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  1. The ancestor's tale: a pilgrimage to the dawn of evolution.Richard Dawkins - 2004 - Boston: Houghton Mifflin. Edited by Yan Wong.
    The renowned biologist and thinker Richard Dawkins presents his most expansive work yet: a comprehensive look at evolution, ranging from the latest developments in the field to his own provocative views. Loosely based on the form of Chaucer's Canterbury Tales, Dawkins's Tale takes us modern humans back through four billion years of life on our planet. As the pilgrimage progresses, we join with other organisms at the forty "rendezvous points" where we find a common ancestor. The band of pilgrims swells (...)
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  • The future of man.Pierre Teilhard de Chardin - 2004 - 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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  • On the emergence of time in quantum gravity.Jeremy Butterfield & Chris Isham - 1999 - In The arguments of time. New York: Published for the British Academy by Oxford University Press. pp. 111--168.
    We discuss from a philosophical perspective the way in which the normal concept of time might be said to `emerge' in a quantum theory of gravity. After an introduction, we briefly discuss the notion of emergence, without regard to time. We then introduce the search for a quantum theory of gravity ; and review some general interpretative issues about space, time and matter. We then discuss the emergence of time in simple quantum geometrodynamics, and in the Euclidean approach. Section 6 (...)
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  • Darwin's Dangerous Idea: Evolution and the Meanings of Life.David L. Hull - 1997 - British Journal for the Philosophy of Science 48 (3):435-438.
  • Emerging from imaginary time.Robert J. Deltete & Reed A. Guy - 1996 - Synthese 108 (2):185 - 203.
    Recent models in quantum cosmology make use of the concept of imaginary time. These models all conjecture a join between regions of imaginary time and regions of real time. We examine the model of James Hartle and Stephen Hawking to argue that the various no-boundary attempts to interpret the transition from imaginary to real time in a logically consistent and physically significant way all fail. We believe this conclusion also applies to quantum tunneling models, such as that proposed by Alexander (...)
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  • Review of Donald Davidson: Essays on Actions and Events[REVIEW]Tyler Burge - 1983 - Ethics 93 (3):608-611.
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  • Possible Implications of the Quantum Theory of Gravity: An Introduction to the Meduso-Anthropic Principle. [REVIEW]Louis Crane - 2010 - Foundations of Science 15 (4):369-373.
    If we assume that the constants of nature fluctuate near the singularity when a black hole forms (assuming, also, that physical black holes really do form singularities) then a process of evolution of universes becomes possible. We explore the implications of such a process for the origin of life, interstellar travel, and the human future.
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  • From Philosophy to Engineering.Louis Crane - 2012 - Foundations of Science 17 (1):17-19.
    In the years since I first thought of the possibility of producing artificial black holes, my focus on it has shifted from the role of life in the universe to a practical suggestion for the middle-term future, which I think of as on the order of a few centuries.
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  • Chemical reaction automata.Per Bro - 1997 - Complexity 2 (3):38-44.
  • The Anthropic Cosmological Principle.J. J. C. Smart - 1987 - Philosophical Quarterly 37 (149):463-466.
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  • Black Holes and Time Warps: Einsteins Outrageous Legacy.Kip S. Thorne - 1994 - W. W. Norton & Company.
    In this masterfully written and brilliantly informed work, Dr. Rhorne, the Feynman Professor of Theoretical Physics at Caltech, leads readers through an elegant, always human, tapestry of interlocking themes, answering the great question: what principles control our universe and why do physicists think they know what they know? Features an introduction by Stephen Hawking.
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  • Objectivity, value judgment, and theory choice.Thomas S. Kuhn - 1981 - In David Zaret (ed.), Review of Thomas S. Kuhn The Essential Tension: Selected Studies in Scientific Tradition and Change. Duke University Press. pp. 320--39.
  • The Biosphere.Vladimir I. Vernadsky - 1998 - Springer.
    First published in 1926 but long neglected in the West, Vladimir I. Vernadsky’s The Biosphere revolutionized our view of Earth. Vernadsky teaches us that life has been the transforming geological force on our planet. He illuminates the difference between an inanimate, mineralogical view of Earth’s history, and an endlessly dynamic picture of Earth as the domain and product of living matter to a degree still poorly understood. What Darwin did for life through time, Vernadsky did for all life through space. (...)
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  • On the inappropriate use of the naturalistic fallacy in evolutionary psychology.David Sloan Wilson, Eric Dietrich & Anne B. Clark - 2003 - Biology and Philosophy 18 (5):669-681.
