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  1. De finetti's probabilism.Richard Jeffrey - 1984 - Synthese 60 (1):73 - 90.
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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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  • Scientific Method, Induction, and Probability: The Whewell–De Morgan Debate on Baconianism, 1830s–1850s.Lukas M. Verburgt - 2024 - Hopos: The Journal of the International Society for the History of Philosophy of Science 14 (1):134-163.
    By focusing on the nineteenth-century debate between William Whewell and Augustus De Morgan on the nature and scope of scientific method and induction, this article captures an important episode in the history of Baconianism. More specifically, it sheds new light on the social and intellectual construction of Francis Bacon as an emblem of modern science and on British Baconianism as part of the creation of a vision of the modern enterprise. A critic of Whewell’s renovated Baconianism and an advocate of (...)
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  • Ways of knowing: towards a historical sociology of science, technology and medicine.John V. Pickstone - 1993 - British Journal for the History of Science 26 (4):433-458.
    Among the many groups of scholars whose work now illuminates science, technology and medicine (STM), historians, it seems to me, have a key responsibility not just to elucidate change but to establish and explain variety. One of the big pictures we need is a model of the varieties of STM over time; one which does not presume the timeless existence of disciplines, or the distinctions between science, technology and medicine; a model which is both synchronic and diachronic, and both cognitive (...)
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  • (1 other version)Introduction (FOCUS: ALCHEMY AND THE HISTORY OF SCIENCE).Bruce T. Moran - 2011 - Isis 102 (2):300-304.
    ABSTRACT Alchemy is part of the cultural experience of early modern Europe and yet has had to overcome problems of demarcation to be considered relevant to the history of science. This essay considers historiographical and methodological issues that have affected the gradual demarginalization of alchemy among attempts to explain, and find things out about, nature. As an area of historical study, alchemy relates to the history of science as part of an ensemble of practices that explored the natural world through (...)
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  • International Handbook of Research in History, Philosophy and Science Teaching.Michael R. Matthews (ed.) - 2014 - Springer.
    This inaugural handbook documents the distinctive research field that utilizes history and philosophy in investigation of theoretical, curricular and pedagogical issues in the teaching of science and mathematics. It is contributed to by 130 researchers from 30 countries; it provides a logically structured, fully referenced guide to the ways in which science and mathematics education is, informed by the history and philosophy of these disciplines, as well as by the philosophy of education more generally. The first handbook to cover the (...)
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  • The Place of Knowledge A Methodological Survey.Adi Ophir & Steven Shapin - 1991 - Science in Context 4 (1):3-22.
    A generation ago scientific ideas floated free in the air, as historians gazed up at them in wonder and admiration. From time to time, historians agreed, the ideas that made up the body of scientific truth became incarnate: they were embedded into the fleshly forms of human culture and attached to particular times and places. How this incarnation occurred was a great mystery. How could spirit be made flesh? How did the transcendent and the timeless enter the forms of the (...)
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  • Symbols, subsymbols, neurons.William G. Lycan - 1988 - Behavioral and Brain Sciences 11 (1):43-44.
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  • Epistemological challenges for connectionism.John McCarthy - 1988 - Behavioral and Brain Sciences 11 (1):44-44.
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  • Connections among connections.R. J. Nelson - 1988 - Behavioral and Brain Sciences 11 (1):45-46.
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  • A two-dimensional array of models of cognitive function.Gardner C. Quarton - 1988 - Behavioral and Brain Sciences 11 (1):48-48.
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  • Connectionism and interlevel relations.William Bechtel - 1988 - Behavioral and Brain Sciences 11 (1):24-25.
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  • The Creation of the Essentialism Story: An Exercise in Metahistory.Mary P. Winsor - 2006 - History and Philosophy of the Life Sciences 28 (2):149 - 174.
    The essentialism story is a version of the history of biological classification that was fabricated between 1953 and 1968 by Ernst Mayr, who combined contributions from Arthur Cain and David Hull with his own grudge against Plato. It portrays pre-Darwinian taxonomists as caught in the grip of an ancient philosophy called essentialism, from which they were not released until Charles Darwin's 1859 Origin of Species. Mayr's motive was to promote the Modern Synthesis in opposition to the typology of idealist morphologists; (...)
