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Order out of chaos: man's new dialogue with nature

Boulder, CO: Random House. Edited by Isabelle Stengers & I. Prigogine (1984)

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  1. Extremum descriptions, process laws and minimality heuristics.Elliott Sober - 1991 - Behavioral and Brain Sciences 14 (2):232-233.
    The examples and concepts that Shoemaker cites are rather heterogeneous. Some distinctions need to be drawn. An optimality thesis involves not just an ordering of options, but a value judgment about them. So let us begin by distinguishing minimality from optimality. And the concept of minimality can play a variety of roles, among which I distinguish between extremum descriptions, statements hypothesizing an optimizing process, and methodological recommendations. Finally, I consider how the three categories relate to Shoemaker’s question that “Who is (...)
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  • Machinic articulations: experiments in non-verbal explanation. [REVIEW]Harry Smoak - 2011 - AI and Society 26 (2):137-142.
    The essay presents a novel theory of meaning-as-response inspired by the pragmatist cultural historian Morse Peckham in the mid-twentieth century. This approach is useful here in consideration of how artistic behavior can make a difference in technical culture and in relation to innovative technical practices. Continuing from Félix Guattari's notion of the machine as a partial object, this essay examines the essentialist idea of computational machines as creative collaborators which haunts the model of interaction prevailing today. Following this negative critique, (...)
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  • Styles of computational representation.M. P. Smith - 1988 - Behavioral and Brain Sciences 11 (3):530.
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  • Nature's Longing for Beauty: Elegance as an Evolutionary Attractor, with Implications for Human Systems.Charles Smith - 2010 - World Futures 66 (7):504-510.
    (2010). Nature's Longing for Beauty: Elegance as an Evolutionary Attractor, with Implications for Human Systems. World Futures: Vol. 66, No. 7, pp. 504-510.
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  • Meeting a world in crisis: On unlearning, fresh perception and alignment with life's fundamental trend: A tribute to C. west Churchman, pir vilayat Khan, and Ilya Prigogine.Charles Smith - 2005 - World Futures 61 (8):600 – 610.
    This article offers a synthesis of certain essential contributions from three revolutionary thinkers of our age, C. West Churchman, Pir Vilayat Khan, and Ilya Prigogine, each of whom recently departed this life. In the course of this article, common threads in the work of these pioneers related to problem solving and creativity will be explored.
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  • Hostile aggression as social skills deficit or evolutionary strategy?Peter K. Smith - 1991 - Behavioral and Brain Sciences 14 (2):315-316.
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  • Deep structure, cognition and rebirth: Propositions for viability and vitality in human systems.Charles Smith & Mahmoud Salem - 1990 - World Futures 29 (4):265-283.
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  • Why philosophers should be designers.Aaron Sloman - 1988 - Behavioral and Brain Sciences 11 (3):529.
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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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  • Maladaptation and hierarchically organized explanatory levels.Ronald C. Simons - 1991 - Behavioral and Brain Sciences 14 (2):314-315.
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  • The non-existence of a principle of natural selection.Abner Shimony - 1989 - Biology and Philosophy 4 (3):255-273.
    The theory of natural selection is a rich systematization of biological knowledge without a first principle. When formulations of a proposed principle of natural selection are examined carefully, each is seen to be exhaustively analyzable into a proposition about sources of fitness and a proposition about consequences of fitness. But whenever the fitness of an organic variety is well defined in a given biological situation, its sources are local contingencies together with the background of laws from disciplines other than the (...)
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  • Teleology for the Perplexed: How Matter Began to Matter.Jeremy Sherman & Terrence W. Deacon - 2007 - Zygon 42 (4):873-901.
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  • An argument for the evidential standing of psychoanalytic data.Howard Shevrin - 1986 - Behavioral and Brain Sciences 9 (2):257-259.
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  • Recontextualization of Science from Lab to School: Implications for Science Literacy.Ajay Sharma & Charles W. Anderson - 2009 - Science & Education 18 (9):1253-1275.
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  • Rational agents, real people and the quest for optimality.Eldar Shafir - 1991 - Behavioral and Brain Sciences 14 (2):232-232.
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  • Naturalized sacredness? A realist, panentheist, and perennialist alternative to Kauffman's constructivism.Itay Shani - 2014 - Zygon 49 (1):22-41.
    In his recent book Reinventing the Sacred, renowned biologist and systems theorist Stuart Kauffman offers an avenue for the revival of the sacred and for reconciling sacredness with a robust scientific outlook. According to Kauffman, God is a human cultural invention, and he urges us to reinvent the sacred as the ceaseless creativity in nature. I argue that Kauffman's proposal suffers from a major shortcoming, namely, being at odds with the nature, and content, of authentic experiences of the sacred, experiences (...)
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  • Minor architecture: poetic and speculative architectures in public space. [REVIEW]Xin Wei Sha - 2011 - AI and Society 26 (2):113-122.
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  • The realistic stance.John R. Searle - 1988 - Behavioral and Brain Sciences 11 (3):527.
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  • The strategy of optimality revisited.Paul J. H. Schoemaker - 1991 - Behavioral and Brain Sciences 14 (2):237-245.
