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  1. The Handbook of Science and Technology Studies.Edward Hackett, Olga Amsterdamska, Michael Lynch & Judy Wajcman (eds.) - 2007 - MIT Press.
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  • The idiom of co-operation.S. Jasanoff - 2004 - In Sheila Jasanoff (ed.), States of knowledge: the co-production of science and social order. New York: Routledge. pp. 1--12.
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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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  • A New Scientific Methodology for Global Environmental Issues.S. O. Funtowicz & Jerome R. Ravetz - 1991 - In Robert Costanza (ed.), Ecological Economics: The Science and Management of Sustainability. Columbia University Press. pp. 137-152.
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  • States of knowledge: the co-production of science and social order.Sheila Jasanoff (ed.) - 2004 - New York: Routledge.
    In the past twenty years, the field of science and technology studies (S&TS) has made considerable progress toward illuminating the relationship between scientific knowledge and political power. These insights have not yet been synthesized or presented in a form that systematically highlights the connections between S&TS and other social sciences. This timely collection of essays by some of the leading scholars in the field attempts to fill that gap. The book develops the theme of "co-production", showing how scientific knowledge both (...)
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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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  • Uncertainty and Quality in Science for Policy.S. O. Funtowicz & J. R. Ravetz - 1990 - Kluwer Academic Publishers.
    This book explains the notational system NUSAP (Numeral, Unit, Spread, Assessment, Pedigree) and applies it to several examples from the environmental sciences.
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  • Participating Despite Questions: Toward a More Confident Participatory Technology Assessment: Commentary on: “Questioning ‘Participation’: A Critical Appraisal of its Conceptualization in a Flemish Participatory Technology Assessment”. [REVIEW]David H. Guston - 2011 - Science and Engineering Ethics 17 (4):691-697.
    While the important challenges of public deliberations on emerging technologies are crucial to keep in mind, this paper argues that scholars and practitioners have reason to be more confident in their performance of participatory technology assessments (pTA). Drawing on evidence from the 2008 National Citizens’ Technology Forum (NCTF) conducted by the Center for Nanotechnology in Society at Arizona State University, this paper describes how pTA offers a combination of intensive and extensive qualities that are unique among modes of engagement. In (...)
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  • Nanotechnology, Governance, and Public Deliberation: What Role for the Social Sciences?Phil Macnaghten, , Matthew B. Kearnes & Brian Wynne - 2005 - Science Communication 27 (2):268-291.
    In this article we argue that nanotechnology represents an extraordinary opportunity to build in a robust role for the social sciences in a technology that remains at an early, and hence undetermined, stage of development. We examine policy dynamics in both the United States and United Kingdom aimed at both opening up, and closing down, the role of the social sciences in nanotechnologies. We then set out a prospective agenda for the social sciences and its potential in the future shaping (...)
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  • Science, social theory and public knowledge.Alan Irwin - 2003 - Philadelphia: Open University Press. Edited by Mike Michael.
    How might social theory, public understanding of science and science policy best inform one another? What have been the key features of science-society relations in the modern world? How are we to re-think science-society relations in the context of globalization, hybridity and changing patterns of governance? This topical and unique book draws together the three key perspectives on science-society relations: public understanding of science, scientific and public governance, and social theory. The book presents a series of case studies (including the (...)
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  • Expectations and the Emergence of Nanotechnology.Cynthia Selin - 2007 - Science, Technology, and Human Values 32 (2):196-220.
    Although nanotechnology is often defined as operations on the 10-9 meters, the lack of charisma in the scale-bound definitions has been fortified by remarkable dreams and alluring promises that spark excitement for nanotechnology. The story of the rhetorical development of nanotechnology reveals how speculative claims are powerful constructions that create legitimacy in this emerging technological domain. From its inception, nanotechnology has been more of a dream than reality, more fiction than fact. In recent years, however, the term nanotechnology has been (...)
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