Results for 'scientific standards'

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  1. Scientific standards should be set in the courtroom.Sanne H. Knudsen - 2018 - In Eamon Doyle (ed.), The role of science in public policy. New York: Greenhaven Publishing.
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  2. Scientific standards and colonial education in British India and French Senegal.Michael Adas - 1991 - In Teresa A. Meade & Mark Walker (eds.), Science, medicine, and cultural imperialism. New York: St. Martin's Press. pp. 4--35.
     
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  3.  91
    Scientific Expertise: Epistemic and Social Standards—The Example of the German Radiation Protection Commission.Martin Carrier & Wolfgang Krohn - 2018 - Topoi 37 (1):55-66.
    In their self-understanding, expert committees solely draw on scientific knowledge to provide policy advice. However, we try to show, first, on the basis of material related to the German Radiation Protection Commission that much of their work consists in active model building. Second, expert advice is judged by criteria that diverge from standards used for judging epistemic research. In particular, the commitment to generality or universality is replaced by the criterion of specificity, and the value of precision gives (...)
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  4. Conflicts among Multinational Ethical and Scientific Standards for Clinical Trials of Therapeutic Interventions.Jacob M. Kolman, Nelda P. Wray, Carol M. Ashton, Danielle M. Wenner, Anna F. Jarman & Baruch A. Brody - 2012 - Journal of Law, Medicine and Ethics 40 (1):99-121.
    There has been a growing concern over establishing norms that ensure the ethically acceptable and scientifically sound conduct of clinical trials. Among the leading norms internationally are the World Medical Association's Declaration of Helsinki, guidelines by the Council for International Organizations of Medical Sciences, the International Conference on Harmonization's standards for industry, and the CONSORT group's reporting norms, in addition to the influential U.S. Federal Common Rule, Food and Drug Administration's body of regulations, and information sheets by the Department (...)
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  5.  26
    Do Surgical Trials Meet the Scientific Standards for Clinical Trials.Danielle M. Wenner, Baruch A. Brody, Anna Jarman, Jacob M. Kolman, Nelda Wray & Carol Ashton - 2012 - Journal of the American College of Surgeons 215 (5):722-730.
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  6.  76
    Does the anthropic principle live up to scientific standards?Peter P. Kirschenmann - 1992 - Annals of the Japan Association for Philosophy of Science 8 (2):21-48.
  7.  20
    Standard teaching of philosophy in italy today-some scientific and cultural considerations.Paolo Parrini - 1995 - Rivista di Storia Della Filosofia 50 (3):695-711.
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  8. Practical Realism: Against Standard Scientific Realism and Anti-Realism.Rein Vihalemm - 2012 - Studia Philosophica Estonica 5 (2):7-22.
    In this paper, the elaboration of the concept of practical realist philosophy of science which began in the author's previous papers is continued. It is argued that practical realism is opposed to standard scientific realism, on the one hand, and antirealism, on the other. Standard scientific realism is challengeable due to its abstract character, as being isolated from practice. It is based on a metaphysical-ontological presupposition which raises the problem of the God's Eye point of view (as it (...)
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  9.  40
    Standards of Scientific Conduct: Are There Any?Michael Kalichman, Monica Sweet & Dena Plemmons - 2014 - Science and Engineering Ethics 20 (4):885-896.
    The practice of research is full of ethical challenges, many of which might be addressed through the teaching of responsible conduct of research . Although such training is increasingly required, there is no clear consensus about either the goals or content of an RCR curriculum. The present study was designed to assess community standards in three domains of research practice: authorship, collaboration, and data management. A survey, developed through advice from content matter experts, focus groups, and interviews, was distributed (...)
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  10. Standards and the distribution of cognitive labour: A model of the dynamics of scientific activity.Langhe Rogieder & Greiff Matthias - 2010 - Logic Journal of the IGPL 18 (2):278-294.
