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  1. Why must scientists become more ethically sensitive than they used to be?John Ziman - 1998 - Science 282 (5395):1813-1814.
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  • Crossing Boundaries Social Science in the Policy Room.Andrew Webster - 2007 - Science, Technology, and Human Values 32 (4):458-478.
    This article discusses the relationship between a deconstructivist method in science and technology studies and the more recent moves towards a reconstructivist engagement with science and science policy making. Drawing on examples from the author's own research, the article identifies three forms of engagement and their relative utility and limitations. The article argues that these are typical of STS work that seeks direct engagement with science policy making and which could form the basis for a more "serviceable STS" that retains (...)
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  • The responsibilities of scientists.Henk Verhoog - 1981 - Minerva 19 (4):582-604.
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  • Materializing Morality: Design Ethics and Technological Mediation.Peter-Paul Verbeek - 2006 - Science, Technology, and Human Values 31 (3):361-380.
    During the past decade, the “script” concept, indicating how technologies prescribe human actions, has acquired a central place in STS. Until now, the concept has mainly functioned in descriptive settings. This article will deploy it in a normative setting. When technologies coshape human actions, they give material answers to the ethical question of how to act. This implies that engineers are doing “ethics by other means”: they materialize morality. The article will explore the implications of this insight for engineering ethics. (...)
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  • Taking the “Soft Impacts” of Technology into Account: Broadening the Discourse in Research Practice.Simone van der Burg - 2009 - Social Epistemology 23 (3):301-316.
    Public funding institutions are able to influence what aspects researchers take into account when they consider the future impacts of their research. On the basis of a description of the evaluation systems that public research funding institutes in the Netherlands (STW and SenterNovem) use to estimate the quality of engineering science, this article shows that researchers are now predominantly required to reflect on the intellectual merit of their research and on the usability and marketability of the technology it contributes to. (...)
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  • Technology Assessment as Learning.Henk van de Graaf & John Grin - 1996 - Science, Technology and Human Values 21 (1):72-99.
    This article addresses the question of how policymakers could deliberately influence processes of technology development. Using the development of wind turbines in Denmark as an example, the article describes the frames of meaning guiding the actions of those involved in the three subprocesses of policymaking, the generation of new technologies, and the management of the firms that bring new artifacts to the market. The three types of actors share an interest in one notion: the meaning of a technological artifact. This (...)
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  • Imagining the future of photoacoustic mammography.Simone van der Burg - 2009 - Science and Engineering Ethics 15 (1):97-110.
    How can a realistic ethical imagination about the future of a technology take shape? This article contains a reflection which is based on the experiences of an embedded ethicist in the context of biophysical research conducive to the development of photoacoustic mammography, which is intended for the non-invasive detection of breast cancer. Imagination in this context already informs the activities of the biophysical researchers, but its role is limited: biophysical future scenarios concentrate on the technological advances that photoacoustics could bring (...)
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  • “Opening Up” and “Closing Down”: Power, Participation, and Pluralism in the Social Appraisal of Technology.Andy Stirling - 2008 - Science, Technology, and Human Values 33 (2):262-294.
    Discursive deference in the governance of science and technology is rebalancing from expert analysis toward participatory deliberation. Linear, scientistic conceptions of innovation are giving ground to more plural, socially situated understandings. Yet, growing recognition of social agency in technology choice is countered by persistently deterministic notions of technological progress. This article addresses this increasingly stark disjuncture. Distinguishing between “appraisal” and “commitment” in technology choice, it highlights contrasting implications of normative, instrumental, and substantive imperatives in appraisal. Focusing on the role of (...)
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  • What happens in the Lab: Applying Midstream Modulation to Enhance Critical Reflection in the Laboratory. [REVIEW]Daan Schuurbiers - 2011 - Science and Engineering Ethics 17 (4):769-788.
    In response to widespread policy prescriptions for responsible innovation, social scientists and engineering ethicists, among others, have sought to engage natural scientists and engineers at the ‘midstream’: building interdisciplinary collaborations to integrate social and ethical considerations with research and development processes. Two ‘laboratory engagement studies’ have explored how applying the framework of midstream modulation could enhance the reflections of natural scientists on the socio-ethical context of their work. The results of these interdisciplinary collaborations confirm the utility of midstream modulation in (...)
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  • Strengths of Public Dialogue on Science‐related Issues.Roland Jackson, Fiona Barbagallo & Helen Haste - 2005 - Critical Review of International Social and Political Philosophy 8 (3):349-358.
