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  1. Cultural Boundaries of Science: Credibility on the Line.Thomas F. Gieryn - 1999 - University of Chicago Press.
    Why is science so credible? Usual answers center on scientists' objective methods or their powerful instruments. In his new book, Thomas Gieryn argues that a better explanation for the cultural authority of science lies downstream, when scientific claims leave laboratories and enter courtrooms, boardrooms, and living rooms. On such occasions, we use "maps" to decide who to believe—cultural maps demarcating "science" from pseudoscience, ideology, faith, or nonsense. Gieryn looks at episodes of boundary-work: Was phrenology good science? How about cold fusion? (...)
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  • Plagiarism: a misplaced emphasis.Brian Martin - 1994 - Journal of Information Ethics 3 (2):36-47.
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  • The self-vindication of the laboratory sciences.Ian Hacking - 1992 - In Andrew Pickering (ed.), Science as practice and culture. Chicago: University of Chicago Press. pp. 29--64.
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  • Epistemic Cultures: How the Sciences Make Knowledge.Karin Knorr Cetina - 1999 - Harvard University Press.
    How does science create knowledge? Epistemic cultures, shaped by affinity, necessity, and historical coincidence, determine how we know what we know. In this book, Karin Knorr Cetina compares two of the most important and intriguing epistemic cultures of our day, those in high energy physics and molecular biology. The first ethnographic study to systematically compare two different scientific laboratory cultures, this book sharpens our focus on epistemic cultures as the basis of the knowledge society.
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  • Laboratory Life: The construction of scientific facts.Bruno Latour & Steve Woolgar - 1986 - Princeton University Press.
    Chapter 1 FROM ORDER TO DISORDER 5 mins. John enters and goes into his office. He says something very quickly about having made a bad mistake. He had sent the review of a paper. . . . The rest of the sentence is inaudible. 5 mins.
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  • (4 other versions)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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  • Epistemic cultures: how the sciences make knowledge.Karin Knorr-Cetina - 1999 - Cambridge: Harvard University Press.
    How does science create knowledge? Epistemic cultures, shaped by affinity, necessity, and historical coincidence, determine how we know what we know. In this book, Karin Knorr Cetina compares two of the most important and intriguing epistemic cultures of our day, those in high energy physics and molecular biology. Her work highlights the diversity of these cultures of knowing and, in its depiction of their differences--in the meaning of the empirical, the enactment of object relations, and the fashioning of social relations--challenges (...)
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  • Knowledge and social imagery.David Bloor - 1976 - Chicago: University of Chicago Press.
    The first edition of this book profoundly challenged and divided students of philosophy, sociology, and the history of science when it was published in 1976. In this second edition, Bloor responds in a substantial new Afterword to the heated debates engendered by his book.
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  • (4 other versions)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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  • Boundary-Work and the Demarcation of Science from Non-science: Strains and Interests in Professional Ideologies of Scientists.Thomas F. Gieryn - 1983 - American Sociological Review 48 (6):781-795.
    The demarcation of science from other intellectual activities-long an analytic problem for philosophers and sociologists-is here examined as a practical problem for scientists. Construction of a boundary between science and varieties of non-science is useful for scientists' pursuit of professional goals: acquisition of intellectual authority and career opportunities; denial of these resources to "pseudoscientists"; and protection of the autonomy of scientific research from political interference. "Boundary-work" describes an ideological style found in scientists' attempts to create a public image for science (...)
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  • ‘Style’ for historians and philosophers.Ian Hacking - 1991 - Studies in History and Philosophy of Science Part A 23 (1):1-20.
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  • Styles of Scientific Thinking in the European Tradition.Alistair Crombie & Jane Maienschein - 1996 - History and Philosophy of the Life Sciences 18 (3):363.
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  • Styles of Scientific Thinking in the European Tradition.A. Crombie & W. Shea - 1995 - Annals of Science 52 (6):615-618.
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  • (1 other version)Ranking major and minor research misbehaviors: results from a survey among participants of four World Conferences on Research Integrity.Gerben ter Riet, Brian C. Martinson, Nils Axelsen, Joeri Tijdink & Lex M. Bouter - 2016 - Research Integrity and Peer Review 1 (1).
    BackgroundCodes of conduct mainly focus on research misconduct that takes the form of fabrication, falsification, and plagiarism. However, at the aggregate level, lesser forms of research misbehavior may be more important due to their much higher prevalence. Little is known about what the most frequent research misbehaviors are and what their impact is if they occur.MethodsA survey was conducted among 1353 attendees of international research integrity conferences. They were asked to score 60 research misbehaviors according to their views on and (...)
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  • Accounting for Impact? The Journal Impact Factor and the Making of Biomedical Research in the Netherlands.Alexander Rushforth & Sarah de Rijcke - 2015 - Minerva 53 (2):117-139.
    The range and types of performance metrics has recently proliferated in academic settings, with bibliometric indicators being particularly visible examples. One field that has traditionally been hospitable towards such indicators is biomedicine. Here the relative merits of bibliometrics are widely discussed, with debates often portraying them as heroes or villains. Despite a plethora of controversies, one of the most widely used indicators in this field is said to be the Journal Impact Factor. In this article we argue that much of (...)
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  • Conduct and misconduct in science.David Goodstein - 1996 - In Paul R. Gross, Norman Levitt & Martin W. Lewis (eds.), The Flight from science and reason. New York N.Y.: The New York Academy of Sciences. pp. 775--31.
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  • The Value of Vagueness in the Politics of Authorship.Bart Penders - 2017 - Journal of Bioethical Inquiry 14 (1):13-15.
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  • Research Integrity and Everyday Practice of Science.Frederick Grinnell - 2013 - Science and Engineering Ethics 19 (3):685-701.
    Science traditionally is taught as a linear process based on logic and carried out by objective researchers following the scientific method. Practice of science is a far more nuanced enterprise, one in which intuition and passion become just as important as objectivity and logic. Whether the activity is committing to study a particular research problem, drawing conclusions about a hypothesis under investigation, choosing whether to count results as data or experimental noise, or deciding what information to present in a research (...)
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  • Knowledge and Social Imagery.David Bloor - 1979 - British Journal for the Philosophy of Science 30 (2):195-199.
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