    We present a model of the distribution of labour in science. Such models tend to rely on the mechanism of the invisible hand . Our analysis starts from the necessity of standards in distributed processes and the possibility of multiple standards in science. Invisible hand models turn out to have only limited scope because they are restricted to describing the atypical single-standard case. Our model is a generalisation of these models to J standards; single-standard models such as (...)
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  11. From Standard Scientific Realism and Structural Realism to Best Current Theory Realism.Gerald D. Doppelt - 2011 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 42 (2):295-316.
    I defend a realist commitment to the truth of our most empirically successful current scientific theories—on the ground that it provides the best explanation of their success and the success of their falsified predecessors. I argue that this Best Current Theory Realism (BCTR) is superior to preservative realism (PR) and the structural realism (SR). I show that PR and SR rest on the implausible assumption that the success of outdated theories requires the realist to hold that these theories possessed (...)
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  12.  41
    Standards of Scientific Conduct: Disciplinary Differences.Michael Kalichman, Monica Sweet & Dena Plemmons - 2015 - Science and Engineering Ethics 21 (5):1085-1093.
    Teaching of responsible conduct of research is largely predicated on the assumption that there are accepted standards of conduct that can be taught. However there is little evidence of consensus in the scientific community about such standards, at least for the practices of authorship, collaboration, and data management. To assess whether such differences in standards are based on disciplinary differences, a survey, described previously, addressing standards, practices, and perceptions about teaching and learning was distributed in (...)
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  13. Scientific method.Brian Hepburn & Hanne Andersen - 2015 - Stanford Encyclopedia of Philosophy.
    1. Overview and organizing themes 2. Historical Review: Aristotle to Mill 3. Logic of method and critical responses 3.1 Logical constructionism and Operationalism 3.2. H-D as a logic of confirmation 3.3. Popper and falsificationism 3.4 Meta-methodology and the end of method 4. Statistical methods for hypothesis testing 5. Method in Practice 5.1 Creative and exploratory practices 5.2 Computer methods and the ‘third way’ of doing science 6. Discourse on scientific method 6.1 “The scientific method” in science education and (...)
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  14.  25
    Over Spilt Milk: British Scientific Humanitarianism and the Quest for International Standards.Alma Igra - 2024 - Isis 115 (2):335-353.
    Humanitarian aid in Central Europe after World War I repositioned both food and food research on a global scale. This essay follows the British scientific delegation that worked in Vienna as part of the food aid program and shows how the city became a “lab” for international nutrition. Assuming a political role, British nutrition experts were motivated to collaborate with local experts. To examine what internationalism looked like in the lab, the essay reconstructs the forgotten Viennese NEM system, a (...)
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  15. Philosophy of Chemistry against Standard Scientific Realism and Anti-Realism.Rein Vihalemm - 2015 - Philosophia Scientiae 19:99-113.
    Dans cet article, on suggère qu’un rôle central peut être assigné à la philosophie de la chimie dans la philosophie des sciences post-kuhnienne en général, et dans l’analyse du débat opposant le réalisme scientifique à l’anti-réalisme dans la philosophie des sciences standard. La philosophie des sciences construit la science comme une pratique plus que comme un réseau d’assertions. On soutient que le réalisme pratique permet d’éviter les défauts à la fois du réalisme scientifique standard et de l’anti-réalisme. On analyse un (...)
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  16. Structural realism versus standard scientific realism: the case of phlogiston and dephlogisticated air.James Ladyman - 2011 - Synthese 180 (2):87 - 101.
    The aim of this paper is to revisit the phlogiston theory to see what can be learned from it about the relationship between scientific realism, approximate truth and successful reference. It is argued that phlogiston theory did to some extent correctly describe the causal or nomological structure of the world, and that some of its central terms can be regarded as referring. However, it is concluded that the issue of whether or not theoretical terms successfully refer is not the (...)
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  17.  64
    Scientific and legal standards of statistical evidence in toxic tort and discrimination suits.Carl Cranor & Kurt Nutting - 1990 - Law and Philosophy 9 (2):115 - 156.