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  • Thomas Kuhn, the Image of Science and the Image of Art: The First Manuscript of Structure.J. C. Pinto de Oliveira - 2017 - Perspectives on Science 25 (6):746-765.
    Thomas Kuhn's philosophy of science, which he developed by focusing on physics, was later applied by other authors to virtually all areas or disciplines of culture. What interests me here, however, is the movement in the opposite direction: the role that one of these disciplines, history of art, played in the conception of Kuhn'stheoryof science.In a 1969 article, his only published text concerning science and art, Kuhn makes a brief and intriguing observation about The Structure of Scientific Revolutions. He says (...)
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  • Robert Boyle and Mathematics: Reality, Representation, and Experimental Practice.Steven Shapin - 1988 - Science in Context 2 (1):23-58.
    The ArgumentThis paper is a study of the role of language in scientific activity. It recommends that language be viewed as a community's means of patterning its affairs. Language represents where the boundaries of the community are and who is entitled to speak within it, and it displays the structures of authority in the community. Moreover, language precipitates the community's view of what the world is like, such that linguistic usages can be taken as referring to that world. Thus, language (...)
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  • Teleology without regrets. The transformation of physiology in Germany: 1790–1847.Timothy Lenoir - 1981 - Studies in History and Philosophy of Science Part A 12 (4):293-354.
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  • Madame Du Ch'telet's Metaphysics and Mechanics.Carolyn Iltis - 1977 - Studies in History and Philosophy of Science Part A 8 (1):29.
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  • Was Tycho Brahe as Influential as he Thought?C. Doris Hellman - 1963 - British Journal for the History of Science 1 (4):295-324.
    Through the years there have been subtle changes in the evaluations of the work of Tycho Brahe. As one examines the tracts dealing with novae and comets in which reference is made to the nova of 1572 or the comet of 1577, it becomes quite evident that in different parts of Europe and in the Near East and at different periods of time and among men of different religious convictions different values were placed on his work. The extent of his (...)
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  • Theory choice and resistance to change.Andrew Lugg - 1980 - Philosophy of Science 47 (2):227-243.
    The object of this paper is twofold: to show that resistance to scientific change on the part of scientists need signal neither irrationality nor the presence of extra-scientific influences; and to show how such resistance can be accommodated within a theory of rational choice. After considerations have been outlined suggesting that scientists cannot rationally resist new scientific theories unless theory choice is subjectivistic (section I), evidence is adduced favoring the contrary view (section II). In section III, a non-subjectivistic, non-relativistic conception (...)
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  • Is Smolensky's treatment of connectionism on the level?Carol E. Cleland - 1988 - Behavioral and Brain Sciences 11 (1):27-28.
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  • Scientific revolutions.Thomas Nickles - 2010 - Stanford Encyclopedia of Philosophy.
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  • On the proper treatment of connectionism.Paul Smolensky - 1988 - Behavioral and Brain Sciences 11 (1):1-23.
    A set of hypotheses is formulated for a connectionist approach to cognitive modeling. These hypotheses are shown to be incompatible with the hypotheses underlying traditional cognitive models. The connectionist models considered are massively parallel numerical computational systems that are a kind of continuous dynamical system. The numerical variables in the system correspond semantically to fine-grained features below the level of the concepts consciously used to describe the task domain. The level of analysis is intermediate between those of symbolic cognitive models (...)
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  • Demarkationsproblemet: Faldgruber og Muligheder.Jens Hebor - 2009 - Res Cogitans 6 (1).
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  • Darwin and the political economists: Divergence of character.Silvan S. Schweber - 1980 - Journal of the History of Biology 13 (2):195-289.
    Several stages can be identified in Darwin's effort to formulate natural selection. The first stage corresponded, roughly speaking, to the period up to 1844. It was characterized by Darwin's attempt to base his model of geographic speciation on an individualistic dynamics, with species understood as reproductively isolated populations. Toward the end of this period, Darwin's ignorance of the laws of variations and heredity led him to adopt varieties and species as the units of variations. This had the extremely important effect (...)
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  • Aurora, Nemesis and Clio.J. R. R. Christie - 1993 - British Journal for the History of Science 26 (4):391-405.
