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  1. Authorship and e‐Science: Balancing Epistemological Trust and Skepticism in the Digital Environment.Justine Pila - 2009 - Social Epistemology 23 (1):1-24.
    In this essay I consider the role of authorship in balancing epistemological trust and skepticism in e-science. Drawing on studies of the diagnostic practices of doctors in British breast care units and the gate-keeping practices of a Californian publisher of horticultural works, I suggest that conventions of authorial designation have an important role to play in nurturing the skepticism essential for scientific rigor within the framework of epistemological trust that pragmatism and morality require. In so doing I question the assumption (...)
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  • Authorship Not Taught and Not Caught in Undergraduate Research Experiences at a Research University.Lauren E. Abbott, Amy Andes, Aneri C. Pattani & Patricia Ann Mabrouk - 2020 - Science and Engineering Ethics 26 (5):2555-2599.
    This grounded study investigated the negotiation of authorship by faculty members, graduate student mentors, and their undergraduate protégés in undergraduate research experiences at a private research university in the northeastern United States. Semi-structured interviews using complementary scripts were conducted separately with 42 participants over a 3 year period to probe their knowledge and understanding of responsible authorship and publication practices and learn how faculty and students entered into authorship decision-making intended to lead to the publication of peer-reviewed technical papers. Herein (...)
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  • Trust in Technicians in Paleontology Laboratories.Caitlin Donahue Wylie - 2018 - Science, Technology, and Human Values 43 (2):324-348.
    New technologies can upset scientific workplaces’ established practices and social order. Scientists may therefore prefer preserving skilled manual work and the social status quo to revolutionary technological change. For example, digital imaging of rock-encased fossils is a valuable way for scientists to “see” a specimen without traditional rock removal. However, interviews in vertebrate paleontology laboratories reveal workers’ skepticism toward computed tomography imaging. Scientists criticize replacing physical fossils with digital images because, they say, images are more subjective than the “real thing.” (...)
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  • The Epistemic Cultures of Science and WIKIPEDIA: A Comparison.K. Brad Wray - 2009 - Episteme 6 (1):38-51.
    I compare the epistemic culture of Wikipedia with the epistemic culture of science, with special attention to the culture of collaborative research in science. The two cultures differ markedly with respect to (1) the knowledge produced, (2) who produces the knowledge, and (3) the processes by which knowledge is produced. Wikipedia has created a community of inquirers that are governed by norms very different from those that govern scientists. Those who contribute to Wikipedia do not ground their claims on their (...)
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  • How Nature changed: Melinda Baldwin: Making Nature: The history of a scientific journal. Chicago: University of Chicago Press, 2015, 309pp, $45 HB. [REVIEW]K. Brad Wray - 2016 - Metascience 26 (1):169-170.
    This is a review of Melinda Baldwin's book Making Nature.
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  • Rethinking Science as a Vocation: One Hundred Years of Bureaucratization of Academic Science.John P. Walsh & You-Na Lee - 2022 - Science, Technology, and Human Values 47 (5):1057-1085.
    One hundred years ago, in his lecture Science as a Vocation, Max Weber prefigured a transition from science as a calling to science as bureaucratically organized work. He argued that a calling for science is critical for sustaining scientific work. Using Weber’s arguments for science as a vocation as a lens, in this paper, we discuss whether a calling for science may become difficult to maintain in increasingly bureaucratized scientific work—and also whether such a calling is necessary for the advance (...)
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  • Authorship Norms and Project Structures in Science.John P. Walsh & Sahra Jabbehdari - 2017 - Science, Technology, and Human Values 42 (5):872-900.
    Scientific authorship has become a contested terrain in contemporary science. Based on a survey of authors across fields, we measure the likelihood of specialist authors : people who only made specialized contributions, such as data, materials, or funding; and “nonauthor collaborators” : those who did significant work on the project but do not appear as authors, across different research contexts, including field, size of the project team, commercial orientation, impact of publication, and organization of the collaboration. We find that guest (...)
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  • PDF und Schluss? Wissenschafts- und Buchgeschichte, 18.–20. Jahrhundert.Alrun Schmidtke - 2019 - NTM Zeitschrift für Geschichte der Wissenschaften, Technik und Medizin 27 (1):95-106.
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  • Acknowledgments-based networks for mapping the social structure of research fields. A case study on recent analytic philosophy.Eugenio Petrovich - 2022 - Synthese 200 (3):1-40.
    In the last decades, research in science mapping has delivered several powerful techniques, based on citation or textual analysis, for charting the intellectual organization of research fields. To map the social network underlying science and scholarship, by contrast, science mapping has mainly relied on one method, co-authorship analysis. This method, however, suffers from well-known limitations related to the practice of authorship. Moreover, it does not perform well on those fields where multi-authored publications are rare. In this study, a new method (...)