    Many legal disputes turn on scientific, especially statistical, evidence. Traditionally scientists have accepted only that statistical evidence which satisfies a 95 percent (or 99 percent) rule — that is, only evidence which has less than five percent (or one percent) probability of resulting from chance.The rationale for this rule is the reluctance of scientists to accept anything less than the best-supported new knowledge. The rule reflects the internal needs of scientific practice. However, when uncritically adopted as a rule (...)
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  18.  92
    Calibration: A Conceptual Framework Applied to Scientific Practices Which Investigate Natural Phenomena by Means of Standardized Instruments.Léna Soler, Frédéric Wieber, Catherine Allamel-Raffin, Jean-Luc Gangloff, Catherine Dufour & Emiliano Trizio - 2013 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 44 (2):263-317.
    This paper deals with calibration in scientific practices which investigate relatively well-understood natural phenomena by means of already standardized instrumental devices. Calibration is a crucial topic, since it conditions the reliability of instrumental procedures in science. Yet although important, calibration is a relatively neglected topic. We think more attention should be devoted to calibration. The paper attempts to take a step in this direction. The aims are two-fold: (1) to characterize calibration in a relatively simple kind of scientific (...)
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  19. Scientific Realism Within Perspectivism and Perspectivism Within Scientific Realism.Evandro Agazzi - 2016 - Axiomathes 26 (4):349-365.
    Perspectivism is often understood as a conception according to which subjective conditions inevitably affect our knowledge and, therefore, we are never confronted with reality and facts but only with interpretations. Hence, subjectivism and anti-realism are usually associated with perspectivism. The thesis of this paper is that, especially in the case of the sciences, perspectivism can be better understood as an appreciation of the cognitive attitude that consists in considering reality only from a certain ‘point of view’, in a way that (...)
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  20.  16
    The Road to Psychological Safety: Legal, Scientific, and Social Foundations for a Canadian National Standard on Psychological Safety in the Workplace.Kathy GermAnn, Ian Arnold & Martin Shain - 2012 - Bulletin of Science, Technology and Society 32 (2):142-162.
    In Part 1 of this article, the legal and scientific origins of the concept of psychological safety are examined as background to, and support for, the new Canadian National Standard on Psychological Health and Safety in the Workplace (CSA Z1003/bnq 9700). It is shown that five factors influencing psychological safety can be identified as being common to both legal and scientific perspectives: job demands and requirements of effort, job control or influence, reward, fairness, and support. This convergence of (...)
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  21.  90
    Administrative Legislation in Japan: Guidelines on Scientific and Ethical Standards.Brian T. Slingsby, Noriko Nagao & Akira Akabayashi - 2004 - Cambridge Quarterly of Healthcare Ethics 13 (3):245-253.
    In the past few years, a second phase of biomedical ethics in Japan has begun to surface with a succession of governmental guidelines and laws regulating biomedical technology. Although this rush of guidelines exemplifies a heightened awareness concerning ethical standards for healthcare research, it also invites several practical, political, and procedural problems.
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  22. Hattiangadi's theory of scientific problems and the structure of standard epistemologies.Marco Giunti - 1988 - British Journal for the Philosophy of Science 39 (4):421-439.
  23.  37
    Scientific Integrity Principles and Best Practices: Recommendations from a Scientific Integrity Consortium.Alison Kretser, Delia Murphy, Stefano Bertuzzi, Todd Abraham, David B. Allison, Kathryn J. Boor, Johanna Dwyer, Andrea Grantham, Linda J. Harris, Rachelle Hollander, Chavonda Jacobs-Young, Sarah Rovito, Dorothea Vafiadis, Catherine Woteki, Jessica Wyndham & Rickey Yada - 2019 - Science and Engineering Ethics 25 (2):327-355.
