Results for 'Kevin C. Elliott'

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  1.  5
    On “Crying‐It‐out” and Co‐Sleeping.Kevin C. Elliott & Janet L. Elliott - 2010-09-24 - In Fritz Allhoff & Sheila Lintott (eds.), Motherhood ‐ Philosophy for Everyone. Wiley‐Blackwell. pp. 141–153.
    This chapter contains sections titled: What's A Parent to Do? Crying‐It‐Out Co‐Sleeping Conclusion Notes.
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  2. Nonepistemic Values and the Multiple Goals of Science.Kevin C. Elliott & Daniel J. McKaughan - 2014 - Philosophy of Science 81 (1):1-21.
    Recent efforts to argue that nonepistemic values have a legitimate role to play in assessing scientific models, theories, and hypotheses typically either reject the distinction between epistemic and nonepistemic values or incorporate nonepistemic values only as a secondary consideration for resolving epistemic uncertainty. Given that scientific representations can legitimately be evaluated not only based on their fit with the world but also with respect to their fit with the needs of their users, we show in two case studies that nonepistemic (...)
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  3. A Taxonomy of Transparency in Science.Kevin C. Elliott - 2022 - Canadian Journal of Philosophy 52 (3):342-355.
    Both scientists and philosophers of science have recently emphasized the importance of promoting transparency in science. For scientists, transparency is a way to promote reproducibility, progress, and trust in research. For philosophers of science, transparency can help address the value-ladenness of scientific research in a responsible way. Nevertheless, the concept of transparency is a complex one. Scientists can be transparent about many different things, for many different reasons, on behalf of many different stakeholders. This paper proposes a taxonomy that clarifies (...)
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  4. Values in Science.Kevin C. Elliott - 2022 - Cambridge University Press.
    This Element introduces the philosophical literature on values in science by examining four questions: How do values influence science? Should we actively incorporate values in science? How can we manage values in science responsibly? What are some next steps for those who want to help promote responsible roles for values in science? It explores arguments for and against the “value-free ideal” for science and concludes that it should be rejected. Nonetheless, this does not mean that value influences are always acceptable. (...)
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  5. Douglas on values: From indirect roles to multiple goals.Kevin C. Elliott - 2013 - Studies in History and Philosophy of Science Part A 44 (3):375-383.
    In recent papers and a book, Heather Douglas has expanded on the well-known argument from inductive risk, thereby launching an influential contemporary critique of the value-free ideal for science. This paper distills Douglas’s critique into four major claims. The first three claims provide a significant challenge to the value-free ideal for science. However, the fourth claim, which delineates her positive proposal to regulate values in science by distinguishing direct and indirect roles for values, is ambiguous between two interpretations, and both (...)
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  6. Direct and Indirect Roles for Values in Science.Kevin C. Elliott - 2011 - Philosophy of Science 78 (2):303-324.
    Although many philosophers have employed the distinction between “direct” and “indirect” roles for values in science, I argue that it merits further clarification. The distinction can be formulated in several ways: as a logical point, as a distinction between epistemic attitudes, or as a clarification of different consequences associated with accepting scientific claims. Moreover, it can serve either as part of a normative ideal or as a tool for policing how values influence science. While various formulations of the distinction may (...)
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  7. How values in scientific discovery and pursuit Alter theory appraisal.Kevin C. Elliott & Daniel J. McKaughan - 2009 - Philosophy of Science 76 (5):598-611.
    Philosophers of science readily acknowledge that nonepistemic values influence the discovery and pursuit of scientific theories, but many tend to regard these influences as epistemically uninteresting. The present paper challenges this position by identifying three avenues through which nonepistemic values associated with discovery and pursuit in contemporary pollution research influence theory appraisal: (1) by guiding the choice of questions and research projects, (2) by altering experimental design, and (3) by affecting the creation and further investigation of theories or hypotheses. This (...)
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  8. Cognitive Attitudes and Values in Science.Kevin C. Elliott & David Willmes - unknown - Philosophy of Science (5):807-817.
    We argue that the analysis of cognitive attitudes should play a central role in developing more sophisticated accounts of the proper roles for values in science. First, we show that the major recent efforts to delineate appropriate roles for values in science would be strengthened by making clearer distinctions among cognitive attitudes. Next, we turn to a specific example and argue that a more careful account of the distinction between the attitudes of belief and acceptance can contribute to a better (...)
