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  1. Phylogenetic Systematics.Willi Hennig - 1966 - University of Illinois Press.
    Argues for the primacy of the phylogenetic system as the general reference system in biology. This book, first published in 1966, generated significant controversy and opened possibilities for evolutionary biology.
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  • Categories, life, and thinking.Michael T. Ghiselin - 1981 - Behavioral and Brain Sciences 4 (2):269-283.
    Classifying is a fundamental operation in the acquisition of knowledge. Taxonomic theory can help students of cognition, evolutionary psychology, ethology, anatomy, and sociobiology to avoid serious mistakes, both practical and theoretical. More positively, it helps in generating hypotheses useful to a wide range of disciplines. Composite wholes, such as species and societies, are “individuals” in the logical sense, and should not be treated as if they were classes. A group of analogous features is a natural kind, but a group of (...)
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  • (1 other version)The biological way of thought.Morton Beckner - 1968 - Berkeley,: University of California Press.
    Interprets biological theory while looking at work done on genetics, systematics and selection.
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  • Principles of Animal Taxonomy.George Gaylord Simpson - 1961 - Columbia University Press.
    The Development of Modern Taxonomy Taxonomy has a long history, going back to the ancient Greeks and to forerunners even less sophisticated in systematics. Our interest here is centered on modern taxonomy itself, and we shall largely ...
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  • A Radical Solution to the Species Problem.Michael T. Ghiselin - 1974 - Systematic Zoology 23 (4):536–544.
    Traditionally, species have been treated as classes. In fact they may be considered individuals. The logical term “individual” has been confused with a biological synonym for “organism.” If species are individuals, then: 1) their names are proper, 2) there cannot be instances of them, 3) they do not have defining properties, 4) their constituent organisms are parts, not members. “ Species " may be defined as the most extensive units in the natural economy such that reproductive competition occurs among their (...)
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  • Individuality, pluralism, and the phylogenetic species concept.Brent D. Mishler & Robert N. Brandon - 1987 - Biology and Philosophy 2 (4):397-414.
    The concept of individuality as applied to species, an important advance in the philosophy of evolutionary biology, is nevertheless in need of refinement. Four important subparts of this concept must be recognized: spatial boundaries, temporal boundaries, integration, and cohesion. Not all species necessarily meet all of these. Two very different types of pluralism have been advocated with respect to species, only one of which is satisfactory. An often unrecognized distinction between grouping and ranking components of any species concept is necessary. (...)
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  • Species concepts and the ontology of evolution.Joel Cracraft - 1987 - Biology and Philosophy 2 (3):329-346.
    Biologists and philosophers have long recognized the importance of species, yet species concepts serve two masters, evolutionary theory on the one hand and taxonomy on the other. Much of present-day evolutionary and systematic biology has confounded these two roles primarily through use of the biological species concept. Theories require entities that are real, discrete, irreducible, and comparable. Within the neo-Darwinian synthesis, however, biological species have been treated as real or subjectively delimited entities, discrete or nondiscrete, and they are often capable (...)
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  • (1 other version)Species.Philip Kitcher - 1984 - Philosophy of Science 51 (2):308-333.
    I defend a view of the species category, pluralistic realism, which is designed to do justice to the insights of many different groups of systematists. After arguing that species are sets and not individuals, I proceed to outline briefly some defects of the biological species concept. I draw the general moral that similar shortcomings arise for other popular views of the nature of species. These shortcomings arise because the legitimate interests of biology are diverse, and these diverse interests are reflected (...)
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  • (1 other version)The effect of essentialism on taxonomy—two thousand years of stasis.David L. Hull - 1964 - British Journal for the Philosophy of Science 15 (60):314-326.
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  • (1 other version)The effect of essentialism on taxonomy—two thousand years of stasis.David L. Hull - 1965 - British Journal for the Philosophy of Science 16 (61):1-18.
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  • On the foundations of biological systematics.Graham C. D. Griffiths - 1974 - Acta Biotheoretica 23 (3-4):85-131.
    The foundations of systematics lie in ontology, not in subjective epistemology. Systems and their elements should be distinguished from classes; only the latter are constructed from similarities. The term classification should be restricted to ordering into classes; ordering according to systematic relations may be called systematization.The theory of organization levels portrays the real world as a hierarchy of open systems, from energy quanta to ecosystems; followingHartmann these systems as extended in time are considered the primary units of reality. Organization levels (...)