    This essay describes the value and validity of public dialogue on science?related issues. We define what is meant by ?dialogue?, the context within which dialogue takes place in relation to science, and the purposes of dialogue. We introduce a model to describe and analyse the practice of dialogue, at different stages in the development of science, its applications and their consequences. Finally, we place the practice of dialogue on science?related issues in relation to the wider political process and draw out (...)
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  • Interactive Technology Assessment in the Real World: Dual Dynamics in an iTA Exercise on Genetically Modified Vines.Arie Rip, Pierre-Benoit Joly & Claire Marris - 2008 - Science, Technology, and Human Values 33 (1):77-100.
    Participatory Technology Assessment initiatives have usually been analyzed as if they existed in a social and political vacuum. This article analyzes the linkages that occur, in both directions, between the microcosm set up by a pTA exercise and the real world outside. This dual-dynamics perspective leads to a new way of understanding the function and significance of pTA initiatives. Rather than viewing them as a means to create the ideal conditions for real public debate, they are viewed here as an (...)
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  • Responsible Development of Nanoscience and Nanotechnology: Contextualizing Socio-Technical Integration into the Nanofabrication Laboratories in the USA. [REVIEW]Debasmita Patra - 2011 - NanoEthics 5 (2):143-157.
    There have been several conscious efforts made by different stakeholders in the area of nanoscience and nanotechnology to increase the awareness of social and ethical issues (SEI) among its practitioners. But so far, little has been done at the laboratory level to integrate a SEI component into the laboratory orientation schedule of practitioners. Since the laboratory serves as the locus of activities of the scientific community, it is important to introduce SEI there to stimulate thinking and discussion of SEI among (...)
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  • Introduction: `Mode 2' Revisited: The New Production of Knowledge. [REVIEW]Helga Nowotny, Peter Scott & Michael Gibbons - 2003 - Minerva 41 (3):179-194.
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  • If and then: A critique of speculative nanoethics. [REVIEW]Alfred Nordmann - 2007 - NanoEthics 1 (1):31-46.
    Most known technology serves to ingeniously adapt the world to the physical and mental limitations of human beings. Humankind has acquired awesome power with its rather limited means. Nanotechnological capabilities further this power. On some accounts, however, nanotechnological research will contribute to a rather different kind of technological development, namely one that changes human beings so as to remove or reduce their physical and mental limitations. The prospect of this technological development has inspired a fair amount of ethical debate. Here, (...)
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  • Responsibility in Engineering: Toward a New Role for Engineering Ethicists.Jessica Nihlén Fahlquist & Neelke Doorn - 2010 - Bulletin of Science, Technology and Society 30 (3):222-230.
    Traditionally, the management of technology has focused on the stages before or after development of technology. In this approach the technology itself is conceived as the result of a deterministic enterprise; a result that is to be either rejected or embraced. However, recent insights from Science and Technology Studies (STS) have shown that there is ample room to modulate technology during development. This requires technology managers and engineering ethicists to become more involved in the technological research rather than assessing it (...)
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  • The Social Study of Corporate Science: A Research Manifesto.Annemiek Nelis, John M. A. Verbakel & Bart Penders - 2009 - Bulletin of Science, Technology and Society 29 (6):439-446.
    Laboratory ethnographies have provided valuable insights in the workings of contemporary science and technology and about facts in the making. Nearly all these ethnographic studies have been conducted at nonprofit research institutes. In this article, the authors argue that it is time for science and technology studies (STS) ethnography to direct its gaze toward for-profit knowledge production sites. The authors do so, based on a long-standing recognition that nonprofit academic laboratories do not have a monopoly on knowledge construction. First, they (...)
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  • Midstream Modulation of Technology: Governance From Within.Carl Mitcham, Roop L. Mahajan & Erik Fisher - 2006 - Bulletin of Science, Technology and Society 26 (6):485-496.
    Public “upstream engagement” and other approaches to the social control of technology are currently receiving international attention in policy discourses around emerging technologies such as nanotechnology. To the extent that such approaches hold implications for research and development (R&D) activities, the distinct participation of scientists and engineers is required. The capacity of technoscientists to broaden the influences on R&D activities, however, implies that they conduct R&D differently. This article discusses the possibility for more reflexive participation by scientists and engineers in (...)
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  • Moral imagination, trading zones, and the role of the ethicist in nanotechnology.E. Gorman Michael, H. Werhane Patricia & Nathan Swami - 2009 - NanoEthics 3 (3):185-195.
