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  1. Darwin on Variation and Heredity.Rasmus Grønfeldt Winther - 2000 - Journal of the History of Biology 33 (3):425-455.
    Darwin's ideas on variation, heredity, and development differ significantly from twentieth-century views. First, Darwin held that environmental changes, acting either on the reproductive organs or the body, were necessary to generate variation. Second, heredity was a developmental, not a transmissional, process; variation was a change in the developmental process of change. An analysis of Darwin's elaboration and modification of these two positions from his early notebooks (1836-1844) to the last edition of the /Variation of Animals and Plants Under Domestication/ (1875) (...)
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  • Typology Reconfigured: From the Metaphysics of Essentialism to the Epistemology of Representation.Alan C. Love - 2008 - Acta Biotheoretica 57 (1-2):51-75.
    The goal of this paper is to encourage a reconfiguration of the discussion about typology in biology away from the metaphysics of essentialism and toward the epistemology of classifying natural phenomena for the purposes of empirical inquiry. First, I briefly review arguments concerning ‘typological thinking’, essentialism, species, and natural kinds, highlighting their predominantly metaphysical nature. Second, I use a distinction between the aims, strategies, and tactics of science to suggest how a shift from metaphysics to epistemology might be accomplished. Typological (...)
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  • Evolutionary essentialism.Denis Walsh - 2006 - British Journal for the Philosophy of Science 57 (2):425-448.
    According to Aristotelian essentialism, the nature of an organism is constituted of a particular goal-directed disposition to produce an organism typical of its kind. This paper argues—against the prevailing orthodoxy—that essentialism of this sort is indispensable to evolutionary biology. The most powerful anti-essentialist arguments purport to show that the natures of organisms play no explanatory role in modern synthesis biology. I argue that recent evolutionary developmental biology provides compelling evidence to the contrary. Developmental biology shows that one must appeal to (...)
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  • Darwin was a teleologist.James G. Lennox - 1993 - Biology and Philosophy 8 (4):409-421.
    It is often claimed that one of Darwin''s chief accomplishments was to provide biology with a non-teleological explanation of adaptation. A number of Darwin''s closest associates, however, and Darwin himself, did not see it that way. In order to assess whether Darwin''s version of evolutionary theory does or does not employ teleological explanation, two of his botanical studies are examined. The result of this examination is that Darwin sees selection explanations of adaptations as teleological explanations. The confusion in the nineteenth (...)
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  • The Relation Between Essentialist Beliefs and Evolutionary Reasoning.Andrew Shtulman & Laura Schulz - 2008 - Cognitive Science 32 (6):1049-1062.
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  • The Changing Meaning of "Evolution".Peter J. Bowler - 1975 - Journal of the History of Ideas 36 (1):95.
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  • (1 other version)History and Philosophy of Science and the Teaching of Macroevolution.Kostas Kampourakis & Ross H. Nehm - 2014 - In Michael R. Matthews (ed.), International Handbook of Research in History, Philosophy and Science Teaching. Springer. pp. 401-421.
    Although macroevolution has been the subject of sustained attention in the history and philosophy of science (HPS) community, only in recent years have science educators begun to more fully engage with the topic. This chapter first explores how science educators have conceptualized macroevolution and how their perspectives align with the views from HPS. Second, it illustrates how science educators’ limited engagement with HPS scholarship on macroevolution has influenced construct delineation, measurement instrument development, and educational arguments about which aspects of macroevolution (...)
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  • (1 other version)Consequence etiology and biological teleology in Aristotle and Darwin.David J. Depew - 2008 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 39 (4):379-390.
    Aristotle’s biological teleology is rooted in an epigenetic account of reproduction. As such, it is best interpreted by consequence etiology. I support this claim by citing the capacity of consequence etiology’s key distinctions to explain Aristotle’s opposition to Empedocles. There are implications for the relation between ancient and modern biology. The analysis reveals that in an important respect Darwin’s account of adaptation is closer to Aristotle’s than to Empedocles’s. They both rely on consequence etiological considerations to evade attributing the purposiveness (...)
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  • (1 other version)Collection and collation: theory and practice of Linnaean botany.Staffan Müller-Wille - 2007 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 38 (3):541-562.
    Historians and philosophers of science have interpreted the taxonomic theory of Carl Linnaeus as an ‘essentialist’, ‘Aristotelian’, or even ‘scholastic’ one. This interpretation is flatly contradicted by what Linnaeus himself had to say about taxonomy in Systema naturae , Fundamenta botanica and Genera plantarum . This paper straightens out some of the more basic misinterpretations by showing that: Linnaeus’s species concept took account of reproductive relations among organisms and was therefore not metaphysical, but biological; Linnaeus did not favour classification by (...)
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  • Non-essentialist methods in pre-Darwinian taxonomy.Mary P. Winsor - 2003 - Biology and Philosophy 18 (3):387-400.
    The current widespread belief that taxonomic methods used before Darwin were essentialist is ill-founded. The essentialist method developed by followers of Plato and Aristotle required definitions to state properties that are always present. Polythetic groups do not obey that requirement, whatever may have been the ontological beliefs of the taxonomist recognizing such groups. Two distinct methods of forming higher taxa, by chaining and by examplar, were widely used in the period between Linnaeus and Darwin, and both generated polythetic groups. Philosopher (...)
