Results for 'Emergent property'

971 found
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  1. Content aggregation, visualization and emergent properties in computer simulations.Gordana Dodig-Crnkovic, Juan M. Durán & D. Slutej - 2010 - In Kai-Mikael Jää-Aro & Thomas Larsson, SIGRAD 2010 – Content aggregation and visualization. Linköping University Electronic Press. pp. 77-83.
    With the rapidly growing amounts of information, visualization is becoming increasingly important, as it allows users to easily explore and understand large amounts of information. However the field of information visualiza- tion currently lacks sufficient theoretical foundations. This article addresses foundational questions connecting information visualization with computing and philosophy studies. The idea of multiscale information granula- tion is described based on two fundamental concepts: information (structure) and computation (process). A new information processing paradigm of Granular Computing enables stepwise increase of (...)
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  2. Is Consciousness an "Emergent Property"?Richard Oxenberg - manuscript
    In this very brief reflection, I argue against the suggestion that consciousness may be viewed as an emergent property of matter.
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  3.  31
    Creativity and Intelligence: Emergent Properties of the Brain as a Balancing Mechanism for Overpopulation, Natural Disasters, and Diseases.Angelito Malicse - manuscript
    Creativity and Intelligence: Emergent Properties of the Brain as a Balancing Mechanism for Overpopulation, Natural Disasters, and Diseases -/- The human brain is an extraordinary organ, capable of producing creativity and intelligence as emergent properties that allow humanity to address complex challenges. These traits are not merely tools for individual survival; they function as collective mechanisms to adapt to large-scale issues that threaten humanity’s balance with the environment. Overpopulation, natural disasters, and the prevalence of diseases and illnesses represent (...)
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  4. Where to Look for Emergent Properties.Agustín Vicente - 2013 - International Studies in the Philosophy of Science 27 (2):156.
    Recent years have seen renewed interest in the emergence issue. The contemporary debate, in contrast with that of past times, has to do not so much with the mind–body problem as with the relationship between the physical and other domains; mostly with the biological domain. One of the main sources of this renewed interest is the study of complex and, in general, far-from-equilibrium self-preserving systems, which seem to fulfil one of the necessary conditions for an entity to be emergent; (...)
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  5. Emergent Mental Properties are Not Just Double-Preventers.Andrei A. Buckareff & Jessica Hawkins - 2023 - Synthese 202 (2):1-22.
    We examine Sophie Gibb’s emergent property-dualist theory of mental causation as double-prevention. Her account builds on a commitment to a version of causal realism based on a powers metaphysic. We consider three objections to her account. We show, by drawing out the implications of the ontological commitments of Gibb’s theory of mental causation, that the first two objections fail. But, we argue, owing to worries about cases where there is no double-preventive role to be played by mental properties, (...)
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  6. Emergence: Laws and Properties: Comments on Noordhof.Simone Gozzano - 2010 - In Graham Macdonald & Cynthia Macdonald, Emergence in mind. New York: Oxford University Press. pp. 100.
    The paper discusses Noordhof' point on emergence, by arguing against an emergentist view of properties.
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  7. Powerful Qualities for Strongly Emergent Mental Properties.Joaquim Giannotti - manuscript
    Strong emergentists about mental properties of conscious experience typically hold that these are ontologically “over and above” and distinct in kind as compared to physical properties. Powers-based account of strong emergence offer a promising framework for elucidating the ontological “over and above”-ness of strongly emergent properties. However, they do not automatically ensure the desired non-physicality. In this paper, I argue that a conception of properties as powerful qualities has in-built resources for capturing both the ontological “over and above”-ness and (...)
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  8. Functions and emergence: when functional properties have something to say.Agustín Vicente - 2011 - Philosophical Studies 152 (2):293-312.
    In a recent paper, Bird (in: Groff (ed.) Revitalizing causality: Realism about causality in philosophy and social science, 2007 ) has argued that some higher-order properties—which he calls “evolved emergent properties”—can be considered causally efficacious in spite of exclusion arguments. I have previously argued in favour of a similar position. The basic argument is that selection processes do not take physical categorical properties into account. Rather, selection mechanisms are only tuned to what such properties can do, i.e., to their (...)
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  9. Reducing Emergence: The Case Studies in Statistic Thermodynamics, General Relativity, and Quantum Mechanics.Vasil Penchev - 2020 - Epistemology eJournal (Elsevier: SSRN) 13 (23):1-3.