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  • The quest for optimality: A positive heuristic of science?Paul J. H. Schoemaker - 1991 - Behavioral and Brain Sciences 14 (2):205-215.
    This paper examines the strengths and weaknesses of one of science's most pervasive and flexible metaprinciples;optimalityis used to explain utility maximization in economics, least effort principles in physics, entropy in chemistry, and survival of the fittest in biology. Fermat's principle of least time involves both teleological and causal considerations, two distinct modes of explanation resting on poorly understood psychological primitives. The rationality heuristic in economics provides an example from social science of the potential biases arising from the extreme flexibility of (...)
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  • The autogenesis of the self.Michael L. Schwalbe - 1991 - Journal for the Theory of Social Behaviour 21 (3):269–295.
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  • The mechanisms of emergence.R. Keith Sawyer - 2004 - Philosophy of the Social Sciences 34 (2):260-282.
    This article focuses on emergence in social systems. The author begins by proposing a new tool to explore the mechanisms of social emergence: multi agent–based computer simulation. He then draws on philosophy of mind to develop an account of social emergence that raises potential problems for the methodological individualism of both social mechanism and of multi agent simulation. He then draws on various complexity concepts to propose a set of criteria whereby one can determine whether a given social mechanism generates (...)
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  • Some gaps in Grünbaum's critique of psychoanalysis.Irwin Savodnik - 1986 - Behavioral and Brain Sciences 9 (2):257-257.
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  • Media temporalities of the internet: Philosophies of time and media in Derrida and Rorty.Mike Sandbothe - 1999 - AI and Society 13 (4):421-434.
    My considerations are organised into four sections. The first section provides a survey of some significant developments that determine contemporary philosophical discussion on the subject of ‘time’. In the second section, I show how the question of time and the issue of media are linked with one another in the views of two influential contemporary philosophers: Jacques Derrida and Richard Rorty. Finally, in the third section, the temporal implications of cultural practices which are developing in the new medium of the (...)
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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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  • Should the quest for optimality worry us?Nils-Eric Sahlin - 1991 - Behavioral and Brain Sciences 14 (2):231-231.
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  • Grünbaum on psychoanalysis: Where do we go from here?Michael Ruse - 1986 - Behavioral and Brain Sciences 9 (2):256-257.
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  • On the Notion of (Medical) Invasiveness.Abraham Rudnick - 2011 - Health Care Analysis 19 (2):99-106.
    The relation between the notions of (medical) invasiveness and (actual or potential) harm has not been systematically discussed nor theoretically grounded, despite its importance to clinical-ethical practice. This paper aims to clarify the notion of invasiveness beyond the traditional notion of invasiveness as breaking skin or inserting mechanical objects into the body. The traditional notion of invasiveness is challenged by counterexamples. Three approaches to the notion of disorder applied here are: deviation from what is common; deviation from what is considered (...)
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  • The politics of certainty: Conceptions of science in an age of uncertainty.Carl A. Rubino - 2000 - Science and Engineering Ethics 6 (4):499-508.
    The prestige of science, derived from its claims to certainty, has adversely affected the humanities. There is, in fact, a “politics of certainty”. Our ability to predict events in a limited sphere has been idealized, engendering dangerous illusions about our power to control nature and eliminate time. In addition, the perception and propagation of science as a bearer of certainty has served to legitimate harmful forms of social, sexual, and political power. Yet, as Ilya Prigogine has argued, renewed attention to (...)
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  • Managing the future: Science, the Humanities, and the myth of omniscience.Carl Rubino - 1993 - World Futures 38 (1):157-164.
    (1993). Managing the future: Science, the Humanities, and the myth of omniscience. World Futures: Vol. 38, Theoretical Achievements and Practical Applications of General Evolutionary Theory, pp. 157-164.
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  • Interpretations and the machine.Carl A. Rubino - 2003 - Semiotica 2003 (145):293-300.
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  • Piagetian epistemology: Equilibration and the teaching of science.Jack A. Rowell - 1989 - Synthese 80 (1):141 - 162.
    That Piagetian epistemology has the dynamics of knowledge growth as its core consideration predetermines a need to consider it as potentially applicable to teaching. This paper addresses that need by first outlining the Piagetian theory of equilibration and then applying it to the construction of methods of teaching science.
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  • Chaos and designing social systems.Gordon Rowland - 1998 - World Futures 52 (3):367-381.
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  • Will the argument for abstracta please stand up?Alexander Rosenberg - 1988 - Behavioral and Brain Sciences 11 (3):526.
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  • Symbionomic Evolution: From Complexity and Systems Theory, to Chaos Theory and Coevolution.Joël de Rosnay - 2011 - World Futures 67 (4-5):304 - 315.
    One of the great challenges of the modern world is the control and management of complexity. After the infinitely large and the infinitely small, we once again find ourselves confronting an unfathomable infinite?the infinitely complex. With its capability for simulation, the computer has become a macroscope. It helps us understand complexity and act on it more effectively to build and manage the large systems of which we are the cells?companies, cities, economies, societies, ecosystems. Thanks to this macroscope, a new vision (...)
