Results for 'biology and values'

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  1.  16
    Biology and value theory.Robert McShea & Daniel McShea - 1999 - In Jane Maienschein & Michael Ruse (eds.), Biology and the foundation of ethics. New York: Cambridge University Press. pp. 307--327.
  2. Biology and ideology: The interpenetration of science and values.Robert C. Richardson - 1984 - Philosophy of Science 51 (3):396-420.
    The mutual influence of science and values in biology is exhibited in several cases from the biological literature. It is argued in a number of cases, from R. A. Fisher's argument for the optimality of a 50:50 sex ratio to A. Jensen's defense of a genetic basis for intelligence, and including work on the evolution of sexual dimorphism and muted aggression, that the credence accorded the views is disproportionate with their theoretical and empirical warrant. It is, furthermore, suggested (...)
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  3.  63
    Ethics and values in biological and cultural evolution.Theodosius Dobzhansky - 1973 - Zygon 8 (3-4):261-281.
  4.  24
    Biology and political ideologies: on the futility of scientific justification for political values, now and in the past: Maurizio Meloni: Political biology. Science and social values in human heredity from eugenics to epigenetics. Palgrave MacMillan, 2016, xi+284pp, $105.00 HB.Ute Deichmann - 2017 - Metascience 26 (2):289-292.
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  5.  7
    Biology and the origin of values.Richard E. Michod - 1993 - In R. Michod, L. Nadel & M. Hechter (eds.), The Origin of Values. Aldine de Gruyer. pp. 261--271.
  6.  23
    Evolutionary Biology and Cultural Values: Is It Irremediably Corrupt?Michael Ruse - 1994 - Canadian Journal of Philosophy, Supplementary Volume 20 (sup1):43-68.
    In recent years, philosophers have come to realize that the relationship between science and values raises questions which are both important and not readily answered. It is true that the major figures in that tradition known as ‘logical empiricism’ appreciated that science always exceeds its empirical grasp and that it is necessary for scientists to be guided and constrained by so-called ‘epistemic values,’ these being values (in the words of one supporter) ‘presumed to promote the truth-like character (...)
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  7.  32
    Transforming Traditions in American Biology, 1880-1915.Jane Maienschein & Regents' Professor President'S. Professor and Parents Association Professor at the School of Life Sciences and Director Center for Biology and Society Jane Maienschein - 1991
  8.  23
    The amount and value of information in biology.M. V. Volkenstein - 1977 - Foundations of Physics 7 (1-2):97-109.
    The notion of the value of information is discussed. The value one attributes to information is determined by the result of its reception by an open nonequilibrium system. Qualitative reasoning shows that the concept of value of information makes sense only in nonequilibrium situations, and is directly connected with the nonredundancy of information. In biology it is the value and not the amount of information that is important. The value of information is especially high if there are instabilities in (...)
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  9.  6
    Defeating Evolution, both Biological and Social: Can Environmentally Friendly Value Systems Adapt Quickly Enough?Andrew Moore - 2020 - Bioessays 42 (2):2000001.
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  10.  27
    On the Structure and Epistemic Value of Function Ascriptions in Biology and Engineering Sciences.Erik Weber, Dingmar van Eck & Julie Mennes - 2019 - Foundations of Science 24 (3):559-581.
    In this paper we chart epistemological similarities between shared function talk in biology and the engineering sciences, focusing on the notions of biological advantage function and technical advantage function. We start by showing that biological advantage function ascriptions are common in biology and that technical advantage function ascriptions are common in engineering science. We then proceed to show that these ascriptions have a very similar structure and that their epistemic value also is similar: both biological advantage function and (...)
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  11. Biology and Theology in Aristotle's Theoretical and Practical Sciences.Monte Johnson - 2021 - In Sophia M. Connell (ed.), The Cambridge Companion to Aristotle's Biology. New York, NY: Cambridge University Press. pp. 12-29.