    The emergent properties are properties referring to a system as a whole, but they do not make sense to its elements or parts being small enough. Furthermore certain emergent properties are reducible to those of elements or relevant parts often. The paper means the special case where the description of the system by means of its emergent properties is much simpler than that of its relevant elements or parts. The concept is investigated by a case study based (...)
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  10. Emergent Causation.Simon Prosser - 2012 - Philosophical Studies 159 (1):21-39.
    Downward causation is commonly held to create problems for ontologically emergent properties. In this paper I describe two novel examples of ontologically emergent properties and show how they avoid two main problems of downward causation, the causal exclusion problem and the causal closure problem. One example involves an object whose colour does not logically supervene on the colours of its atomic parts. The other example is inspired by quantum entanglement cases but avoids controversies regarding quantum mechanics. These examples (...)
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  11. What Emergence Can Possibly Mean.Sean M. Carroll & Achyuth Parola - manuscript
    We consider emergence from the perspective of dynamics: states of a system evolving with time. We focus on the role of a decomposition of wholes into parts, and attempt to characterize relationships between levels without reference to whether higher-level properties are “novel” or “unexpected.” We offer a classification of different varieties of emergence, with and without new ontological elements at higher levels. -/- Submitted to a volume on Real Patterns (Tyler Milhouse, ed.), to be published by MIT Press.
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  12. The emerging limits of emergentism: systematicity.Simone Gozzano - 2024 - Argumenta 19 (1):267-277.
    Taking steps from Wilson’s distinction between strong and weak emergence, in this paper I cast doubts on the prospect of weak emergence. After discussing the relationship between properties set at different levels and supporting different counterfactuals and laws, I discuss one crucial condition for a property to be weakly emergent, one that is usually taken as the primary motivation for emergence, that of being “realization indifferent”. I set an argument aimed at showing that this realization indifference does not (...)
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  13. How to Think about the Astrology Research Program: An Essay Considering Emergent Effects.Kenneth Douglas McRitchie - 2023 - Journal of Scientific Exploration 36 (4):706-716.
    As it has been shaped by improvements in its tools and methods, and by its discourse with critics, I describe how the astrological research program has advanced through three stages of modelling and design limitations. Single-factor tests (for example, the many Sun-sign–only experiments that have been published) are typically underdeterministic. Multi-factor tests, unless they are very well designed, can easily become overdeterministic. Chart-matching tests have been vulnerable to confirmation bias errors until the development of a machine-based, whole-chart matching protocol that (...)
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  14.  95
    Emergence in general science.Shu-Di Yang - manuscript
    Emergence is an omnipresent phenomenon that is present in almost all subjects, including physics, other branches of natural science, languages, and even social sciences and economics. Similarities and differences can be found in these domains. We discuss the classification of emergence, which can be organized according to different rules. We also explore universal properties among different levels of emergence, and where the differences among emergence patterns in different theories come from.
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  15. Explaining emergence: Toward an ontology of levels.Claus Emmeche, Simo Koppe & Frederick Stjernfelt - 1997 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 28 (1):83-119.
    The vitalism/reductionism debate in the life sciences shows that the idea of emergence as something principally unexplainable will often be falsified by the development of science. Nevertheless, the concept of emergence keeps reappearing in various sciences, and cannot easily be dispensed with in an evolutionary world-view. We argue that what is needed is an ontological nonreductionist theory of levels of reality which includes a concept of emergence, and which can support an evolutionary account of the origin of levels. Classical explication (...)
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  16.  23
    Beyond the Claims: Emerging AI Models and Predictive Analytics in Property & Casualty Insurance Risk Assessment.Adavelli Sateesh Reddy - 2024 - International Journal of Science and Research 13 (7):1625-1631.
    P&C insurers have an important role in addressing financial risk management needs but now struggle to respond to the new forms of risk. Historical analysis and actuarial calculations, which form the backbone of classical approaches to risk measurement and management, are not well suited to such new kinds of risks as climate change, cyber risks, and business cycle risks. These conventional approaches are also a static method for selling, which has limited potential in changing quickly with new market and consumer (...)
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  17. The building blocks of social trust. The role of customary mechanisms and of property relations in the emergence of social trust in the context of the commons.Marc Goetzmann - 2021 - Philosophy of the Social Sciences (4):004839312110084.
