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  1. Researchers’ Practice and Perception of Research Ethics and the Role of Institutional Support: Insights From a pan-European Researcher Survey.Hendrik Berghaeuser, Max Prass & Ralf Lindner - forthcoming - Journal of Academic Ethics:1-22.
    Research Ethics is a key element of Responsible Research and Innovation (RRI). In spite of an increased interest in this topic there is little empirical evidence about scientists’ practice and perception of Research Ethics. Drawing on a large-scale survey among 4,180 European researchers we present unique insights into Research Ethics activities, researchers’ motivation for ethical behavior, the perceived barriers and benefits as well as the role of institutional support. According to the survey results, most researchers consider ethical issues in their (...)
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  • Fragmented or centralized?: Comparative case study of ethical frameworks for social research in Philippines and Taiwan.Jayson Troy F. Bajar - 2022 - International Journal of Ethics Education 7 (2):235-255.
    With the delegation of ethical checking mechanisms to the institutional review boards (IRBs), flexible interpretations of overarching research ethics principles differed across scientific and cultural settings. This article is a comparative case study of ethical frameworks for social research in the Philippines and Taiwan. Justifications in choosing the two cases preponderantly focused on data trends regarding research and development (R&D) policy and practice. This article compared the elements observed in the two frameworks, specifically in terms of: national regulations, curricular requirements, (...)
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  • ‘The time where the British took the lead is over’: ethical aspects of writing in complex research partnerships.Kristina Pelikan, Roger Jeffery & Thorsten Roelcke - 2021 - Research Ethics 17 (1):3-22.
    Writing reflects some of the different characteristics of the language being used and of the people who are communicating. The present paper focusses on the internal written communication in international and inter-disciplinary research projects. Using a case study of an international public health research project, it argues that the authorship and the languages used in internal project communication are not neutral but help to generate or reinforce power hierarchies. Within research partnerships, language thus raises ethical issues that have so far (...)
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  • Ukrainian Fundamental Science and European Values.Olexander Gabovich, Volodymyr Kuznetsov & Nadiya Semenova (eds.) - 2016 - Kyiv, Ukraine: National University of "Kyiv-Mohyla Academy" Press.
    Certain principle aspects of the fundamental science state in Ukraine as of 2014 were analyzed. It was shown that no awareness exists in the country that the main although not unique task of the science consists in the creation of new knowledge. The special attention was paid to state academies of science, in particular, to the National academy of science of Ukraine. It was demonstrated that the active law concerning science as well as the project of the new law have (...)
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  • (1 other version)New Issues for New Methods: Ethical and Editorial Challenges for an Experimental Philosophy.Andrea Polonioli - forthcoming - Science and Engineering Ethics.
    This paper examines a constellation of ethical and editorial issues that have arisen since philosophers started to conduct, submit and publish empirical research. These issues encompass concerns over responsible authorship, fair treatment of human subjects, ethicality of experimental procedures, availability of data, unselective reporting and publishability of research findings. This study aims to assess whether the philosophical community has as yet successfully addressed such issues. To do so, the instructions for authors, submission process and published research papers of 29 main (...)
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  • Experience and Attitudes Toward Informed Consent in Pharmacy Practice Research: Do Pharmacists Care?Dušanka M. Krajnović & Dragana D. Jocić - 2017 - Science and Engineering Ethics 23 (6):1529-1539.
    The experience and attitudes of pharmacists towards research ethics through pharmacy practice research is largely unknown. This study sought to examine the pharmacists’ experience if they were research participants and their attitudes on the importance of informed consent in research practice. A cross-sectional survey was employed to achieve the aims of this study. The majority of 433 participating pharmacists were female ; the average age was 43.2 ± 9.5 years, and their average working experience was 15.0 ± 9.6 years. Almost (...)
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  • Science Outside the Lab: Helping Graduate Students in Science and Engineering Understand the Complexities of Science Policy.Michael J. Bernstein, Kiera Reifschneider, Ira Bennett & Jameson M. Wetmore - 2017 - Science and Engineering Ethics 23 (3):861-882.
