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  1. Progress and its Problems: Toward a Theory of Scientific Growth.Larry Laudan - 1977 - University of California Press.
    (This insularity was further promoted by the guileless duplicity of scholars in other fields, who were all too prepared to bequeath "the problem of ...
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  • Ontology and the laws of nature.John W. Carroll - 1987 - Australasian Journal of Philosophy 65 (3):261 – 276.
    An argument for realism (i.E., The ontological thesis that there exist universals) has emerged in the writings of david armstrong, Fred dretske, And michael tooley. These authors have persuasively argued against traditional reductive accounts of laws and nature. The failure of traditional reductive accounts leads all three authors to opt for a non-Traditional reductive account of laws which requires the existence of universals. In other words, These authors have opted for accounts of laws which (together with the fact that there (...)
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  • Laws of nature.John W. Carroll - 1994 - Philosophy and Phenomenological Research.
    John Carroll undertakes a careful philosophical examination of laws of nature, causation, and other related topics. He argues that laws of nature are not susceptible to the sort of philosophical treatment preferred by empiricists. Indeed he shows that emperically pure matters of fact need not even determine what the laws are. Similar, even stronger, conclusions are drawn about causation. Replacing the traditional view of laws and causation requiring some kind of foundational legitimacy, the author argues that these phenomena are inextricably (...)
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  • The world as one of a kind: Natural necessity and laws of nature.John Bigelow, Brian Ellis & Caroline Lierse - 1992 - British Journal for the Philosophy of Science 43 (3):371-388.
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  • Falsification and the Methodology of Scientific Research Programmes.Imre Lakatos - 1970 - In Imre Lakatos & Alan Musgrave (eds.), Criticism and the growth of knowledge. Cambridge [Eng.]: Cambridge University Press. pp. 91-196.
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  • Falsification and the methodology of scientific research programmes.Lakatos Imre - 1970 - In Imre Lakatos & Alan Musgrave (eds.), Criticism and the growth of knowledge. Cambridge [Eng.]: Cambridge University Press. pp. 91-195.
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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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  • Principles of object perception.Elizabeth S. Spelke - 1990 - Cognitive Science 14 (1):29--56.
    Research on human infants has begun to shed light on early-developing processes for segmenting perceptual arrays into objects. Infants appear to perceive objects by analyzing three-dimensional surface arrangements and motions. Their perception does not accord with a general tendency to maximize figural goodness or to attend to nonaccidental geometric relations in visual arrays. Object perception does accord with principles governing the motions of material bodies: Infants divide perceptual arrays into units that move as connected wholes, that move separately from one (...)
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  • The structure of scientific revolutions.Dudley Shapere - 1964 - Philosophical Review 73 (3):383-394.
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  • Vision: Variations on Some Berkeleian Themes.Robert Schwartz & David Marr - 1985 - Philosophical Review 94 (3):411.
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  • Representation and Reality.Hilary Putnam - 1987 - MIT Press.
    Hilary Putnam, who may have been the first philosopher to advance the notion that the computer is an apt model for the mind, takes a radically new view of his...
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  • Criticism and the growth of knowledge.Imre Lakatos & Alan Musgrave (eds.) - 1970 - Cambridge [Eng.]: Cambridge University Press.
    Two books have been particularly influential in contemporary philosophy of science: Karl R. Popper's Logic of Scientific Discovery, and Thomas S. Kuhn's Structure of Scientific Revolutions. Both agree upon the importance of revolutions in science, but differ about the role of criticism in science's revolutionary growth. This volume arose out of a symposium on Kuhn's work, with Popper in the chair, at an international colloquium held in London in 1965. The book begins with Kuhn's statement of his position followed by (...)
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  • Theories, theorists and theoretical change.Philip Kitcher - 1978 - Philosophical Review 87 (4):519-547.
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  • Explaining Science: A Cognitive Approach by Ronald N. Giere. [REVIEW]Philip Kitcher - 1991 - Journal of Philosophy 88 (3):163-167.
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  • Theories, catalogues, and languages.H. -C. Hung - 1981 - Synthese 49 (3):375 - 394.
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  • Nomic necessity is cross-theoretic.H.-C. Hung - 1981 - British Journal for the Philosophy of Science 32 (3):219-236.
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  • Incommensurability and inconsistency of languages.Hin-ChungE Hung - 1987 - Erkenntnis 27 (3):323 - 352.
    Incommensurable theories are said to be both incompatible and incomparable. This is paradoxical, because, being incompatible, these theories must have the same subject-matter, yet incomparability implies that their subject-matter is different. This paper's proposed resolution of the paradox makes use of the distinction between internal subject-matter and external subject-matter for languages (frameworks) as outlined by W. Sellars. Incommensurability arises when two languages share the same external subject-matter but differ in internal subject-matter. When they share the same external subject-matter, they can (...)
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  • Explaining Science.Ronald Giere - 1991 - Noûs 25 (3):386-388.
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  • Explaining Science: A Cognitive Approach. [REVIEW]Jeffrey S. Poland - 1988 - Philosophical Review 100 (4):653-656.
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  • Realism, rationalism, and scientific method.Paul Feyerabend - 1981 - New York: Cambridge University Press.
    Over the past thirty years Paul Feyerabend has developed an extremely distinctive and influentical approach to problems in the philosophy of science. The most important and seminal of his published essays are collected here in two volumes, with new introductions to provide an overview and historical perspective on the discussions of each part. Volume 1 presents papers on the interpretation of scientific theories, together with papers applying the views developed to particular problems in philosophy and physics. The essays in volume (...)
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  • The Nature of Science: Problems and Perspectives.Edwin H.-C. Hung - 1997 - Cengage Learning.
    This text, the first comprehensive text in philosophy of science in many years, is divided into two books. Book I deals with traditional problems in the philosophy of science: logic, explanation, and epistemology. Book II presents various schools and systems of thought from the philosophy of science. Prominently featured are: rationalism, empiricism, logical positivism and constructivism. The text offers both breadth and depth, but is written in a clear and accessible style, making it appropriate for philosophy of science courses at (...)
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  • Psa 1982.P. D. Asquith & T. Nickles (eds.) - 1983 - Philosophy of Science Association.
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  • The Incommensurability Thesis.Howard Sankey - 1994 - Abingdon: Taylor and Francis.
    This book presents a critical analysis of the semantic incommensurability thesis of Thomas Kuhn and Paul Feyerabend. In putting forward the thesis of incommensurability, Kuhn and Feyerabend drew attention to complex issues concerning the phenomenon of conceptual change in science. They raised serious problems about the semantic and logical relations between the content of theories which deploy unlike systems of concepts. Yet few of the more extreme claims associated with incommensurability stand scrutiny. The argument of this book is as follows. (...)
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  • Vision.David Marr - 1982 - W. H. Freeman.
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  • Laws of Nature.John Carroll - 1995 - British Journal for the Philosophy of Science 46 (4):603-609.
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  • Criticism and the Growth of Knowledge.Imre Lakatos, Alan Musgrave, Roger C. Buck & Robert S. Cohen - 1972 - British Journal for the Philosophy of Science 23 (3):266-274.
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  • Response to Commentaries [by Kitcher and Hesse].Thomas S. Kuhn - 1982 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1982:712 - 716.
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