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  1. Investigations.Stuart A. Kauffman - 2000 - Oxford University Press.
    A fascinating exploration of the very essence of life itself sheds new light on the order and evolution in complex life systems and defines and explains autonomous agents and work within the contexts of thermodynamics and information theory, setting the stage for a dramatic technological revolution. 50,000 first printing.
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  • The Origins of Order: Self Organization and Selection in Evolution.Stuart A. Kauffman - 1993 - Oxford University Press.
    Stuart Kauffman here presents a brilliant new paradigm for evolutionary biology, one that extends the basic concepts of Darwinian evolution to accommodate recent findings and perspectives from the fields of biology, physics, chemistry and mathematics. The book drives to the heart of the exciting debate on the origins of life and maintenance of order in complex biological systems. It focuses on the concept of self-organization: the spontaneous emergence of order widely observed throughout nature. Kauffman here argues that self-organization plays an (...)
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  • On Agency, Emergence and Organization.Philip Clayton & Stuart Kauffman - 2006 - Biology and Philosophy 21 (4):501-521.
    Ultimately we will only understand biological agency when we have developed a theory of the organization of biological processes, and science is still a long way from attaining that goal. It may be possible nonetheless to develop a list of necessary conditions for the emergence of minimal biological agency. The authors offer a model of molecular autonomous agents which meets the five minimal physical conditions that are necessary (and, we believe, conjointly sufficient) for applying agential language in biology: autocatalytic reproduction; (...)
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  • A Mathematical Theory of Communication.Claude Elwood Shannon - 1948 - Bell System Technical Journal 27 (April 1924):379–423.
    The mathematical theory of communication.
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  • On emergence, agency, and organization.Stuart Kauffman & Philip Clayton - 2006 - Biology and Philosophy 21 (4):501-521.
    Ultimately we will only understand biological agency when we have developed a theory of the organization of biological processes, and science is still a long way from attaining that goal. It may be possible nonetheless to develop a list of necessary conditions for the emergence of minimal biological agency. The authors offer a model of molecular autonomous agents which meets the five minimal physical conditions that are necessary (and, we believe, conjointly sufficient) for applying agential language in biology: autocatalytic reproduction; (...)
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  • Chance and necessity.Jacques Monod - 1971 - New York,: Vintage Books.
    Change and necessity is a statement of Darwinian natural selection as a process driven by chance necessity, devoid of purpose or intent.
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  • The Blackwell guide to the philosophy of science.Peter K. Machamer & Michael Silberstein (eds.) - 2002 - Malden, Mass.: Blackwell.
    This volume presentsa definitive introduction to the core areas of philosophy of science.
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  • The concept of information in biology.John Maynard Smith - 2000 - Philosophy of Science 67 (2):177-194.
    The use of informational terms is widespread in molecular and developmental biology. The usage dates back to Weismann. In both protein synthesis and in later development, genes are symbols, in that there is no necessary connection between their form (sequence) and their effects. The sequence of a gene has been determined, by past natural selection, because of the effects it produces. In biology, the use of informational terms implies intentionality, in that both the form of the signal, and the response (...)
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  • Reply to commentaries.John Maynard Smith - 2000 - Philosophy of Science 67 (2):214-218.
    Inevitably, much of this reply will concern points on which I disagree with one or other of the commentators. I should start, therefore, by saying that I am delighted to find that their thinking is in many ways similar to my own, and that a serious attempt is under way to clarify the concept of information in biology.
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