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  9. Epistemic and methodological iteration in scientific research.Kevin C. Elliott - 2012 - Studies in History and Philosophy of Science Part A 43 (2):376-382.
    A number of scholars have recently drawn attention to the importance of iteration in scientific research. This paper builds on these previous discussions by drawing a distinction between epistemic and methodological forms of iteration and by clarifying the relationships between them. As defined here, epistemic iteration involves progressive alterations to scientific knowledge claims, whereas methodological iteration refers to an interplay between different modes of research practice. While distinct, these two forms of iteration are related in important ways. Contemporary research on (...)
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  10. A Tapestry of Values: Response to My Critics.Kevin C. Elliott - 2018 - Philosophy, Theory, and Practice in Biology 10 (11).
    This response addresses the excellent responses to my book provided by Heather Douglas, Janet Kourany, and Matt Brown. First, I provide some comments and clarifications concerning a few of the highlights from their essays. Second, in response to the worries of my critics, I provide more detail than I was able to provide in my book regarding my three conditions for incorporating values in science. Third, I identify some of the most promising avenues for further research that flow out of (...)
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  11.  26
    Selective Ignorance and Agricultural Research.Kevin C. Elliott - 2012 - Science, Technology, and Human Values 38 (3):328-350.
    Scholars working in science and technology studies have recently argued that we could learn much about the nature of scientific knowledge by paying closer attention to scientific ignorance. Building on the work of Robert Proctor, this article shows how ignorance can stem from a wide range of selective research choices that incline researchers toward partial, limited understandings of complex phenomena. A recent report produced by the International Assessment of Agricultural Knowledge, Science, and Technology for Development serves as the article’s central (...)
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  12.  79
    The promise and perils of industry‐funded science.Bennett Holman & Kevin C. Elliott - 2018 - Philosophy Compass 13 (11).
    Private companies provide by far the most funding for scientific research and development. Nevertheless, relatively little attention has been paid to the dynamics of industry‐funded research by philosophers of science. This paper addresses this gap by providing an overview of the major strengths and weaknesses of industry research funding, together with the existing recommendations for addressing the weaknesses. It is designed to provide a starting point for future philosophical work that explores the features of industry‐funded research, avenues for addressing concerns, (...)
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  13.  61
    Financial Conflicts of Interest and Criteria for Research Credibility.Kevin C. Elliott - 2014 - Erkenntnis 79 (S5):917-937.
    The potential for financial conflicts of interest (COIs) to damage the credibility of scientific research has become a significant social concern, especially in the wake of high-profile incidents involving the pharmaceutical, tobacco, fossil-fuel, and chemical industries. Scientists and policy makers have debated whether the presence of financial COIs should count as a reason for treating research with suspicion or whether research should instead be evaluated solely based on its scientific quality. This paper examines a recent proposal to develop criteria for (...)
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  14.  49
    Standardized Study Designs, Value Judgments, and Financial Conflicts of Interest in Research.Kevin C. Elliott - 2016 - Perspectives on Science 24 (5):529-551.
    . The potential for financial conflicts of interest to influence scientific research has become a significant concern. Some commentators have suggested that the development of standardized study protocols could help to alleviate these problems. This paper identifies two problems with this solution: scientific research incorporates numerous methodological judgments that cannot be constrained by standardized protocols; and standardization can hide significant value judgments. These problems arise because of four weaknesses of standardized guidelines: incompleteness, limited applicability, selective ignorance, and ossification. Therefore, the (...)
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  15. 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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  16.  14
    A Framework for Analyzing Broadly Engaged Philosophy of Science.Kathryn S. Plaisance & Kevin C. Elliott - 2021 - Philosophy of Science 88 (4):594-615.
    Philosophers of science are increasingly interested in engaging with scientific communities, policy makers, and members of the public; however, the nature of this engagement has not been systematically examined. Instead of delineating a specific kind of engaged philosophy of science, as previous accounts have done, this article draws on literature from outside the discipline to develop a framework for analyzing different forms of broadly engaged philosophy of science according to two key dimensions: social interaction and epistemic integration. Clarifying the many (...)
