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  1. Deterministic Nonperiodic Flow.Edward Lorenz - 1963 - Journal of Atmospheric Sciences 20 (2):130-148.
    Finite systems of deterministic ordinary nonlinear differential equations may be designed to represent forced dissipative hydrodynamic flow. Solutions of these equations can be identified with trajectories in phase space. For those systems with bounded solutions, it is found that nonperiodic solutions are ordinarily unstable with respect to small modifications, so that slightly differing initial states can evolve into considerably different states. Systems with bounded solutions are shown to possess bounded numerical solutions.A simple system representing cellular convection is solved numerically. All (...)
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  • What is life? & mind and matter: the physical aspect of the living cell.Erwin Schrödinger - 1974 - Cambridge University Press.
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  • An Introduction to Quantum Field Theory.Michael Peskin & Dan Schroeder - 1995 - Westview Press.
    An Introduction to Quantum Field Theory is a textbook intended for the graduate physics course covering relativistic quantum mechanics, quantum electrodynamics, and Feynman diagrams. The authors make these subjects accessible through carefully worked examples illustrating the technical aspects of the subject, and intuitive explanations of what is going on behind the mathematics. After presenting the basics of quantum electrodynamics, the authors discuss the theory of renormalization and its relation to statistical mechanics, and introduce the renormalization group. This discussion sets the (...)
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  • Natural emergence.Tuomas K. Pernu & Arto Annila - 2012 - Complexity 17 (5):44-47.
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  • (2 other versions)The nature of the physical world.Arthur Stanley Eddington - 1928 - London,: Dent.
    1929. The course of Gifford Lectures that Eddington delivered in the University of Edinburgh in January to March 1927.
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  • On the electrodynamics of moving bodies.Albert Einstein - 1920 - In The Principle of Relativity. [Calcutta]: Dover Publications. pp. 35-65.
    It is known that Maxwell’s electrodynamics—as usually understood at the present time—when applied to moving bodies, leads to asymmetries which do not appear to be inherent in the phenomena. Take, for example, the reciprocal electrodynamic action of a magnet and a conductor. The observable phenomenon here depends only on the relative motion of the conductor and the magnet, whereas the customary view draws a sharp distinction between the two cases in which either the one or the other of these bodies (...)
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  • Gravitation and cosmology: principles and applications of the general theory of relativity.Steven Weinberg - 1972 - New York,: Wiley.
    Weinberg's 1972 work, in his description, had two purposes. The first was practical to bring together and assess the wealth of data provided over the previous decade while realizing that newer data would come in even as the book was being printed. He hoped the comprehensive picture would prepare the reader and himself to that new data as it emerged. The second was to produce a textbook about general relativity in which geometric ideas were not given a starring role for (...)
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  • (1 other version)Science and information theory.Léon Brillouin - 1956 - Mineola, N.Y.: Dover Publications.
    A classic source for understanding the connections between information theory and physics, this text was written by one of the giants of 20th-century physics and is appropriate for upper-level undergraduates and graduate students. Topics include the principles of coding, coding problems and solutions, the analysis of signals, a summary of thermodynamics, thermal agitation and Brownian motion, and thermal noise in an electric circuit. A discussion of the negentropy principle of information introduces the author's renowned examination of Maxwell's demon. Concluding chapters (...)
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  • The principle of least action as the logical empiricist's shibboleth.Michael Stöltzner - 2002 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 34 (2):285-318.
    The present paper investigates why logical empiricists remained silent about one of the most philosophy-laden matters of theoretical physics of their day, the principle of least action (PLA). In the two decades around 1900, the PLA enjoyed a remarkable renaissance as a formal unification of mechanics, electrodynamics, thermodynamics, and relativity theory. Taking Ernst Mach's historico-critical stance, it could be liberated from much of its physico-theological dross. Variational calculus, the mathematical discipline on which the PLA was based, obtained a new rigorous (...)
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  • In the light of time.Arto Annila - 2009 - Proceedings of Royal Society A 465:1173–1198.
    The concept of time is examined using the second law of thermodynamics that was recently formulated as an equation of motion. According to the statistical notion of increasing entropy, flows of energy diminish differences between energy densities that form space. The flow of energy is identified with the flow of time. The non-Euclidean energy landscape, i.e. the curved space–time, is in evolution when energy is flowing down along gradients and levelling the density differences. The flows along the steepest descents, i.e. (...)
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  • Spacetime and Geometry: An Introduction to General Relativity.Sean M. Carroll - 2003 - San Francisco, USA: Pearson.
    Graduate-level textbook in general relativity.