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  • (1 other version)The philosophy of biology.David L. Hull & Michael Ruse (eds.) - 1998 - New York: Oxford University Press.
    Drawing on work of the past decade, this volume brings together articles from the philosophy, history, and sociology of science, and many other branches of the biological sciences. The volume delves into the latest theoretical controversies as well as burning questions of contemporary social importance. The issues considered include the nature of evolutionary theory, biology and ethics, the challenge from religion, and the social implications of biology today (in particular the Human Genome Project).
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  • (1 other version)The Language of Taxonomy: An Application of Symbolic Logic to the Study of Classificatory Systems.John R. Gregg - 1954 - New York,: Columbia University Press.
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  • Reply to Gregg.Roger C. Buck & David L. Hull - 1969 - Systematic Zoology 18 (3):354-357.
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  • The Growth of Biological Thought: Diversity, Evolution, and Inheritance.Ernst Mayr - 1982 - Harvard University Press.
    Explores the development of the ideas of evolutionary biology, particularly as affected by the increasing understanding of genetics and of the chemical basis of inheritance.
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  • An Annotated Linnean Hierarchy, with Comments on Natural Taxa and Competing Systems.E. O. Wiley - 1979 - Systematic Zoology 28:308-337.
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  • Individual Essences.Michael Losonsky - 1987 - American Philosophical Quarterly 24 (3):253 - 260.
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  • Are Species Really Individuals?David L. Hull - 1976 - Systematic Zoology 25:174–191.
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  • (1 other version)From biology to mathematics.J. H. Woodger - 1952 - British Journal for the Philosophy of Science 3 (9):1-21.
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  • Biological species as natural kinds.David B. Kitts & David J. Kitts - 1979 - Philosophy of Science 46 (4):613-622.
    The fact that the names of biological species refer independently of identifying descriptions does not support the view of Ghiselin and Hull that species are individuals. Species may be regarded as natural kinds whose members share an essence which distinguishes them from the members of other species and accounts for the fact that they are reproductively isolated from the members of other species. Because evolutionary theory requires that species be spatiotemporally localized their names cannot occur in scientific laws. If natural (...)
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  • A matter of individuality.David L. Hull - 1978 - Philosophy of Science 45 (3):335-360.
    Biological species have been treated traditionally as spatiotemporally unrestricted classes. If they are to perform the function which they do in the evolutionary process, they must be spatiotemporally localized individuals, historical entities. Reinterpreting biological species as historical entities solves several important anomalies in biology, in philosophy of biology, and within philosophy itself. It also has important implications for any attempt to present an "evolutionary" analysis of science and for sciences such as anthropology which are devoted to the study of single (...)
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  • Systematics and Biogeography.Gareth Nelson & Norman Platnick - 1981 - Harcourt, Brace and World.
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  • (10 other versions)On the Origin of Species by Means of Natural Selection.Charles Darwin - 1897 - New York: Heritage Press. Edited by George W. Davidson.
    ... Difficulty of distinguishing between Varieties and Species — Origin of Domestic ... and Origin— Principle of Selection anciently followed, its Effects— ...
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  • Phylogenetics: The Theory and Practice of Phylogenetic Systematics.E. O. Wiley - 1981 - Wiley.
    The long-awaited revision of the industry standard on phylogenetics Since the publication of the first edition of this landmark volume more than twenty-five years ago, phylogenetic systematics has taken its place as the dominant paradigm of systematic biology. It has profoundly influenced the way scientists study evolution, and has seen many theoretical and technical advances as the field has continued to grow. It goes almost without saying that the next twenty-five years of phylogenetic research will prove as fascinating as the (...)
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  • The Semantic Conception of Theories and Scientific Realism.Frederick Suppe - 1989 - University of Illinois Press.
    Frederick Suppe has come to enjoy a position of undisputed leadership in the post-positivistic philosophy of science.
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  • (10 other versions)The origin of species by means of natural selection.Charles Darwin - 1859 - Franklin Center, Pa.: Franklin Library. Edited by J. W. Burrow.
    ORIGIN OF SPECIES. INTRODUCTION. When on board HMS 'Beagle,' as naturalist, I was ranch struck with certain facts in the distribution of the organic beings ...
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  • Metaphors and typology in the development of botanical systematics 1690-1960, or the art of putting new wine in old bottles. [REVIEW]P. F. Stevens - 1984 - Taxon 33:169-211.