    A Scientific Integrity Consortium developed a set of recommended principles and best practices that can be used broadly across scientific disciplines as a mechanism for consensus on scientific integrity standards and to better equip scientists to operate in a rapidly changing research environment. The two principles that represent the umbrella under which scientific processes should operate are as follows: Foster a culture of integrity in the scientific process. Evidence-based policy interests may have legitimate roles (...)
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  24. Two Notions of Scientific Justification.Matthias Adam - 2007 - Synthese 158 (1):93 - 108.
    Scientific claims can be assessed epistemically in either of two ways: according to scientific standards, or by means of philosophical arguments such as the no-miracle argument in favor of scientific realism. This paper investigates the basis of this duality of epistemic assessments. It is claimed that the duality rests on two different notions of epistemic justification that are well-known from the debate on internalism and externalism in general epistemology: a deontological and an alethic notion. By discussing (...)
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  25.  46
    Standardized terminologies and cultural diversity.Paul Ghils - 1992 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 23 (1):33-44.
    In this paper we will discuss some epistemological aspects of lexical and terminological usage in the international arena, with special reference to the different rhetorics of the social and natural sciences. Sociolinguistic research confined to monolingual communities suggests that close-knit network structure is an important mechanism of language maintenance, in that speakers are able to form a cohesive group capable of resisting pressure, linguistic and social, from outside the group (MILROY, 1987). The concept of a linguistic norm in sociolinguistic theory (...)
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  26.  69
    Scientific Misconduct in Japan: The Present Paucity of Oversight Policy.Brian Taylor Slingsby, Satoshi Kodama & Akira Akabayashi - 2006 - Cambridge Quarterly of Healthcare Ethics 15 (3):294-297.
    Scientific misconduct can jeopardize scientific progress and destroy the credibility and reputation of academic institutions and their faculty and students; ultimately it can compromise scientific integrity and result in a loss of confidence for the entire scientific community. Only recently in Japan has scientific misconduct become a central public topic. This increased attention to the topic, in turn, has highlighted a paucity of ethical standards within the Japanese scientific community and a lack of (...)
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  27.  30
    Customary Standard of Care: A Challenge for Regulation and Practice.Sandra H. Johnson - 2013 - Hastings Center Report 43 (6):9-10.
    Law wrangles with setting and applying standards for the practice of medicine in many different arenas. One of the most prominent is medical malpractice litigation in which the trial process examines a physician's performance and measures it against the standard of care. The profession's prevailing custom, with some substantial tolerance for “respectable minority” views, has been the gold standard for scrutinizing physician practice and treatment decisions in the malpractice context. Using the profession's custom as the measure against which a (...)
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  28. Are Different Standards Warranted to Evaluate Psi?George Williams - 2016 - Journal of Parapsychology 79 (2):186-202.
    Throughout the debate on psi, skeptics have almost universally insisted on different standards for evaluating the evidence, claiming that psi represents a radical departure from our current scientific understanding. Thus, there is considerable ambiguity about what standard of evaluation psi must meet. Little attention has been paid to the possible harm to the integrity of scientific investigation from this resulting inconsistency in testing standards. Some have proposed using a Bayesian framework as an improvement on this dilemma (...)
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  29. Scientific Facts and Methods in Public Reason.Karin Jønch-Clausen & Klemens Kappel - 2016 - Res Publica 22 (2):117-133.
    Should scientific facts and methods have an epistemically privileged status in public reason? In Rawls’s public reason account he asserts what we will label the Scientific Standard Stricture: citizens engaged in public reason must be guided by non-controversial scientific methods, and public reason must be in line with non-controversial scientific conclusions. The Scientific Standard Stricture is meant to fulfill important tasks such as enabling the determinateness and publicity of the public reason framework. However, Rawls leaves (...)
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  30.  35
    Epistemic Standards for Participatory Technology Assessment: Suggestions Based Upon Well-Ordered Science.Juan M. Durán & Zachary Pirtle - 2020 - Science and Engineering Ethics 26 (3):1709-1741.