    This paper argues that social trust is the emergent product of a complex system of property relations, backed up by a sub-system of mutual monitoring. This happens in a context similar to Ostrom’s commons, where cooperation is necessary for the management of resources, in the absence of external authorities to enforce sanctions. I show that social trust emerges in this context because of an institutional structure that enables individuals to develop a generalized disposition to internalize the external effects (...)
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  18. Emergence within social systems.Kenneth Silver - 2021 - Synthese 199 (3-4):7865-7887.
    Emergence is typically discussed in the context of mental properties or the properties of the natural sciences, and accounts of emergence within these contexts tend to look a certain way. The emergent property is taken to emerge instantaneously out of, or to be proximately caused by, complex interaction of colocated entities. Here, however, I focus on the properties instantiated by the elements of certain systems discussed in social ontology, such as being a five-dollar bill or a pawn-movement, and (...)
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  19. Is Psycho-Physical Emergentism Committed to Dualism? The Causal Efficacy of Emergent Mental Properties.Godehard Brüntrup - 1998 - Erkenntnis 48 (2-3):133-151.
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  20. Intellectual property, complex externalities, and the knowledge commons.Nathan Goodman & Otto Lehto - 2024 - Public Choice 201 (3-4):511-531.
    Intellectual property (IP) can internalize positive externalities associated with the creation and discovery of ideas, thereby increasing investment in efforts to create and discover ideas. However, IP law also causes negative externalities. Strict IP rights raise the transaction costs associated with consuming and building on existing ideas. This causes a tragedy of the anticommons, in which valuable resources are underused and underdeveloped. By disincentivizing creative projects that build on existing ideas, IP protection, even if it increases original innovation, can (...)
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  21. Property, Legitimacy, Ideology: A Reality Check.Enzo Rossi & Carlo Argenton - forthcoming - Journal of Politics.
    Drawing on empirical evidence from history and anthropology, we aim to demonstrate that there is room for genealogical ideology critique within normative political theory. The test case is some libertarians’ use of folk notions of private property rights in defence of the legitimacy of capitalist states. Our genealogy of the notion of private property shows that asking whether a capitalist state can emerge without violations of self-ownership cannot help settling the question of its legitimacy, because the notion of (...)
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  22. Emergence, Downwards Causation and the Completeness of Physics.David Yates - 2009 - Philosophical Quarterly 59 (234):110-131.
    The 'completeness of physics' is the key premise in the causal argument for physicalism. Standard formulations of it fail to rule out emergent downwards causation. I argue that it must do this if it is tare in a valid causal argument for physicalism. Drawing on the notion of conferring causal power, I formulate a suitable principle, 'strong completeness'. I investigate the metaphysical implications of distinguishing this principle from emergent downwards causation, and I argue that categoricalist accounts of properties (...)
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  23. Demystifying Emergence.David Yates - 2016 - Ergo: An Open Access Journal of Philosophy 3:809-841.
    Are the special sciences autonomous from physics? Those who say they are need to explain how dependent special science properties could feature in irreducible causal explanations, but that’s no easy task. The demands of a broadly physicalist worldview require that such properties are not only dependent on the physical, but also physically realized. Realized properties are derivative, so it’s natural to suppose that they have derivative causal powers. Correspondingly, philosophical orthodoxy has it that if we want special science properties to (...)
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  24.  49
    Catalyzing the Systemic Continuum: A Summative Essay from Force Monopolies in Physics to the Emergence of Intelligence.Ignacio Lucas de León - manuscript
    The Systemic Continuum Paradigm (PCS) offers a unifying framework to understand how emergent properties—ranging from fundamental forces in physics to cognitive capacities in living systems—arise through systemic balances (BS) across multiple scales. While the Law of Structuring Systemic Emergence (LESSE) explains why one force can dominate its scale’s entire synergy in the physical domain (e.g., gravity at cosmic scales), the broader concept of Systemic Balance (BS) accounts for the emergence of non-monopolistic properties such as intelligence, consciousness, or social cooperation (...)
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  25. Emergence: A pluralist approach.Erica Onnis - 2023 - Theoria: Revista de Teoría, Historia y Fundamentos de la Ciencia 38 (3):339-355.
    Despite the common use of the concept of emergence, no uncontroversial theoretical framework has been yet formulated in this regard. In this paper, I examine what this circumstance suggests about the significance and usefulness of this concept. I first trace a brief history of the notion of emergence from its first formulation among the British Emergentists to its contemporary uses. Then, I outline its most common features and examine three examples of emergent phenomena, namely particle decay, free will, and (...)
