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Populations, species and evolution: An abridgment of Animal species and evolution

Belknap Press of Harvard University Press (1970)

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  1. Hypotheses are like people — some fit, some unfit.Ray H. Bixler - 1983 - Behavioral and Brain Sciences 6 (1):104-105.
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  • Explaining inbreeding avoidance requires more complex models.Martin Daly & Margo Wilson - 1983 - Behavioral and Brain Sciences 6 (1):105-105.
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  • Opportunity costs of inbreeding.Richard Dawkins - 1983 - Behavioral and Brain Sciences 6 (1):105-106.
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  • Human inbreeding avoidance: Culture in nature.Pierre L. van den Berghe - 1983 - Behavioral and Brain Sciences 6 (1):91-102.
    Much clinical and ethnographic evidence suggests that humans, like many other organisms, are selected to avoid close inbreeding because of the fitness costs of inbreeding depression. The proximate mechanism of human inbreeding avoidance seems to be precultural, and to involve the interaction of genetic predispositions and environmental conditions. As first suggested by E. Westermarck, and supported by evidence from Israeli kibbutzim, Chinese sim-pua marriage, and much convergent ethnographic and clinical evidence, humans negatively imprint on intimate associates during a critical period (...)
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  • Monistic-Pluralistic Dispute on Living World Genus.Tonći Kokić - 2009 - Filozofska Istrazivanja 29 (2):365-380.
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  • The recent historiography of genetics.Ernst Mayr - 1973 - Journal of the History of Biology 6 (1):125-154.
    It is evident how much Olby and Provine have contributed to a better understanding of the emergence of genetics. It is equally evident, I believe, how many obscure issues still remain to be elucidated. Indeed, their volumes have raised as many new questions as they have answered old ones. In particular, the role of constructive as well as retarding contemporary concepts in the development of new generalizations still requires far more analysis. The somewhat independent trends of various national schools and (...)
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  • Classes or Individuals? The Paradox of Systematics Revisited.Alessandro Rapini - 2004 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 35 (4):675-695.
    The circumscription of taxa and classification of organisms are fundamental tasks in the systematization of biological diversity. Their success depends on a unified idea concerning the species concept, evolution, and taxonomy; paradoxically, however, it requires a complete distinction between taxa and evolutionary units. To justify this view, I discuss these three topics of systematics. Species concepts are examined, and I propose a redefinition for the Taxonomic Species Concept based on nomenclatural properties, in which species are classes conventionally represented by a (...)
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  • Species, sets, and the derivative nature of philosophy.Leigh M. Valen - 1988 - Biology and Philosophy 3 (1):49-66.
    Concepts and methods originating in one discipline can distort the structure of another when they are applied to the latter. I exemplify this mostly with reference to systematic biology, especially problems which have arisen in relation to the nature of species. Thus the received views of classes, individuals (which term I suggest be replaced by units to avoid misunderstandings), and sets are all inapplicable, but each can be suitably modified. The concept of fuzzy set was developed to deal with species (...)
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  • A note on Simberloff's 'succession of paradigms in ecology'.Marjorie Grene - 1980 - Synthese 43 (1):41 - 45.
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  • Where's the species? Comments on the phylogenetic species concepts.Marc Ereshefsky - 1989 - Biology and Philosophy 4 (1):89-96.
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