    Helping scientists and engineers challenge received assumptions about how science, engineering, and society relate is a critical cornerstone for macroethics education. Scientific and engineering research are frequently framed as first steps of a value-free linear model that inexorably leads to societal benefit. Social studies of science and assessments of scientific and engineering research speak to the need for a more critical approach to the noble intentions underlying these assumptions. “Science Outside the Lab” is a program designed to help early-career scientists (...)
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  • Virtue Ethics, Positive Psychology, and a New Model of Science and Engineering Ethics Education.Hyemin Han - 2015 - Science and Engineering Ethics 21 (2):441-460.
    This essay develops a new conceptual framework of science and engineering ethics education based on virtue ethics and positive psychology. Virtue ethicists and positive psychologists have argued that current rule-based moral philosophy, psychology, and education cannot effectively promote students’ moral motivation for actual moral behavior and may even lead to negative outcomes, such as moral schizophrenia. They have suggested that their own theoretical framework of virtue ethics and positive psychology can contribute to the effective promotion of motivation for self-improvement by (...)
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  • Conceptual Clarification and the Task of Improving Research on Academic Ethics.Sara R. Jordan - 2013 - Journal of Academic Ethics 11 (3):243-256.
    What does the term academic ethics mean? How does this term relate to others in the academic integrity literature, such as research misconduct? Does conceptual confusion in the study of academic ethics complicate development of valid analyses of ethical behavior in an academic setting? The intended goal of many empirical projects on academic ethics is to draw causal conclusions about the factors that lead to faculty or students possessing or disregarding academic integrity. Yet, it is not clear that scholars using (...)
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  • Intrinsic Ethics Regarding Integrated Assessment Models for Climate Management.Erich W. Schienke, Seth D. Baum, Nancy Tuana, Kenneth J. Davis & Klaus Keller - 2011 - Science and Engineering Ethics 17 (3):503-523.
    In this essay we develop and argue for the adoption of a more comprehensive model of research ethics than is included within current conceptions of responsible conduct of research (RCR). We argue that our model, which we label the ethical dimensions of scientific research (EDSR), is a more comprehensive approach to encouraging ethically responsible scientific research compared to the currently typically adopted approach in RCR training. This essay focuses on developing a pedagogical approach that enables scientists to better understand and (...)
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  • The ethical significance of language in the environmental sciences: Case studies from pollution research.Kevin C. Elliott - 2009 - Ethics, Place and Environment 12 (2):157 – 173.
    This paper examines how ethically significant assumptions and values are embedded not only in environmental policies but also in the language of the environmental sciences. It shows, based on three case studies associated with contemporary pollution research, how the choice of scientific categories and terms can have at least four ethically significant effects: influencing the future course of scientific research; altering public awareness or attention to environmental phenomena; affecting the attitudes or behavior of key decision makers; and changing the burdens (...)
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  • The Moral Terrain of Science.Heather Douglas - 2014 - Erkenntnis 79 (S5):1-19.
    The moral terrain of science, the full range of ethical considerations that are part of the scientific endeavor, has not been mapped. Without such a map, we cannot examine the responsibilities of scientists to see if the institutions of science are adequately constructed. This paper attempts such a map by describing four dimensions of the terrain: (1) the bases to which scientists are responsible (scientific reasoning, the scientific community, and the broader society); (2) the nature of the responsibility (general or (...)
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  • Socio-ethical Education in Nanotechnology Engineering Programmes: A Case Study in Malaysia. [REVIEW]Balamuralithara Balakrishnan, Pek Hoon Er & Punita Visvanathan - 2013 - Science and Engineering Ethics 19 (3):1341-1355.
    The unique properties of nanotechnology have made nanotechnology education and its related subjects increasingly important not only for students but for mankind at large. This particular technology brings educators to work together to prepare and produce competent engineers and scientists for this field. One of the key challenges in nanotechnology engineering is to produce graduate students who are not only competent in technical knowledge but possess the necessary attitude and awareness toward the social and ethical issues related to nanotechnology. In (...)