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  17.  37
    The value-ladenness of transparency in science: Lessons from Lyme disease.Kevin C. Elliott - 2021 - Studies in History and Philosophy of Science Part A 88 (C):1-9.
  18.  41
    Précis of A Tapestry of Values: An Introduction to Values in Science.Kevin C. Elliott - 2018 - Philosophy, Theory, and Practice in Biology 10.
  19. Introduction: Cognitive attitudes and values in science.Daniel J. McKaughan & Kevin C. Elliott - 2015 - Studies in History and Philosophy of Science Part A 53:57-61.
  20.  39
    Non-epistemic values and scientific assessment: an adequacy-for-purpose view.Greg Lusk & Kevin C. Elliott - 2022 - European Journal for Philosophy of Science 12 (2):1-22.
    The literature on values in science struggles with questions about how to describe and manage the role of values in scientific research. We argue that progress can be made by shifting this literature’s current emphasis. Rather than arguing about how non-epistemic values can or should figure into scientific assessment, we suggest analyzing how scientific assessment can accommodate non-epistemic values. For scientific assessment to do so, it arguably needs to incorporate goals that have been traditionally characterized as non-epistemic. Building on this (...)
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  21.  83
    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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  22.  28
    Addressing Industry-Funded Research with Criteria for Objectivity.Kevin C. Elliott - 2018 - Philosophy of Science 85 (5):857-868.
    In recent years, industry-funded research has come under fire because of concerns that it can be biased in favor of the funders. This article suggests that efforts by philosophers of science to analyze the concept of objectivity can provide important lessons for those seeking to evaluate and improve industry-funded research. It identifies three particularly relevant criteria for objectivity: transparency, reproducibility, and effective criticism. On closer examination, the criteria of transparency and reproducibility turn out to have significant limitations in this context, (...)
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  23.  4
    Navigating dissent by managing value judgments: the case of Lyme disease.Kevin C. Elliott - 2023 - Synthese 202 (5):1-21.
    Recent philosophical literature has highlighted the complexities of handling dissent in science. On one hand, scientific dissent can be very harmful, as when “merchants of doubt” strategically appeal to dissent in order to undermine important environmental and public-health initiatives. On the other hand, scientific dissent can also be beneficial when it helps to promote scientific objectivity, progress, and public engagement. Some authors have responded to this tension by suggesting criteria for distinguishing normatively appropriate and inappropriate dissent, while other authors have (...)
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  24.  30
    Science, Values, and the New Demarcation Problem.David B. Resnik & Kevin C. Elliott - 2023 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 54 (2):259-286.
    In recent years, many philosophers of science have rejected the “value-free ideal” for science, arguing that non-epistemic values have a legitimate role to play in scientific inquiry. However, this philosophical position raises the question of how to distinguish between legitimate and illegitimate influences of values in science. In this paper, we argue that those seeking to address this “new” demarcation problem can benefit by drawing lessons from the “old” demarcation problem, in which philosophers tried to find a way of distinguishing (...)
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  25.  63
    Anthropocentric Indirect Arguments for Environmental Protection.Kevin C. Elliott - 2014 - Ethics, Policy and Environment 17 (3):243-260.
    Environmental ethicists have devoted considerable attention to discussing whether anthropocentric or nonanthropocentric arguments provide more appropriate means for defending environmental protection. This paper argues that philosophers, scientists, and policy makers should pay more attention to a particular type of anthropocentric argument. These anthropocentric indirect arguments defend actions or policies that benefit the environment, but they justify the policies based on beneficial effects on humans that are not caused by their environmental benefits. AIAs appear to have numerous appealing characteristics, and their (...)
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  26.  14
    The Kaleidoscope of Citizen ScienceCommentary.Kevin C. Elliott - 2019 - Narrative Inquiry in Bioethics 9 (1):47-52.
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  27.  75
    Value-entanglement and the integrity of scientific research.David B. Resnik & Kevin C. Elliott - 2019 - Studies in History and Philosophy of Science Part A 75:1-11.