    This essay offers some preliminary and general considerations of big picture historiography of science, attempting an introductory specification of the topic by means of narratological analysis. It takes no strong, substantive position eitherpro or contrabig pictures themselves, preferring an approach which is more diagnostic and heuristic in nature. After considering what may be meant by a term such as ‘big picture’ and its cognates, it interrogates the kind of desire which could lie behind the wish expressed by the conference title (...)
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  • Dynamic systems and the “subsymbolic level”.Walter J. Freeman - 1988 - Behavioral and Brain Sciences 11 (1):33-34.
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  • The Snowbird Charrette: Integrative Interdisciplinary Collaboration in Environmental Research Design.Edward J. Hackett & Diana R. Rhoten - 2009 - Minerva 47 (4):407-440.
    The integration of ideas, methods, and data from diverse disciplines has been a transformative force in science and higher education, attracting policy interventions, program innovations, financial resources, and talented people. Much energy has been invested in producing a new generation of scientists trained to work fluidly across disciplines, sectors, and research problems, yet the success of such investments has been difficult to measure. Using the Integrative Graduate Education and Research Training (IGERT) program of the U.S. National Science Foundation as a (...)
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  • Teaching Chemistry for All Its Worth: The Interaction Between Facts, Ideas, and Language in Lavoisier’s and Priestley’s Chemistry Practice: The Case of the Study of the Composition of Air.Kevin de Berg - 2014 - Science & Education 23 (10):2045-2068.
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  • From connectionism to eliminativism.Stephen P. Stich - 1988 - Behavioral and Brain Sciences 11 (1):53-54.
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  • Information processing abstractions: The message still counts more than the medium.B. Chandrasekaran, Ashok Goel & Dean Allemang - 1988 - Behavioral and Brain Sciences 11 (1):26-27.
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  • The essential opacity of modular systems: Why even connectionism cannot give complete formal accounts of cognition.Marten J. den Uyl - 1988 - Behavioral and Brain Sciences 11 (1):56-57.
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  • On the proper treatment of Smolensky.Hubert L. Dreyfus & Stuart E. Dreyfus - 1988 - Behavioral and Brain Sciences 11 (1):31-32.
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  • Two constructive themes.Richard K. Belew - 1988 - Behavioral and Brain Sciences 11 (1):25-26.
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  • Hidden Entities and Experimental Practice: Renewing the Dialogue Between History and Philosophy of Science.Theodore Arabatzis - 2011 - Boston Studies in the Philosophy of Science 263:125-139.
    In this chapter I investigate the prospects of integrated history and philosophy of science, by examining how philosophical issues raised by “hidden entities”, entities that are not accessible to unmediated observation, can enrich the historical investigation of their careers. Conversely, I suggest that the history of those entities has important lessons to teach to the philosophy of science. Hidden entities have played a crucial role in the development of the natural sciences. Despite their centrality to past scientific practice, however, several (...)
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  • A historical interpretation of deceptive experiments in American psychology.C. D. Herrera - 1997 - History of the Human Sciences 10 (1):23-36.
    In debate over the ethics of deceptive experiments in American psy chology, commentators often provide an inaccurate history of these experiments. This happens especially where writers portray experi mental deception as a necessary accompaniment to human experiments, rather than a conscious choice based on values attached to persons and scientific inquiry. Compounding the error, commentators typically give a misleading portrayal of psychologists' attitudes and procedures. Commentators frequently cite Stanley Milgram's work in the 1960s as a harbinger of changed attitudes towards (...)
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  • To mathematize, or not to mathematize chemistry.Guillermo Restrepo - 2013 - Foundations of Chemistry 15 (2):185-197.
    By analysing a contemporary criticism to the so called “mathematical chemistry”, we discuss what we understand by mathematizing chemistry and its implications. We then pass to ponder on some positions on the subject by considering the cases of Laszlo, Venel and Diderot, opponents to the idea of mathematization of chemistry. In contrast, we analyse some scholars’ ideas on the fruitful relationship between mathematics and chemistry; here Dirac and Brown are considered. Finally, we mention that the mathematical–chemistry relationship should be considered (...)
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  • Chemistry, a lingua philosophica.Guillermo Restrepo & José L. Villaveces - 2011 - Foundations of Chemistry 13 (3):233-249.
