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  1. Complexity, information and time.Rudolf Treumann - 1992 - World Futures 33 (4):213-237.
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  • Studying development in the 21st century.Michael S. C. Thomas, Gert Westermann, Denis Mareschal, Mark H. Johnson, Sylvain Sirois & Michael Spratling - 2008 - Behavioral and Brain Sciences 31 (3):345-356.
    In this response, we consider four main issues arising from the commentaries to the target article. These include further details of the theory of interactive specialization, the relationship between neuroconstructivism and selectionism, the implications of neuroconstructivism for the notion of representation, and the role of genetics in theories of development. We conclude by stressing the importance of multidisciplinary approaches in the future study of cognitive development and by identifying the directions in which neuroconstructivism can expand in the Twenty-first Century.
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  • Nonreductive Physics.Mariam Thalos - 2006 - Synthese 149 (1):133-178.
    This paper documents a wide range of nonreductive scientific treatments of phenomena in the domain of physics. These treatments strongly resist characterization as explanations of macrobehavior exclusively in terms of behavior of microconstituents. For they are treatments in which macroquantities are cast in the role of genuine and irreducible degrees of freedom. One is driven into reductionism when one is not cultivated to possess an array of distinctions rich enough to let things be what they are. In contrast, making the (...)
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  • The structure of multi‐stasis: On the evolution of self‐organizing systems.Hu Tao - 1993 - World Futures 37 (1):1-28.
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  • Complexity, Science and the Public.Cristian Suteanu - 2005 - Theory, Culture and Society 22 (5):113-140.
    This article addresses complexity by selecting some of its key aspects that share a common feature: the power to change. They seem to change not only the way the world is approached by scientists, but also the way this approach, the resulting perspectives and their multiple relationships, are interpreted. These main aspects are: the challenge of measurability, with an unexpected result that escapes the gravitational field of the measurability problem; the meaning of reproducibility and the redrawn boundaries of scientific inquiry, (...)
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  • The fourth structure of physical reality.Gerben J. Stavenga - 1983 - Zeitschrift Für Allgemeine Wissenschaftstheorie 14 (2):354-367.
    In the course of a study of elementary particles, an analysis is given of a fundamental presupposition of many research programs, namely the belief in the ultimate unity of physics. It is argued tht this unity-idea is incorrect. By classical physics, relativity theory and quantum theory three distinct structures of nature are revealed. Next, the essential aspect of measurement, that a measurement always results in a record, is analysed. Recording implies irreversibility and entropy production. In modern elementary particle physics the (...)
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  • A general theory of complex living systems: Exploring the demand side of dynamics.Graeme Donald Snooks - 2008 - Complexity 13 (6):12-20.
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  • How Free are Initial Conditions?Lawrence Sklar - 1990 - PSA Proceedings of the Biennial Meeting of the Philosophy of Science Association 1990 (2):551-564.
    Some of what is true about the world is thought, by some, to be true of necessity. Other truths about the world are merely contingently true, it is said. Next we get a familiar distinguishing of necessity into its various kinds. Anything whose contrary would contradict the laws of logic is logically necessary. Anything compatible with these laws is logically contingent. There are, of course, grave problems in finding a principled way of discriminating the logical truths from all the others. (...)
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  • Précis of neuroconstructivism: How the brain constructs cognition.Sylvain Sirois, Michael Spratling, Michael S. C. Thomas, Gert Westermann, Denis Mareschal & Mark H. Johnson - 2008 - Behavioral and Brain Sciences 31 (3):321-331.
    Neuroconstructivism: How the Brain Constructs Cognition proposes a unifying framework for the study of cognitive development that brings together (1) constructivism (which views development as the progressive elaboration of increasingly complex structures), (2) cognitive neuroscience (which aims to understand the neural mechanisms underlying behavior), and (3) computational modeling (which proposes formal and explicit specifications of information processing). The guiding principle of our approach is context dependence, within and (in contrast to Marr [1982]) between levels of organization. We propose that three (...)
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  • On the Creative Logic of Education, or: Re‐reading Dewey through the lens of complexity science.Inna Semetsky - 2008 - Educational Philosophy and Theory 40 (1):83-95.
    This paper rereads John Dewey's works in the light of complexity theory and self‐organising systems. Dewey's pragmatic inquiry is posited as inspirational for developing a logic of education and learning that would incorporate novelty and creativity, these artistic elements being part and parcel of the science of complexity. Dewey's philosophical concepts are explored against the background of such founders of dynamical systems theory as Ludwig von Bertalanffy, Ervin Laszlo, and Erich Jantsch. If, in this process, Dewey's thought appears to undergo (...)