    When one wants to use citizen input to inform policy, what should the standards of informedness on the part of the citizens be? While there are moral reasons to allow every citizen to participate and have a voice on every issue, regardless of education and involvement, designers of participatory assessments have to make decisions about how to structure deliberations as well as how much background information and deliberation time to provide to participants. After assessing different frameworks for the relationship (...)
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  31. Understanding Scientific Progress: Aim-Oriented Empiricism.Nicholas Maxwell - 2017 - St. Paul, USA: Paragon House.
    "Understanding Scientific Progress constitutes a potentially enormous and revolutionary advancement in philosophy of science. It deserves to be read and studied by everyone with any interest in or connection with physics or the theory of science. Maxwell cites the work of Hume, Kant, J.S. Mill, Ludwig Bolzmann, Pierre Duhem, Einstein, Henri Poincaré, C.S. Peirce, Whitehead, Russell, Carnap, A.J. Ayer, Karl Popper, Thomas Kuhn, Imre Lakatos, Paul Feyerabend, Nelson Goodman, Bas van Fraassen, and numerous others. He lauds Popper for advancing (...)
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  32.  41
    Ethics in a scientific approach: the importance of the biostatistician in research ethics committees.E. Atici & A. D. Erdemir - 2008 - Journal of Medical Ethics 34 (4):297-300.
    In medical practice and research it is necessary to consider the rights of the researcher or physician and of the subject or patient, to conform to scientific standards and to examine the appropriateness with respect to laws and moral values. Research ethics committees have an important role to play in ensuring the ethical standards and scientific merit of research on human subjects. Research of no scientific value is also against ethical principles. To obtain valid and (...)
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  33.  54
    Model-groups as scientific research programmes.Cristin Chall - 2020 - European Journal for Philosophy of Science 10 (1):1-24.
    Lakatos’s methodology of scientific research programmes centres around series of theories, with little regard to the role of models in theory construction. Modifying it to incorporate model-groups, clusters of developmental models that are intended to become new theories, provides a description of the model dynamics within the search for physics beyond the standard model. At the moment, there is no evidence for BSM physics, despite a concerted search effort especially focused around the standard model account of electroweak symmetry breaking. (...)
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  34.  12
    Making an Issue out of a Standard: Storytelling Practices in a Scientific Community.Geoffrey C. Bowker, Karen S. Baker, David Ribes & Florence Millerand - 2013 - Science, Technology, and Human Values 38 (1):7-43.
    The article focuses on stories and storytelling practices as explanatory resources in standardization processes. It draws upon an ethnographic study of the development of a technical standard for data sharing in an ecological research community, where participants struggle to articulate the difficulties encountered in implementing the standard. Building from C. Wright Mills’ classic distinction between private troubles and public issues, the authors follow the development of a story as it comes to assist in transforming individual troubles in standard implementation into (...)
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  35. Democracy, elitism, and scientific method.Paul Feyerabend - 1980 - Inquiry: An Interdisciplinary Journal of Philosophy 23 (1):3 – 18.
    Scientific standards cannot be separated from the practice of science and their use presupposes immersion in this practice. The demand to base political action on scientific standards therefore leads to elitism. Democratic relativism, on the other hand, demands equal rights for all traditions or, conversely, a separation between the state and any one of the traditions it contains; for example, it demands the separation of state and science, state and humanitarianism, state and Christianity. Democratic relativism defends (...)
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  36.  50
    The standard of care debate: against the myth of an "international consensus opinion".U. Schuklenk - 2004 - Journal of Medical Ethics 30 (2):194-197.
    It is argued by Lie et al in the current issue of the Journal of Medical Ethics that an international consensus opinion has formed on the issue of standards of care in clinical trials undertaken in developing countries. This opinion, so they argue, rejects the Declaration of Helsinki’s traditional view on this matter. They propose furthermore that the Declaration of Helsinki has lost its moral authority in the controversy in research ethics. Although the latter conclusion is supported by this (...)
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  37. Roles for scientific societies in promoting integrity in publication ethics.Addeane S. Caelleigh - 2003 - Science and Engineering Ethics 9 (2):221-241.
