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  1. 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 structure of metaphor: the way the language of metaphor works.Roger M. White - 1996 - Cambridge: Blackwell.
    This volume provides a philosophical introduction to and analysis of the study of metaphor. By proceeding from the concrete analysis of complex metaphors, White is able to identify a range of features which are incompatible with standard accounts of the way words function in metaphor.
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  • The Eclipse of Darwinism: Anti-Darwinian Evolution Theories in the Decades around 1900.Peter J. Bowler - 1984 - Journal of the History of Biology 17 (3):433-434.
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  • Models and metaphors.Max Black - 1962 - Ithaca, N.Y.,: Cornell University Press.
    Author Max Black argues that language should conform to the discovered regularities of experience it is radically mistaken to assume that the conception of language is a mirror of reality.
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  • Models and metaphors.Max Black - 1962 - Ithaca, N.Y.,: Cornell University Press.
    Author Max Black argues that language should conform to the discovered regularities of experience it is radically mistaken to assume that the conception of language is a mirror of reality.
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  • Talking about God: the concept of analogy and the problem of religious language.Roger M. White - 2010 - Burlington, VT: Ashgate.
    Introduction -- The mathematical roots of the concept of analogy -- Aristotle : the uses of analogy -- Aristotle : analogy and language -- Thomas Aquinas -- Immanuel Kant -- Karl Barth -- Final reflections.
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  • Mental causation.Stephen Yablo - 1992 - Philosophical Review 101 (2):245-280.
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  • Sociobiology: The New Synthesis.Edward O. Wilson - 1975 - Harvard University Press.
    welcomed by a new generation of students and scholars in all branches of learning.
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  • Sensitive and insensitive causation.James Woodward - 2006 - Philosophical Review 115 (1):1-50.
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  • Causation in biology: Stability, specificity, and the choice of levels of explanation.James Woodward - 2010 - Biology and Philosophy 25 (3):287-318.
    This paper attempts to elucidate three characteristics of causal relationships that are important in biological contexts. Stability has to do with whether a causal relationship continues to hold under changes in background conditions. Proportionality has to do with whether changes in the state of the cause “line up” in the right way with changes in the state of the effect and with whether the cause and effect are characterized in a way that contains irrelevant detail. Specificity is connected both to (...)
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  • Essay Review: Sociobiology: Twenty-Five Years Later. [REVIEW]Edward O. Wilson - 1975 - Journal of the History of Biology 33 (3):577-584.
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  • Causes That Make a Difference.C. Kenneth Waters - 2007 - Journal of Philosophy 104 (11):551-579.
    Biologists studying complex causal systems typically identify some factors as causes and treat other factors as background conditions. For example, when geneticists explain biological phenomena, they often foreground genes and relegate the cellular milieu to the background. But factors in the milieu are as causally necessary as genes for the production of phenotypic traits, even traits at the molecular level such as amino acid sequences. Gene-centered biology has been criticized on the grounds that because there is parity among causes, the (...)
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  • Causation: Omissions.Judith Jarvis Thomson - 2003 - Philosophy and Phenomenological Research 66 (1):81–103.
    But if there aren’t, then ‘they’ are not caused by anything and do not cause anything. That certainly appears to be false, however. John’s absence from our party might have been caused by his having fallen ill, and might cause a commotion. Dick’s not eating his soup might have been caused by his having fallen ill, and might cause a commotion.
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  • Causation: Omissions.Judith Jarvis Thomson - 2003 - Philosophy and Phenomenological Research 66 (1):81-103.
    But if there aren’t, then ‘they’ are not caused by anything and do not cause anything. That certainly appears to be false, however. John’s absence from our party might have been caused by his having fallen ill, and might cause a commotion. Dick’s not eating his soup might have been caused by his having fallen ill, and might cause a commotion.
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  • Made by each other: Organisms and their environment. [REVIEW]Kim Sterelny - 2005 - Biology and Philosophy 20 (1):21-36.
    The standard picture of evolution, is externalist: a causal arrow runs from environment to organism, and that arrow explains why organisms are as they are (Godfrey-Smith 1996). Natural selection allows a lineage to accommodate itself to the specifics of its environment. As the interior of Australia became hotter and drier, phenotypes changed in many lineages of plants and animals, so that those organisms came to suit the new conditions under which they lived. Odling-Smee, Laland and Feldman, building on the work (...)
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  • Causal democracy and causal contributions in developmental systems theory.Susan Oyama - 2000 - Philosophy of Science 67 (3):347.
