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Human destiny

London [etc.]: Longmans, Green and co. (1947)

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  1. Thermodynamical Arguments Against Evolution.Jason Rosenhouse - 2017 - Science & Education 26 (1-2):3-25.
    The argument that the second law of thermodynamics contradicts the theory of evolution has recently been revived by anti-evolutionists. In its basic form, the argument asserts that whereas evolution implies that there has been an increase in biological complexity over time, the second law, a fundamental principle of physics, shows this to be impossible. Scientists have responded primarily by noting that the second law does not rule out increases in complexity in open systems, and since the Earth receives energy from (...)
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  • Tracing a trajectory.James M. Gustafson - 1995 - Zygon 30 (2):177-190.
    Theology and ethics intersect with sciences at different points depending upon whether the scholars involved are interested in, for example, general epistemological issues or practical moral judgments. The intersection affects theology and ethics in different ways, depending upon various commitments or resistances on the part of theologians. The author surveys his own writings to show how openness to the sciences has had an impact on various phases of his work and what issues remain somewhat unresolved.
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  • The argument from biogenesis: Probabilities against a natural origin of life. [REVIEW]R. C. Carrier - 2004 - Biology and Philosophy 19 (5):739-764.
    No evidence exists that the accidental origin of life is too improbable to have occurred naturally, but there are numerous attempts to argue so. Dizzying statistics are cited to show that a god had to be responsible. This paper identifies the Argument from Biogenesis, then explains why all these arguments so far fail, and what would actually have to be done to make such an argument succeed. Describes seven general types of error, with examples. Includes a table of forty-seven statistics (...)
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  • On Time, Information and Life.O. Costa Beauregard - 1968 - Dialectica 22 (3-4):187-205.
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  • Proteins and Genes, Singletons and Species.Branko Kozulić - unknown
    Recent experimental data from proteomics and genomics are interpreted here in ways that challenge the predominant viewpoint in biology according to which the four evolutionary processes, including mutation, recombination, natural selection and genetic drift, are sufficient to explain the origination of species. The predominant viewpoint appears incompatible with the finding that the sequenced genome of each species contains hundreds, or even thousands, of unique genes - the genes that are not shared with any other species. These unique genes and proteins, (...)
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