  28.  22
    Roles for Socially Engaged Philosophy of Science in Environmental Policy.Kevin C. Elliott - unknown - In David Boonin, Katrina L. Sifferd, Tyler K. Fagan, Valerie Gray Hardcastle, Michael Huemer, Daniel Wodak, Derk Pereboom, Stephen J. Morse, Sarah Tyson, Mark Zelcer, Garrett VanPelt, Devin Casey, Philip E. Devine, David K. Chan, Maarten Boudry, Christopher Freiman, Hrishikesh Joshi, Shelley Wilcox, Jason Brennan, Eric Wiland, Ryan Muldoon, Mark Alfano, Philip Robichaud, Kevin Timpe, David Livingstone Smith, Francis J. Beckwith, Dan Hooley, Russell Blackford, John Corvino, Corey McCall, Dan Demetriou, Ajume Wingo, Michael Shermer, Ole Martin Moen, Aksel Braanen Sterri, Teresa Blankmeyer Burke, Jeppe von Platz, John Thrasher, Mary Hawkesworth, William MacAskill, Daniel Halliday, Janine O’Flynn, Yoaav Isaacs, Jason Iuliano, Claire Pickard, Arvin M. Gouw, Tina Rulli, Justin Caouette, Allen Habib, Brian D. Earp, Andrew Vierra, Subrena E. Smith, Danielle M. Wenner, Lisa Diependaele, Sigrid Sterckx, G. Owen Schaefer, Markus K. Labude, Harisan Unais Nasir, Udo Schuklenk, Benjamin Zolf & Woolwine (eds.), The Palgrave Handbook of Philosophy and Public Policy. Springer Verlag. pp. 767-778.
    In recent years, philosophers of science have taken renewed interest in pursuing scholarship that is “socially engaged.” As a result, this scholarship has become increasingly relevant to public policy. In order to illustrate the ways in which the philosophy of science can inform public policy, this chapter focuses specifically on environmental research and policy. It shows how philosophy can assist with environmental policy making in three ways: clarifying the roles of values in policy-relevant science; addressing scientific dissent, especially in response (...)
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  29.  42
    Hydrogen Fuel-Cell Vehicles, Energy Policy, and the Ethics of Expertise.Kevin C. Elliott - 2010 - Journal of Applied Philosophy 27 (4):376-393.
    Relatively few thinkers have attempted to develop a systematic ‘ethics of expertise’ (EOE) that can guide scientists and other technical experts in providing information to the public. This paper argues that the prima facie duty to disseminate information in a manner that does not damage the self-determination of decision makers could fruitfully serve as one of the core principles of an EOE. Moreover, this duty can be fleshed out in promising ways by drawing on the concept of informed consent, which (...)
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  30.  30
    Science as Experience: A Deweyan Model of Science Communication.Megan K. Halpern & Kevin C. Elliott - 2022 - Perspectives on Science 30 (4):621-656.
    The field of science communication is plagued by challenges. Communicators face the difficulty of responding to unjustified public skepticism over issues like climate change and COVID-19 while also acknowledging the fallibility and limitations of scientific knowledge. Our goal in this paper is to suggest a new model for science communication that can help foster more productive, respectful relationships among all those involved in science communication. Inspired by the pragmatist philosophy of John Dewey, we develop an experience model, according to which (...)
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  31.  40
    Distinguishing Risk and Uncertainty in Risk Assessments of Emerging Technologies.Kevin C. Elliott & Michael Dickson - unknown
    Economist Frank Knight drew a distinction between decisions under risk and decisions under uncertainty. Despite the significance of this distinction for decision theory, we argue that there has been inadequate attention to the difficulties involved in classifying decision situations into these categories. Using the risk assessment of carbon nanotubes as an example, we show that it is often unclear whether there is adequate information to classify a decision situation as being under risk as opposed to uncertainty. We conclude by providing (...)
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  32.  18
    Teaching and learning guide for: The promise and perils of industry‐funded research.Bennett Holman & Kevin C. Elliott - 2018 - Philosophy Compass 13 (11):e12549.
    Private companies provide by far the most funding for scientific research and development. Nevertheless, relatively little attention has been paid to the dynamics of industry‐funded research by philosophers of science. This paper addresses this gap by providing an overview of the major strengths and weaknesses of industry research funding, together with the existing recommendations for addressing the weaknesses. It is designed to provide a starting point for future philosophical work that explores the features of industry‐funded research, avenues for addressing concerns, (...)
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  33.  29
    Developmental Systems Theory and Human Embryos.Kevin C. Elliott - 2005 - The National Catholic Bioethics Quarterly 5 (2):249-259.