    The naturalistic fallacy is mentionedfrequently by evolutionary psychologists as anerroneous way of thinking about the ethicalimplications of evolved behaviors. However,evolutionary psychologists are themselvesconfused about the naturalistic fallacy and useit inappropriately to forestall legitimateethical discussion. We briefly review what thenaturalistic fallacy is and why it is misusedby evolutionary psychologists. Then we attemptto show how the ethical implications of evolvedbehaviors can be discussed constructivelywithout impeding evolutionary psychologicalresearch. A key is to show how ethicalbehaviors, in addition to unethical behaviors,can evolve by natural selection.
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  • Computational and Biological Analogies for Understanding Fine-Tuned Parameters in Physics.Clément Vidal - 2010 - Foundations of Science 15 (4):375 - 393.
    In this philosophical paper, we explore computational and biological analogies to address the fine-tuning problem in cosmology. We first clarify what it means for physical constants or initial conditions to be fine-tuned. We review important distinctions such as the dimensionless and dimensional physical constants, and the classification of constants proposed by Lévy-Leblond. Then we explore how two great analogies, computational and biological, can give new insights into our problem. This paper includes a preliminary study to examine the two analogies. Importantly, (...)
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  • A dialogue on Metasystem transition.Valentin Turchin - 1995 - World Futures 45 (1):5-57.
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  • On a supposed conceptual inadequacy of the Shannon information in quantum mechanics.C. G. Timpson - 2003 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 34 (3):441-468.
  • The Meaning of Life in a Developing Universe.John E. Stewart - 2010 - Foundations of Science 15 (4):395-409.
    The evolution of life on Earth has produced an organism that is beginning to model and understand its own evolution and the possible future evolution of life in the universe. These models and associated evidence show that evolution on Earth has a trajectory. The scale over which living processes are organized cooperatively has increased progressively, as has its evolvability. Recent theoretical advances raise the possibility that this trajectory is itself part of a wider developmental process. According to these theories, the (...)
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  • Natural Explanations for the Anthropic Coincidences.Victor J. Stenger - 2000 - Philo 3 (2):50-67.
    The anthropic coincidences are widely claimed to provide evidence for intelligent creation in the universe. However, neither data northeory support this conclusion. No basis exists for assuming that a random universe would not have some kind of life. Calculations of the properties of universes having different physical constants than ours indicate that long-lived stars are not unusual, and thus most universes should have time for complex systems of some type to evolve. A multi-universe scenario is not ruled out, since no (...)
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  • The System of Interpretance, Naturalizing Meaning as Finality.Stanley N. Salthe - 2008 - Biosemiotics 1 (3):285-294.
    A materialist construction of semiosis requires system embodiment at particular locales, in order to function as systems of interpretance. I propose that we can use a systemic model of scientific measurement to construct a systems view of semiosis. I further suggest that the categories required to understand that process can be used as templates when generalizing to biosemiosis and beyond. The viewpoint I advance here is that of natural philosophy—which, once granted, incurs no principled block to further generalization all the (...)
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  • A hierarchical framework for levels of reality: Understanding through representation. [REVIEW]Stanley N. Salthe - 2009 - Axiomathes 19 (1):87-99.
    Levels of reality reflect one kind of complexity, which can be modeled using a specification hierarchy. Levels emerged during the Big Bang, as physical degrees of freedom became increasingly fixed as the expanding universe developed, and new degrees of freedom associated with higher levels opened up locally, requiring new descriptive semantics. History became embodied in higher level entities, which are increasingly individuated, aggregate patterns of lower level entities. Development is an epigenetic trajectory from vaguer to more definite and individuated embodiment, (...)
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  • Levels.Roberto Poli - 1998 - Axiomathes 9 (1-2):197-211.
  • Languages of Art: An Approach to a Theory of Symbols.B. C. O'Neill - 1971 - Philosophical Quarterly 21 (85):361.
  • What is Life? [REVIEW]E. N. - 1946 - Journal of Philosophy 43 (7):194.
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  • Scale Relativity and Fractal Space-Time: Theory and Applications. [REVIEW]Laurent Nottale - 2010 - Foundations of Science 15 (2):101-152.
    In the first part of this contribution, we review the development of the theory of scale relativity and its geometric framework constructed in terms of a fractal and nondifferentiable continuous space-time. This theory leads (i) to a generalization of possible physically relevant fractal laws, written as partial differential equation acting in the space of scales, and (ii) to a new geometric foundation of quantum mechanics and gauge field theories and their possible generalisations. In the second part, we discuss some examples (...)