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  26. Emerging plurality of life: Assessing the questions, challenges and opportunities.Jessica Abbott, Erik Persson & Olaf Witkowski - 2023 - Frontiers Human Dynamics 5:1153668.
    Research groups around the world are currently busy trying to invent new life in the laboratory, looking for extraterrestrial life, or making machines increasingly more life-like. In the case of astrobiology, any newly discovered life would likely be very old, but when discovered it would be new to us. In the case of synthetic organic life or life-like machines, humans will have invented life that did not exist before. Together, these endeavors amount to what we call the emerging plurality of (...)
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  27. How properties hold together in Substances.Joseph E. Earley - 2016 - In Eric R. Scerri & Grant Andrew Fisher, Essays in Philosophy of Chemistry. Oxford University Press. pp. 199-216.
    This article aims to clarify how aspects of current chemical understanding relate to some important contemporary problems of philosophy. The first section points out that the long-running philosophical debates concerning how properties stay together in substances have neglected the important topic of structure-determining closure. The second part describes several chemically-important types of closure and the third part shows how such closures ground the properties of chemical substances. The fourth section introduces current discussions of structural realism (SR) and contextual emergence: the (...)
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  28. Emergence, Function and Realization.Umut Baysan - 2018 - In Sophie Gibb, Robin Findlay Hendry & Tom Lancaster, The Routledge Handbook of Philosophy of Emergence. New York: Routledge.
    “Realization” and “emergence” are two concepts that are sometimes used to describe same or similar phenomena in philosophy of mind and the special sciences, where such phenomena involve the synchronic dependence of some higher-level states of affairs on the lower-level ones. According to a popular line of thought, higher-level properties that are invoked in the special sciences are realized by, and/or emergent from, lower-level, broadly physical, properties. So, these two concepts are taken to refer to relations between properties from (...)
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  29. Property and the Will: Kant and Achenwall on Ownership Rights.Fiorella Tomassini - 2023 - Kantian Review 28 (2):297-313.
    This article examines Kant’s theory of property through a comparative analysis of Gottfried Achenwall’s justification of ownership rights. I argue that at the core of Achenwall’s and Kant’s understanding of ownership rights lies the idea that rights are to be acquired through a juridical act (factum iuridicum, rechtlichen Act) of the will. However, while Achenwall thinks of this act as emerging from a private will, Kant holds that rights and obligations can only be brought about by an act of (...)
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  30. Emergence, evolution, and the geometry of logic: Causal leaps and the myth of historical development. [REVIEW]Stephen Palmquist - 2007 - Foundations of Science 12 (1):9-37.
    After sketching the historical development of “emergence” and noting several recent problems relating to “emergent properties”, this essay proposes that properties may be either “emergent” or “mergent” and either “intrinsic” or “extrinsic”. These two distinctions define four basic types of change: stagnation, permanence, flux, and evolution. To illustrate how emergence can operate in a purely logical system, the Geometry of Logic is introduced. This new method of analyzing conceptual systems involves the mapping of logical relations onto geometrical figures, (...)
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  31. Can Noncommutativity Be Emergent?Mir H. S. Quadri - 2024 - The Lumeni Notebook Research.
    This essay explores the concept of emergence within the framework of noncommutative systems, challenging traditional views that tie emergent behaviour to commutative rule sets. Emergence typically refers to the phenomena where higher-level complexity arises from the interactions of simpler components, often under deterministic and commutative systems. However, noncommutative systems, where the order of operations affects the outcome, introduce a unique layer of complexity that complicates this understanding. By examining the properties of noncommutative systems through formal mathematical analysis and exploring (...)
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  32. Programming the Emergence in Morphogenetically Architected Complex Systems.Franck Varenne, Pierre Chaigneau, Jean Petitot & René Doursat - 2015 - Acta Biotheoretica 63 (3):295-308.
    Large sets of elements interacting locally and producing specific architectures reliably form a category that transcends the usual dividing line between biological and engineered systems. We propose to call them morphogenetically architected complex systems (MACS). While taking the emergence of properties seriously, the notion of MACS enables at the same time the design (or “meta-design”) of operational means that allow controlling and even, paradoxically, programming this emergence. To demonstrate our claim, we first show that among all the self-organized systems studied (...)