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  34.  40
    Addressing the Reproducibility Crisis: A Response to Hudson.Heather Douglas & Kevin C. Elliott - 2022 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 53 (2):201-209.
    In this response to Robert Hudson’s article, “Should We Strive to Make Science Bias-Free? A Philosophical Assessment of the Reproducibility Crisis,” we identify three ways in which he misrepresents our work: he conflates value-ladenness with bias; he describes our view as one in which values are the same as evidential factors; and he creates a false dichotomy between two ways that values could be considered in science for policy. We share Hudson’s concerns about promoting scientific reproducibility and reducing bias in (...)
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  35.  42
    A Novel Account of Scientific Anomaly: Help for the Dispute over Low‐Dose Biochemical Effects.Kevin C. Elliott - 2006 - Philosophy of Science 73 (5):790-802.
    The biological effects of low doses of toxic and carcinogenic chemicals are currently a matter of significant scientific controversy. This paper argues that philosophers of science can contribute to alleviating this controversy by examining it with the aid of a novel account of scientific anomaly. Specifically, analysis of contemporary research on chemical hormesis (i.e., alleged beneficial biological effects produced by low doses of substances that are harmful at higher doses) suggests that scientists may initially describe anomalous phenomena in terms of (...)
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  36.  60
    Environmental Aesthetics and Public Environmental Philosophy.Katherine W. Robinson & Kevin C. Elliott - 2011 - Ethics, Policy and Environment 14 (2):175-191.
    We argue that environmental aesthetics, and specifically the concept of aesthetic integrity, should play a central role in a public environmental philosophy designed to communicate about environmental problems in an effective manner. After developing the concept of the “aesthetic integrity” of the environment, we appeal to empirical research to show that it contributes significantly to people’s sense of place, which is, in turn, central to their well-being and motivational state. As a result, appealing to aesthetic integrity in policy contexts is (...)
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  37.  29
    Bisphenol A and Risk Management Ethics.David B. Resnik & Kevin C. Elliott - 2014 - Bioethics 29 (3):182-189.
    It is widely recognized that endocrine disrupting compounds, such as Bisphenol A, pose challenges for traditional paradigms in toxicology, insofar as these substances appear to have a wider range of low-dose effects than previously recognized. These compounds also pose challenges for ethics and policymaking. When a chemical does not have significant low-dose effects, regulators can allow it to be introduced into commerce or the environment, provided that procedures and rules are in place to keep exposures below an acceptable level. This (...)
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  38.  22
    Open Science for Non-Specialists: Making Open Science Meaningful Beyond the Scientific Community.Kevin C. Elliott - 2022 - Philosophy of Science 89 (5):1013-1023.
    A major goal of the open science movement is to make more scientific information available to non-specialists, but it has been difficult to meaningfully achieve that goal. In response, this paper argues for two steps: (1) focusing on the scientific content that is most relevant to non-specialist audiences; and (2) packaging that content in meaningful ways for those audiences. The paper uses a case study involving a major environmental health issue (namely, PFAS pollution) to illustrate how the proponents of open (...)
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  39.  19
    Environmental Health Ethics.Kevin C. Elliott - 2014 - Ethics, Policy and Environment 17 (2):238-239.
    While the fields of biomedical ethics and environmental ethics have received a great deal of philosophical attention in recent years, the intersection of these fields—environmental health ethics—ha...
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  40.  12
    Legally Poisoned: How the Law Puts Us at Risk from Toxicants.Kevin C. Elliott - 2013 - Ethics, Policy and Environment 16 (2):226 - 229.
    Carl Cranor, Cambridge, MA, Harvard University Press, 2011, 328 pp, cloth $35.00, paper $19.95, ISBN 0-674-04970-5 Carl Cranor's new book, Legally poisoned, provides an important argument for a new...
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  41.  2
    Preface.Kevin C. Elliott - 2019 - Philosophy of Science 86 (5):819-820.
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  42.  38
    Structured Development and Promotion of a Research Field: Hormesis in Biology, Toxicology, and Environmental Regulatory Science.Paul Mushak & Kevin C. Elliott - 2015 - Kennedy Institute of Ethics Journal 25 (4):335-367.