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  • Modelling the heart: insights, failures and progress.Denis Noble - 2002 - Bioessays 24 (12):1155-1163.
    Mathematical models of the heart have developed over a period of about 40 years. Cell types in all regions of the heart have been modelled and they are now being incorporated into anatomically detailed models of the whole organ. This combination is leading to the creation of the first ‘virtual organ,’ which is being used in drug discovery and testing, and in simulating the action of devices, such as cardiac defibrillators. Simulation is a necessary tool of analysis in attempting to (...)
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  • Global idealism/local materialism.Koichiro Matsuno & Stanley N. Salthe - 1995 - Biology and Philosophy 10 (3):309-337.
    We are concerned with two modes of describing the dynamics of natural systems. Global descriptions require simultaneous global coordination of all dynamical operations. Global dynamics, including mechanics, remain invariant in the absence of external perturbation. But, failing impossible global coordination, dynamical operations could actually become coordinated only locally. In local records, as in global ones, the law of the excluded middle would be strictly observed, but without global coordination it could only be fullfilled sequentially by passing causative factors forward onto (...)
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  • Universes.Robert K. Clifton - 1991 - Philosophical Quarterly 41 (164):339-344.
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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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  • 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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  • Advantages and limitations of formal expression.Francis Heylighen - 1999 - Foundations of Science 4 (1):25-56.
    Testing the validity of knowledge requires formal expression of that knowledge. Formality of an expression is defined as the invariance, under changes of context, of the expression's meaning, i.e. the distinction which the expression represents. This encompasses both mathematical formalism and operational determination. The main advantages of formal expression are storability, universal communicability, and testability. They provide a selective edge in the Darwinian competition between ideas. However, formality can never be complete, as the context cannot be eliminated. Primitive terms, observation (...)
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  • Two approaches to the study of the origin of life.R. Hengeveld - 2007 - Acta Biotheoretica 55 (2):97-131.
    This paper compares two approaches that attempt to explain the origin of life, or biogenesis. The more established approach is one based on chemical principles, whereas a new, yet not widely known approach begins from a physical perspective. According to the first approach, life would have begun with—often organic—compounds. After having developed to a certain level of complexity and mutual dependence within a non-compartmentalised organic soup, they would have assembled into a functioning cell. In contrast, the second, physical type of (...)
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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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  • On the Nature of Initial Conditions and Fundamental Parameters in Physics and Cosmology.Jan M. Greben - 2012 - Foundations of Science 17 (1):21-23.
    The cosmological theory of the author, discussed in (Greben in Found Sci 15(2):153–176, 2010 ), has a number of implications for the interpretation of initial conditions and the fine-tuning problem as discussed by Vidal (Found Sci 15(4):375–393, 2010a ).
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  • Circular definitions, circular explanations, and infinite regresses.Claude Gratton - 1994 - Argumentation 8 (3):295-308.
    This paper discusses some of the ways in which circular definitions and circular explanations entail or fail to entail infinite regresses. And since not all infinite regresses are vicious, a few criteria of viciousness are examined in order to determine when the entailment of a regress refutes a circular definition or a circular explanation.
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  • The selfish biocosm.James N. Gardner - 2000 - Complexity 5 (3):34.
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  • Are the different hypotheses on the emergence of life as different as they seem?Iris Fry - 1995 - Biology and Philosophy 10 (4):389-417.
    This paper calls attention to a philosophical presupposition, coined here the continuity thesis which underlies and unites the different, often conflicting, hypotheses in the origin of life field. This presupposition, a necessary condition for any scientific investigation of the origin of life problem, has two components. First, it contends that there is no unbridgeable gap between inorganic matter and life. Second, it regards the emergence of life as a highly probable process. Examining several current origin-of-life theories. I indicate the implicit (...)
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  • The Life of The Cosmos. [REVIEW]Steven Weinstein & Arthur Fine - 1998 - Journal of Philosophy 95 (5):264-268.
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  • Aspects of Complexity in Life and Science.Claus Emmeche - 1997 - Philosophica 59 (1).
    A short review of complexity research from the perspective of history and philosophy of biology is presented. Complexity and its emergence has scientific and metaphysical meanings. From its beginning, biology was a science of complex systems, but with the advent of electronic computing and the possibility of simulating mathematical models of complicated systems, new intuitions of complexity emerged, together with attempts to devise quantitative measures of complexity. But can we quantify the complex?
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  • A unifying principle of biological and cultural evolution and its implications for the future.Börje Ekstig - 2007 - World Futures 63 (2):98 – 106.