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  33. Defense of Emergent Effects in Astrology Research: Rebuttal of Dean and Kelly (2023).Kenneth McRitchie - 2023 - Journal of Scientific Exploration 37 (3):576-579.
    The article I wrote on the astrology research program (2022) has drawn criticism from G. Dean and I. Kelly (2023) that scarcely touches on my topics of effect sizes in single-factor, multi-factor, and automated whole-chart experimentation. They ignore the meta-analysis of current research and my explanation of emergent effects. Instead they try to impugn all of astrology by arguments that date from the time of Cicero and Augustine.
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  34. Complementarity cannot resolve the emergence–reduction debate: Reply to Harré.Olivier Massin - 2006 - Synthese 151 (3):511-517.
    Rom Harré thinks that the Emergence–Reduction debate, conceived as a vertical problem, is partly ill posed. Even if he doesn’t wholly reject the traditional definition of an emergent property as a property of a collection but not of its components, his point is that this definition doesn’t exhaust all the dimensions of emergence. According to Harré there is another kind (or dimension) of emergence, which we may call—somewhat paradoxically—“horizontal emergence”: two properties of a substance are horizontally (...) relative to each other if they cannot be displayed in the same conditions. Contrary to vertical emergence, horizontal emergence is a symmetrical relation. Harré endorses horizontal emergentism. I argue that this position faces a principled difficulty: it makes it impossible to bind different horizontally emergent discourses in an interesting way. Physics and biology for example become “island” discourses, each speaking of a distinct kind of entities. The only way to ensure that two different discourses can relate to the same entity is to reintroduce verticality into the picture. (shrink)
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  35. Emergent Sign-Action.Pedro Atã & João Queiroz - 2019 - European Journal of Pragmatism and American Philosophy 11 (2).
    We explore Peirce’s pragmatic conception of sign action, as a distributed and emergent view of cognition and exemplify with the emergence of classical ballet. In our approach, semiosis is a temporally distributed process in which a regular tendency towards certain future outcomes emerges out of a history of sign actions. Semiosis self-organizes in time, in a process that continuously entails the production of more signs. Emergence is a ubiquitous condition in this process: the translation of signs into signs cannot (...)
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  36. The Emergence of Marx’s Concept of Subsumption.Tal Meir Giladi - 2024 - Archiv für Geschichte der Philosophie 1 (3):611-631.
    In Marx’s posthumously published manuscripts from 1857–1863, we find a systematic exposition of his concept of subsumption. Though much has been written about it, significant interpretative gaps persist. In this article, I begin filling these gaps by examining the emergence of Marx’s concept of subsumption. I will argue that in the Grundrisse Marx brings together distinct but complementary elements from Hegel’s theories of judgment and teleology to coin two new and well delineated concepts of subsumption that prefigure his later concepts (...)
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  37. Cellular Primary Consciousness Theory (CPCT): The Foundation Intelligence of Emergent Phenomena in Closed Systems; in Theory and Practice And Open and Closed Systems Theory (OCST): The Purpose of Meaninglessness.Brian Brown - manuscript
    This paper presents a unified theory of reality, which integrates two interdependent frameworks: Cellular Primary Consciousness Theory (CPCT) and Open and Closed Systems Theory (OCST). Although CPCT and OCST can each stand as individual theories, they are, in this work, combined to form a cohesive explanation of both the mechanics and purpose of the universe. CPCT posits that consciousness is a fundamental aspect of all life, extending to even the simplest cells, rather than being an emergent property exclusive (...)
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  38. Emergent Chance.Christian List & Marcus Pivato - 2015 - Philosophical Review 124 (1):119-152.
    We offer a new argument for the claim that there can be non-degenerate objective chance (“true randomness”) in a deterministic world. Using a formal model of the relationship between different levels of description of a system, we show how objective chance at a higher level can coexist with its absence at a lower level. Unlike previous arguments for the level-specificity of chance, our argument shows, in a precise sense, that higher-level chance does not collapse into epistemic probability, despite higher-level properties (...)
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  39. Stability, Emergence and Part-Whole-Reduction.Andreas Hüttemann, Reimer Kühn & Orestis Terzidis - 2015 - In Brigitte Falkenburg & Margaret Morrison, Why More is Different: Philosophical Issues in Condensed Matter Physics and Complex Systems. Berlin, Heidelberg: Springer. pp. 169-200.
