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  1. The Transmission of Science.R. G. A. Dolby - 1977 - History of Science 15 (1):1-43.
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  • Was Mendel's paper on Pisum neglected or unknown?Michael H. MacRoberts - 1985 - Annals of Science 42 (3):339-345.
    Recent reinterpretations of Mendel's 1865 paper on Pisum as normal nineteenth-century science do not automatically solve the neglect issue. Those who argue that there were cognitive grounds for its neglect have only created a greater paradox, for if Mendel's work was not ahead of its time but was simply excellent normal science, then it should have been used by his contemporaries, as indeed was his work on Hieracium, which was average work. An examination of the nineteenth-century data in terms of (...)
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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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  • Cementing Science. Understanding Science through Its Development.Veli Virmajoki - 2019 - Dissertation, University of Turku
    In this book, I defend the present-centered approach in historiography of science (i.e. study of the history of science), build an account for causal explanations in historiography of science, and show the fruitfulness of the approach and account in when we attempt to understand science. -/- The present-centered approach defines historiography of science as a field that studies the developments that led to the present science. I argue that the choice of the targets of studies in historiography of science should (...)
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  • Mendel's Theory: Its Context and Plausibility.Margaret Campbell - 1982 - Centaurus 26 (1):38-69.
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  • Mixing Metaphors: Science and Religion or Natural Philosophy and Theology in Early Modern Europe.Margaret J. Osler - 1998 - History of Science 36 (1):91-113.
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  • Filosofia e História da Biologia.Antonio Carlos Sequeira Fernandes, Ricardo Pereira, Ismar de Souza Carvalho, Débora de Almeida Azevedo, Fernando Dias de Avila-Pires, Gerda Maísa Jensen, Maria Elice Brzezinski Prestes, Lilian Al-Chueyr Pereira Martins, Lourdes Della Justina & Ana Maria de Andrade Caldeira - 2010 - Filosofia 5 (1).
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  • (1 other version)Special Issue: Philosophical Considerations in the Teaching of Biology. Part II, Evolution, Development and Genetics.Kostas Kampourakis (ed.) - 2013 - Springer (Science & Education).
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  • Galton's ‘Law of Ancestral Heredity’: Its Influence on the Early Development of Human Genetics.Peter Froggatt & N. C. Nevin - 1971 - History of Science 10 (1):1-27.
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  • Exemplarising the Origin of Genetics: A Path to Genetics (From Mendel to Bateson).Yafeng Shan - 2016 - Dissertation, University College London
    This thesis aims to propose and defend a new way of analysing and understanding the origin of genetics (from Mendel to Bateson). Traditionally philosophers used to analyse the history of genetics in terms of theories. However, I will argue that this theory-based approach is highly problematic. In Chapter 1, I shall critically review the theory-driven approach to analysisng the history of genetics and diagnose its problems. In Chapter 2, inspired by Kuhn’s concept “exemplar”, I shall make a new interpretation of (...)
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