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Darwinian evolutionary ethics: between patriotism and sympathy

In Philip Clayton & Jeffrey Schloss (eds.), Evolution and Ethics: Human Morality in Biological and Religious Perspective. Wm. B. Eerdmans Publishing Co.. pp. 50--77 (2004)

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  1. Coevolution of neocortical size, group size and language in humans.R. I. M. Dunbar - 1993 - Behavioral and Brain Sciences 16 (4):681-694.
    Group size is a function of relative neocortical volume in nonhuman primates. Extrapolation from this regression equation yields a predicted group size for modern humans very similar to that of certain hunter-gatherer and traditional horticulturalist societies. Groups of similar size are also found in other large-scale forms of contemporary and historical society. Among primates, the cohesion of groups is maintained by social grooming; the time devoted to social grooming is linearly related to group size among the Old World monkeys and (...)
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  • On the conflicts between biological and social evolution and between psychology and moral tradition.Donald T. Campbell - 1976 - Zygon 11 (3):167-208.
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  • The Biology of Moral Systems.Richard D. Alexander - 1987 - Aldine de Gruyter.
    Despite wide acceptance that the attributes of living creatures have appeared through a cumulative evolutionary process guided chiefly by natural selection, many human activities have seemed analytically inaccessible through such an approach. Prominent evolutionary biologists, for example, have described morality as contrary to the direction of biological evolution, and moral philosophers rarely regard evolution as relevant to their discussions. -/- The Biology of Moral Systems adopts the position that moral questions arise out of conflicts of interest, and that moral systems (...)
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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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  • Adaptation and Natural Selection: A Critique of Some Current Evolutionary Thought.William C. Wimsatt - 1970 - Philosophy of Science 37 (4):620-623.
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  • Social Darwinism in American Thought, 1860-1915.Morton G. White - 1945 - Journal of the History of Ideas 6 (1):119.
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  • (1 other version)Unto Others: The Evolution and Psychology of Unselfish Behavior.Paul E. Griffiths - 2002 - Mind 111 (441):178-182.
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  • Unto Others: The Evolution and Psychology of Unselfish Behavior.Elliott Sober & David Sloan Wilson - 1998 - Harvard University Press.
    The authors demonstrate that unselfish behavior is in fact an important feature of both biological and human nature. Their book provides a panoramic view of altruism throughout the animal kingdom--from self-sacrificing parasites to the human capacity for selflessness--even as it explains the evolutionary sense of such behavior.
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  • (1 other version)Darwin and the Emergence of Evolutionary Theories of Mind and Behavior.Daniel C. Dennett - 1989 - Philosophy of Science 56 (3):540-543.
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  • (1 other version)Darwin and the Emergence of Evolutionary Theories of Mind and Behavior.Daniel C. Dennett - 1989 - Journal of the History of Biology 22 (2):361-367.
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  • Complex societies.Peter J. Richerson & Robert Boyd - 1999 - Human Nature 10 (3):253-289.
    The complexity of human societies of the past few thousand years rivals that of social insect societies. We hypothesize that two sets of social “instincts” underpin and constrain the evolution of complex societies. One set is ancient and shared with other social primate species, and one is derived and unique to our lineage. The latter evolved by the late Pleistocene, and led to the evolution of institutions of intermediate complexity in acephalous societies. The institutions of complex societies often conflict with (...)
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  • (8 other versions)The descent of man, and selection in relation to sex.Charles Darwin - 1871 - New York: Plume. Edited by Carl Zimmer.
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  • Social Darwinism in American Thought, 1860-1915.Richard Hofstadter - 1945 - Science and Society 9 (4):369-372.
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  • The evolution of human ultra-sociality.Rob Boyd - manuscript
    E.O. Wilson (1975) described humans as one of the four pinnacles of social evolution. The other pinnacles are the colonial invertebrates, the social insects, and the non-human mammals. Wilson separated human sociality from that of the rest of the mammals because, with the exception of the social insect like Naked Mole Rats, only humans have generated societies of a grade of complexity that approaches that of the social insects and colonial invertebrates. In the last few millennia, human societies have even (...)
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  • Why culture is common, but cultural evolution is rare.Peter Richerson - manuscript
    If culture is defined as variation acquired and maintained by social learning, then culture is common in nature. However, cumulative cultural evolution resulting in behaviors that no individual could invent on their own is limited to humans, song birds, and perhaps chimpanzees. Circumstantial evidence suggests that cumulative cultural evolution requires the capacity for observational learning. Here, we analyze two models the evolution of psychological capacities that allow cumulative cultural evolution. Both models suggest that the conditions which allow the evolution of (...)
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  • Institutional evolution in the holocene: The rise of complex societies.Peter Richerson - manuscript
    Summary: The evolution of complex societies began when agricultural subsistence systems raised human population densities to levels that would support large scale cooperation, and division of labor. All agricultural origins sequences postdate 11,500 years ago probably because late Pleistocene climates we extremely variable, dry, and the atmosphere was low in carbon dioxide. Under such conditions, agriculture was likely impossible. However, the tribal scale societies of the Pleistocene did acquire, by geneculture coevolution, tribal social instincts that simultaneously enable and constrain the (...)
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  • (1 other version)Group Beneficial Norms Can Spread Rapidly in a Structured Population.Robert Boyd & Peter J. Richerson - unknown
    Group beneficial norms are common in human societies. The persistence of such norms is consistent with evolutionary game theory, but existing models do not provide a plausible explanation for why they are common. We show that when a model of imitation used to derive replicator dynamics in isolated populations is generalized to allow for population structure, group beneficial norms can spread rapidly under plausible conditions. We also show that this mechanism allows recombination of different group beneficial norms arising in..
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  • (2 other versions)The evolution of altruistic punishment.Peter Richerson - manuscript
    Robert Boyd*†, Herbert Gintis‡, Samuel Bowles§, and Peter J. Richerson¶.
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  • The Biology of Moral Systems.[author unknown] - 1987 - Tijdschrift Voor Filosofie 54 (2):343-343.
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