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  • Ethics: An Indispensable Dimension in the University Rankings.Ali Khaki Sedigh - 2017 - Science and Engineering Ethics 23 (1):65-80.
    University ranking systems attempt to provide an ordinal gauge to make an expert evaluation of the university’s performance for a general audience. University rankings have always had their pros and cons in the higher education community. Some seriously question the usefulness, accuracy, and lack of consensus in ranking systems and therefore multidimensional ranking systems have been proposed to overcome some shortcomings of the earlier systems. Although the present ranking results may rather be rough, they are the only available sources that (...)
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  • Editors' Overview Perspectives on Teaching Social Responsibility to Students in Science and Engineering.Henk Zandvoort, Tom Børsen, Michael Deneke & Stephanie J. Bird - 2013 - Science and Engineering Ethics 19 (4):1413-1438.
    Global society is facing formidable current and future problems that threaten the prospects for justice and peace, sustainability, and the well-being of humanity both now and in the future. Many of these problems are related to science and technology and to how they function in the world. If the social responsibility of scientists and engineers implies a duty to safeguard or promote a peaceful, just and sustainable world society, then science and engineering education should empower students to fulfil this responsibility. (...)
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  • Data selection and responsible conduct: Was Millikan a fraud? [REVIEW]Richard C. Jennings - 2004 - Science and Engineering Ethics 10 (4):639-653.
    This paper addresses a problem in reporting scientific research. The problem is how to distinguish between justifiable and unjustifiable data selection. Robert Millikan is notorious for an infamous remark that he used all his data when in fact he had used a selection. On this basis he has been accused of fraud. There is a tension here — historians and his defenders see his selection as understandable and legitimate, while current statements about the Responsible Conduct of Research imply his selection (...)
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  • Images of Artificial Intelligence: a Blind Spot in AI Ethics.Alberto Romele - 2022 - Philosophy and Technology 35 (1):1-19.
    This paper argues that the AI ethics has generally neglected the issues related to the science communication of AI. In particular, the article focuses on visual communication about AI and, more specifically, on the use of certain stock images in science communication about AI — in particular, those characterized by an excessive use of blue color and recurrent subjects, such as androgyne faces, half-flesh and half-circuit brains, and variations on Michelangelo’s The Creation of Adam. In the first section, the author (...)
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  • (1 other version)New Issues for New Methods: Ethical and Editorial Challenges for an Experimental Philosophy.Andrea Polonioli - 2017 - Science and Engineering Ethics 23 (4):1009-1034.
    This paper examines a constellation of ethical and editorial issues that have arisen since philosophers started to conduct, submit and publish empirical research. These issues encompass concerns over responsible authorship, fair treatment of human subjects, ethicality of experimental procedures, availability of data, unselective reporting and publishability of research findings. This study aims to assess whether the philosophical community has as yet successfully addressed such issues. To do so, the instructions for authors, submission process and published research papers of 29 main (...)
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  • The Role of the National Science Foundation Broader Impacts Criterion in Enhancing Research Ethics Pedagogy.Seth D. Baum, Michelle Stickler, James S. Shortle, Klaus Keller, Kenneth J. Davis, Donald A. Brown, Erich W. Schienke & Nancy Tuana - 2009 - Social Epistemology 23 (3):317-336.
    The National Science Foundation's Second Merit Criterion, or Broader Impacts Criterion , was introduced in 1997 as the result of an earlier Congressional movement to enhance the accountability and responsibility as well as the effectiveness of federally funded projects. We demonstrate that a robust understanding and appreciation of NSF BIC argues for a broader conception of research ethics in the sciences than is currently offered in Responsible Conduct of Research training. This essay advocates augmenting RCR education with training regarding broader (...)
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  • Four observations about “six domains of research ethics”.Edward J. Hackett - 2002 - Science and Engineering Ethics 8 (2):211-214.
