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  1. The Normative Orientations of Climate Scientists.Dennis Bray & Hans Storch - 2017 - Science and Engineering Ethics 23 (5):1351-1367.
    In 1942 Robert K. Merton tried to demonstrate the structure of the normative system of science by specifying the norms that characterized it. The norms were assigned the abbreviation CUDOs: Communism, Universalism, Disinterestedness, and Organized skepticism. Using the results of an on-line survey of climate scientists concerning the norms of science, this paper explores the climate scientists’ subscription to these norms. The data suggests that while Merton’s CUDOs remain the overall guiding moral principles, they are not fully endorsed or present (...)
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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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  • Questionable Research Practices and Misconduct Among Norwegian Researchers.Matthias Kaiser, Laura Drivdal, Johs Hjellbrekke, Helene Ingierd & Ole Bjørn Rekdal - 2021 - Science and Engineering Ethics 28 (1):1-31.
    This article presents results from the national survey conducted in 2018 for the project Research Integrity in Norway. A total of 31,206 questionnaires were sent out to Norwegian researchers by e-mail, and 7291 responses were obtained. In this paper, we analyse the survey data to determine attitudes towards and the prevalence of fabrication, falsification and plagiarism and contrast this with attitudes towards and the prevalence of the more questionable research practices surveyed. Our results show a relatively low percentage of self-reported (...)
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  • Developing a problem-based learning (PBL) curriculum for professionalism and scientific integrity training for biomedical graduate students.N. L. Jones, A. M. Peiffer, A. Lambros, M. Guthold, A. D. Johnson, M. Tytell, A. E. Ronca & J. C. Eldridge - 2010 - Journal of Medical Ethics 36 (10):614-619.
    A multidisciplinary faculty committee designed a curriculum to shape biomedical graduate students into researchers with a high commitment to professionalism and social responsibility and to provide students with tools to navigate complex, rapidly evolving academic and societal environments with a strong ethical commitment. The curriculum used problem-based learning (PBL), because it is active and learner-centred and focuses on skill and process development. Two courses were developed: Scientific Professionalism: Scientific Integrity addressed discipline-specific and broad professional norms and obligations for the ethical (...)
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  • The perverse effects of competition on scientists' work and relationships.Melissa S. Anderson, Emily A. Ronning, Raymond De Vries & Brian C. Martinson - 2007 - Science and Engineering Ethics 13 (4):437-461.
    Competition among scientists for funding, positions and prestige, among other things, is often seen as a salutary driving force in U.S. science. Its effects on scientists, their work and their relationships are seldom considered. Focus-group discussions with 51 mid- and early-career scientists, on which this study is based, reveal a dark side of competition in science. According to these scientists, competition contributes to strategic game-playing in science, a decline in free and open sharing of information and methods, sabotage of others’ (...)
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  • Normative orientations of university faculty and doctoral students.Melissa S. Anderson - 2000 - Science and Engineering Ethics 6 (4):443-461.
    Data from two national surveys of 4,000 faculty and doctoral students in chemistry, civil engineering, microbiology and sociology indicate that both faculty and students subscribe strongly to traditional norms but are more likely to see alternative counternorms enacted in their departments. They also show significant effects of departmental climate on normative orientations and suggest that many researchers express some degree of ambivalence about traditional norms.
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  • Help from faculty: Findings from the acadia institute graduate education study.Melissa S. Anderson, Elo Charity Oju & Tina M. R. Falkner - 2001 - Science and Engineering Ethics 7 (4):487-503.
    Doctoral students receive many kinds of assistance from faculty members, but much of this support falls short of mentoring. This paper takes the perspective that it is more important to find out what kinds of help students receive from faculty than to assume that students are taken care of by mentors, as distinct from advisors or role models. The findings here are based on both survey and interview data collected through the Acadia Institute’s project on Professional Values and Ethical Issues (...)
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