    Biology and theology are interdependent theoretical sciences for Aristotle. In prominent discussions of the divine things (the stars and their unmoved movers) Aristotle appeals to the science of living things, and in prominent discussions of the nature of plants and animals Aristotle appeals to the nature of the divine. There is in fact a single continuous series of living things that includes gods, humans, animals, and plants, all of them in a way divine. Aristotle has this continuum of divine (...)
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  12.  27
    Progress, Science, and Value: A Biological Dilemma. A Review of Matthew H. Nitecki , "Evolutionary Progress". [REVIEW]J. C. Greene - 1991 - Biology and Philosophy 6 (1):99.
  13.  33
    Synthetic Biology and the Goals of Conservation.Christopher Hunter Lean - 2024 - Ethics, Policy and Environment 27 (2):250-270.
    The introduction of new genetic material into wild populations, using novel biotechnology, has the potential to fortify populations against existential threats, and, controversially, create wild genetically modified populations. The introduction of new genetic variation into populations, which will have an ongoing future in areas of conservation interest, complicates long-held values in conservation science and park management. I discuss and problematize, in light of genetic intervention, what I consider the three core goals of conservation science: biodiversity, ecosystem services, and wilderness. (...)
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  14.  41
    Attaching Names to Biological Species: The Use and Value of Type Specimens in Systematic Zoology and Natural History Collections.Ronald Sluys - 2021 - Biological Theory 16 (1):49-61.
    Biological type specimens are a particular kind of voucher specimen stored in natural history collections. Their special status and practical use are discussed in relation to the description and naming of taxonomic zoological diversity. Our current system, known as Linnaean nomenclature, is governed by the International Code of Zoological Nomenclature. The name of a species is fixed by its name-bearing type specimen, linking the scientific name of a species to the type specimen first designated for that species. The name-bearing type (...)
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  15. Ontology and values anchor indigenous and grey nomenclatures: a case study in lichen naming practices among the Samí, Sherpa, Scots, and Okanagan.Catherine Kendig - 2020 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 84:101340.
    Ethnobotanical research provides ample justification for comparing diverse biological nomenclatures and exploring ways that retain alternative naming practices. However, how (and whether) comparison of nomenclatures is possible remains a subject of discussion. The comparison of diverse nomenclatural practices introduces a suite of epistemic and ontological difficulties and considerations. Different nomenclatures may depend on whether the communities using them rely on formalized naming conventions; cultural or spiritual valuations; or worldviews. Because of this, some argue that the different naming practices may not (...)
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  16.  22
    Fact and Value in Emotion.Louis C. Charland & Peter Zachar (eds.) - 2008 - John Benjamins.
    There is a large amount of scientific work on emotion in psychology, neuroscience, biology, physiology, and psychiatry, which assumes that it is possible to study emotions and other affective states, objectively. Emotion science of this sort is concerned primarily with 'facts' and not 'values', with 'description' not 'prescription'. The assumption behind this vision of emotion science is that it is possible to distinguish factual from evaluative aspects of affectivity and emotion, and study one without the other. But what (...)
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  17. Subjectivity and values in medicine: The case of Canguilhem.Peter Trnka - 2003 - Journal of Medicine and Philosophy 28 (4):427 – 446.
    Theories of health and disease which oppose evaluative and descriptive claims or opt for one or the other in defining fundamental concepts err, it is argued, due to an oversimplified conception of both the science of medicine and the art of clinical judgment. The work of Georges Canguilhem on the biological dimensions of value and subjectivity is explored. I conclude that he avoids the falsehoods of (a) neutral, pure fact-based medical science, and (b) cultural, arbitrary notions of value.
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  18.  38
    Progress, science, and value: A biological dilemma. [REVIEW]J. C. Greene - 1991 - Biology and Philosophy 6 (1):99-106.
  19.  37
    Biology and philosophy in yellowstone.Holmes Rolston - 1990 - Biology and Philosophy 5 (2):241-258.
