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  1. From stimulus to science.Willard Van Orman Quine - 1997 - Cambridge: Harvard University Press.
    For the faithful there is much to ponder. In this short book, based on lectures delivered in Spain in 1990, Quine begins by locating his work historically.
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  • A Neurocomputational Perspective: The Nature of Mind and the Structure of Science.Paul M. Churchland - 1989 - MIT Press.
    A Neurocomputationial Perspective illustrates the fertility of the concepts and data drawn from the study of the brain and of artificial networks that model the...
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  • A Neurocomputational Perspective: The Nature of Mind and the Structure of Science.Lynne Rudder Baker & Paul M. Churchland - 1992 - Philosophical Review 101 (4):906.
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  • The fixation of (visual) evidence.K. Amann & K. Knorr Cetina - 1988 - Human Studies 11 (2-3):133 - 169.
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  • Genetic epistemology.Jean Piaget - 1970 - New York,: Columbia University Press.
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  • Using Language.Herbert H. Clark - 1996 - Cambridge University Press.
    Herbert Clark argues that language use is more than the sum of a speaker speaking and a listener listening. It is the joint action that emerges when speakers and listeners, writers and readers perform their individual actions in coordination, as ensembles. In contrast to work within the cognitive sciences, which has seen language use as an individual process, and to work within the social sciences, which has seen it as a social process, the author argues strongly that language use embodies (...)
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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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  • Time and documents in researcher interaction: Some ways of making out what is happening in experimental science. [REVIEW]Steve Woolgar - 1988 - Human Studies 11 (2-3):171 - 200.
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  • From Stimulus to Science.W. V. Quine, Paolo Leonardi & Marco Santambrogio - 1997 - Philosophical Quarterly 47 (189):519-523.
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  • Die Kunst der Gesellschaft.Niklas Luhmann - 1996 - European Journal of Philosophy 4 (3).
    Trotz Luhmanns und Bourdieus Grundlagenwerke hat die Soziologie die empirische Erforschung und theoretische Analyse der Kunst weitgehend vernachlässigt. Ein soziologisch fundierter aktueller Aufriss des Kunstsystems liegt nicht vor. Einen Versuch dazu unternimmt Müller-Jentsch mit dieser Publikation, die fokussiert auf die soziologischen Begriffe von Organisation, Profession und Strategie Beiträge zu einer empirisch gerichteten Soziologie des Kunstsystems versammelt.
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  • Ideology and Utopia: An Introduction to the Sociology of Knowledge. [REVIEW]H. A. L. & Karl Mannheim - 1937 - Journal of Philosophy 34 (6):162.
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  • The Structure of Scientific Revolutions.David Bohm - 1964 - Philosophical Quarterly 14 (57):377-379.
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  • On distinguishing epistemic from pragmatic action.David Kirsh & Paul Maglio - 1994 - Cognitive Science 18 (4):513-49.
    We present data and argument to show that in Tetris - a real-time interactive video game - certain cognitive and perceptual problems are more quickly, easily, and reliably solved by performing actions in the world rather than by performing computational actions in the head alone. We have found that some translations and rotations are best understood as using the world to improve cognition. These actions are not used to implement a plan, or to implement a reaction; they are used to (...)
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  • Ways of worldmaking.Nelson Goodman - 1978 - Hassocks [Eng.]: Harvester Press.
    Required reading at more than 100 colleges and universities throughout North America.
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  • Ways of Worldmaking.J. M. Moravcsik - 1978 - Journal of Aesthetics and Art Criticism 37 (4):483-485.
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  • Transitions in concept acquisition: Using the hand to read the mind.Susan Goldin-Meadow, Martha Wagner Alibali & R. Breckinridge Church - 1993 - Psychological Review 100 (2):279-297.
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  • I.1 The Work of a Discovering Science Construed with Materials from the Optically Discovered Pulsar.Harold Garfinkel - 1981 - Philosophy of the Social Sciences 11 (2):131-158.
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  • Beamtimes and Lifetimes.Sharon Traweek (ed.) - 1988 - Harvard University Press.
    Particle physicists constitute a community of sophisticated mythmakers—explicators of the nature of matter who forever alter our views of space and time. But who are these people? What is their world really like? Traweek, a bold observer of culture, opens the door to this unusual domain and offers us a glimpse into the inner sanctum.