    The ability of powerful and well-funded interest groups to steer scientific research in directions that advance their goals has become a significant social concern. This ability is increasingly being recognized in the peer-reviewed literature and in the findings of deliberative expert consensus committees. For example, there is increasing recognition that efforts to address climate change have been stymied in part by a powerful network of conservative foundations, which fund think tanks and other organizations that constitute a “climate change counter movement”. (...)
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  43.  19
    Using Drones to Study Human Beings: Ethical and Regulatory Issues.David B. Resnik & Kevin C. Elliott - 2019 - Science and Engineering Ethics 25 (3):707-718.
    Researchers have used drones to track wildlife populations, monitor forest fires, map glaciers, and measure air pollution but have only begun to consider how to use these unmanned aerial vehicles to study human beings. The potential use of drones to study public gatherings or other human activities raises novel issues of privacy, confidentiality, and consent, which this article explores in depth. It argues that drone research could fall into several different categories: non-human subjects research, exempt HSR, or non-exempt HSR. In (...)
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  44. Science, Expertise, and Democracy.Justin Weinberg & Kevin C. Elliott - 2012 - Kennedy Institute of Ethics Journal 22 (2):83-90.
    The combination of government’s significant involvement in science, science’s significant effects on the public, and public ignorance raise important challenges for reconciling scientific expertise with democratic governance. Nevertheless, there have recently been a variety of encouraging efforts to make scientific activity more responsive to social values and to develop citizens’ capacity to engage in more effective democratic governance of science. This essay introduces a special issue of the Kennedy Institute of Ethics Journal on “Science, Expertise, and Democracy,” consisting of five (...)
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  45.  63
    Fritz Allhoff, Patrick Lin, James Moor, and John Weckert , Nanoethics: The Ethical and Social Implications of Nanotechnology. Hoboken, NJ: Wiley‐Interscience , 385 pp., $42.50. [REVIEW]Kevin C. Elliott - 2008 - Philosophy of Science 75 (3):405-409.
  46.  10
    Nature in Common? [REVIEW]Kevin C. Elliott - 2010 - Environmental Ethics 32 (1):79-84.
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  47.  77
    From genetic to genomic regulation: iterativity in microRNA research.Maureen A. O’Malley, Kevin C. Elliott & Richard M. Burian - 2010 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 41 (4):407-417.
    The discovery and ongoing investigation of microRNAs suggest important conceptual and methodological lessons for philosophers and historians of biology. This paper provides an account of miRNA research and the shift from viewing these tiny regulatory entities as minor curiosities to seeing them as major players in the post-transcriptional regulation of genes. Conceptually, the study of miRNAs is part of a broader change in understandings of genetic regulation, in which simple switch-like mechanisms were reinterpreted as aspects of complex cellular and genome-wide (...)
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  48.  23
    The ethics of infection control: philosophical frameworks.Charles S. Bryan, Theresa J. Call & Kevin C. Elliott - 2007 - Infection Control and Hospital Epidemiology 28 (9):1077-1084.
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  49.  35
    Scientism: Philosophy and the Infatuation with Science. [REVIEW]Roger Harris, Kevin Magill, Vincent Geoghegan, Anthony Elliott, Chris Arthur, Michael Gardiner, David Macey, Nöel Parker, Alex Klaushofer, Gary Kitchen, Tom Furniss, Christopher J. Arthur, Sadie Plant, Fred Inglis, Matthew Rampley, Alison Ainley, Daryl Glaser, Jean-Jacques Lecercle, Sean Sayers, Keith Ansell-Pearson & Lucy Frith - 1992 - Radical Philosophy 61 (61).
  50. Higher-Order Metaphysics in Frege and Russell.Kevin C. Klement - 2024 - In Peter Fritz & Nicholas K. Jones (eds.), Higher-Order Metaphysics. Oxford University Press. pp. 355-377.
    This chapter explores the metaphysical views about higher-order logic held by two individuals responsible for introducing it to philosophy: Gottlob Frege (1848–1925) and Bertrand Russell (1872–1970). Frege understood a function at first as the remainder of the content of a proposition when one component was taken out or seen as replaceable by others, and later as a mapping between objects. His logic employed second-order quantifiers ranging over such functions, and he saw a deep division in nature between objects and functions. (...)
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