic and syllogism. In Novum Organum, Bacon details a new system of logic he believes to be superior to the old ways of syllogism. This is now known as the Baconian method.
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  • Novum organum- (interpretación de la naturaleza y predominio del hombre).Francis Bacon, Robert Leslie Ellis & James Spedding - 1933 - Madrid: [Imp. de L. Rubio]. Edited by Gallach Palés, Francisco & [From Old Catalog].
    The Novum Organum, (or Novum Organum Scientiarum - "New Instrument of Science"), is a philosophical work by Francis Bacon, originally published in 1620. The title is a reference to Aristotle's work Organon, which was his treatise on logic and syllogism. In Novum Organum, Bacon details a new system of logic he believes to be superior to the old ways of syllogism. This is now known as the Baconian method.
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  • Novum organum- (interpretación de la naturaleza y predominio del hombre).Francis Bacon & Thomas Fowler - 1933 - Madrid: [Imp. de L. Rubio]. Edited by Gallach Palés, Francisco & [From Old Catalog].
    The Novum Organum, (or Novum Organum Scientiarum - "New Instrument of Science"), is a philosophical work by Francis Bacon, originally published in 1620. The title is a reference to Aristotle's work Organon, which was his treatise on logic and syllogism. In Novum Organum, Bacon details a new system of logic he believes to be superior to the old ways of syllogism. This is now known as the Baconian method.
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  • Realist Ennui and the Base Rate Fallacy.P. D. Magnus & Craig Callender - 2004 - Philosophy of Science 71 (3):320-338.
    The no-miracles argument and the pessimistic induction are arguably the main considerations for and against scientific realism. Recently these arguments have been accused of embodying a familiar, seductive fallacy. In each case, we are tricked by a base rate fallacy, one much-discussed in the psychological literature. In this paper we consider this accusation and use it as an explanation for why the two most prominent `wholesale' arguments in the literature seem irresolvable. Framed probabilistically, we can see very clearly why realists (...)
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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 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 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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  • A companion to the philosophy of science.W. Newton-Smith (ed.) - 2000 - Malden, Mass.: Blackwell.
    Taken as a whole, the volume provides an unparalleled survey of all the topical areas, major methods, and stances in the philosophy of science.
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  • Realism and the aim of science.Karl R. Popper - 1983 - New York: Routledge. Edited by William Warren Bartley.
    Popper formulates and explains his non-justificationist theory of knowledge. Science--empirical science--aims at true explanatory theories, yet it can never prove, finally establish, or justify any of its theories as true, not even if it is in fact a true theory. Science must continue to question and criticize all its theories, even those which happen to be true.
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  • The logic of scientific discovery.Karl Raimund Popper - 1934 - New York: Routledge. Edited by Hutchinson Publishing Group.
    Described by the philosopher A.J. Ayer as a work of 'great originality and power', this book revolutionized contemporary thinking on science and knowledge. Ideas such as the now legendary doctrine of 'falsificationism' electrified the scientific community, influencing even working scientists, as well as post-war philosophy. This astonishing work ranks alongside The Open Society and Its Enemies as one of Popper's most enduring books and contains insights and arguments that demand to be read to this day.
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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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  • Methodological pluralism, normative naturalism and the realist aim of science.Howard Sankey - 2000 - In Robert Nola & Howard Sankey (eds.), After Popper, Kuhn and Feyerabend: Recent Issues in Theories of Scientific Method. Boston: Kluwer Academic Publishers. pp. 211-229.
    There are two chief tasks which confront the philosophy of scientific method. The first task is to specify the methodology which serves as the objective ground for scientific theory appraisal and acceptance. The second task is to explain how application of this methodology leads to advance toward the aim(s) of science. In other words, the goal of the theory of method is to provide an integrated explanation of both rational scientific theory choice and scientific progress.
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  • 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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  • 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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  • The Rationality of Science by W. H. Newton-Smith. [REVIEW]Janet A. Kourany - 1983 - Journal of Philosophy 80 (8):474-478.
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  • Introduction.W. Newton-Smith & K. Wilkes - 1987 - International Studies in the Philosophy of Science 2 (1):5-5.
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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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  • Popper's Critical Rationalism: A Philosophical Investigation.Darrell P. Rowbottom - 2010 - New York: Routledge.
    Popper’s Critical Rationalism presents Popper’s views on science, knowledge, and inquiry, and examines the significance and tenability of these in light of recent developments in philosophy of science, philosophy of probability, and epistemology. It develops a fresh and novel philosophical position on science, which employs key insights from Popper while rejecting other elements of his philosophy.
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  • Stances and paradigms: a reflection.Darrell Patrick Rowbottom - 2011 - Synthese 178 (1):111-119.
    This paper compares and contrasts the concept of a stance with that of a paradigm qua disciplinary matrix, in an attempt to illuminate both notions. First, it considers to what extent it is appropriate to draw an analogy between stances (which operate at the level of the individual) and disciplinary matrices (which operate at the level of the community). It suggests that despite first appearances, a disciplinary matrix is not simply a stance writ large. Second, it examines how we might (...)
