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  1. Semiosis as an emergent process.Joao Queiroz & Charbel Nino El-Hani - 2006 - Transactions of the Charles S. Peirce Society 42 (1):78-116.
    : In this paper, we intend to discuss if and in what sense semiosis (meaning process, cf. C. S. Peirce) can be regarded as an "emergent" process in semiotic systems. It is not our problem here to answer when or how semiosis emerged in nature. As a prerequisite for the very formulation of these problems, we are rather interested in discussing the conditions which should be fulfilled for semiosis to be characterized as an emergent process. The first step in this (...)
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  • Semiosis as an Emergent Process.Joao Queiroz & Charbel Nino El-Hani - 2006 - Transactions of the Charles S. Peirce Society 42 (1):78-116.
    In this paper, we intend to discuss if and in what sense semiosis (meaning process, cf. C. S. Peirce) can be regarded as an "emergent" process in semiotic systems. It is not our problem here to answer when or how semiosis emerged in nature. As a prerequisite for the very formulation of these problems, we are rather interested in discussing the conditions which should be fulfilled for semiosis to be characterized as an emergent process. The first step in this work (...)
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  • Computational Models of Emergent Properties.John Symons - 2008 - Minds and Machines 18 (4):475-491.
    Computational modeling plays an increasingly important explanatory role in cases where we investigate systems or problems that exceed our native epistemic capacities. One clear case where technological enhancement is indispensable involves the study of complex systems.1 However, even in contexts where the number of parameters and interactions that define a problem is small, simple systems sometimes exhibit non-linear features which computational models can illustrate and track. In recent decades, computational models have been proposed as a way to assist us in (...)
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  • Can we trust Big Data? Applying philosophy of science to software.John Symons & Ramón Alvarado - 2016 - Big Data and Society 3 (2).
    We address some of the epistemological challenges highlighted by the Critical Data Studies literature by reference to some of the key debates in the philosophy of science concerning computational modeling and simulation. We provide a brief overview of these debates focusing particularly on what Paul Humphreys calls epistemic opacity. We argue that debates in Critical Data Studies and philosophy of science have neglected the problem of error management and error detection. This is an especially important feature of the epistemology of (...)
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  • A Physicalistic Account of Emergentism.Nicholas Schroeder - 2015 - Axiomathes 25 (4):479-494.
    Jaegwon Kim’s argument against non-reductive physicalism is well known. Many philosophers take Kim’s argument to also apply to emergentism. But this does not necessarily follow. In this paper, I will first briefly show why Kim’s argument against non-reductive physicalism need not apply to emergentism. Next, I will present a physicalistic account of emergentism offered by Jason Megill in his paper “A Defense of Emergence.” This will be followed by an examination of some of the limitations of Megill’s account, in particular, (...)
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  • Reconciling Ontic Structural Realism and Ontological Emergence.João L. Cordovil, Gil C. Santos & John Symons - 2023 - Foundations of Science 28 (1):1-20.
    While ontic structural realism (OSR) has been a central topic in contemporary philosophy of science, the relation between OSR and the concept of emergence has received little attention. We will argue that OSR is fully compatible with emergentism. The denial of ontological emergence requires additional assumptions that, strictly speaking, go beyond OSR. We call these _physicalist closure assumptions._ We will explain these assumptions and show that they are independent of the central commitments of OSR and inconsistent with its core goals. (...)
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  • Logic, art and transdisciplinarity: A new logic for the new reality.Joseph E. Brenner - 2003 - Technoetic Arts 1 (3):169-180.
    The philosophical logic of Stéphane Lupasco, based on the principles of dynamic opposition and a law of the included middle, offers a needed alternative to the still quasi-exclusive application of classical, binary logic to post-classical natural and social sciences, art theory and political and social action. The system of Lupasco, extended by Basarab Nicolescu by the principle of levels of reality, is grounded in the major discoveries in quantum physics, biology, mathematics and systems science of the twentieth century. It leads (...)
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  • Logic in reality.Joseph E. Brenner - 2008 - Dordrecht: Springer.
    The work is the presentation of a logical theory - Logic in Reality (LIR) - and of applications of that theory in natural science and philosophy, including ...
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  • Downward determination.Charbel Niño El-Hani - 2005 - Abstracta 1 (2):162-192.
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