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  • Processual media theory.Ned Rossiter - 2003 - Symploke 11 (1):104-131.
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  • How to build a mind.H. L. Roitblat - 1988 - Behavioral and Brain Sciences 11 (3):525.
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  • Una salida al dualismo: Juego y trabajo en John Dewey.Carlos Rodríguez Sabariz - 2018 - Endoxa 41:156.
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  • Asymmetry, Abstraction, and Autonomy: Justifying Coarse-Graining in Statistical Mechanics.Katie Robertson - 2020 - British Journal for the Philosophy of Science 71 (2):547-579.
    While the fundamental laws of physics are time-reversal invariant, most macroscopic processes are irreversible. Given that the fundamental laws are taken to underpin all other processes, how can the fundamental time-symmetry be reconciled with the asymmetry manifest elsewhere? In statistical mechanics, progress can be made with this question. What I dub the ‘Zwanzig–Zeh–Wallace framework’ can be used to construct the irreversible equations of SM from the underlying microdynamics. Yet this framework uses coarse-graining, a procedure that has faced much criticism. I (...)
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  • Optimality as a prescriptive tool.Alexander H. G. Rinnooy Kan - 1991 - Behavioral and Brain Sciences 14 (2):230-231.
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  • Grünbaum's critique of clinical psychoanalytic evidence: A sheep in wolf's clothing?Morton F. Reiser - 1986 - Behavioral and Brain Sciences 9 (2):255-256.
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  • The new science and the old: Complexity and realism in the social sciences.Michael Reed & David L. Harvey - 1992 - Journal for the Theory of Social Behaviour 22 (4):353–380.
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  • Thought-provoking speculations with need of rigor.Dennis R. Rasmussen - 1991 - Behavioral and Brain Sciences 14 (2):313-314.
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  • Corporate Perspectives On The Vedic Meditative Practice Upasana.P. Rao & P. Murthy - 2006 - International Journal of Transpersonal Studies 25 (1):77-82.
    A business corporation capable of evolving, termed a learning corporation, has a conscious quality. It is the systemic version of a rigid structure-preserving corporation that would be expected eventually to run into problems and end up as a failure. The conscious corporation analogy can be used to simulate the sequence of processes that occur during Upasana, a Vedic technique of meditation. In this essay, it will be argued that the Vedic view of consciousness is parallel to the postulate that successful (...)
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  • On Peirce’s Pragmatic Notion of Semiosis—A Contribution for the Design of Meaning Machines.João Queiroz & Floyd Merrell - 2009 - Minds and Machines 19 (1):129-143.
    How to model meaning processes (semiosis) in artificial semiotic systems? Once all computer simulation becomes tantamount to theoretical simulation, involving epistemological metaphors of world versions, the selection and choice of models will dramatically compromise the nature of all work involving simulation. According to the pragmatic Peircean based approach, semiosis is an interpreter-dependent process that cannot be dissociated from the notion of a situated (and actively distributed) communicational agent. Our approach centers on the consideration of relevant properties and aspects of Peirce’s (...)
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  • Semiosis and pragmatism: toward a dynamic concept of meaning.João Queiroz & Floyd Merrell - 2006 - Sign Systems Studies 34 (1):37-66.
    Philosophers and social scientists of diverse orientations have suggested that the pragmatics of semiosis is germane to a dynamic account of meaning as process. Semiosis, the central focus of C. S. Peirce's pragmatic philosophy, may hold a key to perennial problems regarding meaning. Indeed, Peirce's thought should be deemed seminal when placed within the cognitive sciences, especially with respect to his concept of the sign. According to Peirce's pragmatic model, semiosis is a triadic, time-bound, context-sensitive, interpreter-dependent, materially extended dynamic process. (...)
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  • Resolving Multiple Visions of Nature, Science, and Religion.James D. Proctor - 2004 - Zygon 39 (3):637-657.
    I argue for the centrality of the concepts of biophysical and human nature in science-and-religion studies, consider five different metaphors, or “visions,” of nature, and explore possibilities and challenges in reconciling them. These visions include (a) evolutionary nature, built on the powerful explanatory framework of evolutionary theory; (b) emergent nature, arising from recent research in complex systems and self-organization; (c) malleable nature, indicating both the recombinant potential of biotechnology and the postmodern challenge to a fixed ontology; (d) nature as sacred, (...)
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  • The rediscovery of time.Ilya Prigogine - 1984 - Zygon 19 (4):433-447.
    Central among problems in cosmology is the crucial question of the articulation of natural and historical time: how is human history related to natural processes described by science? A deterministic world view in which natural processes are reversible, as emphasized by classical Western science, is obviously not the answer. Recent research in fields such as far‐from‐equilibrium thermodynamics and statistical mechanics reveals irreversibility in natural processes and allows us to explore new forms of dialogue between science and the humanities.
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  • Intentionality: How to tell Mae West from a crocodile.David Premack - 1988 - Behavioral and Brain Sciences 11 (3):522.
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  • The origins of purpose: The first metasystem transitions.William T. Powers - 1995 - World Futures 45 (1):125-137.
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