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  1. Kuhn e a Noção de 'Exemplar'.Paulo Abrantes - 1998 - Principia: An International Journal of Epistemology 2 (1):61–102.
    In this paper I argue that Kuhn's analysis of the role played by 'exemplars' in normal science should be considered one of his most important contributions to the Philosophy of Science. The paper makes a detailed analysis of the relationship between the various elements of a 'disciplinary matrix'- empirical generalizations, models and exemplars - starting with Kuhn's views as exposed in various of his books and papers. Kuhn's analysis is investigated in the context of the discussions, in the 50s and (...)
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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.
  • Science and selection.Kim Sterelny - 1994 - Biology and Philosophy 9 (1):45-62.
    In this paper I consider the view that scientific change is the result of a selection process which has the same structure as that which drives natural selection. I argue that there are important differences between organic evolution and scientific growth. First, natural selection is much more constrained than scientific change; for example it is hard to populations of organisms to escape local maxima. Science progresses; it may not even make sense to say that biological evolution is progressive. Second, natural (...)
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  • The Structure of Scientific Revolutions.David Bohm - 1964 - Philosophical Quarterly 14 (57):377-379.
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  • Explaining Science: A Cognitive Approach by Ronald N. Giere. [REVIEW]Philip Kitcher - 1991 - Journal of Philosophy 88 (3):163-167.
  • A matter of individuality.David L. Hull - 1978 - Philosophy of Science 45 (3):335-360.
    Biological species have been treated traditionally as spatiotemporally unrestricted classes. If they are to perform the function which they do in the evolutionary process, they must be spatiotemporally localized individuals, historical entities. Reinterpreting biological species as historical entities solves several important anomalies in biology, in philosophy of biology, and within philosophy itself. It also has important implications for any attempt to present an "evolutionary" analysis of science and for sciences such as anthropology which are devoted to the study of single (...)
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  • Evolutionary epistemology, social epistemology, and the demic structure of science.Todd A. Grantham - 2000 - Biology and Philosophy 15 (3):443-463.
    One of the principal difficulties in assessing Science as aProcess (Hull 1988) is determining the relationship between the various elements of Hull's theory. In particular, it is hard to understand precisely how conceptual selection is related to Hull's account of the social dynamics of science. This essay aims to clarify the relation between these aspects of his theory by examining his discussion of the``demic structure'' of science. I conclude that the social account cando significant explanatory work independently of the selectionistaccount. (...)
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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.
  • Models and the dynamics of theories.Paulo Abrantes - 2004 - Philósophos - Revista de Filosofia 9 (2).
    : This paper gives a historical overview of the ways various trends in the philosophy of science dealt with models and their relationship with the topics of heuristics and theoretical dynamics. First of all, N. Campbell’s account of analogies as components of scientific theories is presented. Next, the notion of ‘model’ in the reconstruction of the structure of scientific theories proposed by logical empiricists is examined. This overview finishes with M. Hesse’s attempts to develop Campbell’s early ideas in terms of (...)
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  • Fundamentos de filosofía de la ciencia.José A. Díez & C. Ulises Moulines - 2008 - Grupo Planeta (GBS).
    Fundamentos de filosofía de la ciencia es una obra de carácter general destinada principalmente a servir de guía a alumnos y profesores en la ensañanza universitaria de esta disciplina, en especial para los estudios de Filosofía, pero también para los de Humanidades y Ciencias Humanas y Naturales. La obra está estructurada en diferentes niveles para facilitar su utilización como libro de texto, tanto en cursos introductorios generales como en seminarios específicos. Aunque el público universitario es su principal destinatario, se ha (...)
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  • The methodology of scientific research programmes.Imre Lakatos - 1978 - New York: Cambridge University Press.
    Imre Lakatos' philosophical and scientific papers are published here in two volumes. Volume I brings together his very influential but scattered papers on the philosophy of the physical sciences, and includes one important unpublished essay on the effect of Newton's scientific achievement. Volume II presents his work on the philosophy of mathematics (much of it unpublished), together with some critical essays on contemporary philosophers of science and some famous polemical writings on political and educational issues. Imre Lakatos had an influence (...)
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  • The Growth of Biological Thought: Diversity, Evolution, and Inheritance.Ernst Mayr - 1982 - Harvard University Press.
    Explores the development of the ideas of evolutionary biology, particularly as affected by the increasing understanding of genetics and of the chemical basis of inheritance.
  • Science as a Process: An Evolutionary Account of the Social and Conceptual Development of Science.David L. Hull - 1988 - University of Chicago Press.
    "Legend is overdue for replacement, and an adequate replacement must attend to the process of science as carefully as Hull has done. I share his vision of a serious account of the social and intellectual dynamics of science that will avoid both the rosy blur of Legend and the facile charms of relativism.... Because of [Hull's] deep concern with the ways in which research is actually done, Science as a Process begins an important project in the study of science. It (...)
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  • Science and Selection: Essays on Biological Evolution and the Philosophy of Science.David L. Hull - 2001 - 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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  • The Methodology of Scientific Research Programmes: Philosophical Papers.Imre Lakatos, John Worrall & Gregory Currie - 1979 - British Journal for the Philosophy of Science 30 (4):381-402.
     
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  • Critical Hypothetical Evolutionary Naturalism.Ronald N. Giere - unknown
    Among philosophers, Don Campbell is best known for his naturalistic, evolutionary approach to epistemology. There can be no doubt, however, that he was a thoroughgoing naturalist in all matters, even though he seems to have had little interest in exploring naturalism as a general philosophical position. He was professionally more interested in the origins and workings of knowledge producing social systems. I am interested in these things too, but also naturalism in general. So my tribute to Don will be to (...)
     
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  • Exemplars and Scientific Change.David L. Hull - 1982 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1982:479 - 503.
    Philosophers have distinguished a metaphysical category which they term "historical entities" or "continuants". Such particulars are spatiotemporally localized and develop continuously through time while retaining internal cohesiveness. Species, social groups and conceptual systems can be profitably treated as historical entities. No damage is done to preanalytic intuitions in treating social groups as historical entities; both biological species and conceptual systems can be construed as historical entities only by modifying the ordinary way of viewing both. However, if species and conceptual systems (...)
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  • Units of evolution: a metaphysical essay.David L. Hull - 1981 - In Uffe Juul Jensen & Rom Harré (eds.), The Philosophy of Evolution. St. Martin's Press. pp. 23--44.
     
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  • Physics, The Elements.Norman Robert Campbell - 1922 - Revue Philosophique de la France Et de l'Etranger 93:150-151.
     
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  • Physics: The Elements.N. R. Campbell - 1921 - Mind 30 (118):207-214.