    We analyze the connections of Lavoisier system of nomenclature with Leibniz’s philosophy, pointing out to the resemblance between what we call Leibnizian and Lavoisian programs. We argue that Lavoisier’s contribution to chemistry is something more subtle, in so doing we show that the system of nomenclature leads to an algebraic system of chemical sets. We show how Döbereiner and Mendeleev were able to develop this algebraic system and to find new interesting properties for it. We pointed out the resemblances between (...)
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  • Synthesizing activities and interactions in the concept of a mechanism.James G. Tabery - 2004 - Philosophy of Science 71 (1):1-15.
    Stuart Glennan, and the team of Peter Machamer, Lindley Darden, and Carl Craver have recently provided two accounts of the concept of a mechanism. The main difference between these two versions rests on how the behavior of the parts of the mechanism is conceptualized. Glennan considers mechanisms to be an interaction of parts, where the interaction between parts can be characterized by direct, invariant, change-relating generalizations. Machamer, Darden, and Craver criticize traditional conceptualizations of mechanisms which are based solely on parts (...)
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  • Condillac e a história da química: de Newton a Lavoisier.Lourenço Fernandes Neto Silva - 2018 - Doispontos 15 (1).
    Abordamos aqui a influência do método de Condillac sobre a história da química. Partindo da confessada dívida de Lavoisier com o abade, propomo-nos a avaliar o aporte que o método condillaquiano terá para a filosofia natural da segunda metade do XVIII, colocando-a primeiramente na perspectiva da onda newtoniana que contaminou progressivamente as ciências a partir do fim do XVII. Mostramos então como o método de Newton, via alquimia, é capaz de inserir aspectos alheios ao mecanicismo estrito nas discussões, o que (...)
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  • Why and How Do I Write the History of Science?Roger Smith - 2013 - Science in Context 26 (4):611-625.
    I make a large claim for the intellectual and institutional centrality of the history of science as critical reason. The reality on the ground, of course, does not always exhibit this. I trace the vicissitudes of my own way of thought in relation to developments in the field, leading to an interest, first, in relating intellectual history (with its philosophical orientation) to mainstream (evidence based) history, and second, to finding a place for the human sciences in the history of science. (...)
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  • On the proper treatment of the connection between connectionism and symbolism.Louise Antony & Joseph Levine - 1988 - Behavioral and Brain Sciences 11 (1):23-24.
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  • Joseph Priestley Across Theology, Education, and Chemistry: An Interdisciplinary Case Study in Epistemology with a Focus on the Science Education Context.Kevin C. de Berg - 2011 - Science & Education 20 (7-8):805-830.
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  • The reality of the symbolic and subsymbolic systems.Andrew Woodfield & Adam Morton - 1988 - Behavioral and Brain Sciences 11 (1):58-58.
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  • From data to dynamics: The use of multiple levels of analysis.Gregory O. Stone - 1988 - Behavioral and Brain Sciences 11 (1):54-55.
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  • In defence of neurons.Chris Mortensen - 1988 - Behavioral and Brain Sciences 11 (1):44-45.
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  • Smolensky, semantics, and the sensorimotor system.George Lakoff - 1988 - Behavioral and Brain Sciences 11 (1):39-40.
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  • Structure and controlling subsymbolic processing.Walter Schneider - 1988 - Behavioral and Brain Sciences 11 (1):51-52.
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  • Statistical rationality.Richard M. Golden - 1988 - Behavioral and Brain Sciences 11 (1):35-35.
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  • Making the connections.Jay G. Rueckl - 1988 - Behavioral and Brain Sciences 11 (1):50-51.
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  • Putting together connectionism – again.Paul Smolensky - 1988 - Behavioral and Brain Sciences 11 (1):59-74.
    A set of hypotheses is formulated for a connectionist approach to cognitive modeling. These hypotheses are shown to be incompatible with the hypotheses underlying traditional cognitive models. The connectionist models considered are massively parallel numerical computational systems that are a kind of continuous dynamical system. The numerical variables in the system correspond semantically to fine-grained features below the level of the concepts consciously used to describe the task domain. The level of analysis is intermediate between those of symbolic cognitive models (...)
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