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The social basis of scientific discoveries

New York: Cambridge University Press (1981)

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  1. Decentring the discoverer: how AI helps us rethink scientific discovery.Elinor Clark & Donal Khosrowi - 2022 - Synthese 200 (6):1-26.
    This paper investigates how intuitions about scientific discovery using artificial intelligence can be used to improve our understanding of scientific discovery more generally. Traditional accounts of discovery have been agent-centred: they place emphasis on identifying a specific agent who is responsible for conducting all, or at least the important part, of a discovery process. We argue that these accounts experience difficulties capturing scientific discovery involving AI and that similar issues arise for human discovery. We propose an alternative, collective-centred view as (...)
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  • Revisiting the ‘Darwin–Marx correspondence’: Multiple discovery and the rhetoric of priority.Joel Barnes - 2022 - History of the Human Sciences 35 (2):29-54.
    Between the 1930s and the mid 1970s, it was commonly believed that in 1880 Karl Marx had proposed to dedicate to Charles Darwin a volume or translation of Capital but that Darwin had refused. The detail was often interpreted by scholars as having larger significance for the question of the relationship between Darwinian evolutionary biology and Marxist political economy. In 1973–4, two scholars working independently—Lewis Feuer, professor of sociology at Toronto, and Margaret Fay, a graduate student at Berkeley—determined simultaneously that (...)
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  • Mario Bunge: Matter and Mind: A Philosophical Inquiry.Peter Slezak - 2012 - Science & Education 21 (8):1213-1221.
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  • Picturing Knowledge: Historical and Philosophical Problems Concerning the Use of Art in Science.Brian Scott Baigrie (ed.) - 1996 - University of Toronto Press.
    List of Illustrations Introduction 1 The Didactic and the Elegant: Some Thoughts on Scientific and Technological Illustrations in the Middle Ages and Renaissance 3 2 Temples of the Body and Temples of the Cosmos: Vision and Visualization in the Vesalian and Copernican Revolutions 40 3 Descartes’s Scientific Illustrations and ’la grande mecanique de la nature’ 86 4 Illustrating Chemistry 135 5 Representations of the Natural System in the Nineteenth Century 164 6 Visual Representation in Archaeology: Depicting the Missing-Link in Human (...)
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  • Multiple Independent Inventions of a Non-Functional Technology: Combinatorial Descriptive Names in Botany, 1640-1830.Sara Scharf - 2008 - Spontaneous Generations 2 (1):145.
    Historians and sociologists of science usually discuss multiple independent inventions or multiple independent discoveries in terms of priority disputes among the inventors. But what should we make of the multiple invention of a technology that not only gave rise to very few priority disputes, but never worked and was rejected by each inventor’s contemporaries as soon as it was made public? This paper examines seven such situations in the history of botany. I devote particular attention to the inventors’ cultural and (...)
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  • Précis of The creative mind: Myths and mechanisms.Margaret A. Boden - 1994 - Behavioral and Brain Sciences 17 (3):519-531.
    What is creativity? One new idea may be creative, whereas another is merely new: What's the difference? And how is creativity possible? These questions about human creativity can be answered, at least in outline, using computational concepts. There are two broad types of creativity, improbabilist and impossibilist. Improbabilist creativity involves novel combinations of familiar ideas. A deeper type involves METCS: the mapping, exploration, and transformation of conceptual spaces. It is impossibilist, in that ideas may be generated which – with respect (...)
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  • A so-called 'fraud': moral modulations in a literary scandal.Michael Lynch - 1997 - History of the Human Sciences 10 (3):9-21.
    Physicist Alan Sokal achieved a moment of fame by announcing that he had succeeded in publishing an article in the cultural studies journal Social Text, which was 'sprinkled with nonsense' about developments in quantum gravity physics that supposedly converge with post- modernist themes. Sokal announced his hoax in an article in the liter ary magazine Lingua Franca. This touched off an intense flurry of commentary. Many commentators praised Sokal for exposing shoddy editorial standards in the cultural studies field, while others (...)
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  • Socializing naturalized philosophy of science.Stephen M. Downes - 1993 - Philosophy of Science 60 (3):452-468.
    I propose an approach to naturalized philosophy of science that takes the social nature of scientific practice seriously. I criticize several prominent naturalistic approaches for adopting "cognitive individualism", which limits the study of science to an examination of the internal psychological mechanisms of scientists. I argue that this limits the explanatory capacity of these approaches. I then propose a three-level model of the social nature of scientific practice, and use the model to defend the claim that scientific knowledge is socially (...)
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  • Mendel’s Research Legacy in the Broader Historical Network.Vítězslav Orel & Margaret H. Peaslee - 2015 - Science & Education 24 (1-2):9-27.
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  • Scientific myth‐conceptions.Douglas Allchin - 2003 - Science Education 87 (3):329-351.
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  • Conscious thought processes and creativity.Maria F. Ippolito - 1994 - Behavioral and Brain Sciences 17 (3):546-547.
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  • Innovation Without the Word: William F. Ogburn’s Contribution to the Study of Technological Innovation. [REVIEW]Benoît Godin - 2010 - Minerva 48 (3):277-307.