    Scientific societies can have a powerful influence on the professional lives of scientists. Using this influence, they have a responsibility to make long-term commitments and investments in promoting integrity in publication, just as in other areas of research ethics. Concepts that can inform the thinking and activities of scientific societies with regard to publication ethics are: the “hidden curriculum” (the message of actions rather than formal statements), a fresh look at the components of acting with integrity, deviancy as (...)
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  38.  29
    Standards, Double Standards and No Standards.Beuy Joob & Viroj Wiwanitkit - 2015 - Science and Engineering Ethics 21 (1):265-265.
    Editor, The report by Kalichman et al. is interesting. Kalichman et al. mentioned an “awareness of the diversity of those standards.” Standards should be applicable and usable in all settings. If there are different standards, there might be a problem in the implementation of standards. The case of “double standards” can lead to several practical problems. The conduct of research in an institute might be different from another institute. In addition, within an institute, the use (...)
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  39.  57
    Scientific Research and Human Rights: A Response to Kitcher on the Limitations of Inquiry.Elizabeth Victor - 2013 - Science and Engineering Ethics 20 (4):1045-1063.
    In his recent work exploring the role of science in democratic societies Kitcher claims that scientists ought to have a prominent role in setting the agenda for and limits to research. Against the backdrop of the claim that the proper limits of scientific inquiry is John Stuart Mill’s Harm Principle , he identifies the limits of inquiry as the point where the outcomes of research could cause harm to already vulnerable populations. Nonetheless, Kitcher argues against explicit limitations on unscrupulous (...)
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  40. Scientific and lay communities: earning epistemic trust through knowledge sharing.Heidi E. Grasswick - 2010 - Synthese 177 (3):387-409.
    Feminist philosophers of science have been prominent amongst social epistemologists who draw attention to communal aspects of knowing. As part of this work, I focus on the need to examine the relations between scientific communities and lay communities, particularly marginalized communities, for understanding the epistemic merit of scientific practices. I draw on Naomi Scheman's argument (2001) that science earns epistemic merit by rationally grounding trust across social locations. Following this view, more turns out to be relevant to epistemic (...)
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  41.  32
    The Congress on Definitive Metric Standards, 1798-1799: The First International Scientific Conference?Maurice Crosland - 1969 - Isis 60 (2):226-231.
  42. Scientific Realism in the Wild: An Empirical Study of Seven Sciences and History and Philosophy of Science.James R. Beebe & Finnur Dellsén - 2020 - Philosophy of Science 87 (2):336-364.
    We report the results of a study that investigated the views of researchers working in seven scientific disciplines and in history and philosophy of science in regard to four hypothesized dimensions of scientific realism. Among other things, we found that natural scientists tended to express more strongly realist views than social scientists, that history and philosophy of science scholars tended to express more antirealist views than natural scientists, that van Fraassen’s characterization of scientific realism failed to cluster (...)
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  43.  69
    Stems and Standards: Social Interaction in the Search for Blood Stem Cells.Melinda Bonnie Fagan - 2010 - Journal of the History of Biology 43 (1):67 - 109.
    This essay examines the role of social interactions in the search for blood stem cells, in a recent episode of biomedical research. Linked to mid-20th century cell biology, genetics and radiation research, the search for blood stem cells coalesced in the 1960s and took a developmental turn in the late 1980s, with significant ramifications for immunology, stem cell and cancer biology. Like much contemporary biomedical research, this line of inquiry exhibits a complex social structure and includes several prominent scientific (...)
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  44.  39
    Questioning structurism as a new standard for social scientific explanations.Jeroen Van Bouwel - 2004 - Graduate Journal of Social Science 1 (2):204-226.
    As the literature on Critical Realism in the social sciences is growing, it is about time to analyse whether a new, acceptable standard for social scientific explanations is being introduced. In order to do so, I will discuss the work of Christopher Lloyd, who analysed contributions of social scientists that rely on (what he called) a structurist ontology and a structurist methodology, and advocated a third option in the methodological debate between individualism and holism. I will suggest modifications to (...)