    The societal and ethical impacts of emerging technological and business systems cannot entirely be foreseen; therefore, management of these innovations will require at least some ethicists to work closely with researchers. This is particularly critical in the development of new systems because the maximum degrees of freedom for changing technological direction occurs at or just after the point of breakthrough; that is also the point where the long-term implications are hardest to visualize. Recent work on shared expertise in Science & (...)
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  • Science and the social order.Robert K. Merton - 1938 - Philosophy of Science 5 (3):321-337.
    Forty-three years ago Max Weber observed that “the belief in the value of scientific truth is not derived from nature but is a product of definite cultures.” We may now add: and this belief is readily transmuted into doubt or disbelief. The persistent development of science occurs only in societies of a certain order, subject to a peculiar complex of tacit presuppositions and institutional constraints. What is for us a normal phenomenon which demands no explanation and secures many ‘self-evident’ cultural (...)
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  • Is cell science dangerous?L. Wolpert - 2007 - Journal of Medical Ethics 33 (6):345-348.
    We are essentially a society of cells that come from a single cell, the fertilised egg. Research in cell biology has made major advances that are relevant to medicine and our understanding of life. Our understanding of the role of genes and proteins is impressive. But is this science dangerous? The whole of Western literature has not been kind to cell scientists and is filled with images of scientists meddling with nature, with disastrous results.1 Just consider Shelley’s Frankenstein, Goethe’s Faust (...)
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  • Assessing Expectations: Towards a Toolbox for an Ethics of Emerging Technologies. [REVIEW]Federica Lucivero, Tsjalling Swierstra & Marianne Boenink - 2011 - NanoEthics 5 (2):129-141.
    In recent years, several authors have argued that the desirability of novel technologies should be assessed early, when they are still emerging. Such an ethical assessment of emerging technologies is by definition focused on an elusive object. Usually promises, expectations, and visions of the technology are taken as a starting point. As Nordmann and Rip have pointed out in a recent article, however, ethicists should not take for granted the plausibility of such expectations and visions. In this paper, we explore (...)
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  • Participatory Approaches in Science and Technology: Historical Origins and Current Practices in Critical Perspective.Martin Lengwiler - 2008 - Science, Technology, and Human Values 33 (2):186-200.
    Recent science and technology studies have analyzed questions of nonexpert participation in science, technology, and science policy from an empirically grounded perspective. The introduction to this special issue offers a double contribution to this debate. First, it presents a summary of the state of the art and an outline of the historical emergence of the participatory question. The argument distinguishes four periods since the late nineteenth century, each with a specific relationship between expert and nonexpert knowledge ranging from a hybrid, (...)
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  • Ethics and technology 'in the making': An essay on the challenge of nanoethics. [REVIEW]Deborah G. Johnson - 2007 - NanoEthics 1 (1):21-30.
    After reviewing portions of the 21st Century Nanotechnology Research and Development Act that call for examination of societal and ethical issues, this essay seeks to understand how nanoethics can play a role in nanotechnology development. What can and should nanoethics aim to achieve? The focus of the essay is on the challenges of examining ethical issues with regard to a technology that is still emerging, still ‘in the making.’ The literature of science and technology studies (STS) is used to understand (...)
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  • Responsibility without Moralism in Technoscientific Design Practice.Jaap Jelsma & Tsjalling Swierstra - 2006 - Science, Technology, and Human Values 31 (3):309-332.
    While engineering ethics usually addresses the responsibility of engineers in rare cases of whistle blowing, the authors broach the question to what extent engineers can be held responsible in normal practice. For this purpose, they define the conditions under which individuals can be imputable as they prevail in ethics and common sense. From outcomes of science and technology studies research, the authors conclude that these conditions are seldom met in modern technoscientific research practice. By examining such practice in a case (...)
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  • Moral Imagination, Trading Zones, and the Role of the Ethicist in Nanotechnology.Michael E. Gorman, Patricia H. Werhane & Nathan Swami - 2009 - NanoEthics 3 (3):185-195.
    The societal and ethical impacts of emerging technological and business systems cannot entirely be foreseen; therefore, management of these innovations will require at least some ethicists to work closely with researchers. This is particularly critical in the development of new systems because the maximum degrees of freedom for changing technological direction occurs at or just after the point of breakthrough; that is also the point where the long-term implications are hardest to visualize. Recent work on shared expertise in Science & (...)