    The history of innovation as a category is dominated by economists and by the contribution of J. A. Schumpeter. This paper documents the contribution of a neglected but influential author, the American sociologist William F. Ogburn. Over a period of more than 30 years, Ogburn developed pioneering ideas on three dimensions of technological innovation: origins, diffusion, and effects. He also developed the first conceptual framework for innovation studies—based on the concept of cultural lags—which led to studying and forecasting the impacts (...)
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  • The past illuminates the present.Bruce H. Weber - 2006 - Biology and Philosophy 21 (2):287-298.
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  • Puck in the Laboratory: The Construction and Deconstruction of Hoaxlike Deception in Science.Jim Schnabel - 1994 - Science, Technology and Human Values 19 (4):459-492.
    One of the most dramatic techniques for constructing accounts of "undiscovery" or incompetence in science involves the manipulative deception—in some accounts, the "hoaxing"—of the putatively incompetent researcher, ostensibly as an experiment to evaluate his or her methodology and the soundness of his or her knowledge claims. In this article, the author examines five cases in which such deceptions have been employed, noting the patterns of argument that typically follow these deceptions and the factors that seem to determine the power of (...)
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  • Creativity: A framework for research.Margaret A. Boden - 1994 - Behavioral and Brain Sciences 17 (3):558-570.
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  • The sociology of scientific knowledge: The constructivist thesis and relativism.Paul Tibbetts - 1986 - Philosophy of the Social Sciences 16 (1):39-57.
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  • “Fleming Leapt on the Unusual like a Weasel on a Vole”: Challenging the Paradigms of Discovery in Science.Samantha Marie Copeland - 2018 - Perspectives on Science 26 (6):694-721.
    What is the role of chance in scientific discovery? And, more to the point, if chance plays a key role in scientific discovery, what room is left for reason? These are grounding questions in the debates, for instance, over whether there is a distinction to be made between discovery and justification in science, and whether innate genius must play a role in discovery or if there exists some method that can be taught to anyone. While the role of chance has (...)
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  • Creativity, combination, and cognition.Terry Dartnall - 1994 - Behavioral and Brain Sciences 17 (3):537-537.
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  • Art for art's sake.Alan Garnham - 1994 - Behavioral and Brain Sciences 17 (3):543-544.
    This piece is a commentary on a precis of Maggie Boden's book "The creative mind" published in Behavioral and Brain Sciences.
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  • Scientific revolutions.Thomas Nickles - 2010 - Stanford Encyclopedia of Philosophy.
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  • Kuhn and the Discovery of Paradigms.K. Brad Wray - 2011 - Philosophy of the Social Sciences 41 (3):380-397.
    I present a history of Kuhn’s discovery of paradigms, one that takes account of the complexity of the discovery process. Rather than emerging fully formed in Structure , the concept paradigm emerged through a series of phases. Early criticism of Structure revealed that the role of paradigms was unclear. It was only as Kuhn responded to criticism that he finally articulated a precise understanding of the concept paradigm. In a series of publications in the 1970s, he settled on a conception (...)
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  • Small RNA research and the scientific repertoire: a tale about biochemistry and genetics, crops and worms, development and disease.Sophie Juliane Veigl - 2021 - History and Philosophy of the Life Sciences 43 (1):1-25.
    The discovery of RNA interference in 1998 has made a lasting impact on biological research. Identifying the regulatory role of small RNAs changed the modes of molecular biological inquiry as well as biologists' understanding of genetic regulation. This article examines the early years of small RNA biology's success story. I query which factors had to come together so that small RNA research came into life in the blink of an eye. I primarily look at scientific repertoires as facilitators of rapid (...)
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  • The birth of an idea.Liane M. Gabora - 1994 - Behavioral and Brain Sciences 17 (3):543-543.
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  • Individual differences, developmental changes, and social context.Dean Keith Simonton - 1994 - Behavioral and Brain Sciences 17 (3):552-553.
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  • Freaks of nature: images of Barbara McClintock.Jessica Nash - 1999 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 30 (1):21-43.
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  • Remarks on the use of history as evidence.Thomas Nickles - 1986 - Synthese 69 (2):253 - 266.
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  • Accident Proneness : A Classic Case of Simultaneous Discovery/Construction in Psychology.John C. Burnham - 2008 - Science in Context 21 (1):99-118.
    ArgumentUsing a striking example from the history of applied psychology, the concept of accident proneness, this paper suggests that historians of science may still find viable the idea of simultaneous discovery or construction of a scientific idea. Accident proneness was discovered independently in Germany and in Britain during the period of World War I. Later on, in 1926, the idea was independently formulated and named in both countries. The evidence shows not only striking simultaneity but true novelty and commensurateness of (...)
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  • Respecting the phenomenology of human creativity.Victor A. Shames & John F. Kihlstrom - 1994 - Behavioral and Brain Sciences 17 (3):551-552.
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  • Limits to problem solving in science.Struan Jacobs - 2001 - International Studies in the Philosophy of Science 15 (3):231 – 242.