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  45.  33
    Social-scientific criticism in Nigerian New Testament scholarship.Kingsley I. Uwaegbute, Damian O. Odo & Collins I. Ugwu - 2021 - HTS Theological Studies 77 (1):9.
    The use of the social sciences in the interpretation of the New Testament emerged from the 1970s and has become a standard methodology for interpreting the New Testament. However, it has not been significantly used in the interpretation of the New Testament in Nigeria by biblical scholars. This article discusses what social-scientific criticism is and the need for its application in the interpretation of the New Testament by Nigerian New Testament scholars for a better understanding of the New Testament (...)
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  46.  31
    Scientific Ethics: A New Approach.Marcello Menapace - 2019 - Science and Engineering Ethics 25 (4):1193-1216.
    Science is an activity of the human intellect and as such has ethical implications that should be reviewed and taken into account. Although science and ethics have conventionally been considered different, it is herewith proposed that they are essentially similar. The proposal set henceforth is to create a new ethics rooted in science: scientific ethics. Science has firm axiological foundations and searches for truth and knowledge. Hence, science cannot be value neutral. Looking at standard scientific principles, it is (...)
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  47.  51
    Evidentiary standards and animal data.Kristin Shrader-Frechette - unknown
    Those who wish to deny some instance of environmental injustice often attempt to place inappropriate evidentiary burdens on scientists who show disproportionate pollution effects on vulnerable populations. One such evidentiary standard is the epidemiological-evidence rule (EER). According to EER, legitimate causal inferences about pollution-related harm (and actions to reduce probable environmental injustice) require human-epidemiological data, not merely good animal or laboratory data. This article summarizes the grounds for supporting EER, evaluates central scientific problems with EER, assesses key ethical difficulties (...)
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  48.  18
    Scientific and methodological support of physical education in the framework of FSES-3++.Vadim Sergeevich Denisenko, Ivan Alekseevich Bavtryukov & Tatiana Vasilievna Strelnikova - 2021 - Kant 41 (4):244-251.
    This research is devoted to the study of scientific and methodological aspects of providing students with physical education. The research is based on the works of Russian teachers who have adopted the experience of the new higher education program for bachelor's degree. The starting point for the development of new concepts is the latest edition of the Federal State Educational Standard for Higher Education. The purpose of the study is to analysis of the scientific and methodological support of (...)
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    (1 other version)Scientific Facts and Empirical Concepts: The Case of Electricity.Friedrich Steinle - 2010 - In Moritz Epple & Claus Zittel (eds.), Science as Cultural Practice: Vol. I: Cultures and Politics of Research From the Early Modern Period to the Age of Extremes. Berlin: Akademie Verlag. pp. 31-44.
    [First paragraph] A widespread image of science is founded upon a basic dichotomy: there are empirical facts, obtained by observation and experiment, on the one hand, and theories and explanations, obtained by reasoning, speculation and creativity, on the other. Whether scientific reasoning should take the inductive path, or the hypothetical-deductive approach, has long been a mat-ter of debate, but the basic dichotomist picture has been left untouched. And there is the concomitant idea that theories may come and go, while (...)
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  50. The Dynamics of Scientific Concepts: The Relevance of Epistemic Aims and Values.Ingo Brigandt - 2012 - In Uljana Feest & Friedrich Steinle (eds.), Scientific Concepts and Investigative Practice. de Gruyter. pp. 75-103.
    The philosophy of science that grew out of logical positivism construed scientific knowledge in terms of set of interconnected beliefs about the world, such as theories and observation statements. Nowadays science is also conceived of as a dynamic process based on the various practices of individual scientists and the institutional settings of science. Two features particularly influence the dynamics of scientific knowledge: epistemic standards and aims (e.g., assumptions about what issues are currently in need of scientific (...)
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