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  • Perspectives in Ecological Theory.R. MARGALEF - 1968
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  • Nonlinear Dynamics And Chaos: With Applications To Physics, Biology, Chemistry, And Engineering (Studies in Nonlinearity).Stephen Strogatz - 2000 - Westview Press.
    This textbook is aimed at newcomers to nonlinear dynamics and chaos, especially students taking a first course in the subject. The presentation stresses analytical methods, concrete examples and geometric intuition. The theory is developed systematically, starting with first-order differential equations and their bifurcations, followed by phase plane analysis, limit cycles and their bifurcations, and culminating with the Lorenz equations, chaos, iterated maps, period doubling, renormalization, fractals, and strange attractors.A unique feature of the book is its emphasis on applications. These include (...)
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  • The Rise of Anthropological Theory: A History of Theories of Culture.Marvin Harris - 1971 - Science and Society 35 (4):503-506.
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  • A Mathematical Theory of Communication.Claude Elwood Shannon - 1948 - Bell System Technical Journal 27 (April 1924):379–423.
    The mathematical theory of communication.
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  • Über formal unentscheidbare Sätze der Principia Mathematica und verwandter Systeme I.K. Gödel - 1931 - Monatshefte für Mathematik 38 (1):173--198.
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  • (1 other version)On the origin of species.Charles Darwin - 2008 - New York: Oxford University Press. Edited by Gillian Beer.
    The present edition provides a detailed and accessible discussion ofhis theories and adds an account of the immediate responses to the book on publication.
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  • Spacetime physics.Edwin F. Taylor - 1966 - San Francisco,: W. H. Freeman. Edited by John Archibald Wheeler.
    Collaboration on the First Edition of Spacetime Physics began in the mid-1960s when Edwin Taylor took a junior faculty sabbatical at Princeton University where John Wheeler was a professor. The resulting text emphasized the unity of spacetime and those quantities (such as proper time, proper distance, mass) that are invariant, the same for all observers, rather than those quantities (such as space and time separations) that are relative, different for different observers. The book has become a standard introduction to relativity. (...)
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  • Natural process – Natural selection.Arto Annila - 2007 - Biophysical Chemistry 127: 123–128.
    Life is supported by a myriad of chemical reactions. To describe the overall process we have formulated entropy for an open system undergoing chemical reactions. The entropy formula allows us to recognize various ways for the system to move towards more probable states. These correspond to the basic processes of life i.e. proliferation, differentiation, expansion, energy intake, adaptation and maturation. We propose that the rate of entropy production by various mechanisms is the fitness criterion of natural selection. The quest for (...)
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  • Physical Causation.Phil Dowe - 2003 - Philosophy and Phenomenological Research 67 (1):244-248.
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  • (2 other versions)The Science of Mechanics. [REVIEW]Ernst Mach - 1903 - Ancient Philosophy (Misc) 13:317.
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  • (2 other versions)A Treatise of Human Nature.David Hume & A. D. Lindsay - 1958 - Philosophical Quarterly 8 (33):379-380.
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  • Probability Theory. The Logic of Science.Edwin T. Jaynes - 2002 - Cambridge University Press: Cambridge. Edited by G. Larry Bretthorst.
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  • Cultural Materialism: The Struggle for a Science of Culture.Marvin Harris - 2001 - Altamira.
    Cultural Materialism, published in 1979, was Marvin Harris's first full-length explication of the theory with which his work has been associated. While Harris has developed and modified some of his ideas over the past two decades, generations of professors have looked to this volume as the essential starting point for explaining the science of culture to students. Now available again after a hiatus, this edition of Cultural Materialism contains the complete text of the original book plus a new introduction by (...)
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  • Computers and Intractability. A Guide to the Theory of NP-Completeness.Michael R. Garey & David S. Johnson - 1983 - Journal of Symbolic Logic 48 (2):498-500.
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  • The Background of Ecology: Concept and Theory.Robert P. Mcintosh - 1986 - Journal of the History of Biology 19 (2):314-316.
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  • (2 other versions)Nothing in biology makes sense except in the light of evolution.Theodosius Dobzhansky - 1983 - In J. Peter Zetterberg (ed.), Evolution versus Creationism: the public education controversy. Phoenix, AZ: Oryx Press. pp. 18--28.
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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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  • (1 other version)An inquiry into the nature and causes of the wealth of nations.Adam Smith - 1976 - Oxford University Press. Edited by R. H. Campbell, A. S. Skinner & W. B. Todd.
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  • (1 other version)Physical Causation.D. Ehring - 2003 - Mind 112 (447):529-533.
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  • (1 other version)The Entropy Law and the Economic Process.L. A. Boland - 1972 - Philosophy of Science 39 (3):423-424.