    Yellowstone National Park poses critical issues in biology and philosophy. Among these are (1) how to value nature, especially at the ecosystem level, and whether to let nature take its course or employ hands-on scientific management; (2) the meaning of natural as this operates in park policy; (3) establishing biological claims on th scale of regional systems; (4) the interplay of natural and cultural history, involving both native and European Americans; (5) and sociopolitical forces as determinants in biological discovery. (...)
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  20.  7
    Climax: Biology and Ethics in Environmental Restoration.Hernán Neira - 2019 - Environmental Ethics 41 (4):347-359.
    Justifications for the environmental restoration of the Pumalín National Park, originally known as Pumalín Nature Sanctuary, in Chile can be analyzed from a philosophical and ethical point of view. The environmental stage to which the park should be restored is defined as a moral choice, rather than an ecological one, that is based on “climax” as an a priori value that supports and guides the main restoration actions carried out in the park. This climax is a pre-settling or pre-colonization condition. (...)
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  21. Biology and Authority in Industrial US Contract Hog Production.Fecal Free - 2008 - Agriculture and Human Values 25 (1):79-93.
     
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  22.  63
    The Value of Life: Biological Diversity And Human Society.Stephen R. Kellert & Stephen H. Kellert - 1997 - Island Press.
    The Value of Life is an exploration of the actual and perceived importance of biological diversity for human beings and society. Stephen R. Kellert identifies ten basic values, which he describes as biologically based, inherent human tendencies that are greatly influenced and moderated by culture, learning, and experience. Drawing on 20 years of original research, he considers: the universal basis for how humans value nature differences in those values by gender, age, ethnicity, occupation, and geographic location how environment-related (...)
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  23.  2
    Biology and philosophy in Yellowstone. [REVIEW]Holmes Rolston - 1990 - Biology and Philosophy 5 (2):241-258.
    Yellowstone National Park poses critical issues in biology and philosophy. Among these are (1) how to value nature, especially at the ecosystem level, and whether to let nature take its course or employ hands-on scientific management; (2) the meaning of “natural” as this operates in park policy; (3) establishing biological claims on th scale of regional systems; (4) the interplay of natural and cultural history, involving both native and European Americans; (5) and sociopolitical forces as determinants in biological discovery. (...)
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  24.  15
    Evolutionary Biology and the Question of Trust.Michael Ruse - 2005 - In Noretta Koertge (ed.), Scientific Values and Civic Virtues. Oup Usa. pp. 99.
  25.  36
    Biodiversity and Values in Science.Allen Habib - 2015 - Ethics, Policy and Environment 18 (1):30-33.
    In 1985, wildlife biologist Michael Soulé wrote a manifesto for the new field of Conservation Biology. In it he offered ‘Diversity of organisms is good’ and ‘Ecological complexity is...
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  26. Values, Advocacy and Conservation Biology.Jay Odenbaugh - 2003 - Environmental Values 12 (1):55 - 69.
    In this essay, I examine the controversy concerning the advocacy of ethical values in conservation biology. First, I argue, as others have, that conservation biology is a science laden with values both ethical and non-ethical. Second, after clarifying the notion of advocacy at work, I contend that conservation biologists should advocate the preservation of biological diversity. Third, I explore what ethical grounds should be used for advocating the preservation of ecological systems by conservation biologists. I argue (...)
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  27.  25
    Evolved Morality: The Biology and Philosophy of Human Conscience.Frans B. M. De Waal, Patricia Smith Churchland, Telmo Pievani & Stefano Parmigiani (eds.) - 2014 - Leiden, The Netherlands: Brill.
    Morality is often defined in opposition to the natural "instincts," or as a tool to keep those instincts in check. New findings in neuroscience, social psychology, animal behaviour, and anthropology have brought us back to the original Darwinian position that moral behaviour is continuous with the social behavior of animals, and most likely evolved to enhance the cooperativeness of society. In this view, morality is part of human nature rather than its opposite. This interdisciplinary volume debates the origin and working (...)
