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Pheneticism reconsidered

Biology and Philosophy 27 (2):159-177 (2012)

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  1. (1 other version)New work for a theory of universals.David K. Lewis - 1983 - Australasian Journal of Philosophy 61 (4):343-377.
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  • (1 other version)New Work For a Theory of Universals.David Lewis - 1997 - In David Hugh Mellor & Alex Oliver (eds.), Properties. New York: Oxford University Press.
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  • Realism, Anti-Foundationalism and the Enthusiasm for Natural Kinds.Richard Boyd - 1991 - Philosophical Studies 61 (1):127-148.
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  • Homeostasis, species, and higher taxa.Richard Boyd - 1999 - In Robert Andrew Wilson (ed.), Species: New Interdisciplinary Essays. MIT Press. pp. 141-85.
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  • (1 other version)Seven Strictures on Similarity.Nelson Goodman - 1972 - In Problems and projects. Indianapolis,: Bobbs-Merrill.
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  • (3 other versions)Natural Kinds.W. V. O. Quine - 2011 - In Robert B. Talisse & Scott F. Aikin (eds.), The Pragmatism Reader: From Peirce Through the Present. Princeton University Press. pp. 234-248.
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  • Sex and Death: An Introduction to Philosophy of Biology.Kim Sterelny & Paul Edmund Griffiths - 1999 - Chicago and London: The University of Chicago Press.
    Is the history of life a series of accidents or a drama scripted by selfish genes? Is there an “essential” human nature, determined at birth or in a distant evolutionary past? What should we conserve—species, ecosystems, or something else? -/- Informed answers to questions like these, critical to our understanding of ourselves and the world around us, require both a knowledge of biology and a philosophical framework within which to make sense of its findings. In this accessible introduction to philosophy (...)
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  • What is Biodiversity?James Maclaurin & Kim Sterelny - 2008 - University of Chicago Press.
    What Is Biodiversity? is a theoretical and conceptual exploration of the biological world and how diversity is valued. Maclaurin and Sterelny explore not only the origins of the concept of biodiversity, but also how that concept has been shaped by ecology and more recently by conservation biology. They explain the different types of biodiversity important in evolutionary theory, developmental biology, ecology, morphology and taxonomy and conclude that biological heritage is rich in not just one biodiversity but many. Maclaurin and Sterelny (...)
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  • The Poverty of the Linnaean Hierarchy: A Philosophical Study of Biological Taxonomy.Marc Ereshefsky - 2000 - Cambridge University Press.
    The question of whether biologists should continue to use the Linnaean hierarchy has been a hotly debated issue. Invented before the introduction of evolutionary theory, Linnaeus's system of classifying organisms is based on outdated theoretical assumptions, and is thought to be unable to provide accurate biological classifications. Marc Ereshefsky argues that biologists should abandon the Linnaean system and adopt an alternative that is more in line with evolutionary theory. He traces the evolution of the Linnaean hierarchy from its introduction to (...)
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  • (3 other versions)Natural kinds.Willard V. Quine - 1969 - In Willard Van Orman Quine (ed.), Ontological Relativity and Other Essays. New York: Columbia University Press. pp. 114-38.
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  • The Poverty of the Linnaean Hierarchy: A Philosophical Study of Biological Taxonomy.Marc Ereshefsky - 2001 - Journal of the History of Biology 34 (3):600-602.
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  • Evolution and Classification: The Reformation of Cladism.Mark Ridley - 1986 - Longman.
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  • Microbiology and the species problem.Marc Ereshefsky - 2010 - Biology and Philosophy 25 (4):553-568.
    This paper examines the species problem in microbiology and its implications for the species problem more generally. Given the different meanings of ‘species’ in microbiology, the use of ‘species’ in biology is more multifarious and problematic than commonly recognized. So much so, that recent work in microbial systematics casts doubt on the existence of a prokaryote species category in nature. It also casts doubt on the existence of a general species category for all of life (one that includes both prokaryotes (...)
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  • In defence of classification.John Dupré - 2001 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 32 (2):203-219.
    It has increasingly been recognised that units of biological classification cannot be identified with the units of evolution. After briefly defending the necessity of this distinction I argue, contrary to the prevailing orthodoxy, that species should be treated as the fundamental units of classification and not, therefore, as units of evolution. This perspective fits well with the increasing tendency to reject the search for a monistic basis of classification and embrace a pluralistic and pragmatic account of the species category. It (...)
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  • Taxonomy, Polymorphism, and History: An Introduction to Population Structure Theory.Marc Ereshefsky & Mohan Matthen - 2005 - Philosophy of Science 72 (1):1-21.
    Homeostatic Property Cluster (HPC) theory suggests that species and other biological taxa consist of organisms that share certain similarities. HPC theory acknowledges the existence of Darwinian variation within biological taxa. The claim is that “homeostatic mechanisms” acting on the members of such taxa nonetheless ensure a significant cluster of similarities. The HPC theorist’s focus on individual similarities is inadequate to account for stable polymorphism within taxa, and fails properly to capture their historical nature. A better approach is to treat distributions (...)
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  • Homeostasis, Higher Taxa, and Monophyly.Richard Boyd - 2010 - Philosophy of Science 77 (5):686-701.
    Several authors have argued that higher taxa are monophyletic homeostatic property cluster natural kinds. On the traditional definition of monophyly, this will not work: the emergence of taxon-defining homeostatic property clusters would not always correspond to unique speciation events. An alternative conception of monophyly is developed and advocated, which can accommodate the homeostatic property cluster proposal. Recent work in philosophy of science shows that it meets appropriate standards of objectivity and precision.
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  • Principles of Numerical Taxonomy.Robert R. Sokal & Peter Henry Andrews Sneath - 1961 - W. H. Freeman.
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  • Numerical Taxonomy: The Principles and Practice of Numerical Classification.Peter Henry Andrews Sneath & Robert R. Sokal - 1973 - W. H. Freeman and Co..
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  • Hélène Metzger: the history of science between the study of mentalities and total history.Cristina Chimisso - 2001 - Studies in History and Philosophy of Science Part A 32 (2):203-241.
    In this article, I examine the historiographical ideas of the historian of chemistry Hélène Metzger against the background of the ideas of the members of the groups and institutions in which she worked, including Alexandre Koyré, Gaston Bachelard, Abel Rey, Henri Berr and Lucien Febrve. This article is on two interdependent levels: that of particular institutions and groups in which she worked and the École Pratique des Hautes Études) and that of historiographical ideas. I individuate two particular theoretical aspirations pursued (...)
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  • Chicken, eggs, and speciation.Mohan Matthen - 2009 - Noûs 43 (1):94-115.
    Standard biological and philosophical treatments assume that dramatic genotypic or phenotypic change constitutes instantaneous speciation, and that barring such saltation, speciation is gradual evolutionary change in individual properties. Both propositions appear to be incongruent with standard theoretical perspectives on species themselves, since these perspectives are (a) non-pheneticist, and (b) tend to disregard intermediate cases. After reviewing certain key elements of such perspectives, it is proposed that species-membership is mediated by membership in a population. Species-membership depends, therefore, not on intrinsic characteristics (...)
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  • Sex and Death: An Introduction to Philosophy of Biology. [REVIEW]Mohan Matthen - 2002 - Philosophical Books 43 (1):78-80.
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  • Natural kinds and supraorganismal individuals.Michael Ghiselin - 1999 - In Douglas L. Medin & Scott Atran (eds.), Folkbiology. MIT Press. pp. 447-60.
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