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  • Experiment and the Making of Meaning: Human Agency in Scientific Observation and Experiment.D. C. Gooding - 1994 - Springer.
    ... the topic of 'meaning' is the one topic discussed in philosophy in which there is literally nothing but 'theory' - literally nothing that can be labelled or even ridiculed as the 'common sense view'. Putnam, 'The Meaning of Meaning' This book explores some truths behind the truism that experimentation is a hallmark of scientific activity. Scientists' descriptions of nature result from two sorts of encounter: they interact with each other and with nature. Philosophy of science has, by and large, (...)
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  • From epistemic (ergotic) actions to scientific discourse: Do gestures obtain a bridging function.Wolff-Michael Roth - 2003 - Pragmatics and Cognition 11:139-168.
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  • The Mangle of Practice: Time, Agency, and Science.Andrew Pickering - 1995 - University of Chicago Press.
    This ambitious book by one of the most original and provocative thinkers in science studies offers a sophisticated new understanding of the nature of scientific, mathematical, and engineering practice and the production of scientific knowledge. Andrew Pickering offers a new approach to the unpredictable nature of change in science, taking into account the extraordinary number of factors—social, technological, conceptual, and natural—that interact to affect the creation of scientific knowledge. In his view, machines, instruments, facts, theories, conceptual and mathematical structures, disciplined (...)
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  • Gesamtausgabe Abt. 1 Veröffentlichte Schriften Bd. 2. Sein und Zeit.: Mit den Randbemerkungen aus dem Handexemplar des Autors im Anhang.Martin Heidegger (ed.) - 1977 - Halle a.: Walter de Gruyter.
    »Selten hat in den neueren Jahrhunderten ein philosophischer Erstling so durchgeschlagen und einen so unverrückbaren Platz unter den >großenHans Georg Gadamer in DIE ZEIT Nr. 47 vom 19.11.1982.
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  • Science.Steve Fuller - 1997 - Minneapolis: Routledge.
    In this challenging and provocative book, Steve Fuller contends that our continuing faith in science in the face of its actual history is best understood as the secular residue of a religiously inspired belief in divine providence. Our faith in science is the promise of a life as it shall be, as science will make it one day. Just as men once put their faith in God's activity in the world, so we now travel to a land promised by science. (...)
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  • Contingency, Irony, and Solidarity.Richard Rorty - 1989 - The Personalist Forum 5 (2):149-152.
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  • Sein und Zeit.Martin Heidegger - 1929 - Mind 38 (151):355-370.
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  • Putting agency back into experiment.David Goading - 1992 - In Andrew Pickering (ed.), Science as Practice and Culture. University of Chicago Press. pp. 65.
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  • Contingency, Irony, and Solidarity.R. Rorty - 1989 - Tijdschrift Voor Filosofie 52 (3):566-566.
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  • The concept of disease: Structure and change.Paul Thagard - 1996 - Communication and Cognition: An Interdisciplinary Quarterly Journal 29 (3/4):445-478.
    By contrasting Hippocratic and nineteenth century theories of disease, this paper describes important conceptual changes that have taken place in the history of medicine. Disease concepts are presented as causal networks that represent the relations among the symptoms, causes, and treatment of a disease. The transition to the germ theory of disease produced dramatic conceptual changes as the result of a radically new view of disease causation. An analogy between disease and fermentation was important for two of the main developers (...)
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  • The Mangle of Practice.Andrew Pickering & Jed Z. Buchwald - 1996 - British Journal for the Philosophy of Science 47 (3):479-482.
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  • Sein und Zeit.Martin Heidegger - 1928 - Annalen der Philosophie Und Philosophischen Kritik 7:161-161.
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  • Ideology and Utopia: An Introduction to the Sociology of Knowledge.Karl Mannheim - 1937 - Philosophy 12 (47):363-364.
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  • Laboratory Life. The Social Construction of Scientific Facts.Bruno Latour & Steve Woolgar - 1982 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 13 (1):166-170.
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  • Conceptual Change within and across Ontological Categories: Examples from Learning and Discovery in Science.Michelene Chi - 1992 - In R. Giere & H. Feigl (eds.), Cognitive Models of Science. University of Minnesota Press. pp. 129-186.
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