    Stimulated by Kenneth Pimple’s “Six Domains of Research Ethic”, this paper examines four aspects of the responsible conduct of research and scientists’ social responsibilities. I argue that scholars and decision-makers concerned with the responsible conduct of research should take notice of the rapidly growing body of scholarship on the social organization of science and the behavior of scientists, integrating that work with ethical principles. Of particular concern are the increasing heterogeneity and interdisciplinary of research, the ambivalences in the practice of (...)
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  • Stakeholder Views of Nanosilver Linings: Macroethics Education and Automated Text Analysis Through Participatory Governance Role Play in a Workshop Format.Joshua Dempsey, Justin Stamets & Kathleen Eggleson - 2017 - Science and Engineering Ethics 23 (3):913-939.
    The Nanosilver Linings role play case offers participants first-person experience with interpersonal interaction in the context of the wicked problems of emerging technology macroethics. In the fictional scenario, diverse societal stakeholders convene at a town hall meeting to consider whether a nanotechnology-enabled food packaging industry should be offered incentives to establish an operation in their economically struggling Midwestern city. This original creative work was built with a combination of elements, selected for their established pedagogical efficacy and as topical dimensions of (...)
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  • Responsible Conduct of Research Training and Trust Between Research Postgraduate Students and Supervisors.Sara R. Jordan & Phillip W. Gray - 2012 - Ethics and Behavior 22 (4):297 - 314.
    Does responsible conduct of research (RCR) training improve levels of trust between researchers? Using data gathered as part of a survey on the attitudes of master's and doctoral-level students toward RCR, we found that RCR training correlated with a weakened beliefs of students toward their supervisors' ethicality but a stronger belief in the ethicality of their peers. We believe that these findings point to new avenues of research on trust in the academic setting and to needs for curriculum changes in (...)
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  • Accessing the Ethics of Complex Health Care Practices: Would a “Domains of Ethics Analysis” Approach Help? [REVIEW]Jeffrey Kirby - 2010 - HEC Forum 22 (2):133-143.
    This paper explores how using a domains of ethics analysis approach might constructively contribute to an enhanced understanding (among those without specialized ethics training) of ethically-complex health care practices through the consideration of one such sample practice, i.e., deep and continuous palliative sedation (DCPS). For this purpose, I select four sample ethics domains (from a variety of possible relevant domains) for use in the consideration of this practice, i.e., autonomous choice, motives, actions and consequences. These particular domains were choosen because (...)
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  • Teaching social responsibility: The manhattan project: Commentary on “six domains of research ethics”.Penny J. Gilmer & Michael DuBois - 2002 - Science and Engineering Ethics 8 (2):206-210.
    This paper discusses the critical necessity of teaching students about the social and ethical responsibilities of scientists. Both a university scientist and a middle school science teacher reflect on the value of teaching the ethical issues that confront scientists. In the development of the atomic bomb in the US-led Manhattan Project, scientists faced the growing threat of atomic bombs by the Germans and Japanese and the ethical issues involved in successfully completing such a destructive weapon. The Manhattan Project is a (...)
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  • Engineering Values Into Genetic Engineering: A Proposed Analytic Framework for Scientific Social Responsibility.Pamela L. Sankar & Mildred K. Cho - 2015 - American Journal of Bioethics 15 (12):18-24.
    Recent experiments have been used to “edit” genomes of various plant, animal and other species, including humans, with unprecedented precision. Furthermore, editing the Cas9 endonuclease gene with a gene encoding the desired guide RNA into an organism, adjacent to an altered gene, could create a “gene drive” that could spread a trait through an entire population of organisms. These experiments represent advances along a spectrum of technological abilities that genetic engineers have been working on since the advent of recombinant DNA (...)
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  • The Need for Topically Focused Efforts to Deal with the Long-Term Social Implications of Research.Frazier Benya - 2011 - American Journal of Bioethics 11 (5):19-20.
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  • Designing a Disconnect?Gladys B. White - 2011 - American Journal of Bioethics 11 (5):20-22.
