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  1. The phenomenon of science.Valentin Fedorovich Turchin - 1977 - New York: Columbia University Press.
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  • (2 other versions)The future of man.Pierre Teilhard de Chardin - 1969 - New York,: Image Books/Doubleday.
    The Future of Man is a magnificent introduction to the thoughts and writings of Pierre Teilhard de Chardin, one of the few figures in the history of the Catholic Church to achieve renown as both a scientist and a theologian. Trained as a paleontologist and ordained as a Jesuit priest, Teilhard de Chardin devoted himself to establishing the intimate, interdependent connection between science—particularly the theory of evolution—and the basic tenets of the Christian faith. At the center of his philosophy was (...)
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  • Closure: emergent organizations and their dynamics.Jerry L. R. Chandler & Gertrudis van de Vijver (eds.) - 2000 - New York, NY: New York Academy of Sciences.
    Classical neo-Darwinian explanations do not fully account for changes in biological forms, and new theories have emerged, primarily in maths and physics, that offer new approaches to the problem of the origin of life and phenomena of order in evolution. This volume focuses on the role of closure at various hierarchical levels as the catalyst between self-organization and selection. Participants addressed special areas of the closure problem such as autopoiesis and autocatalysis and function and selection, and semiosis. Presentations on physical (...)
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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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  • The biological and philosophical definitions of life.M. Jeuken - 1975 - Acta Biotheoretica 24 (1-2):14-21.
    A distinction must be made between various levels of thought. For a definition of life the formulation on the level of natural sciences,i.e. the biological definition, will not be the same as the philosophical expression. The biological definition is based on thephenomenon of life, the appearance, and considers the molecular structure and functions of a cell. The philosophical definition regards thebeing and it is proposed to consider life as transcendental. It is argued that there is no opposition between these definitions, (...)
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  • A dialogue on Metasystem transition.Valentin Turchin - 1995 - World Futures 45 (1):5-57.
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  • The Selfish Gene. [REVIEW]Gunther S. Stent & Richard Dawkins - 1977 - Hastings Center Report 7 (6):33.
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  • The philosophy of biology.Ronald Munson - 1974 - Studies in History and Philosophy of Science Part A 5 (1):73-85.
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  • Modelling emergence.Francis Heylighen - 1991 - World Futures 32 (2):151-166.
    Emergence is defined as a process which cannot be described by a fixed model, consisting of invariant distinctions. Hence emergence must be described by a meta‐model, representing the transition of one model to another one by means of a distinction dynamics. The dynamics of distinctions is based on the processes of variation and selection, resulting in an invariant distinction, which constrains the variety and thus defines a new system. A classification of emergence processes is proposed, based on the following criteria: (...)
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  • Bootstrapping the energy flow in the beginning of life.R. Hengeveld & M. A. Fedonkin - 2007 - Acta Biotheoretica 55 (2):181-226.
    This paper suggests that the energy flow on which all living structures depend only started up slowly, the low-energy, initial phase starting up a second, slightly more energetic phase, and so on. In this way, the build up of the energy flow follows a bootstrapping process similar to that found in the development of computers, the first generation making possible the calculations necessary for constructing the second one, etc. In the biogenetic upstart of an energy flow, non-metals in the lower (...)
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  • Chemical reaction automata.Per Bro - 1997 - Complexity 2 (3):38-44.
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  • What is Life?Mark A. Bedau - 2008 - In Sahorta Sarkar & Anya Plutynski (eds.), Companion to the Philosophy of Biology. Blackwell. pp. 455–471.
    This chapter contains section titled: The Fascination of Life The Phenomena of Life Puzzles about Life Accounts of Life The Problem of Understanding Life References Further Reading.
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  • Operators, the Lego‐bricks of nature: Evolutionary transitions from fermions to neural networks.Gerard A. Jagers op Akkerhuis - 1999 - World Futures 53 (4):329-345.
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  • Operators, the Lego-bricks of nature: Evolutionary transitions from fermions to neural networks.Gerard A. J. M. Jagers Op Akkerhuis & Nico van Straalen - 1999 - World Futures 53 (4):329-345.
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  • Extrapolating a Hierarchy of Building Block Systems Towards Future Neural Network Organisms.Gerard Jagers op Akkerhuis - 2001 - Acta Biotheoretica 49 (3):171-189.
