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The Evolutionary Dynamics of Complex Systems

Oxford University Press (1988)

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  1. More Worry and Less Love?Steven French - 2008 - Metascience 17 (1):1-26.
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  • Solar Communism.David Schwartzman - 1996 - Science and Society 60 (3):307 - 331.
    A global economy powered by non-solar energy sources is limited by global warming, finite reserves and concomitant insults to the earth's biosphere, including our own species. Some of these impacts, such as loss of biodiversity, will be irreversible. Without constraints on the reproduction of capital, the global driver of the contemporary environmental crisis, these impacts will intensify. This is not a necessary outcome for an economy utilizing the high efficiency capture of solar energy, a conclusion informed by consideration of the (...)
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  • The evolutionary structure of scientific theories.John S. Wilkins - 1998 - Biology and Philosophy 13 (4):479–504.
    David Hull's (1988c) model of science as a selection process suffers from a two-fold inability: (a) to ascertain when a lineage of theories has been established; i.e., when theories are descendants of older theories or are novelties, and what counts as a distinct lineage; and (b) to specify what the scientific analogue is of genotype and phenotype. This paper seeks to clarify these issues and to propose an abstract model of theories analogous to particulate genetic structure, in order to reconstruct (...)
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  • Evolution in thermodynamic perspective: An ecological approach. [REVIEW]Bruce H. Weber, David J. Depew, C. Dyke, Stanley N. Salthe, Eric D. Schneider, Robert E. Ulanowicz & Jeffrey S. Wicken - 1989 - Biology and Philosophy 4 (4):373-405.
    Recognition that biological systems are stabilized far from equilibrium by self-organizing, informed, autocatalytic cycles and structures that dissipate unusable energy and matter has led to recent attempts to reformulate evolutionary theory. We hold that such insights are consistent with the broad development of the Darwinian Tradition and with the concept of natural selection. Biological systems are selected that re not only more efficient than competitors but also enhance the integrity of the web of energetic relations in which they are embedded. (...)
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  • Luhmanns Flucht in die Paradoxie.Walter L. Bühl - 2000 - In Peter-Ulrich Merz-Benz & Gerhard Wagner (eds.), Die Logik Der Systeme. Universitätsverlag Konstanz. pp. 225--256.
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  • Deleuze and Geophilosophy: A Guide and Glossary.Mark Bonta & John Protevi - 2019 - Edinburgh University Press.
    This is the first book to use complexity theory to open up the 'geophilosophy' developed by Gilles Deleuze and Félix Guattari in A Thousand Plateaus, Anti-Oedipus and What is Philosophy?.
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  • Syntactic Measures of Complexity.Bruce Edmonds - unknown
    1.1 - Background - page 17 1.2 - The Style of Approach - page 18 1.3 - Motivation - page 19 1.4 - Style of Presentation - page 20 1.5 - Outline of the Thesis - page 21..
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  • Natural selection and self-organization.Bruce H. Weber & David J. Depew - 1996 - Biology and Philosophy 11 (1):33-65.
    The Darwinian concept of natural selection was conceived within a set of Newtonian background assumptions about systems dynamics. Mendelian genetics at first did not sit well with the gradualist assumptions of the Darwinian theory. Eventually, however, Mendelism and Darwinism were fused by reformulating natural selection in statistical terms. This reflected a shift to a more probabilistic set of background assumptions based upon Boltzmannian systems dynamics. Recent developments in molecular genetics and paleontology have put pressure on Darwinism once again. Current work (...)
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  • The philosophical dullness of classical ecology, and a Levinsian alternative.Yrjö Haila & Peter Taylor - 2001 - Biology and Philosophy 16 (1):93-102.
    Ecology has had a lower profile in Biology & Philosophy than one might expect on the basis of the attention ecology is given in public discussions in relation to environmental issues. Our tentative explanation is that ecology appears theoretically redundant within biology and, consequently, philosophically challenging problemsrelated to biology are commonly supposed to be somewhere else, particularly in the molecular sphere. Richard Levins has recognized the genuine challenges posed by ecology for theoretical and philosophical thinking in biology. This essay sets (...)
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  • Beyond the nature-culture dualism.Yrjö Haila - 2000 - Biology and Philosophy 15 (2):155-175.
    It is commonly accepted that thewestern view of humanity's place in nature isdominated by a dualistic opposition between nature andculture. Historically this has arisen fromexternalization of nature in both productive andcognitive practices; instances of such externalizationhave become generalized. I think the dualism can bedecomposed by identifying dominant elements in eachparticular instantiation and showing that their strictseparation evaporates under close scrutiny. The philosophical challenge this perspective presents isto substitute concrete socioecological analysis forfoundational metaphysics. A review of majorinterpretations of the history of (...)
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  • A complex systems theory of teleology.Wayne Christensen - 1996 - Biology and Philosophy 11 (3):301-320.
    Part I [sections 2–4] draws out the conceptual links between modern conceptions of teleology and their Aristotelian predecessor, briefly outlines the mode of functional analysis employed to explicate teleology, and develops the notion of cybernetic organisation in order to distinguish teleonomic and teleomatic systems. Part II is concerned with arriving at a coherent notion of intentional control. Section 5 argues that intentionality is to be understood in terms of the representational properties of cybernetic systems. Following from this, section 6 argues (...)
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  • Deleuzian Interrogations : A Conversation with Manuel DeLanda and John Protevi.Thanem Torkild - unknown
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