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  • Beyond fabrication and plagiarism: The little murders of everyday science: Commentary on “six domains of research ethics”.Michael J. Zigmond & Beth A. Fischer - 2002 - Science and Engineering Ethics 8 (2):229-234.
    Much of the focus of programs designed to promote responsible conduct in research has traditionally been on the high crimes of fabrication, falsification, and plagiarism. We believe that equally deserving of our attention are the misdemeanors that also can occur. Viewed as individual events, these “little murders” are far less serious. Yet, we believe that in the aggregate they can do great harm, not the least because they can set the stage for far greater crimes.
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  • Commentary on “six domains of research ethics”.Sheila Slaughter - 2002 - Science and Engineering Ethics 8 (2):219-222.
    This commentary on K.D. Pimple’s “Six Domains of Research Ethics”, focuses on the area of institutional integrity and looks at “relationships between researchers, their sponsoring institutions, funding agencies, and the government,” considering the implications of institutional demands and support for research, and, in turn, demands and support on research priorities and public education.
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  • Developing a Scientific Virtue-Based Approach to Science Ethics Training.Robert T. Pennock & Michael O’Rourke - 2017 - Science and Engineering Ethics 23 (1):243-262.
    Responsible conduct of research training typically includes only a subset of the issues that ought to be included in science ethics and sometimes makes ethics appear to be a set of externally imposed rules rather than something intrinsic to scientific practice. A new approach to science ethics training based upon Pennock’s notion of the scientific virtues may help avoid such problems. This paper motivates and describes three implementations—theory-centered, exemplar-centered, and concept-centered—that we have developed in courses and workshops to introduce students (...)
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  • An ethics of expertise based on informed consent.Kevin C. Elliott - 2006 - Science and Engineering Ethics 12 (4):637-661.
    Ethicists widely accept the notion that scientists have moral responsibilities to benefit society at large. The dissemination of scientific information to the public and its political representatives is central to many of the ways in which scientists serve society. Unfortunately, the task of providing information can often give rise to moral quandaries when scientific experts participate in politically charged debates over issues that are fraught with uncertainty. This paper develops a theoretical framework for an “ethics of expertise” (EOE) based on (...)
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  • Good Scientific Practice: Developing a Curriculum for Medical Students in Germany.Katharina Fuerholzer, Maximilian Schochow & Florian Steger - 2020 - Science and Engineering Ethics 26 (1):127-139.
    German medical schools have not yet sufficiently introduced students to the field of good scientific practice. In order to prevent scientific misconduct and to foster scientific integrity, courses on GSP must be an integral part of the curriculum of medical students. Based on a review of the literature, teaching units and materials for two courses on GSP were developed and tested in a pilot course. The pilot course was accompanied by a pre-post evaluation that assessed students’ knowledge and attitudes towards (...)
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  • Scientists’ Ethical Obligations and Social Responsibility for Nanotechnology Research.Elizabeth A. Corley, Youngjae Kim & Dietram A. Scheufele - 2016 - Science and Engineering Ethics 22 (1):111-132.
    Scientists’ sense of social responsibility is particularly relevant for emerging technologies. Since a regulatory vacuum can sometimes occur in the early stages of these technologies, individual scientists’ social responsibility might be one of the most significant checks on the risks and negative consequences of this scientific research. In this article, we analyze data from a 2011 mail survey of leading U.S. nanoscientists to explore their perceptions the regarding social and ethical responsibilities for their nanotechnology research. Our analyses show that leading (...)
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  • Scientific dishonesty—a nationwide survey of doctoral students in Norway.Bjørn Hofmann, Anne Ingeborg Myhr & Søren Holm - 2013 - BMC Medical Ethics 14 (1):3-.
    Background: The knowledge of scientific dishonesty is scarce and heterogeneous. Therefore this study investigates the experiences with and the attitudes towards various forms of scientific dishonesty among PhD-students at the medical faculties of all Norwegian universities.MethodAnonymous questionnaire distributed to all post graduate students attending introductory PhD-courses at all medical faculties in Norway in 2010/2011. Descriptive statistics. Results: 189 of 262 questionnaires were returned (72.1%). 65% of the respondents had not, during the last year, heard or read about researchers who committed (...)