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  • You Get What You Need: An Examination of Purpose‐Based Inheritance Reasoning in Undergraduates, Preschoolers, and Biological Experts.Elizabeth A. Ware & Susan A. Gelman - 2014 - Cognitive Science 38 (2):197-243.
    This set of seven experiments examines reasoning about the inheritance and acquisition of physical properties in preschoolers, undergraduates, and biology experts. Participants (N = 390) received adoption vignettes in which a baby animal was born to one parent but raised by a biologically unrelated parent, and they judged whether the offspring would have the same property as the birth or rearing parent. For each vignette, the animal parents had contrasting values on a physical property dimension (e.g., the birth parent had (...)
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  • Biological Teleology: Questions and Explanations.Robert N. Brandon - 1981 - Studies in History and Philosophy of Science Part A 12 (2):91.
    This paper gives an account of evolutionary explanations in biology. Briefly, the explanations I am primarily concerned with are explanations of adaptations. These explanations are contrasted with other nonteleological evolutionary explanations. The distinction is made by distinguishing the different kinds of questions these different explanations serve to answer. The sense in which explanations of adaptations are teleological is spelled out.
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  • (1 other version)Collection and collation: theory and practice of Linnaean botany.Staffan Müller-Wille - 2007 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 38 (3):541-562.
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  • Mendel and the Path to Genetics: Portraying Science as a Social Process.Kostas Kampourakis - 2013 - Science & Education 22 (2):293-324.
    Textbook descriptions of the foundations of Genetics give the impression that besides Mendel’s no other research on heredity took place during the nineteenth century. However, the publication of the Origin of Species in 1859, and the criticism that it received, placed the study of heredity at the centre of biological thought. Consequently, Herbert Spencer, Charles Darwin himself, Francis Galton, William Keith Brooks, Carl von Nägeli, August Weismann, and Hugo de Vries attempted to develop theories of heredity under an evolutionary perspective, (...)
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  • The Creation of the Essentialism Story: An Exercise in Metahistory.Mary P. Winsor - 2006 - History and Philosophy of the Life Sciences 28 (2):149 - 174.
    The essentialism story is a version of the history of biological classification that was fabricated between 1953 and 1968 by Ernst Mayr, who combined contributions from Arthur Cain and David Hull with his own grudge against Plato. It portrays pre-Darwinian taxonomists as caught in the grip of an ancient philosophy called essentialism, from which they were not released until Charles Darwin's 1859 Origin of Species. Mayr's motive was to promote the Modern Synthesis in opposition to the typology of idealist morphologists; (...)
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  • The Type-Concept in Zoology during the First Half of the Nineteenth Century.Paul Lawrence Farber - 1976 - Journal of the History of Biology 9 (1):93 - 119.
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  • (1 other version)Consequence etiology and biological teleology in Aristotle and Darwin.David J. Depew - 2008 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 39 (4):379-390.
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  • Before Darwin: Transformist Concepts in European Natural History. [REVIEW]Pietro Corsi - 2005 - Journal of the History of Biology 38 (1):67 - 83.
    Lack of consideration of the complex European scientific scene from the late 18th century to the mid-decades of the 19th century has produced partial and often biased reconstructions of priorities, worries, implicit and explicit philosophical and at times political agendas characterizing the early debates on species. It is the purpose of this paper firstly to critically assess some significant attempts at broadening the historiographic horizon concerning the immediate context to Darwin's intellectual enterprise, and to devote the second part to arguing (...)
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  • (1 other version)On the origin of the typological/population distinction in Ernst Mayr’s changing views of species, 1942–1959.Carl Chung - 2003 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 34 (2):277-296.
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  • (1 other version)On the origin of the typological/population distinction in Ernst Mayr's changing views of species, 1942-1959.Carl Chung - 2003 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 34 (2):277-296.
    Ernst Mayr's typological/population distinction is a conceptual thread that runs throughout much of his work in systematics, evolutionary biology, and the history and philosophy of biology. Mayr himself claims that typological thinking originated in the philosophy of Plato and that population thinking was first introduced by Charles Darwin and field naturalists. A more proximate origin of the typological/population thinking, however, is found in Mayr's own work on species. This paper traces the antecedents of the typological/population distinction by detailing Mayr's changing (...)
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  • Revisiting the eclipse of Darwinism.Peter J. Bowler - 2005 - Journal of the History of Biology 38 (1):19-32.
    The article sums up a number of points made by the author concerning the response to Darwinism in the late nineteenth and early twentieth centuries, and repeats the claim that a proper understanding of the theory's impact must take account of the extent to which what are now regarded as the key aspects of Darwin's thinking were evaded by his immediate followers. Potential challenges to this position are described and responded to.
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  • Variation and inheritance.Robert Olby - 2009 - In Michael Ruse & Robert J. Richards (eds.), The Cambridge companion to the "Origin of species". New York: Cambridge University Press.
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