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  • Thomas Kuhn.Alexander Bird - 2002 - Philosophical Quarterly 52 (209):654-657.
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  • Novum Organum.Francis Bacon, Peter Urbach & John Gibson - 1996 - British Journal for the Philosophy of Science 47 (1):125-128.
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  • Approximations, Idealizations and 'Experiments' at the Physics-Biology Interface.Darrell Patrick Rowbottom - 2008 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 42 (2):145-154.
    This paper, which is based on recent empirical research at the University of Leeds, the University of Edinburgh, and the University of Bristol, presents two difficulties which arise when condensed matter physicists interact with molecular biologists: (1) the former use models which appear to be too coarse-grained, approximate and/or idealized to serve a useful scientific purpose to the latter; and (2) the latter have a rather narrower view of what counts as an experiment, particularly when it comes to computer simulations, (...)
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  • Kuhn vs. Popper on Criticism and Dogmatism in Science: A Resolution at the Group Level.Darrell Patrick Rowbottom - 2011 - Studies in History and Philosophy of Science Part A 42 (1):117-124.
    Popper repeatedly emphasised the significance of a critical attitude, and a related critical method, for scientists. Kuhn, however, thought that unquestioning adherence to the theories of the day is proper; at least for ‘normal scientists’. In short, the former thought that dominant theories should be attacked, whereas the latter thought that they should be developed and defended (for the vast majority of the time). -/- Both seem to have missed a trick, however, due to their apparent insistence that each individual (...)
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  • Evolutionary Epistemology and the Aim of Science.Darrell Patrick Rowbottom - 2010 - Australasian Journal of Philosophy 88 (2):209-225.
    Both Popper and van Fraassen have used evolutionary analogies to defend their views on the aim of science, although these are diametrically opposed. By employing Price's equation in an illustrative capacity, this paper considers which view is better supported. It shows that even if our observations and experimental results are reliable, an evolutionary analogy fails to demonstrate why conjecture and refutation should result in: (1) the isolation of true theories; (2) successive generations of theories of increasing truth-likeness; (3) empirically adequate (...)
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  • Judgment aggregation: A survey.Christian List & Clemens Puppe - 2009 - In Paul Anand, Prasanta Pattanaik & Clemens Puppe (eds.), Handbook of Rational and Social Choice. Oxford University Press.
    Our aim in this survey article is to provide an accessible overview of some key results and questions in the theory of judgment aggregation. We omit proofs and technical details, focusing instead on concepts and underlying ideas.
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  • Kuhn vs. Popper on criticism and dogmatism in science, part II : how to strike the balance.Darrell Patrick Rowbottom - unknown
    This paper is a supplement to, and provides a proof of principle of, Kuhn vs. Popper on Criticism and Dogmatism in Science: A Resolution at the Group Level. It illustrates how calculations may be performed in order to determine how the balance between different functions in science—such as imaginative, critical, and dogmatic—should be struck, with respect to confirmation functions and rules of scientific method.
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  • Science and Values. The Aims of Science and Their Role in Scientific Debate.L. Laudan - 1988 - British Journal for the Philosophy of Science 39 (2):263-275.
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  • Realism and the Aim of Science.K. R. Popper & W. W. Bartley - 1984 - British Journal for the Philosophy of Science 35 (3):253-274.
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  • Realism and the Aim of Science.Karl R. Popper & W. W. Bartley - 1983 - Philosophy of Science 50 (4):669-671.
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  • Approximations, idealizations and ‘experiments’ at the physics–biology interface.Darrell Patrick Rowbottom - 2008 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 42 (2):145-154.
    This paper, which is based on recent empirical research at the University of Leeds, the University of Edinburgh, and the University of Bristol, presents two difficulties which arise when condensed matter physicists interact with molecular biologists: the former use models which appear to be too coarse-grained, approximate and/or idealized to serve a useful scientific purpose to the latter; and the latter have a rather narrower view of what counts as an experiment, particularly when it comes to computer simulations, than the (...)
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  • Do scientific aims justify methodological rules?David B. Resnik - 1993 - Erkenntnis 38 (2):223 - 232.
    According to a popular view of scientific methodology, scientific methods are prescriptive rules (methodological rules) which are justified in so far as they realize or promote the aims of science. This paper considers several different interpretations of the phrase aims of science, arguing that none of these interpretations allow aims to provide a satisfactory justification of methodological rules.
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  • Introduction.Wh Newton-Smith - 1986 - International Studies in the Philosophy of Science 1 (1):2-2.
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  • The aims of science.Neil Cooper - 1964 - Philosophical Quarterly 14 (57):328-333.
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  • Judgment aggregation: a survey.Christian List & Clemens Puppe - 2009 - In Paul Anand, Prasanta Pattanaik & Clemens Puppe (eds.), Handbook of Rational and Social Choice. Oxford University Press.
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