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  1. Origins of Mendelism.Robert Cecil Olby - 1985 - Journal of the History of Biology 20 (1):132-133.
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  • Variation of animals and plants under domestication.Charles Darwin - 1988 - Washington Square, N.Y.: New York University Press. Edited by Harriet Ritvo.
    Are they needed? To be sure. The Darwinian industry, industrious though it is, has failed to provide texts of more than a handful of Darwin's books. If you want to know what Darwin said about barnacles (still an essential reference to cirripedists, apart from any historical importance) you are forced to search shelves, or wait while someone does it for you; some have been in print for a century; various reprints have appeared and since vanished." -Eric Korn,Times Literary Supplement Charles (...)
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  • On the Origin of Species: By Means of Natural Selection, or the Preservation of Favoured Races in the Struggle for Life.Charles Darwin - 1859 - San Diego: Sterling. Edited by David Quammen.
    Familiarity with Charles Darwin's treatise on evolution is essential to every well-educated individual. One of the most important books ever published--and a continuing source of controversy, a century and a half later--this classic of science is reproduced in a facsimile of the critically acclaimed first edition.
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  • The origin of species by means of natural selection, or, The preservation of favored races in the struggle for life.Charles Darwin - 1963 - New York: Modern Library. Edited by Paul Landacre & Douglas A. Dunstan.
    Perhaps the most readable and accessible of the great works of scientific imagination, The Origin of Species sold out on the day it was published in 1859. Theologians quickly labeled Charles Darwin the most dangerous man in England, and, as the Saturday Review noted, the uproar over the book quickly "passed beyond the bounds of the study and lecture-room into the drawing-room and the public street." Yet, after reading it, Darwin's friend and colleague T. H. Huxley had a different reaction: (...)
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  • The variation of animals and plants under domestication.Charles Darwin - 1868 - Baltimore, Md.: Johns Hopkins University Press. Edited by Harriet Ritvo.
    The publication of Darwin's On the Origin of Species in 1859 ignited a public storm he neither wanted nor enjoyed. Having offered his book as a contribution to science, Darwin discovered to his dismay that it was received as an affront by many scientists and as a sacrilege by clergy and Christian citizens. To answer the criticism that his theory was a theory only, and a wild one at that, he published two volumes in 1868 to demonstrate that evolution was (...)
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  • Variation and inheritance.Robert Olby - 2008 - In Michael Ruse & Robert J. Richards (eds.), The Cambridge companion to the "Origin of species". New York: Cambridge University Press.
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  • Laboratory science versus country-house experiments. The controversy between Julius Sachs and Charles Darwin.Soraya De Chadarevian - 1996 - British Journal for the History of Science 29 (1):17-41.
    In 1880, Charles Darwin publishedThe Power of Movement in Plants, a heavy volume of nearly six hundred pages in which he presented the results of many years of experiments conducted with his son Francis on the reaction of plants to the influence of light and gravity. His results contradicted the observations and explanations of the same phenomena offered by the German plant physiologist Julius Sachs in his influentialLehrbuch der Botanik(1868, English translation 1875). Darwin wished rather to ‘convert him than any (...)
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  • What Darwin Disturbed: The Biology That Might Have Been.Peter J. Bowler - 2008 - Isis 99 (3):560-567.
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  • What Darwin Disturbed: The Biology That Might Have Been.Peter J. Bowler - 2008 - Isis 99 (3):560-567.
    The launch of a revolutionary new scientific theory represents a rare occasion on which the apparently cumulative development of science might be influenced by particular events. Yet in the case of the Darwinian revolution it is often claimed that the theory of evolution by natural selection would have emerged more or less inevitably, given the scientific and cultural circumstances prevailing in mid-Victorian Britain. This essay challenges that claim by arguing that if Darwin had not been there to write his Origin (...)
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  • Gregor Mendel & His Precursors.Conway Zirkle - 1951 - Isis 42:97-104.
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  • Gregor Mendel & His Precursors.Conway Zirkle - 1951 - Isis 42 (2):97-104.
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  • Form, Reproduction and Inherited Characteristics in Aristotles GA.Charlotte Witt - 1985 - Phronesis 30:46.
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  • Aristotle and Modern Genetics.Thomas C. Vinci & Jason Scott Robert - 2005 - Journal of the History of Ideas 66 (2):201-221.
    We assess Aristotle's doctrine of the four causes in relation to current research on the development of organisms. Our goals are four-fold: first, to present and critically challenge what has become an orthodox interpretation of Aristotle among biologists; second, to present and defend a more adequate account of organismal development; third, to elaborate and justify a novel account of Aristotle's natural teleology, one at odds with the orthodox interpretation; and fourth, to illustrate how our reading of Aristotle, if right, permits (...)
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  • Hybrids, pure cultures, and pure lines: from nineteenth-century biology to twentieth-century genetics.Staffan Müller-Wille - 2007 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 38 (4):796-806.