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  28.  39
    Biological or psychological?: A comment on Perry's doctrine of interest and value.Mary Whiton Calkins - 1927 - Journal of Philosophy 24 (21):577-581.
  29.  23
    Between science and values.Loren R. Graham - 1981 - New York: Columbia University Press.
    Examines the influence of the physical and biological sciences on society, ethics, and philosophy during the twentieth century.
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  30.  36
    Facts and Values After David Hume.Pentti Määttänen - 2022 - International Journal for the Semiotics of Law - Revue Internationale de Sémiotique Juridique 36 (1):17-29.
    According to David Hume values do not belong to the world of facts and cannot be derived from facts. However, Hume’s argument is based on questionable presumptions. His conception of experience as sense perception is erroneous. On contemporary standards it is simply false because sense organs are not channels that passively receive inputs from the world. It is too narrow as it does not take the role of action into account. Further, Hume’s argument is based on the dichotomy between (...)
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  31.  34
    Science and values in the biodiversity-ecosystem function debate.David M. Frank - 2022 - Biology and Philosophy 37 (2):1-22.
    This paper explores interactions between ecological science and conservation values in the biodiversity-ecosystem function debate of the 1990–2000s. The scientific debate concerned the interpretation of observed correlations between species richness and ecosystem properties like primary productivity in experimental ecosystems. The debate over the causal or explanatory role of species richness was presumed to have implications for conservation policy, and the use of such research to support policy recommendations generated hostility between rival groups of ecologists. I argue that the debate (...)
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  32.  49
    Indian Science for Indian Tigers?: Conservation Biology and the Question of Cultural Values[REVIEW]Michael Lewis - 2005 - Journal of the History of Biology 38 (2):185 - 207.
    The implementation of Project Tiger in India, 1973-1974, was justly hailed as a triumph of international environmental advocacy. It occurred as a growing number of conservation-oriented biologists were beginning to argue forcefully for scientifically managed conservation of species and ecosystems -- the same scientists who would, by the mid-1980s, call themselves conservation biologists. Although India accepted international funds to implement Project Tiger, it strictly limited research posts to Government of India Foresters, against the protests of Indian and US biologists who (...)
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  33.  4
    Problems in the biological and human sciences.Michael Bartholomew - 1981 - Milton Keynes: Open University Press. Edited by Bernard Norton & Robert M. Young.
    Mankind's place in nature -- Evolution after Darwin -- The naturalization of value systems in the human sciences.
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  34.  36
    Physics met biology, and the consequence was….Tom McLeish - 2011 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 42 (2):190-192.
    We summarise the contributions to the discussion and the links between them. The complex relationship between the physical and biological sciences demonstrates three “axes of tension”: the role of simulation, the interplay between levels of explanation, and the generality of “laws”. We identify examples of true synergy between approaches that genuinely explore new research territory, and underscore the contemporary value of the type of discussions contained in this volume.
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  35. On the Relationship Between Biology and Medicine.James Krueger - 2004 - Dissertation, University of Notre Dame
    Philosophers of science have largely taken little interest in developments in contemporary medicine. There is a familiar, if largely unspoken and undefended, picture of medical research that seems to put it at the periphery of science proper. On this view, medicine is akin to other applied disciplines whose primary aim is to solve particular problems. Scientific research would then be important to medicine only in so far as it sets one kind of constraint on the problem solving process. A second (...)
     
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  36.  42
    Values, practices, and metaphysical assumptions in the biological sciences.Sara Weaver & Carla Fehr - 2017 - In Ann Garry, Serene J. Khader & Alison Stone (eds.), Routledge Companion to Feminist Philosophy. London: Routledge. pp. 314-328.
    The biological sciences provide ample opportunity and motivation for feminist interventions. These sciences are seen by many as an authority on human nature and are highly relevant to many issues of social justice and public policy. Feminist philosophy of biology focuses on the ethical and epistemic adequacy and responsibility of biological claims. This work is critical in the sense of identifying epistemically and ethically irresponsible knowledge claims, research practices, and dissemination of biological research regarding sex/gender, including ways that sex/gender (...)