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  • Reconstructing The Past: Parsimony, Evolution, and Inference.Elliott Sober - 1988 - MIT Press.
    Reconstructing the Past seeks to clarify and help resolve the vexing methodological issues that arise when biologists try to answer such questions as whether human beings are more closely related to chimps than they are to gorillas. It explores the case for considering the philosophical idea of simplicity/parsimony as a useful principle for evaluating taxonomic theories of evolutionary relationships. For the past two decades, evolutionists have been vigorously debating the appropriate methods that should be used in systematics, the field that (...)
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  • Individualistic Classes.Leigh Valevann - 1976 - Philosophy of Science 43 (4):539-.
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  • The Triumph of the Darwinian Method.Michael T. Ghiselin - 1973 - Philosophy of Science 40 (3):466-467.
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  • (1 other version)Systematics and the Darwinian revolution.Kevin de Queiroz - 1988 - Philosophy of Science 55 (2):238-259.
    Taxonomies of living things and the methods used to produce them changed little with the institutionalization of evolutionary thinking in biology. Instead, the relationships expressed in existing taxonomies were merely reinterpreted as the result of evolution, and evolutionary concepts were developed to justify existing methods. I argue that the delay of the Darwinian Revolution in biological taxonomy has resulted partly from a failure to distinguish between two fundamentally different ways of ordering identified by Griffiths : classification and systematization. Classification consists (...)
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  • (2 other versions)The Open Society and its Enemies.Karl R. Popper - 1952 - Revue Philosophique de la France Et de l'Etranger 142:629-634.
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  • (2 other versions)The Open Society and Its Enemies.K. R. Popper - 1946 - Philosophy 21 (80):271-276.
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  • (1 other version)Species.Philip Kitcher - 1982 - Journal of Philosophy 79 (11):721-722.
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  • The Triumph of the Darwinian Method.Michael T. Ghiselin - 1969 - University of California Press.
    A coherent treatment of the flow of ideas throughout Darwin's works, this volume presents a unified theoretical system that explains Darwin's investigations, evaluating the literature from a historical, scientific, and philosophical perspective.
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  • The Logical Structure of the Linnaen Hierarchy.Roger C. Buck & David L. Hull - 1966 - Systematic Zoology 15 (2):97-111.
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  • Phylogenetic Systematics and Species Revisited.Kevin de Queiroz & Michael J. Donoghue - 1990 - Cladistics 6 (1):83-90.
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  • Evolution and Classification: The Reformation of Cladism.Mark Ridley - 1986 - Longman.
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  • Individualistic classes.Leigh van Valen - 1976 - Philosophy of Science 43 (4):539-541.
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  • (1 other version)The Philosophy of Biology. [REVIEW]Peter Achinstein - 1975 - Canadian Journal of Philosophy 4 (4):745-754.
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  • (1 other version)The language of taxonomy.John Richard Gregg - 1954 - New York,: Columbia University Press.
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  • Professor Hull and the evolution of science.L. Jonathan Cohen - 1974 - British Journal for the Philosophy of Science 25 (4):334-336.
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  • What does Ghiselin mean by “individual”?Joseph B. Kruskal - 1981 - Behavioral and Brain Sciences 4 (2):294-295.
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  • Natural kinds and literary accomplishments.Michael Ghiselin - 1980 - Michigan Quarterly Review 19:73-88.
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  • On Psychologism in the Logic of Taxonomic Controversies.Michael T. Ghiselin - 1966 - Systematic Zoology 15 (3):207-215.
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  • (1 other version)From Biology to Mathematics.J. H. Woodger - 1974 - Journal of Symbolic Logic 39 (2):353-354.
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  • Back to class: A note on the ontology of species.Arthur L. Caplan - 1981 - Philosophy of Science 48 (1):130-140.
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  • (1 other version)The Language of Taxonomy.John R. Gregg - 1957 - British Journal for the Philosophy of Science 8 (30):171-172.
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  • The Language of Taxonomy. An Application of Symbolic Logic to the Study of Classificatory Systems.John R. Gregg - 1958 - Studia Logica 8:323-326.
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  • Phylogenetic Systematics.Willi Hennig, D. Dwight Davis & Rainer Zangerl - 1980 - Philosophy of Science 47 (3):499-502.
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