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  1. Humboldt, Darwin, and romantic resonance in science.Xuansong Liu - 2022 - Studies in History and Philosophy of Science Part A 92 (C):196-208.
    There have been constant and multiple endeavours to argue for Darwin's both epistemic and practical debt to Romanticism. Almost all of these arguments emphasise Darwin's theoretical and aesthetic associations with Alexander von Humboldt, who, from a prevailing Darwin-centred perspective, is in turn usually oversimplified as an undisputed incarnation of Romanticism. The antagonistic view, however, develops nothing other than another stereotype of Humboldt as an anti-idealistic, pro-French, and even highly Anglophone empiricist naturalist, and accordingly rejects the claim of a romantic Darwin (...)
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  • Sir John F. W. Herschel and Charles Darwin: Nineteenth-Century Science and Its Methodology.Charles H. Pence - 2018 - Hopos: The Journal of the International Society for the History of Philosophy of Science 8 (1):108-140.
    There are a bewildering variety of claims connecting Darwin to nineteenth-century philosophy of science—including to Herschel, Whewell, Lyell, German Romanticism, Comte, and others. I argue here that Herschel’s influence on Darwin is undeniable. The form of this influence, however, is often misunderstood. Darwin was not merely taking the concept of “analogy” from Herschel, nor was he combining such an analogy with a consilience as argued for by Whewell. On the contrary, Darwin’s Origin is written in precisely the manner that one (...)
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  • The Cell and Protoplasm as Container, Object, and Substance, 1835–1861.Daniel Liu - 2017 - Journal of the History of Biology 50 (4):889-925.
    (Recipient of the 2020 Everett Mendelsohn Prize.) This article revisits the development of the protoplasm concept as it originally arose from critiques of the cell theory, and examines how the term “protoplasm” transformed from a botanical term of art in the 1840s to the so-called “living substance” and “the physical basis of life” two decades later. I show that there were two major shifts in biological materialism that needed to occur before protoplasm theory could be elevated to have equal status (...)
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  • Cell theory, specificity, and reproduction, 1837–1870.Staffan Müller-Wille - 2010 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 41 (3):225-231.
    The cell is not only the structural, physiological, and developmental unit of life, but also the reproductive one. So far, however, this aspect of the cell has received little attention from historians and philosophers of biology. I will argue that cell theory had far-reaching consequences for how biologists conceptualized the reproductive relationships between germs and adult organisms. Cell theory, as formulated by Theodor Schwann in 1839, implied that this relationship was a specific and lawful one, that is, that germs of (...)
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  • The tree of life: introduction to an evolutionary debate. [REVIEW]Maureen A. O’Malley, William Martin & John Dupré - 2010 - Biology and Philosophy 25 (4):441-453.
    The ‘Tree of Life’ is intended to represent the pattern of evolutionary processes that result in bifurcating species lineages. Often justified in reference to Darwin’s discussions of trees, the Tree of Life has run up against numerous challenges especially in regard to prokaryote evolution. This special issue examines scientific, historical and philosophical aspects of debates about the Tree of Life, with the aim of turning these criticisms towards a reconstruction of prokaryote phylogeny and even some aspects of the standard evolutionary (...)
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  • The many chances of Charles Darwin. [REVIEW]Charles H. Pence - 2015 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 53:107-110.
    An essay review of Johnson's Darwin's Dice, examining Darwin's use of chance throughout his corpus.
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  • Race before Darwin: Variation, adaptation and the natural history of man in post-Enlightenment Edinburgh, 1790–1835.Bill Jenkins - 2020 - British Journal for the History of Science 53 (3):333-350.
    This paper draws on material from the dissertation books of the University of Edinburgh's student societies and surviving lecture notes from the university's professors to shed new light on the debates on human variation, heredity and the origin of races between 1790 and 1835. That Edinburgh was the most important centre of medical education in the English-speaking world in this period makes this a particularly significant context. By around 1800 the fixed natural order of the eighteenth century was giving way (...)
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  • Darwin and Cirripedia Prior to 1846: Exploring the Origins of the Barnacle Research. [REVIEW]Alan C. Love - 2002 - Journal of the History of Biology 35 (2):251-289.
    Phillip Sloan has thoroughly documented the importance of Darwin's general invertebrate research program in the period from 1826 to 1836 and demonstrated how it had an impact on his conversion to transformism. Although Darwin later spent eight years of his life investigating barnacles, this period has received less treatment in studies of Darwin and the development of his thought. The most prominent question for the barnacle period that has been attended to is why Darwin "delayed" in publishing his theory of (...)
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  • Cell theory, specificity, and reproduction, 1837–1870.Staffan Müller-Wille - 2010 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 41 (3):225-231.
    The cell is not only the structural, physiological, and developmental unit of life, but also the reproductive one. So far, however, this aspect of the cell has received little attention from historians and philosophers of biology. I will argue that cell theory had far-reaching consequences for how biologists conceptualized the reproductive relationships between germs and adult organisms. Cell theory, as formulated by Theodor Schwann in 1839, implied that this relationship was a specific and lawful one, that is, that germs of (...)
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  • Darwin: The theory years. [REVIEW]Phillip R. Sloan - 1991 - Biology and Philosophy 6 (1):107-114.
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  • H. G. Bronn and the History of Nature.Sander Gliboff - 2007 - Journal of the History of Biology 40 (2):259 - 294.
    The German paleontologist H. G. Bronn is best remembered for his 1860 translation and critique of Darwin's Origin of Species, and for supposedly twisting Darwinian evolution into conformity with German idealistic morphology. This analysis of Bronn's writings shows, however, that far from being mired in an outmoded idealism that confined organic change to predetermined developmental pathways, Bronn had worked throughout the 1840s and 1850s on a new, historical approach to life. He had been moving from the study of plant and (...)
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  • Trees, Coral, and Seaweed: An Interpretation of Sketches Found in Darwin’s Papers.Kees van Putten - 2020 - Journal of the History of Biology 53 (1):5-44.
    The sole diagram in On the Origin of Species is generally considered to be merely an illustration of Darwin’s ideas, but such an interpretation ignores the fact that Darwin himself expressly stated that the diagram helped him to discover and express his ideas. This article demonstrates that developing the so-called “tree diagram” substantially aided Darwin’s heuristics. This demonstration is based on an interpretation of the diagram and of 17 sketches found in Darwin’s scientific papers. The key to this interpretation is (...)
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  • Bourdieu’s Cleft Sociology of Science.Charles Camic - 2011 - Minerva 49 (3):275-293.
    The paper examines Pierre Bourdieu’s extensive writings on the production of scientific knowledge. The study shows that Bourdieu offered not one but two - significantly different - approaches to scientific knowledge production, one formulated in his theoretical, or programmatic, writings on the subject, the other developed in his empirical writings. Addressing the question as to the relevance of Bourdieu’s work for science studies, the analysis argues that the former of these two approaches is at once very visible in Bourdieu’s work (...)
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  • Darwin as a young scientist.Phillip R. Sloan - 1987 - Biology and Philosophy 2 (1):93-106.
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