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  • Time, baroque codes and canonization 1.Boaventura de Sousa Santos - 1998 - Cultural Values 2 (2-3):403-420.
    . Time, baroque codes and canonization. Cultural Values: Vol. 2, No. 2-3, pp. 403-420.
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  • El uso contra-hegemónico Del derecho en la lucha Por Una globalización desde abajo.Boaventura de Sousa Santos - 2005 - Anales de la Cátedra Francisco Suárez 39:363-474.
    The pace, the scale, the nature and the reach of social transformation are such that moments of destruction and moments of creation succeed each other in a frantic rhythm without leaving time or space for moments of stabilization and consolidation. This is precisely why I characterize the current period as one of transition.
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  • Varieties of emergence.S. N. Salthe - 1991 - World Futures 32 (2):69-83.
    ?Emergence? can be analyzed into evolutionary and developmental kinds. The latter can be further analyzed into intensional and extensional kinds of emergence. Evolutionary emergence occurs each time a uniqueness enters the world. Intensional emergence (supervenience) explicitly involves the categories of an observer. Extensional emergence (cohesion) is constructed as an attempt to see developmental emergence as a result of the imposition of larger scale constraints on a system. In all cases there is a sudden jump from pre?emergent to post?emergent stages so (...)
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  • The Evolution of the Biosphere: Towards a new Mythology.S. N. Salthe - 1990 - World Futures 30 (1):53-67.
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  • Emergence in evolution.James Francis Salmon - 2008 - Foundations of Chemistry 11 (1):21-32.
    “Much as I dislike the idea of ages, I think a good case can be made that science has now moved from an Age of Reductionism to an Age of Emergence, a time when the search for ultimate causes of things shifts from the behavior of parts to the behavior of the collective” (Laughlin 2005 , p. 208). This quotation by Nobel laureate in physics, Robert B. Laughlin, in his recent book, A Different Universe , raises interesting scientific and philosophical (...)
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  • Ghoshal’s Ghost: Financialization and the End of Management Theory.Gregory A. Daneke & Alexander Sager - 2015 - Philosophy of Management 14 (1):29-45.
    Sumantra Ghoshal’s condemnation of “bad management theories” that were “destroying good management practices” has not lost any of its salience, after a decade. Management theories anchored in agency theory (and neo-classical economics generally) continue to abet the financialization of society and undermine the functioning of business. An alternative approach (drawn from a more classic institutional, new ecological, and refocused ethical approaches) is reviewed.
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  • First Elements for the Foundation of a New Paradigm in Physics.Paolo Renati - 2016 - World Futures 72 (1-2):19-40.
    In this article I present the extracts and summary of heuristic and speculative observations on various aspects I feel are problematic in the practice of modern physics, the definitions and methods of which are the premise for the whole of Science. The illustrations will be fully developed in a later, more extensive and in-depth work in which some theoretical solutions will also be put forward; therefore in the interests of brevity all assertions will not be demonstrated fully in this article. (...)
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  • A Twentieth Century Renaissance? The Price and Promise of Cultural Change.Robert Artigiani - 1993 - Diogenes 41 (163):89-112.
    European intellectuals diagnosed the end of the nineteenth century as “the sickness of an age.” Schopenhauer's pessimistic books suddenly became popular; Nietzsche announced the “death of god”; and Max Nordeau's Degeneration was an international best seller. To be sure, this mood of despair was initially limited to a handful of poets and philosophers. But once the outbreak of World War I revealed what “the treacherous years were all the while making for and meaning,” the sense that the West had somehow (...)
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  • On the Unification of Geometric and Random Structures through Torsion Fields: Brownian Motions, Viscous and Magneto-fluid-dynamics.Diego L. Rapoport - 2005 - Foundations of Physics 35 (7):1205-1244.
    We present the unification of Riemann–Cartan–Weyl (RCW) space-time geometries and random generalized Brownian motions. These are metric compatible connections (albeit the metric can be trivially euclidean) which have a propagating trace-torsion 1-form, whose metric conjugate describes the average motion interaction term. Thus, the universality of torsion fields is proved through the universality of Brownian motions. We extend this approach to give a random symplectic theory on phase-space. We present as a case study of this approach, the invariant Navier–Stokes equations for (...)