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  37.  33
    Biodiversity, conservation biology, and rational choice.David Frank - 2014 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 45 (1):101-104.
    This paper critically discusses two areas of Sahotra Sarkar’s recent work in environmental philosophy : biodiversity and conservation biology and roles for decision theory in incorporating values explicitly in the environmental policy process. I argue that Sarkar’s emphasis on the practices of conservation biologists, and especially the role of social and cultural values in the choice of biodiversity constituents, restricts his conception of biodiversity to particular practical conservation contexts. I argue that life scientists have many reasons to (...)
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  38. Promoting coherent minimum reporting guidelines for biological and biomedical investigations: the MIBBI project.Chris F. Taylor, Dawn Field, Susanna-Assunta Sansone, Jan Aerts, Rolf Apweiler, Michael Ashburner, Catherine A. Ball, Pierre-Alain Binz, Molly Bogue, Tim Booth, Alvis Brazma, Ryan R. Brinkman, Adam Michael Clark, Eric W. Deutsch, Oliver Fiehn, Jennifer Fostel, Peter Ghazal, Frank Gibson, Tanya Gray, Graeme Grimes, John M. Hancock, Nigel W. Hardy, Henning Hermjakob, Randall K. Julian, Matthew Kane, Carsten Kettner, Christopher Kinsinger, Eugene Kolker, Martin Kuiper, Nicolas Le Novere, Jim Leebens-Mack, Suzanna E. Lewis, Phillip Lord, Ann-Marie Mallon, Nishanth Marthandan, Hiroshi Masuya, Ruth McNally, Alexander Mehrle, Norman Morrison, Sandra Orchard, John Quackenbush, James M. Reecy, Donald G. Robertson, Philippe Rocca-Serra, Henry Rodriguez, Heiko Rosenfelder, Javier Santoyo-Lopez, Richard H. Scheuermann, Daniel Schober, Barry Smith & Jason Snape - 2008 - Nature Biotechnology 26 (8):889-896.
    Throughout the biological and biomedical sciences there is a growing need for, prescriptive ‘minimum information’ (MI) checklists specifying the key information to include when reporting experimental results are beginning to find favor with experimentalists, analysts, publishers and funders alike. Such checklists aim to ensure that methods, data, analyses and results are described to a level sufficient to support the unambiguous interpretation, sophisticated search, reanalysis and experimental corroboration and reuse of data sets, facilitating the extraction of maximum value from data sets (...)
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  39.  60
    Knowledge, bodies, and values: Reproductive technologies and their scientific context.Helen E. Longino - 1992 - Inquiry: An Interdisciplinary Journal of Philosophy 35 (3-4):323 – 340.
    This essay sets human reproductive technologies in the context of biological research exploiting the discovery of the structure of the DNA molecule in the early 1950s. By setting these technological developments in this research context and then setting the research in the framework of a philosophical analysis of the role of social values in scientific inquiry, it is possible to develop a perspective on these technologies and the aspirations they represent that is relevant to the concerns of their social (...)
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  40. The mismeasure of machine: Synthetic biology and the trouble with engineering metaphors.Maarten Boudry & Massimo Pigliucci - 2013 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences (4):660-668.
    The scientific study of living organisms is permeated by machine and design metaphors. Genes are thought of as the ‘‘blueprint’’ of an organism, organisms are ‘‘reverse engineered’’ to discover their func- tionality, and living cells are compared to biochemical factories, complete with assembly lines, transport systems, messenger circuits, etc. Although the notion of design is indispensable to think about adapta- tions, and engineering analogies have considerable heuristic value (e.g., optimality assumptions), we argue they are limited in several important respects. In (...)
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  41. Playing God and the Intrinsic Value of Life: Moral Problems for Synthetic Biology?Hans-Jürgen Link - 2013 - Science and Engineering Ethics 19 (2):435-448.