    In reworking a variety of biological concepts, Developmental Systems Theory (DST) has made frequent use of parity of reasoning. We have done this to show, for instance, that factors that have similar sorts of impact on a developing organism tend nevertheless to be invested with quite different causal importance. We have made similar arguments about evolutionary processes. Together, these analyses have allowed DST not only to cut through some age-old muddles about the nature of development, but also to effect a (...)
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  • On niche construction and extended evolutionary theory.Samir Okasha - 2005 - Biology and Philosophy 20 (1):1-10.
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  • On the breadth and significance of niche construction: A reply to Griffiths, Okasha and Sterelny. [REVIEW]Kevin N. Laland, John Odling-Smee & Marcus W. Feldman - 2005 - Biology and Philosophy 20 (1):37-55.
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  • Metaphors we live by.George Lakoff & Mark Johnson - 1980 - Chicago: University of Chicago Press. Edited by Mark Johnson.
    The now-classic Metaphors We Live By changed our understanding of metaphor and its role in language and the mind. Metaphor, the authors explain, is a fundamental mechanism of mind, one that allows us to use what we know about our physical and social experience to provide understanding of countless other subjects. Because such metaphors structure our most basic understandings of our experience, they are "metaphors we live by"--metaphors that can shape our perceptions and actions without our ever noticing them. In (...)
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  • On inference in ecology and evolutionary biology: The problem of multiple causes.Ray Hilborn & Stephen C. Stearns - 1982 - Acta Biotheoretica 31 (3):145-164.
    If one investigates a process that has several causes but assumes that it has only one cause, one risks ruling out important causal factors. Three mechanisms account for this mistake: either the significance of the single cause under test is masked by noise contributed by the unsuspected and uncontrolled factors, or the process appears only when two or more causes interact, or the process appears when there are present any of a number of sufficient causes which are not mutally exclusive. (...)
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  • Language, Thought & Culture.Paul Henle - 1961 - Philosophy of Science 28 (3):328-330.
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  • The Logic of Hegel.Georg Wilhelm Friedrich Hegel & William Wallace - 2019 - Wentworth Press.
    This work has been selected by scholars as being culturally important, and is part of the knowledge base of civilization as we know it. This work was reproduced from the original artifact, and remains as true to the original work as possible. Therefore, you will see the original copyright references, library stamps (as most of these works have been housed in our most important libraries around the world), and other notations in the work. This work is in the public domain (...)
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  • What is the developmentalist challenge?Paul E. Griffiths & Robin D. Knight - 1998 - Philosophy of Science 65 (2):253-258.
    Kenneth C. Schaffner's paper is an important contribution to the literature on behavioral genetics and on genetics in general. Schaffner has a long record of injecting real molecular biology into philosophical discussions of genetics. His treatments of the reduction of Mendelian to molecular genetics first drew philosophical attention to the problems of detail that have fuelled both anti-reductionism and more sophisticated models of theory reduction. An injection of molecular detail into discussions of genetics is particularly necessary at the present time, (...)
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  • Review of 'Niche Construction'. [REVIEW]Paul E. Griffiths - 2005 - Biology and Philosophy 20 (1):11-20.
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  • Replicator II – judgement day.Paul E. Griffiths & Russell D. Gray - 1997 - Biology and Philosophy 12 (4):471-492.
    The Developmental Systems approach to evolution is defended against the alternative extended replicator approach of Sterelny, Smith and Dickison (1996). A precise definition is provided of the spatial and temporal boundaries of the life-cycle that DST claims is the unit of evolution. Pacé Sterelny et al., the extended replicator theory is not a bulwark against excessive holism. Everything which DST claims is replicated in evolution can be shown to be an extended replicator on Sterelny et al.s definition. Reasons are given (...)
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  • Developmental Systems and Evolutionary Explanation.P. E. Griffiths & R. D. Gray - 1994 - Journal of Philosophy 91 (6):277-304.
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  • Discussion: Three ways to misunderstand developmental systems theory.P. Griffiths - 2005 - Biology and Philosophy 20 (2-3):417-425.
    Developmental systems theory is a general theoretical perspective on development, heredity and evolution. It is intended to facilitate the study of interactions between the many factors that influence development without reviving `dichotomous' debates over nature or nurture, gene or environment, biology or culture. Several recent papers have addressed the relationship between DST and the thriving new discipline of evolutionary developmental biology. The contributions to this literature by evolutionary developmental biologists contain three important misunderstandings of DST.
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  • Discussion: Three Ways to Misunderstand Developmental Systems Theory.Paul E. Griffiths & Russell D. Gray - 2005 - Biology and Philosophy 20 (2-3):417-425.
