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  1. On the Meaning of Chance in Biology.James A. Coffman - 2014 - Biosemiotics 7 (3):377-388.
    Chance has somewhat different meanings in different contexts, and can be taken to be either ontological or epistemological . Here I argue that, whether or not it stems from physical indeterminacy, chance is a fundamental biological reality that is meaningless outside the context of knowledge. To say that something happened by chance means that it did not happen by design. This of course is a cornerstone of Darwin’s theory of evolution: random undirected variation is the creative wellspring upon which natural (...)
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  • Process ecology: Stepping stones to biosemiosis.Robert E. Ulanowicz - 2010 - Zygon 45 (2):391-407.
    Many in science are disposed not to take biosemiotics seriously, dismissing it as too anthropomorphic. Furthermore, biosemiotic apologetics are cast in top-down fashion, thereby adding to widespread skepticism. An effective response might be to approach biosemiotics from the bottom up, but the foundational assumptions that support Enlightenment science make that avenue impossible. Considerations from ecosystem studies reveal, however, that those conventional assumptions, although once possessing great utilitarian value, have come to impede deeper understanding of living systems because they implicitly depict (...)
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  • Hierarchical structures.Stanley N. Salthe - 2012 - Axiomathes 22 (3):355 - 383.
    This paper compares the two known logical forms of hierarchy, both of which have been used in models of natural phenomena, including the biological. I contrast their general properties, internal formal relations, modes of growth (emergence) in applications to the natural world, criteria for applying them, the complexities that they embody, their dynamical relations in applied models, and their informational relations and semiotic aspects.
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  • Enabling conditions for 'open-ended evolution'.Kepa Ruiz-Mirazo, Jon Umerez & Alvaro Moreno - 2008 - Biology and Philosophy 23 (1):67-85.
    In this paper we review and argue for the relevance of the concept of open-ended evolution in biological theory. Defining it as a process in which a set of chemical systems bring about an unlimited variety of equivalent systems that are not subject to any pre-determined upper bound of organizational complexity, we explain why only a special type of self-constructing, autonomous systems can actually implement it. We further argue that this capacity derives from the ‘dynamic decoupling’ (in its minimal or (...)
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  • Darwinian Dynamics Implies Developmental Ascendency.Ping Ao - 2007 - Biological Theory 2 (1):113-115.
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