    It is possible to predict future life forms? In this paper it is argued that the answer to this question may well be positive. As a basis for predictions a rationale is used that is derived from historical data, e.g. from a hierarchical classification that ranks all building block systems, that have evolved so far. This classification is based on specific emergent properties that allow stepwise transitions, from low level building blocks to higher level ones. This paper shows how this (...)
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  • The recursive universe: cosmic complexity and the limits of scientific knowledge.William Poundstone - 1985 - Mineola, New York: Dover Publications.
    This fascinating popular science journey explores key concepts in information theory in terms of Conway's "Game of Life" program. The author explains the application of natural law to a random system and demonstrates the necessity of limits. Other topics include the limits of knowledge, paradox of complexity, Maxwell's demon, Big Bang theory, and much more. 1985 edition.
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  • The Major Transitions in Evolution.John Maynard Smith & Eörs Szathmáry - 1996 - Journal of the History of Biology 29 (1):151-152.
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  • Life Itself: A Comprehensive Inquiry Into the Nature, Origin, and Fabrication of Life.Robert Rosen - 2005 - Complexity in Ecological Systems.
    What is life? For four centuries, it has been believed that the only possible scientific approach to this question proceeds from the Cartesian metaphor -- organism as machine. Therefore, organisms are to be studied and characterized the same way "machines" are; the same way any inorganic system is. Robert Rosen argues that such a view is neither necessary nor sufficient to answer the question. He asserts that life is not a specialization of mechanism, but rather a sweeping generalization of it. (...)
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  • Principles of Biological Autonomy.Francisco J. Varela - 1979 - North-Holland.
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  • Units of evolution: a metaphysical essay.David L. Hull - 1981 - In Uffe Juul Jensen & Rom Harré (eds.), The Philosophy of evolution. New York: St. Martin's Press. pp. 23--44.
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  • Defining 'life'.Carol E. Cleland - unknown
    There is no broadly accepted definition of ‘life.’ Suggested definitions face problems, often in the form of robust counter-examples. Here we use insights from philosophical investigations into language to argue that defining ‘life’ currently poses a dilemma analogous to that faced by those hoping to define ‘water’ before the existence of molecular theory. In the absence of an analogous theory of the nature of living systems, interminable controversy over the definition of life is inescapable.
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  • Man's Place in Nature.P. Teilhard De Chardin - 1966
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  • Autopoietic systems, replicators, and the search for a meaningful biologic definition of life.Claus Emmeche - 1997 - Ultimate Reality and Meaning 20:244-264.
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  • The Principles of Life.Tibor Ganti - 2003 - Oxford University Press UK.
    This highly readable theory of life and its origins offers a non-technical discussion of a chemical perspective on the fundamental organisation of living systems. Essays on the biological and philosophical significance of Ganti's work of thirty years indicate not only its enduring theoretical significance, but also the continuing relevance and heuristic power of Ganti's insights.
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  • Extrapolating a hierarchy of building Block systems towards future neural network organisms.GerardJagersop Akkerhuis - 2001 - Acta Biotheoretica 49 (3).
    It is possible to predict future life forms? In this paper it is argued that the answer to this question may well be positive. As a basis for predictions a rationale is used that is derived from historical data, e.g. from a hierarchical classification that ranks all building block systems, that have evolved so far. This classification is based on specific emergent properties that allow stepwise transitions, from low level building blocks to higher level ones. This paper shows how this (...)
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  • (2 other versions)The Future of Man.Pierre Teilhard de Chardin - 1969 - New York,: Fontana Press.
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  • The Phenomonon of Science.Valentin F. Turchin & B. Frantz - 1980 - Philosophy of Science 47 (1):162-162.
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  • Centre for the Philosophy of Nature and Science Studies, Niels Bohr Institute, Copenhagen, Denmark, "Autopoietic Systems, Replicators, and the Search for a Meaningful Biologic Definition of Life".Claus Emmeche - 1997 - Ultimate Reality and Meaning 20 (4).
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  • (1 other version)Faculties of Biology and Philosophy, Vrije Universiteit, Amsterdam, The Netherlands, "An Essay on 'Life: Limitations of Science in the Search for Ultimate Meaning".Wim van der Steen - 1997 - Ultimate Reality and Meaning 20 (4).
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  • (1 other version)Methods and systematic reflections-An essay on'life': Limitations of science in the search for ultimate meaning.W. J. Van der Steen - 1997 - Ultimate Reality and Meaning 20 (4):265-281.
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