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  • Scientific Communication and the Nature of Science.Kristian H. Nielsen - 2013 - Science & Education 22 (9):2067-2086.
  • Structuralism and Quantitative Science Studies: Exploring First Links.Tilmann Massey - 2014 - Erkenntnis 79 (S8):1493-1503.
    In this paper, the potentials of systematically linking philosophy of science with bibliometrics are investigated by exploring whether concepts developed within the structuralist theory of science can be used as interpretative basis for author co-citation studies. It is argued that clusters of co-cited authors cannot be interpreted straightforwardly as scientific communities nor as scientific generations. The first reason is that the respective constituents differ (authors vs. scientists), the second is that the co-citation relation generates non-Kuhnian communities, i.e. communities not sharing (...)
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  • What Management Does to Space Projects: The Franco-Soviet Project ARCAD 3 in the Late 1970s.Jérôme Lamy - 2011 - Science in Context 24 (4):545-586.
    ArgumentSpace projects represent, after World War II, the archetype of large-scale organization of scientific practices that are flexible, temporary, and oriented towards specific goals. A new form of activity, the project, emerged through the management of technical means, allocation of skills, and coordination of various players. Project management emerged as the synthesis of a set of social practices designed to subordinate as well as synchronize the initiatives of researchers, engineers, and technicians who had temporarily joined forces. This article presents the (...)
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  • Matters of fact.Matthew L. Jones - 2010 - Modern Intellectual History 7 (3):629-642.
    At the end of Matters of Exchange , Harold Cook's major revisionist account of the early modern scientific revolution, he locates the political and economic writings of Bernard Mandeville within the practices and values of contemporaneous Dutch observational medicine. Like Mandeville, Cook describes the potency of early modern capitalism and its attendant value system in generating industry and knowledge; like Mandeville, Cook finds coercive systems of moral regulation to be mistaken in their estimation of human capacities; and like Mandeville, Cook (...)
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  • Scientific deceit.Stephen John - 2018 - Synthese 198 (1):373-394.
    This paper argues for a novel account of deceitful scientific communication, as “wishful speaking”. This concept is of relevance both to philosophy of science and to discussions of the ethics of lying and misleading. Section 1 outlines a case-study of “ghost-managed” research. Section 2 introduces the concept of “wishful speaking” and shows how it relates to other forms of misleading communication. Sections 3–5 consider some complications raised by the example of pharmaceutical research; concerning the ethics of silence; how research strategies—as (...)
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  • What's the Point of Authors?Joshua Habgood-Coote - forthcoming - British Journal for the Philosophy of Science.
    Who should be the author(s) of an academic paper? This question is becoming increasingly pressing, due to the increasing prevalence and scale of scientific collaboration, and the corresponding diversity of authorship practices in different disciplines and subdisciplines. This paper addresses the conceptual issues underlying authorship, with an eye to ameliorating authorship practices. The first part of the paper distinguishes five roles played by authorship attributions: allocating credit, constructing a speaker, enabling credibility judgements, supporting accountability, and creating an intellectual marketplace. The (...)
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  • How Do Chemistry Faculty and Graduate Students Engage in Decision Making on Issues Related to Ethical and Responsible Conduct of Research Including Authorship?Yiyang Gao, Jasmin Wilson & Patricia Ann Mabrouk - 2022 - Science and Engineering Ethics 28 (3):1-26.
    In the United States National Science Foundation and the National Institutes of Health have mandated training STEM doctoral students in the ethical and responsible conduct of research to improve doctoral students' ethical decision-making skills; however, little is known about the process and factors that STEM faculty and graduate students use in their decision-making. This exploratory case study examined how four triads of chemistry faculty and their doctoral students recruited from three research universities in the eastern United States engaged in ethical (...)
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  • Plastic neuroscience: studying what the brain cares about.Joseph Dumit - 2014 - Frontiers in Human Neuroscience 8.
  • Desired Machines: Cinema and the World in Its Own Image.Jimena Canales - 2011 - Science in Context 24 (3):329-359.
    ArgumentIn 1895 when the Lumière brothers unveiled their cinematographic camera, many scientists were elated. Scientists hoped that the machine would fulfill a desire that had driven research for nearly half a century: that of capturing the world in its own image. But their elation was surprisingly short-lived, and many researchers quickly distanced themselves from the new medium. The cinematographic camera was soon split into two machines, one for recording and one for projecting, enabling it to further escape from the laboratory. (...)
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