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  1. Darwin, Malthus, Süssmilch, and Euler: The Ultimate Origin of the Motivation for the Theory of Natural Selection. [REVIEW]Dominic Klyve - 2014 - Journal of the History of Biology 47 (2):1-24.
    It is fairly well known that Darwin was inspired to formulate his theory of natural selection by reading Thomas Malthus’s Essay on the Principle of Population. In fact, by reading Darwin’s notebooks, we can even locate one particular sentence which started Darwin thinking about population and selection. What has not been done before is to explain exactly where this sentence – essentially Malthus’s ideas about geometric population growth – came from. In this essay we show that eighteenth century mathematician Leonhard (...)
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  • The Darwinian muddle on the division of labour: an attempt at clarification.Emmanuel D’Hombres - 2016 - History and Philosophy of the Life Sciences 38 (1):1-22.
    It is of philosophical and epistemological interest to examine how Darwin conceived the process of division of labour within Natural History. Darwin observed the advantages brought by division of labour to the human economy, and considered that the principle of divergence within nature, which is, according to him, one of the two ‘keystones’ of his theory, gave comparable advantages. This led him to re-examine Milne-Edwards’ view on the notion of division of physiological labour, and to introduce this with modifications into (...)
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  • Darwin’s empirical claim and the janiform character of fitness proxies.Ulrich Krohs - 2022 - Biology and Philosophy 37 (2):1-23.
    Darwin’s claim about natural selection is reconstructed as an empirical claim about a causal connection leading from the match of the physiology of an individual and its environment to leaving surviving progeny. Variations in this match, Darwin claims, cause differences in the survival of the progeny. Modern concepts of fitness focus the survival side of this chain. Therefore, the assumption that evolutionary theory wants to explain reproductive success in terms of a modern concept of fitness has given rise to the (...)
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  • A claim for cognitive history.Henry M. Cowles & Jamie Kreiner - 2019 - Behavioral and Brain Sciences 42.
    History is a potential tool for cognitive scientists interested in metacognitive categories like “creativity” and “innovation.” As a way of thinking, history suggests alternative accounts of the development of innovation and growth, for example. Life History Theory is one such account, but its roots in the Industrial Revolution make it a problematic tool for telling the history of that period.
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  • Darwin and political economy: The connection reconsidered.Scott Gordon - 1989 - Journal of the History of Biology 22 (3):437-459.
    It seems to me that no substantial support can be provided for the thesis that the Darwinian theory of evolution drew significantly upon ideas in contemporary Political Economy. What Darwin may have derived from Malthus was not an integral part of the theory of population that the classical economists, including Malthus, put forward. He did not know the literature of Political Economy; and if he had been acquainted with it, he would not have been able to derive anything from it (...)
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  • Charles Darwin as a statistical thinker.André Ariew - 2022 - Studies in History and Philosophy of Science Part A 95 (C):215-223.
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  • History of Science and its Sociological Reconstructions.Steven Shapin - 1982 - History of Science 20 (3):157-211.
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  • The wild type as concept and in experimental practice: A history of its role in classical genetics and evolutionary theory.Tarquin Holmes - 2017 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 63 (C):15-27.
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  • How Did Darwin Arrive at His Theory? The Secondary Literature to 1982.David R. Oldroyd - 1984 - History of Science 22 (4):325-374.
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  • Creation and the Problem of Charles Darwin.James R. Moore - 1981 - British Journal for the History of Science 14 (2):189-200.
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  • Notes on Charles Darwin's "Autobiography".Ralph Colp - 1985 - Journal of the History of Biology 18 (3):357 - 401.
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