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  • Midstream Modulation in Biotechnology Industry: Redefining What is ‘Part of the Job’ of Researchers in Industry. [REVIEW]Steven M. Flipse, Maarten Ca van der Sanden & Patricia Osseweijer - 2013 - Science and Engineering Ethics 19 (3):1141-1164.
    In response to an increasing amount of policy papers stressing the need for integrating social and ethical aspects in Research and Development (R&D) practices, science studies scholars have conducted integrative research and experiments with science and innovation actors. One widely employed integration method is Midstream Modulation (MM), in which an ‘embedded humanist’ interacts in regular meetings with researchers to engage them with the social and ethical aspects of their work. While the possibility of using MM to enhance critical reflection has (...)
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  • Ethnographic invention: Probing the capacity of laboratory decisions. [REVIEW]Erik Fisher - 2007 - NanoEthics 1 (2):155-165.
    In an attempt to shape the development of nanotechnologies, ethics policy programs promote engagement in the hope of broadening the scope of considerations that scientists and engineers take into account. While enhancing the reflexivity of scientists theoretically implies changes in technoscientific practice, few empirical studies demonstrate such effects. To investigate the real-time effects on engineering research practices, a laboratory engagement study was undertaken to specify the interplay of technical and social considerations during the normal course of research. The study employed (...)
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  • Responsibility Ascriptions in Technology Development and Engineering: Three Perspectives. [REVIEW]Neelke Doorn - 2012 - Science and Engineering Ethics 18 (1):69-90.
    In the last decades increasing attention is paid to the topic of responsibility in technology development and engineering. The discussion of this topic is often guided by questions related to liability and blameworthiness. Recent discussions in engineering ethics call for a reconsideration of the traditional quest for responsibility. Rather than on alleged wrongdoing and blaming, the focus should shift to more socially responsible engineering, some authors argue. The present paper aims at exploring the different approaches to responsibility in order to (...)
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  • Exploring Responsibility Rationales in Research and Development.Neelke Doorn - 2012 - Science, Technology, and Human Values 37 (3):180-209.
    The present article explores the rationales of scientists and engineers for distributing moral responsibilities related technology development. On the basis of a qualitative case study, it was investigated how the actors within a research network distribute responsibilities for these issues. Rawls’ Wide Reflective Equilibrium model was used as a descriptive framework. This study indicates that there is a correlation between the actors’ ethics position and their responsibility rationale. When discussing how to address ethical issues or how to distribute the responsibility (...)
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  • Integrating ethics into technical courses: Micro-insertion. [REVIEW]Michael Davis - 2006 - Science and Engineering Ethics 12 (4):717-730.
    Perhaps the most common reason science and engineering faculty give for not including “ethics” (that is, research ethics, engineering ethics, or some discussion of professional responsibility) in their technical classes is that “there is no room”. This article 1) describes a technique (“micro-insertion”) that introduces ethics (and related topics) into technical courses in small enough units not to push out technical material, 2) explains where this technique might fit into the larger undertaking of integrating ethics into the technical (scientific or (...)
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  • Engagement Agents in the Making: On the Front Lines of Socio-Technical Integration: Commentary on: “Constructing Productive Engagement: Pre-engagement Tools for Emerging Technologies”.Shannon N. Conley - 2011 - Science and Engineering Ethics 17 (4):715-721.
    This commentary builds on Haico te Kulve and Arie Rip’s ( 2011 ) notion of “engagement agents,” individuals that must be able to move between multiple dimensions, or “levels” of research, innovation, and policy processes. The commentary compares and contrasts the role of the engagement agent within the Constructive Technology Assessment and integration approaches, and suggests that on-site integration research represents one way to transform both social and natural scientists into competent and informed “engagement agents,” a new generation of researchers (...)
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  • Engineering design research and social responsibility.C. Mitcham - 1997 - In Kristin Shrader-Frechette & Laura Westra (eds.), Technology and Values. Rowman & Littlefield. pp. 261--278.
     
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  • Public engagement as means of restoring trust in science? Hitting the notes, but missing the music.Brian E. Wynne - 2006 - .
    This paper analyses the recent widespread moves to 'restore' public trust in science by developing an avowedly two-way, public dialogue with science initiatives. Noting how previously discredited and supposedly abandoned public deficit explanations of 'mistrust' have actually been continually reinvented, it argues that this is a symptom of a continuing failure of scientific and policy institutions to place their own science-policy institutional culture into the frame of dialogue, as possible contributory cause of the public mistrust problem.
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  • Introduction.Helga Nowotny, Peter Scott & Michael Gibbons - 2003 - Minerva 41 (3):179-194.
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