    Developmental systems theory (DST) is a general theoretical perspective on development, heredity and evolution. It is intended to facilitate the study of interactions between the many factors that influence development without reviving `dichotomous' debates over nature or nurture, gene or environment, biology or culture. Several recent papers have addressed the relationship between DST and the thriving new discipline of evolutionary developmental biology (EDB). The contributions to this literature by evolutionary developmental biologists contain three important misunderstandings of DST.
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  • Causation as influence.David Lewis - 2000 - Journal of Philosophy 97 (4):182-197.
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  • Making Truth: Metaphor in Science.Theodore L. Brown - 2003 - University of Illinois Press.
    How does science work? _Making Truth: Metaphor in Science_ argues that most laypeople, and many scientists, do not have a clear understanding of how metaphor relates to scientific thinking. With stunning clarity, and bridging the worlds of scientists and nonscientists, Theodore L. Brown demonstrates the presence and the power of metaphorical thought. He presents a series of studies of scientific systems, ranging from the atom to current topics in chemistry and biology such as protein folding, chaperone proteins, and global warming. (...)
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  • Evolution in Four Dimensions: Genetic, Epigenetic, Behavioral, and Symbolic Variation in the History of Life.Eva Jablonka, Marion J. Lamb & Anna Zeligowski - 2005 - Bradford.
    Ideas about heredity and evolution are undergoing a revolutionary change. New findings in molecular biology challenge the gene-centered version of Darwinian theory according to which adaptation occurs only through natural selection of chance DNA variations. In Evolution in Four Dimensions, Eva Jablonka and Marion Lamb argue that there is more to heredity than genes. They trace four "dimensions" in evolution -- four inheritance systems that play a role in evolution: genetic, epigenetic, behavioral, and symbolic. These systems, they argue, can all (...)
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  • The triple helix: gene, organism, and environment.Richard C. Lewontin - 2000 - Cambridge, Mass.: Harvard University Press. Edited by Richard C. Lewontin.
    One of our most brilliant evolutionary biologists, Richard Lewontin has also been a leading critic of those--scientists and non-scientists alike--who would misuse the science to which he has contributed so much. In The Triple Helix, Lewontin the scientist and Lewontin the critic come together to provide a concise, accessible account of what his work has taught him about biology and about its relevance to human affairs. In the process, he exposes some of the common and troubling misconceptions that misdirect and (...)
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  • Biology as ideology: the doctrine of DNA.Richard C. Lewontin - 1991 - New York, NY: HarperPerennial.
    Following in the fashion of Stephen Jay Gould and Peter Medawar, one of the world's leading scientists examines how "pure science" is in fact shaped and guided by social and political needs and assumptions.
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  • Darwinism Evolving. System Dynamics and the Genealogy of Natural Selection.David J. Depew, Bruce H. Weber & Ernst Mayr - 1996 - History and Philosophy of the Life Sciences 18 (1):135.
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  • Developmental systems and evolutionary explanation.P. E. Griffiths & R. D. Gray - 1994 - Journal of Philosophy 91 (6):277-304.
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  • Evolutionary theory and the ultimate-proximate distinction in the human behavioral sciences.T. C. Scott-Phillips, T. E. Dickins & S. A. West - unknown
    To properly understand behavior, we must obtain both ultimate and proximate explanations. Put briefly, ultimate explanations are concerned with why a behavior exists, and proximate explanations are concerned with how it works. These two types of explanation are complementary and the distinction is critical to evolutionary explanation. We are concerned that they have become conflated in some areas of the evolutionary literature on human behavior. This article brings attention to these issues. We focus on three specific areas: the evolution of (...)
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  • The analysis of variance and the analysis of causes.Richard C. Lewontin - 1974 - American Journal of Human Genetics 26 (3):400-11.
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  • Encyclopedia of Birds.[author unknown] - 1985
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  • Metaphors We Live By.George Lakoff & Mark Johnson - 1980 - Ethics 93 (3):619-621.
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  • The Non-Darwinian Revolution: Reinterpreting a Historical Myth.Peter J. Bowler - 1990 - Journal of the History of Biology 23 (3):529-531.
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  • The Triple Helix: Gene, Organism, and Environment.Richard Lewontin - 2000 - Journal of the History of Biology 33 (3):611-612.
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  • The Non-Darwinian Revolution: Reinterpreting a Historical Myth.Peter Bowler - 1990 - Critica 22 (66):131-135.
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  • Darwinism Evolving: Systems Dynamics and the Genealogy of Natural Selection.Daniel J. Depew & Bruce H. Weber - 1996 - British Journal for the Philosophy of Science 47 (4):640-646.
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