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  • Cartan–Weyl Dirac and Laplacian Operators, Brownian Motions: The Quantum Potential and Scalar Curvature, Maxwell’s and Dirac-Hestenes Equations, and Supersymmetric Systems. [REVIEW]Diego L. Rapoport - 2005 - Foundations of Physics 35 (8):1383-1431.
    We present the Dirac and Laplacian operators on Clifford bundles over space–time, associated to metric compatible linear connections of Cartan–Weyl, with trace-torsion, Q. In the case of nondegenerate metrics, we obtain a theory of generalized Brownian motions whose drift is the metric conjugate of Q. We give the constitutive equations for Q. We find that it contains Maxwell’s equations, characterized by two potentials, an harmonic one which has a zero field (Bohm-Aharonov potential) and a coexact term that generalizes the Hertz (...)
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  • Transcending Cosmopolitanism.Mogobe Bernard Ramose - 2012 - Diogenes 59 (3-4):30-35.
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  • Geometro-stochastic locality in quantum spacetime and quantum diffusions.Eduard Prugovečki - 1991 - Foundations of Physics 21 (1):93-124.
    The issue of the intrinsic nonlocality of quantum mechanics raised by J. S. Bell is examined from the point of view of the recently developed method of geometro-stochastic quantization and its applications to general relativistic quantum theory. This analysis reveals that a distinction should be made between the topological concept of locality used in formulating relativistic causality and a type of geometric locality based on the concept of fiber bundle, which can be used in extending the strong equivalence principle to (...)
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  • On the limits of quantitative genetics for the study of phenotypic evolution.Massimo Pigliucci & Carl D. Schlichting - 1997 - Acta Biotheoretica 45 (2):143-160.
    During the last two decades the role of quantitative genetics in evolutionary theory has expanded considerably. Quantitative genetic-based models addressing long term phenotypic evolution, evolution in multiple environments (phenotypic plasticity) and evolution of ontogenies (developmental trajectories) have been proposed. Yet, the mathematical foundations of quantitative genetics were laid with a very different set of problems in mind (mostly the prediction of short term responses to artificial selection), and at a time in which any details of the genetic machinery were virtually (...)
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  • A systems/perennial approach to the evolution of psyche.Glenn A. Perry - 1993 - World Futures 36 (2):211-244.
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  • Foucault as complexity theorist: Overcoming the problems of classical philosophical analysis.Mark Olssen - 2008 - Educational Philosophy and Theory 40 (1):96–117.
    This article explores the affinities and parallels between Foucault's Nietzschean view of history and models of complexity developed in the physical sciences in the twentieth century. It claims that Foucault's rejection of structuralism and Marxism can be explained as a consequence of his own approach which posits a radical ontology whereby the conception of the totality or whole is reconfigured as an always open, relatively borderless system of infinite interconnections, possibilities and developments. His rejection of Hegelianism, as well as of (...)
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  • Foucault as Complexity Theorist: Overcoming the problems of classical philosophical analysis.Mark Olssen - 2008 - Educational Philosophy and Theory 40 (1):96-117.
    This article explores the affinities and parallels between Foucault's Nietzschean view of history and models of complexity developed in the physical sciences in the twentieth century. It claims that Foucault's rejection of structuralism and Marxism can be explained as a consequence of his own approach which posits a radical ontology whereby the conception of the totality or whole is reconfigured as an always open, relatively borderless system of infinite interconnections, possibilities and developments. His rejection of Hegelianism, as well as of (...)
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  • Reviews. [REVIEW]Anthony O'hear - 1985 - British Journal for the Philosophy of Science 36 (3):354-357.
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  • Emergence, Story, and the Challenge of Positive Scenarios.Jay Ogilvy - 2014 - World Futures 70 (1):52-87.
    (2014). Emergence, Story, and the Challenge of Positive Scenarios. World Futures: Vol. 70, Strategy, Story, and Emergence: Essays on Scenario Planning, pp. 52-87.
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  • Time, thermodynamics, and theology.George L. Murphy - 1991 - Zygon 26 (3):359-372.
    Keywords: A theological approach to understanding time and change in a modern way must consider the relationships between thermal physics and time as elucidated during the past century and a half. The fact of temporal change, including death and decay, has been a religious problem since antiquity, so that some traditions have simply attempted to transcend the world of change. However, a major current of the Christian tradition has seen change as a fundamental aspect of God's creation, and one with (...)
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  • Figures in (De)composition: The genesis of the paradoxical self in paul auster's moon palace (a fuzzy grammar of subjectivity) 1.Salah el Moncef - 1999 - Angelaki 4 (3):75-91.
