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  1. AIC and the challenge of complexity: A case study from ecology.Remington J. Moll, Daniel Steel & Robert A. Montgomery - 2016 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 60 (C):35-43.
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  • Time Arrows and Determinism in Biology.Bartolomé Sabater - 2009 - Biological Theory 4 (2):174-182.
    I propose that, in addition to the commonly recognized increase of entropy, two more time arrows influence living beings. The increase of damage reactions, which produce aging and genetic variation, and the decrease of the rate of entropy production involved in natural selection are neglected arrows of time. Although based on the statistical theory of the arrow of time, they are distinguishable from the general arrow of the increase of entropy. Physiology under healthy conditions only obeys the increase of entropy (...)
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  • Confrontation of the cybernetic definition of a living individual with the real world.Bernard Korzeniewski - 2005 - Acta Biotheoretica 53 (1):1-28.
    The cybernetic definition of a living individual proposed previously (Korzeniewski, 2001) is very abstract and therefore describes the essence of life in a very formal and general way. In the present article this definition is reformulated in order to determine clearly the relation between life in general and a living individual in particular, and it is further explained and defended. Next, the cybernetic definition of a living individual is confronted with the real world. It is demonstrated that numerous restrictions imposed (...)
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  • (1 other version)Complexity, Deconstruction and Relativism.Paul Cilliers - 2005 - Theory, Culture and Society 22 (5):255-267.
    The acknowledgement that something is complex, it is argued, implies that our knowledge of it will always be limited. We cannot make complete, absolute or final claims about complex systems. Post-structuralism, and specifically deconstruction, make similar claims about knowledge in general. Arguments against deconstruction can, therefore, also be held against a critical form of complexity thinking and a defence of the view from complexity (as presented here) should take account of them. Three of these arguments are investigated: that deconstruction and (...)
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  • Biological and Cultural Evolution in a Common Universal Trend of Increasing Complexity.Börje Ekstig - 2010 - World Futures 66 (6):435-448.
    In the present article, a depiction of complexity versus time will be used for the construction of a novel form of a tree of life, called The Pattern of Life, comprising the biological, cultural, and scientific forms of the evolutionary process. This diagram accentuates the implication of the successive modifications of developmental programs, in the cultural and scientific realms coupled to a feedback mechanism that is decisive for the accelerating pace of complexity growth, also suggested to be of support of (...)
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  • Complexity and Evolution: A Study of the Growth of Complexity in Organic and Cultural Evolution. [REVIEW]Börje Ekstig - 2010 - Foundations of Science 15 (3):263-278.
    In the present paper I develop a model of the evolutionary process associated to the widespread although controversial notion of a prevailing trend of increasing complexity over time. The model builds on a coupling of evolution to individual developmental programs and introduces an integrated view of evolution implying that human culture and science form a continuous extension of organic evolution. It is formed as a mathematical model that has made possible a quantitative estimation in relative terms of the growth of (...)
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  • Two Purposes of Black Hole Production.Clément Vidal - 2012 - Foundations of Science 17 (1):13-15.
    Crane envisions the speculative conjecture that intelligent civilizations might want and be able to produce black holes in the very far future. He implicitly suggests two main purposes of this enterprise: (i) energy production and (ii) universe production. We discuss those two options. The commentary is obviously highly speculative and should be read accordingly.
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  • Reflecting on complexity of biological systems: Kant and beyond?Gertrudis Van de Vijver, Linda Van Speybroeck & Windy Vandevyvere - 2003 - Acta Biotheoretica 51 (2):101-140.
    Living organisms are currently most often seen as complex dynamical systems that develop and evolve in relation to complex environments. Reflections on the meaning of the complex dynamical nature of living systems show an overwhelming multiplicity in approaches, descriptions, definitions and methodologies. Instead of sustaining an epistemic pluralism, which often functions as a philosophical armistice in which tolerance and so-called neutrality discharge proponents of the burden to clarify the sources and conditions of agreement and disagreement, this paper aims at analysing: (...)
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  • Ecosemiotics and the sustainability transition.Soren Brier - 2001 - Sign Systems Studies 29 (1):219-234.
    The emerging epistemic community of ecosemioticians and the multidisciplinary field of inquiry known as ecosemiotics offer a radical and relevant approach to so-called global environmental crisis. There are no environmental fixes within the dominant code, since that code overdetermines the future, thereby perpetuating ecologically untenable cultural forms. The possibility of a sustainability transition (the attempt to overcome destitution and avoid ecocatastrophe) becomes real when mediated by and through ecosemiotics. In short, reflexive awareness of humankind's linguisticality is a necessary condition for (...)
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  • On the biological concept of subjective significance: A link between the semiotics of nature and the semiotics of culture.Zdisław Wąsik - 2001 - Σημιοτκή-Sign Systems Studies 1:83-106.
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  • Does Species Evolution Follow Scale Laws? First Applications of the Scale Relativity Theory to Fossil and Living-beings.Jean Chaline - 2010 - Foundations of Science 15 (3):279-302.
    We have demonstrated, using the Cantor dust method, that the statistical distribution of appearance and disappearance of rodents species (Arvicolid rodent radiation in Europe) follows power laws strengthening the evidence for a fractal structure set. Self-similar laws have been used as model for the description of a huge number of biological systems. With Nottale we have shown that log-periodic behaviors of acceleration or deceleration can be applied to branching macroevolution, to the time sequences of major evolutionary leaps (global life tree, (...)
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  • Causal processes, semiosis, and consciousness.Claus Emmeche - manuscript
    The evolutionary emergence of biological processes in organisms with inner, qualitative aspects has not been explained in any sufficient way by neurobiology, nor by the traditional neo-Darwinian paradigm — natural selection would appear to work just as well on insentient zombies (with the right behavioral input-output relations) as on real sentient animals. In consciousness studies one talks about the ‘hard problem’ of qualia. In this paper I sketch a set of principles about sign action, causality and emergent evolution. On the (...)
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