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  1. Interdisciplinarity in the Making: Models and Methods in Frontier Science.Nancy J. Nersessian - 2022 - Cambridge, MA: MIT.
    A cognitive ethnography of how bioengineering scientists create innovative modeling methods. In this first full-scale, long-term cognitive ethnography by a philosopher of science, Nancy J. Nersessian offers an account of how scientists at the interdisciplinary frontiers of bioengineering create novel problem-solving methods. Bioengineering scientists model complex dynamical biological systems using concepts, methods, materials, and other resources drawn primarily from engineering. They aim to understand these systems sufficiently to control or intervene in them. What Nersessian examines here is how cutting-edge bioengineering (...)
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  • Elective Modernism and the Politics of (Bio) Ethical Expertise.Nathan Emmerich - 2018 - In Hauke Riesch, Nathan Emmerich & Steven Wainwright (eds.), Philosophies and Sociologies of Bioethics: Crossing the Divides. Dordrecht, Netherlands: Springer. pp. 23-40.
    In this essay I consider whether the political perspective of third wave science studies – ‘elective modernism’ – offers a suitable framework for understanding the policy-making contributions that (bio)ethical experts might make. The question arises as a consequence of the fact that I have taken inspiration from the third wave in order to develop an account of (bio)ethical expertise. I offer a précis of this work and a brief summary of elective modernism before considering their relation. The view I set (...)
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  • (When) Is Scientific Reporting Ethical? The Case for Recognizing Shared Epistemic Responsibility in Science Journalism.Carrie Figdor - 2017 - Frontiers in Communication 2:1-7.
    Internal mechanisms that uphold the reliability of published scientific results have failed across many sciences, including some that are major sources of science news. Traditional methods for reporting science in the mass media do not effectively compensate for this unreliability. I argue for a new conceptual framework in which science journalists and scientists form a complex knowledge community, with science news as the interdisciplinary product. This approach motivates forms of collaboration and training that can improve the epistemic reliability of science (...)
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  • Studies of Expertise and Experience.Harry Collins - 2018 - Topoi 37 (1):67-77.
    I describe the program of analysis of expertise known as ‘Studies of Expertise and Experience’, or ‘SEE’ and contrast it with certain philosophical approaches. SEE differs from many approaches to expertise in that it takes the degree of ‘esotericity’ of the expertise to be one of its characteristics: esotericity is not a defining characteristic of expertise. Thus, native language speaking is taken to be an expertise along with gravitational wave physics. Expertise is taken to be acquired by socialisation within expert (...)
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  • Collaboration, interdisciplinarity, and the epistemology of contemporary science.Hanne Andersen - 2016 - Studies in History and Philosophy of Science Part A 56:1-10.
    Over the last decades, science has grown increasingly collaborative and interdisciplinary and has come to depart in important ways from the classical analyses of the development of science that were developed by historically inclined philosophers of science half a century ago. In this paper, I shall provide a new account of the structure and development of contemporary science based on analyses of, first, cognitive resources and their relations to domains, and second of the distribution of cognitive resources among collaborators and (...)
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  • Interdisciplinarities in Action: Cognitive Ethnography of Bioengineering Sciences Research Laboratories.Nancy J. Nersessian - 2019 - Perspectives on Science 27 (4):553-581.
    The paper frames interdisciplinary research as creating complex, distributed cognitive-cultural systems. It introduces and elaborates on the method of cognitive ethnography as a primary means for investigating interdisciplinary cognitive and learning practices in situ. The analysis draws from findings of nearly 20 years of investigating such practices in research laboratories in pioneering bioengineering sciences. It examines goals and challenges of two quite different kinds of integrative problem-solving practices: biomedical engineering (hybridization) and integrative systems biology (collaborative interdependence). Practical lessons for facilitating (...)
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  • Experimentation in the sociology of science: Representational and generative registers in the imitation game.Rik Wehrens - 2019 - Studies in History and Philosophy of Science Part A 76 (C):76-85.
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  • Interactional Imogen: language, practice and the body.Harry Collins - 2020 - Phenomenology and the Cognitive Sciences 19 (5):933-960.
    Here I try to improve on the available answers to certain long-debated questions and set out some consequences for the answers. Are there limits to the extent to which we can understand the conceptual worlds of other human communities and of non-human creatures? How does this question relate to our ability to engage in other cultures’ practices and languages? What is meant by ‘the body’ and what is meant by ‘the brain’ and how do different meanings bear on the questions? (...)
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  • Hypernormal Science and its Significance.Harry Collins, Jeff Shrager, Andrew Bartlett, Shannon Conley, Rachel Hale & Robert Evans - 2023 - Perspectives on Science 31 (2):262-292.
    “Hypernormal science” has minimal potential for contestation on matters of principle and practice so that information exchange can be unproblematic. Sciences comprise hypernormal domains and more contestable “normal” domains where knowledge diffusion, like acquiring linguistic fluency, depends on face-to-face interaction. Hypernormal domains belonging to molecular biology are contrasted with normal domains in gravitational wave detection physics. Sciences as a whole should not be confused with their typical domains. The analysis has immediate implications for proposed transitions out of the Covid-19 lockdown, (...)
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  • Expertise revisited, Part II: Contributory expertise.Harry Collins, Robert Evans & Martin Weinel - 2016 - Studies in History and Philosophy of Science Part A 56:103-110.
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  • Are Experts Right or are They Members of Expert Groups?Harry Collins - 2018 - Social Epistemology 32 (6):351-357.
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  • Skill Transmittance in Science Education.Brandon Boesch - 2019 - Science & Education 28 (1-2):45-61.
    It is widely argued that the skills of scientific expertise are tacit, meaning that they are difficult to study. In this essay, I draw on work from the philosophy of action about the nature of skills to show that there is another access point for the study of skills—namely, skill transmission in science education. I will begin by outlining Small’s Aristotelian account of skills, including a brief exposition of its advantages over alternative accounts of skills. He argues that skills exist (...)
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