    Prompted by recent recognitions of the omnipresence of horizontal gene transfer among microbial species and the associated emphasis on exchange, rather than isolation, as the driving force of evolution, this essay will reflect on hybridization as one of the central concerns of nineteenth-century biology. I will argue that an emphasis on horizontal exchange was already endorsed by ‘biology’ when it came into being around 1800 and was brought to full fruition with the emergence of genetics in 1900. The true revolution (...)
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  • Has Mendel's work been rediscovered?F. R. S. ScD. - 1936 - Annals of Science 1 (2):115-137.
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  • Essay Review: Progress and Its Problems. [REVIEW]Joe Cain - 1999 - Journal of the History of Biology 32 (1):197-204.
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  • Hybrids, pure cultures, and pure lines: from nineteenth-century biology to twentieth-century genetics.Staffan Müller-Wille - 2007 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 38 (4):796-806.
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  • Hybrids, pure cultures, and pure lines: from nineteenth-century biology to twentieth-century genetics.Staffan Müller-Wille - 2005 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 38 (4):796-806.
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  • Darwin’s Methodological Evolution.James G. Lennox - 2005 - Journal of the History of Biology 38 (1):85-99.
    A necessary condition for having a revolution named after you is that you are an innovator in your field. I argue that if Charles Darwin meets this condition, it is as a philosopher and methodologist. In 1991, I made the case for Darwin's innovative use of "thought experiment" in the "Origin." Here I place this innovative practice in the context of Darwin's methodological commitments, trace its origins back into Darwin's notebooks, and pursue Darwin's suggestion that it owes its inspiration to (...)
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  • Darwin's argument in the origin.M. J. S. Hodge - 1992 - Philosophy of Science 59 (3):461-464.
    Various claims have been made, recently, that Darwin's argumentation in the Origin instantiates and so supports some general philosophical proposal about scientific theorizing, for example, the "semantic view". But these claims are grounded in various incorrect analyses of that argumentation. A summary is given here of an analysis defended at greater length in several papers by the present author. The historical and philosophical advantages of this analysis are explained briefly. Darwin's argument comprises three distinct evidential cases on behalf of natural (...)
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  • Gregor Mendel and the laws of evolution.Sander Gliboff - 1999 - History of Science 37 (2):217-235.
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  • Has Mendel's work been rediscovered?R. Fisher - 1936 - Annals of Science 1 (2):115-137.
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  • The real objective of Mendel's paper: A response to Monaghan and Corcos. [REVIEW]Raphael Falk & Sahotra Sarkar - 1991 - Biology and Philosophy 6 (4):447-451.
    Mendel's work in hybridization is ipso facto a study in inheritance. He is explicit in his interest to formulate universal generalizations, and at least in the case of the independent segregation of traits, he formulated his conclusions in the form of a law. Mendel did not discern, however, the inheritance of traits from that of the potential for traits. Choosing to study discrete non-overlapping traits, this did not hamper his efforts.
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  • Linkage: From Particulate to Interactive Genetics. [REVIEW]Raphael Falk - 2003 - Journal of the History of Biology 36 (1):87 - 117.
    Genetics was established on a strict particulate conception of heredity. Genetic linkage, the deviation from independent segregation of Mendelian factors, was conceived as a function of the material allocation of the factors to the chromosomes, rather than to the multiple effects (pleiotropy) of discrete factors. Although linkage maps were abstractions they provided strong support for the chromosomal theory of inheritance. Direct Cytogenetic evidence was scarce until X-ray induced major chromosomal rearrangements allowed direct correlation of genetic and cytological rearrangements. Only with (...)
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  • Epigenetic Inheritance and Evolution: The Lamarckian Dimension.Eva Jablonka & Marion J. Lamb - 1995 - Oxford University Press UK.
    '...a challenging and useful book, both because it provokes a careful scrutiny of one's own basic ideas regarding evolutionary theory, and because it cuts across so many biological disciplines.' -The Quarterly Review of Biology 'In my view, this work exemplifies Theoretical Biology at its best...here is rampant speculation that is consistently based on cautious reasoning from the available data. Even more refreshing is the absence of sloganeering, grandstanding, and 'isms'.' -Biology and Philosophy 'Epigenetics is fundamental to understanding both development and (...)
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  • Matter, Life, and Generation: Eighteenth-Century Embryology and the Haller-Wolff Debate.Shirley A. Roe - 1981
    A case-study of the interaction between philosophical context and observational data in the practice of Science.
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  • Life Explained.Michel Morange - 2008 - Yale University Press.
    In this accessible and fascinating book, Michel Morange draws on recent advances in molecular genetics, evolutionary biology, astrobiology, and other disciplines to find today’s answers to the question of life.
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  • Origins of Mendelism.R. C. Olby & W. B. Provine - 1973 - Journal of the History of Biology 6 (1):125-154.
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