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  1. The Singularity is Near: When Humans Transcend Biology.Ray Kurzweil - 2005 - Viking Press.
    A controversial scientific vision predicts a time in which humans and machines will merge and create a new form of non-biological intelligence, explaining how the occurrence will solve such issues as pollution, hunger, and aging.
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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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  • Nanotalk: conversations with scientists and engineers about ethics, meaning, and belief in the development of nanotechnology.Rosalyn W. Berne - 2006 - Mahwah, NJ: Lawrence Erlbaum.
    No one really knows where nanotechnology is leading, what its pursuit will mean, and how it may affect human and other forms of life. Nevertheless, its research and development are moving briskly into that unknown. It has been suggested that rapid movement towards 'who knows where' is endemic to all technological development; that its researchers pursue it for curiosity and enjoyment, without knowing the consequences, believing that their efforts will be beneficial. Further, that the enthusiasm for development comes with no (...)
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  • Nanotechnology: From “Wow” to “Yuck”?Kristen Kulinowski - 2004 - Bulletin of Science, Technology and Society 24 (1):13-20.
    Nanotechnology is science and engineering resulting from the manipulation of matter’s most basic building blocks: atoms and molecules. As such, nanotechnology promises unprecedented control over both the materials we use and the means of their production. Such control could revolutionize nearly every sector of our economy, including medicine, defense, and energy. Despite the relatively recent emergence of this field, it already enjoys generous federal funding and enthusiastic media coverage. The tenor of discourse on nanotechnology is changing, however, as the voices (...)
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  • Effects of training in the responsible conduct of research: A survey of graduate students in experimental sciences. [REVIEW]Michael Kalichman & Sarah Brown - 1998 - Science and Engineering Ethics 4 (4):487-498.
    In recent years, programs for training in research ethics have become widespread, but very little has been done to assess the effectiveness of this training. Because initial studies have failed to demonstrate a positive impact of research ethics training, this project defined two new outcome variables to be tested in a sample of graduate students at the University of California, San Diego. Trainees were surveyed to assess the role of ethics training in altering their perceptions about their own standards, or (...)
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  • On the importance of research ethics and mentoring.Ruth R. Faden, Michael J. Klag, Nancy E. Kass & Sharon S. Krag - 2002 - American Journal of Bioethics 2 (4):50 – 51.
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  • The Sounds of Science: Listening to Laboratory Practice.Cyrus C. M. Mody - 2005 - Science, Technology, and Human Values 30 (2):175-198.
    Works in science and technology studies have repeatedly pointed to the importance of the visual in scientific practice. STS has also explicated how embodied practice generates scientific knowledge. I aim to supplement this literature by pointing out how sound and hearing are integral aspects of experimentation. Sound helps define how and when lab work is done, and in what kinds of spaces. It structures experimental experience. It affords interactions between researchers and instruments that are richer than could be obtained with (...)
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  • Group mentoring to Foster the responsible conduct of research.Caroline Whitebeck - 2001 - Science and Engineering Ethics 7 (4):541-558.
    This article reports on a method of group mentoring to strengthen responsible research conduct. A key feature of this approach is joint exploration of the issues by trainees and their faculty research supervisors. These interactions not only help participants learn about current ethical norms for research practice, but also draw on the accumulated experience of faculty and staff about practical problems of research conduct, and help to make faculty more articulate about responsible research conduct and so better able to guide (...)
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  • Beamtimes and Lifetimes: The World of High Energy Physicists.Sharon Traweek (ed.) - 1988 - Harvard University Press.
    Particle physicists constitute a community of sophisticated mythmakers—explicators of the nature of matter who forever alter our views of space and time. But who are these people? What is their world really like? Traweek, a bold observer of culture, opens the door to this unusual domain and offers us a glimpse into the inner sanctum.
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  • Trustworthy research: Commentary on ‘group mentoring to foster the responsible conduct of research’.Patricia Woolf - 2001 - Science and Engineering Ethics 7 (4):559-562.
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  • Book review. [REVIEW]Jameson M. Wetmore - 2006 - Science and Engineering Ethics 12 (3):583-584.
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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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