    In this article I analyze a regular pattern in the developmental and evolutionary processes, formed by a gradual shortening of developmental stages. This shortening is the expected result of a selection process, in the biological as well as in the cultural evolutionary process. Biology and culture are in this way unified by a common mechanism. A mathematical analysis further indicates a vital condition for a continued progress of human culture, especially for a continued progressive scientific evolution, implying continued shortening of (...)
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  • Anthropic Bias: Observation Selection Effects in Science and Philosophy.Nick Bostrom - 2002 - New York: Routledge.
    _Anthropic Bias_ explores how to reason when you suspect that your evidence is biased by "observation selection effects"--that is, evidence that has been filtered by the precondition that there be some suitably positioned observer to "have" the evidence. This conundrum--sometimes alluded to as "the anthropic principle," "self-locating belief," or "indexical information"--turns out to be a surprisingly perplexing and intellectually stimulating challenge, one abounding with important implications for many areas in science and philosophy. There are the philosophical thought experiments and paradoxes: (...)
     
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  • The crisis of European sciences and transcendental phenomenology.Edmund Husserl - 1970 - Evanston,: Northwestern University Press.
    The Crisis of European Sciences and Transcendental Phenomenology, Husserl's last great work, is important both for its content and for the influence it has had on other philosophers. In this book, which remained unfinished at his death, Husserl attempts to forge a union between phenomenology and existentialism. Husserl provides not only a history of philosophy but a philosophy of history. As he says in Part I, "The genuine spiritual struggles of European humanity as such take the form of struggles between (...)
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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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  • Combinatorial Physics.Ted Bastin & Clive William Kilmister - 1995 - World Scientific.
    The authors aim to reinstate a spirit of philosophical enquiry in physics. They abandon the intuitive continuum concepts and build up constructively a combinatorial mathematics of process. This radical change alone makes it possible to calculate the coupling constants of the fundamental fields which? via high energy scattering? are the bridge from the combinatorial world into dynamics. The untenable distinction between what is?observed?, or measured, and what is not, upon which current quantum theory is based, is not needed. If we (...)
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  • Evolution as entropy: toward a unified theory of biology.D. R. Brooks - 1988 - Chicago: University of Chicago Press. Edited by E. O. Wiley.
    "By combining recent advances in the physical sciences with some of the novel ideas, techniques, and data of modern biology, this book attempts to achieve a new and different kind of evolutionary synthesis. I found it to be challenging, fascinating, infuriating, and provocative, but certainly not dull."--James H, Brown, University of New Mexico "This book is unquestionably mandatory reading not only for every living biologist but for generations of biologists to come."--Jack P. Hailman, Animal Behaviour , review of the first (...)
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  • Theoretical Biology.Jakob von Uexküll & Doris L. Mackinnon - 2017 - Andesite Press.
    This work has been selected by scholars as being culturally important, and is part of the knowledge base of civilization as we know it. This work was reproduced from the original artifact, and remains as true to the original work as possible. Therefore, you will see the original copyright references, library stamps (as most of these works have been housed in our most important libraries around the world), and other notations in the work. This work is in the public domain (...)
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  • Schelling's Idealism and Philosophy of Nature.Joseph L. Esposito - 1977 - Associated University Press.
    Analyzes Schelling's arguments for his idealism and pieces together a description of his theory of nature from among the large number of his writings in this area. It also traces the influence of Naturphilosophie on 19th-century science and connects it with recent System Theory.
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  • At Home in the Universe: The Search for Laws of Self-organization and Complexity.Stuart Kauffman & Stuart A. Kauffman - 1995 - Oxford University Press USA.
    At Home in the Universe presents and extends the intellectual core ofKauffman's earlier book The Origins of Order (OUP 1993) for any intelligentgeneral reader can understand and appreciate. The reader is very effectivelyinvited into Kauffman's vision and thought processes, in one of the moreexhilarating and important books of popular science.
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  • How Nature Works: The Science of Self-Organized Criticality.Per Bak - 1996 - Copernicus.
    Self-organized criticality, the spontaneous development of systems to a critical state, is the first general theory of complex systems with a firm mathematical basis. This theory describes how many seemingly desperate aspects of the world, from stock market crashes to mass extinctions, avalanches to solar flares, all share a set of simple, easily described properties. "...a'must read'...Bak writes with such ease and lucidity, and his ideas are so intriguing...essential reading for those interested in complex systems...it will reward a sufficiently skeptical (...)
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