    (1999). Figures in (De)composition: The genesis of the paradoxical self in paul auster's moon palace (a fuzzy grammar of subjectivity) 1 . Angelaki: Vol. 4, No. 3, pp. 75-91.
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  • From time operator to chronons.B. Misra - 1995 - Foundations of Physics 25 (7):1087-1104.
    A time operator, which incorporates the idea of time as a dynamical variable, was first introduced in the context of a theory of irreversible evolution. The existence of a time operator has interesting implications in several areas of physics. Here we demonstrate a close link between the existence of the time operator for relativistic particles and the existence of an indivisible time interval or chronons for dynamical evolution. More explicitly, we consider a Klein-Gordon particle and require the existence of a (...)
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  • Shall I Compare Thee to a Minkowski-Ricardo-Leontief-Metzler Matrix of the Mosak-Hicks Type?: Or, Rhetoric, Mathematics, and the Nature of Neoclassical Economic Theory.Philip Mirowski - 1987 - Economics and Philosophy 3 (1):67-95.
    Is rhetoric just a new and trendy way toépater les bourgeois?Unfortunately, I think that the newfound interest of some economists in rhetoric, and particularly Donald McCloskey in his new book and subsequent responses to critics, gives that impression. After economists have worked so hard for the past five decades to learn their sums, differential calculus, real analysis, and topology, it is a fair bet that one could easily hector them about their woeful ignorance of the conjugation of Latin verbs or (...)
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  • The Constructive Realist Account of Science and Its Application to Ilya Prigogine’s Conception of Laws of Nature.Ave Mets & Piret Kuusk - 2009 - Foundations of Science 14 (3):239-248.
    Sciences are often regarded as providing the best, or, ideally, exact, knowledge of the world, especially in providing laws of nature. Ilya Prigogine, who was awarded the Nobel Prize for his theory of non-equilibrium chemical processes—this being also an important attempt to bridge the gap between exact and non-exact sciences [mentioned in the Presentation Speech by Professor Stig Claesson (nobelprize.org, The Nobel Prize in Chemistry 1977)]—has had this ideal in mind when trying to formulate a new kind of science. Philosophers (...)
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  • What is complexity theory and what are its implications for educational change?Mark Mason - 2008 - Educational Philosophy and Theory 40 (1):35–49.
    This paper considers questions of continuity and change in education from the perspective of complexity theory, introducing the field to educationists who might not be familiar with it. Given a significant degree of complexity in a particular environment , new properties and behaviours, which are not necessarily contained in the essence of the constituent elements or able to be predicted from a knowledge of initial conditions, will emerge. These concepts of emergent phenomena from a critical mass, associated with notions of (...)
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  • What Is Complexity Theory and What Are Its Implications for Educational Change?Mark Mason - 2008 - Educational Philosophy and Theory 40 (1):35-49.
    This paper considers questions of continuity and change in education from the perspective of complexity theory, introducing the field to educationists who might not be familiar with it. Given a significant degree of complexity in a particular environment (or ‘dynamical system’), new properties and behaviours, which are not necessarily contained in the essence of the constituent elements or able to be predicted from a knowledge of initial conditions, will emerge. These concepts of emergent phenomena from a critical mass, associated with (...)
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  • The meaning and significance of quantum states.S. Malin - 1984 - Foundations of Physics 14 (11):1083-1094.
    Recent investigations have conclusively proved that, because of their collapse, quantum states transform noncovariantly under Lorentz transformations. This result is shown to imply that quantum states do not represent probability distributions for the results of measurements. They represent, rather, perspectives of such probability distributions from the point of view of the frame of reference in which they are given. The ontological status of these “perspectives of potentialities” is discussed. It is conjectured that they propagate from the location of a measurement (...)
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  • Relativistically covariant Bohm-Bub hidden-variable theory for spin measurement of a single particle.Luc Longtin & Richard D. Mattuck - 1984 - Foundations of Physics 14 (8):685-703.
    We present a simple first step toward a relativistically covariant generalization of the Bohm-Bub hidden-variable theory. The model is applicable to spin measurement on a single Dirac particle and describes the collapse of the state vector to a spin-up or spin-down state. The essential postulate is that the hidden-variable vector transforms in the same way as the state vector under a Lorentz transformation. This yields a covariant collapse equation, which reduces to the ordinary Bohm-Bub equation for an observer stationary with (...)
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  • Nagel revisited. [REVIEW]Peter Lipton - 1982 - British Journal for the Philosophy of Science 33 (2):186-194.