    Most of the reports on synthetic biology include not only familiar topics like biosafety and biosecurity but also a chapter on ‘ethical concerns’; a variety of diffuse topics that are interrelated in some way or another. This article deals with these ‘ethical concerns’. In particular it addresses issues such as the intrinsic value of life and how to deal with ‘artificial life’, and the fear that synthetic biologists are tampering with nature or playing God. Its aim is to analyse (...)
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  42.  15
    Evolution and Human Values.Robert Wesson & Patricia A. Williams (eds.) - 1995 - BRILL.
    Initiated by Robert Wesson, _Evolution and Human Values_ is a collection of newly written essays designed to bring interdisciplinary insight to that area of thought where human evolution intersects with human values. The disciplines brought to bear on the subject are diverse - philosophy, psychiatry, behavioral science, biology, anthropology, psychology, biochemistry, and sociology. Yet, as organized by co-editor Patricia A. Williams, the volume falls coherently into three related sections. Entitled Evolutionary Ethics, the first section brings contemporary research to (...)
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  43. The mismeasure of machine: Synthetic biology and the trouble with engineering metaphors.Maarten Boudry & Massimo Pigliucci - 2013 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 44 (4):660-668.
    The scientific study of living organisms is permeated by machine and design metaphors. Genes are thought of as the ‘‘blueprint’’ of an organism, organisms are ‘‘reverse engineered’’ to discover their functionality, and living cells are compared to biochemical factories, complete with assembly lines, transport systems, messenger circuits, etc. Although the notion of design is indispensable to think about adaptations, and engineering analogies have considerable heuristic value (e.g., optimality assumptions), we argue they are limited in several important respects. In particular, the (...)
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  44. Facts, Values, and Biology.Joseph S. Alper - 1981 - Philosophical Forum 13 (2):85.
     
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  45.  10
    Biodiversity: Its Meaning and Value.Bryan G. Norton - 2008 - In Sahorta Sarkar & Anya Plutynski (eds.), Companion to the Philosophy of Biology. Blackwell. pp. 368–389.
    This chapter contains section titled: What is Biological Diversity? The Definition Problem Two Models of Biodiversity Science and Management Understanding Biodiversity in Public Policy Discourse Identifying and Measuring Values Derived from Biological Diversity Conclusion References Further Reading.
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  46.  47
    Epistemic values of quantity and variety of evidence in biological mechanism research.Yin Chung Au - 2021 - European Journal for Philosophy of Science 11 (2):1-22.
    This paper proposes an extended version of the interventionist account for causal inference in the practical context of biological mechanism research. This paper studies the details of biological mechanism researchers’ practices of assessing the evidential legitimacy of experimental data, arguing why quantity and variety are two important criteria for this assessment. Because of the nature of biological mechanism research, the epistemic values of these two criteria result from the independence both between the causation of data generation and the causation (...)
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  47.  30
    Biological Science and Feminist Values.Michael Ruse - 1984 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1984:525 - 542.
    Feminist writers argue that values permeate science. Using Ernan McMullin's discussion of values in science as a guide, the feminist position is accepted and an attempt is made to show why their position is one which should be noted by conventional philosophers of science.
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  48.  20
    Natural science and value-policy.Read Bain - 1949 - Philosophy of Science 16 (3):182-192.
    No final statement can be made regarding the relations between science and policy-making. Knowledge, values, and techniques are interrelated, cumulative, and constantly changing. They are derived from man's responses to the complicated interactions between physical, biological, and cultural phenomena. Final answers are impossible because the answers themselves are part of the world and therefore are factors in changing it. We see through a glass darkly, whether it be the giant glass of Palomar or the eye-piece of the electron microscope.
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  49.  28
    Truth, value and biology.F. C. S. Schiller - 1920 - Journal of Philosophy, Psychology and Scientific Methods 17 (2):36-44.
  50.  3
    Truth, Value and Biology.F. C. S. Schiller - 1920 - Journal of Philosophy, Psychology and Scientific Methods 17 (2):36-44.
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