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  • The ages of Gaia: a biography of our living earth.James Lovelock - 1988 - New York: Bantam Books.
    Foreword -- Preface -- Introductory -- What is Gaia? -- Exploring Daisyworld -- The Archean -- The middle ages -- Modern times -- The contemporary environment -- The second home -- God and Gaia -- Gaia since 1988 -- Epilog -- References -- Further Reading -- Index.
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  • Complexity: hierarchical structures and scaling in physics.R. Badii - 1997 - New York: Cambridge University Press. Edited by A. Politi.
    This is a comprehensive discussion of complexity as it arises in physical, chemical, and biological systems, as well as in mathematical models of nature. Common features of these apparently unrelated fields are emphasised and incorporated into a uniform mathematical description, with the support of a large number of detailed examples and illustrations. The quantitative study of complexity is a rapidly developing subject with special impact in the fields of physics, mathematics, information science, and biology. Because of the variety of the (...)
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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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  • Development and Evolution: Complexity and Change in Biology.Stanley N. Salthe - 1993 - MIT Press.
    Development and Evolution surveys and illuminates the key themes of rapidly changing fields and areas of controversy that the redefining the theory and philosophy of biology. It continues Stanley Salthe's investigation of evolutionary theory, begun in his influential book Evolving Hierarchical Systems, while negating the implicit philosophical mechanisms of much of that work. Here Salthe attempts to reinitiate a theory of biology from the perspective of development rather than from that of evolution, recognizing the applicability of general systems thinking to (...)
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  • In the wake of chaos: Unpredictable order in dynamical systems.Stephen H. Kellert & Lawrence Sklar - 1997 - Philosophy of Science 64 (1):181.
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  • The nature of physical theory.Percy Williams Bridgman - 1936 - Princeton,: Princeton University Press.
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  • Nothingness: the science of empty space.Henning Genz - 1999 - New York: Basic Books.
    Nothingness addresses one of the most puzzling problems of physics and philosophy: Does empty space have an existence independent of the matter within it? Is "empty space" really empty, or is it an ocean seething with the creation and destruction of virtual matter? With crystal-clear prose and more than 100 cleverly rendered illustrations, physicist Henning Genz takes the reader from the metaphysical speculations of the ancient Greek philosophers, through the theories of Newton and the early experiments of his contemporaries, right (...)
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  • Causation and the flow of energy.David Fair - 1979 - Erkenntnis 14 (3):219 - 250.
    Causation has traditionally been analyzed either as a relation of nomic dependence or as a relation of counterfactual dependence. I argue for a third program, a physicalistic reduction of the causal relation to one of energy-momentum transference in the technical sense of physics. This physicalistic analysis is argued to have the virtues of easily handling the standard counterexamples to the nomic and counterfactual analyses, offering a plausible epistemology for our knowledge of causes, and elucidating the nature of the relation between (...)
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  • Forces.John Bigelow, Brian Ellis & Robert Pargetter - 1988 - Philosophy of Science 55 (4):614-630.
    Traditionally, forces are causes of a special sort. Forces have been conceived to be the direct or immediate causes of things. Other sorts of causes act indirectly by producing forces which are transmitted in various ways to produce various effects. However, forces are supposed to act directly without the mediation of anything else. But forces, so conceived, appear to be occult. They are mysterious, because we have no clear conception of what they are, as opposed to what they are postulated (...)
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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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  • The Theory of Island Biogeography.Robert H. Macarthur & Edward O. Wilson - 2002 - Journal of the History of Biology 35 (1):178-179.
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  • On the nature and the observability of the causal relation.Curt J. Ducasse - 1926 - Journal of Philosophy 23 (3):57-68.
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  • (4 other versions)Evolution. — The Modern Synthesis.J. Huxley & T. H. Huxley - 1950 - Revista Portuguesa de Filosofia 6 (2):207-207.
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  • Philosophy of Mathematics and Natural Science.Stephen Toulmin - 1950 - Philosophical Review 59 (3):385.
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  • (1 other version)What is Life? [REVIEW]E. N. - 1946 - Journal of Philosophy 43 (7):194.
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  • (1 other version)The Entropy Law and the Economic Process.L. A. Boland - 1976 - Synthese 33 (2):371-391.
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  • Time's Arrows Today.Steven F. Savitt - 1998 - Mind 107 (425):250-253.
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  • A Relation between Distance and Radial Velocity among Extra-galactic Nebulae.E. Hubble - 1929 - Proceedings of the National Academy of Sciences 15:168-173.
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  • The Nature of the Physical World. [REVIEW]Evander Bradley McGilvary - 1930 - Journal of Philosophy 27 (7):180-194.
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