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  • The Universal Arrow of Time.Oleg Kupervasser, Hrvoje Nikolić & Vinko Zlatić - 2012 - Foundations of Physics 42 (9):1165-1185.
    Statistical physics cannot explain why a thermodynamic arrow of time exists, unless one postulates very special and unnatural initial conditions. Yet, we argue that statistical physics can explain why the thermodynamic arrow of time is universal, i.e., why the arrow points in the same direction everywhere. Namely, if two subsystems have opposite arrow-directions at a particular time, the interaction between them makes the configuration statistically unstable and causes a decay towards a system with a universal direction of the arrow of (...)
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  • Mind-Body Problem: Does Complexity Exist Objectively?Bernard Korzeniewski - 2015 - Open Journal of Philosophy 5 (6):351-364.
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  • Freezing of Reality: Is Flow of Time Real?Korzeniewski Bernard - 2016 - Open Journal of Philosophy 6 (3):256-264.
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  • Formal Similarities between Cybernetic Definition of Life and Cybernetic Model of Self-Consciousness: Universal Definition/Model of Individual.Bernard Korzeniewski - 2013 - Open Journal of Philosophy 3 (2):314-328.
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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 complex nonlinear thinking: Edgar Morin's demand of a reform of thinking and the contribution of synergetics.Helena Knyazeva - 2004 - World Futures 60 (5 & 6):389 – 405.
    Main principles of the complex nonlinear thinking which are based on the notions of the modern theory of evolution and self-organization of complex systems called also synergetics are under discussion in this article. The principles are transdisciplinary, holistic, and oriented to a human being. The notions of system complexity, nonlinearity of evolution, creative chaos, space-time definiteness of structure-attractors of evolution, resonant influences, nonlinear and soft management are here of great importance. In this connection, a prominent contribution made to system analysis (...)
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  • The synergetic principles of nonlinear thinking.Helena Knyazeva - 1999 - World Futures 54 (2):163-181.
    In order to develop further the methods of scenario building and to facilitate the paths towards desirable and sustainable futures, we cannot do without a nonlinear evolutionary thinking. The theory of self-organization of complex systems, called also synergetics, is a scientific basis for such a thinking, the main principles of which are under consideration in the paper. Synergetics provides us with the knowledge of constructive principles of coevolution of the complex social systems, coevolution of countries and geopolitical regions being at (...)
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  • On the brussels school's arrow of time in quantum theory.Vassilios Karakostas - 1996 - Philosophy of Science 63 (3):374-400.
    This paper examines the problem of founding irreversibility on reversible equations of motion from the point of view of the Brussels school's recent developments in the foundations of quantum statistical mechanics. A detailed critique of both their 'subdynamics' and 'transformation' theory is given. It is argued that the subdynamics approach involves a generalized form of 'coarse-graining' description, whereas, transformation theory cannot lead to truly irreversible processes pointing to a preferred direction of time. It is concluded that the Brussels school's conception (...)
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  • Semantic control systems.Cliff Joslyn - 1995 - World Futures 45 (1):87-123.
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  • Local and Global Properties of the World.Demaret Jacques, Heller Michael & Lambert Dominique - 1997 - Foundations of Science 2 (1):137-176.
    The essence of the method of physics is inseparably connected with the problem of interplay between local and global properties of the universe. In the present paper we discuss this interplay as it is present in three major departments of contemporary physics: general relativity, quantum mechanics and some attempts at quantizing gravity (especially geometrodynamics and its recent successors in the form of various pregeometry conceptions). It turns out that all big interpretative issues involved in this problem point towards the necessity (...)
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  • What are the greatest challenges for Evolutionary theory in our times?Jan Huston - 1993 - World Futures 38 (1):107-121.
    (1993). What are the greatest challenges for Evolutionary theory in our times? World Futures: Vol. 38, Theoretical Achievements and Practical Applications of General Evolutionary Theory, pp. 107-121.
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  • Participation as chaos: Lessons from the principles of complexity theory for democracy.Renee Houston - 2001 - World Futures 57 (4):315-338.
    Current organizational communication theorists and practitioners seek to remedy organizational ills by advancing democracy within the workplace. Specifically, organizational democracy has been introduced with a variety of goals in mind: improving representation, increasing job satisfaction, improving productivity, and reducing costs. Although democracy emerges in myriad forms, theorists are still uncertain as to how to involve employees in the process and produce observable results. In this article, recent developments in complexity theory are invoked to both illuminate and resolve problems on the (...)
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