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  • The Quest for Clarity in Research Integrity: A Conceptual Schema.David Shaw - 2019 - Science and Engineering Ethics 25 (4):1085-1093.
    Researchers often refer to “research integrity”, “scientific integrity”, “research misconduct”, “scientific misconduct” and “research ethics”. However, they may use some of these terms interchangeably despite conceptual distinctions. The aim of this paper is to clarify what is signified by several key terms related to research integrity, and to suggest clearer conceptual delineation between them. To accomplish this task, it provides a conceptual analysis based upon definitions and general usage of these phrases and categorization of integrity-breaching behaviours in literature and guidelines, (...)
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  • Ethical decision-making in research: Identifying all competing interests: Commentary on “six domains of research ethics”.Michael Kalichman - 2002 - Science and Engineering Ethics 8 (2):215-218.
    Ethical dilemmas are the result of conflicts between potential benefits or harms for two or more competing interests. Therefore, ethical decision-making implies a responsibility to identify those interests, harms, and benefits. For this purpose, researchers have responsibilities to the research, the subjects of research, other researchers, the institution, society, the environment, and self.
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  • Making sense of scientists’ responsibilities at the interface of science and society: Commentary on “six domains of research ethics”.Vivian Weil - 2002 - Science and Engineering Ethics 8 (2):223-227.
    As Kenneth Pimple points out, scientists’ responsibilities to the larger society have received less attention than ethical issues internal to the practice of science. Yet scientists and specialists who study science have begun to provide analyses of the foundations and scope of scientsts’ responsibilities to society. An account of contributions from Kristen Shrader-Frechette, Melanie Leitner, Ullica Segerstråle, John Ahearne, Helen Longino, and Carl Cranor offers work on scientists’ social responsibilities upon which to build.
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  • Cross-National Variations in Scientific Ethics: Exploring Ethical Perspectives Among Scientists in China, the US, and the UK.Elaine Howard di DiEcklund - 2024 - Science and Engineering Ethics 30 (5):1-20.
    This research explores the perspectives of academic physicists from three national contexts concerning their roles and responsibilities within the realm of science. Using a dataset comprised of 211 interviews with scientists working in China, the United States, and the United Kingdom, the study seeks to explain whether and in what manner physicists conceptualize scientific ethics within a global or national framework. The empirical findings bring to light disparities across nations in the physicists’ perceptions of what constitutes responsible mentorship and engagement (...)
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  • Development and Validation of the Survey of Organizational Research Climate (SORC).Brian C. Martinson, Carol R. Thrush & A. Lauren Crain - 2013 - Science and Engineering Ethics 19 (3):813-834.
    Development and targeting efforts by academic organizations to effectively promote research integrity can be enhanced if they are able to collect reliable data to benchmark baseline conditions, to assess areas needing improvement, and to subsequently assess the impact of specific initiatives. To date, no standardized and validated tool has existed to serve this need. A web- and mail-based survey was administered in the second half of 2009 to 2,837 randomly selected biomedical and social science faculty and postdoctoral fellows at 40 (...)
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  • The Role of Culture and Acculturation in Researchers’ Perceptions of Rules in Science.Alison L. Antes, Tammy English, Kari A. Baldwin & James M. DuBois - 2018 - Science and Engineering Ethics 24 (2):361-391.
    Successfully navigating the norms of a society is a complex task that involves recognizing diverse kinds of rules as well as the relative weight attached to them. In the United States, different kinds of rules—federal statutes and regulations, scientific norms, and professional ideals—guide the work of researchers. Penalties for violating these different kinds of rules and norms can range from the displeasure of peers to criminal sanctions. We proposed that it would be more difficult for researchers working in the U.S. (...)
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  • Predicting self-reported research misconduct and questionable research practices in university students using an augmented Theory of Planned Behavior.Camilla J. Rajah-Kanagasabai & Lynne D. Roberts - 2015 - Frontiers in Psychology 6.
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