    Popper, Polanyi and Duncker represent the widely held position that theoretical and experimental scientific research are motivated by problems to which discoveries are solutions. According to the argument here, their views are unsupported and - in light of counter-instances, anomalous chance discoveries, and the force of curiosity - over-generalized.
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  • Scientific Speculation and Literary Style in a Molecular Genetics Article.Greg Myers - 1991 - Science in Context 4 (2):321-346.
    The ArgumentStylistic analysis of an admittedly speculative scientific article can suggest what is involved in the social act of speculation. Walter Gilbert's influential paper “Why Genes in Pieces?” serves as an example of the conflicting demands of the need to display politeness and the need to display the urgency and excitement of the issues. Socially significant stylistic features emerge in comparison with another paper Gilbert co-authored, where the speculations occur in the discussion section of an experimental report, and in comparison (...)
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  • Do Disputes over Priority Tell Us Anything about Science?Alan G. Gross - 1998 - Science in Context 11 (2):161-179.
    The ArgumentConflicts between scientists over credit for their discoveries are conflicts, not merely in, but of science because discovery is not a historical event, but a retrospective social judgment. There is no objective moment of discovery; rather, discovery is established by means of a hermeneutics, a way of reading scientific articles. The priority conflict between Roger Guillemin and Andrew Schally over the discovery of the brain hormone, TRF, serves as an example. The work of Robert Merton, Thomas Kuhn, Augustine Brannigan, (...)
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  • Styles of Thought on the Continental Drift Debate.Pablo A. Pellegrini - 2019 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 50 (1):85-102.
    The continental drift controversy has been deeply analysed in terms of rationalist notions, which seem to find there a unique topic to describe the weight of evidence for reaching consensus. In that sense, many authors suggest that Alfred Wegener’s theory of the original supercontinent Pangea and the subsequent continental displacements finally reached a consensus when irrefutable evidence became available. Therefore, rationalist approaches suggest that evidence can be enough by itself to close scientific controversies. In this article I analyse continental drift (...)
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  • The process of science.Steve Fuller - 1990 - Erkenntnis 33 (1):121-129.
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  • Sociology of scientific knowledge and scientific education: Part I.Peter Slezak - 1994 - Science & Education 3 (3):265-294.
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  • Creativity: Myths? Mechanisms.Michel Treisman - 1994 - Behavioral and Brain Sciences 17 (3):554-555.
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  • Creative thinking presupposes the capacity for thought.James H. Fetzer - 1994 - Behavioral and Brain Sciences 17 (3):539-540.
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  • Mario Bunge’s Materialist Theory of Mind and Contemporary Cognitive Science.Peter Slezak - 2012 - Science & Education 21 (10):1475-1484.
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  • The generative-rules definition of creativity.Joseph O'Rourke - 1994 - Behavioral and Brain Sciences 17 (3):547-547.
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  • Creativity, madness, and extra strong Al.K. W. M. Fulford - 1994 - Behavioral and Brain Sciences 17 (3):542-543.
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  • Watt a legend!: David Philip Miller: The life and legend of James Watt. Collaboration, natural philosophy, and the improvement of the steam engine. Pittsburgh: University of Pittsburgh Press, 2019, 422pp, US$35.00 PB.Adam Lucas - 2020 - Metascience 29 (3):363-369.
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  • Closed-Chest Cardiac Massage: The Emergence of a Discovery Trajectory.Stefan Timmermans - 1999 - Science, Technology, and Human Values 24 (2):213-240.
    This article applies a theoretical framework developed by the late American sociologist Anselm Strauss to the discovery of a new resuscitation technique, closed-chest cardiac massage. The discovery, which took place in the laboratories of Johns Hopkins University between 1956 and 1960, is analyzed as the collective management of a trajectory over time. The article follows the discovery trajectory from its origins in defibrillator research to the establishment of closed-chest cardiac massage and cardiopulmonary resuscitation as a universal life-saving method. The analytical (...)
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  • (1 other version)Imagery and creativity.Klaus Rehkämper - 1994 - Behavioral and Brain Sciences 17 (3):550-550.
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  • The creative mind versus the creative computer.Robert W. Weisberg - 1994 - Behavioral and Brain Sciences 17 (3):555-557.
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  • A comparison of social constructionist and ethnomethodological descriptions of how a judge distinguished between the erotic and the obscene.Graham Watson - 1994 - Philosophy of the Social Sciences 24 (4):405-425.
    In 1985, a member of the Canadian judiciary handed down a written judgment in which he distinguished between erotica and obscene matter. The judgment attracted the scorn of some normative sociologists, who complained of the insufficiency of the social psychological research on which it was based. Their reaction prompts a review of the judgment in the light of social constructionism and of ethnomethodology; this, in turn, prompts a comparison of social constructionist and ethnomethodological methodologies, in which the legal judgment serves (...)
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  • Creativity theory: Detail and testability.K. J. Gilhooly - 1994 - Behavioral and Brain Sciences 17 (3):544-545.
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  • Metaphysics, metaphors and microcosms.Tony Becher - 1995 - Social Epistemology 9 (3):277 – 285.
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