    We address the question whether there is an explanation for the fact that as Fodor put it the micro-level “converges on stable macro-level properties”, and whether there are lessons from this explanation for other issues in the vicinity. We argue that stability in large systems can be understood in terms of statistical limit theorems. In the thermodynamic limit of infinite system size N → ∞ systems will have strictly stable macroscopic properties in the sense that transitions between different macroscopic phases (...)
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  40.  39
    Chirality of Dynamic Emergent Systems (CODES): Resolving Consciousness, Paradox, and the Foundations of Reality.Devin Bostick - manuscript
    This paper introduces the Chirality of Dynamics Emergent Systems (CODES), a unifying theory that reframes consciousness as an emergent property of dynamic systems achieving equilibrium between chaos and order. By grounding consciousness in adaptive, chiral processes, CODES provides a universal framework to resolve paradoxes such as free will vs. determinism, Gödel’s incompleteness, and Zeno’s paradoxes. The theory integrates principles of complex dynamics, evolutionary systems, and information theory, extending its applicability across neuroscience, philosophy, and quantum mechanics. Empirical pathways (...)
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  41. Seven properties of self-organization in the human brain.Birgitta Dresp-Langley - 2020 - Big Data and Cognitive Computing 2 (4):10.
    The principle of self-organization has acquired a fundamental significance in the newly emerging field of computational philosophy. Self-organizing systems have been described in various domains in science and philosophy including physics, neuroscience, biology and medicine, ecology, and sociology. While system architecture and their general purpose may depend on domain-specific concepts and definitions, there are (at least) seven key properties of self-organization clearly identified in brain systems: 1) modular connectivity, 2) unsupervised learning, 3) adaptive ability, 4) functional resiliency, 5) functional plasticity, (...)
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  42.  38
    Chirality of Dynamic Emergent Systems (CODES)_ Modeling Predator-Prey Relationships.Devin Bostick - manuscript
    This paper presents Chirality of Dynamic Emergent Systems (CODES) as a novel framework for understanding predator-prey dynamics. By integrating chaos, order, and emergent properties, CODES provides a comprehensive model for adaptive relationships within ecosystems. Traditional theories such as Lotka-Volterra and Holling’s models are examined in contrast, and CODES is positioned as a unifying theory that resolves limitations in deterministic and stochastic approaches. The utility of this framework extends to ecological sustainability, economic systems, and societal interactions, showcasing its interdisciplinary (...)
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  43. Emerging into the rainforest: Emergence and special science ontology.Alexander Franklin & Katie Robertson - 2024 - European Journal for Philosophy of Science 14 (4):1-26.
    Scientific realists don’t standardly discriminate between, say, biology and fundamental physics when deciding whether the evidence and explanatory power warrant the inclusion of new entities in our ontology. As such, scientific realists are committed to a lush rainforest of special science kinds (Ross, 2000). Viruses certainly inhabit this rainforest – their explanatory power is overwhelming – but viruses’ properties can be explained from the bottom up: reductive explanations involving amino acids are generally available. However, reduction has often been taken to (...)
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  44. The Compatibility of Downward Causation and Emergence.Simone Gozzano - 2017 - In Michele Paolini Paoletti & Francesco Orilia, Philosophical and Scientific Perspectives on Downward Causation. New York: Routledge. pp. 296-312.
    In this paper, I shall argue that both emergence and downward causation, which are strongly interconnected, presuppose the presence of levels of reality. However, emergence and downward causation pull in opposite directions with respect to my best reconstruction of what levels are. The upshot is that emergence stresses the autonomy among levels while downward causation puts the distinction between levels at risk of a reductio ad absurdum, with the further consequence of blurring the very notion of downward. Therefore, emergence and (...)
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  45. Emerging from the causal drain.Richard Corry - 2013 - Philosophical Studies 165 (1):29-47.
    For over 20 years, Jaegwon Kim’s Causal Exclusion Argument has stood as the major hurdle for non-reductive physicalism. If successful, Kim’s argument would show that the high-level properties posited by non-reductive physicalists must either be identical with lower-level physical properties, or else must be causally inert. The most prominent objection to the Causal Exclusion Argument—the so-called Overdetermination Objection—points out that there are some notions of causation that are left untouched by the argument. If causation is simply counterfactual dependence, for example, (...)
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  46. Ontological novelty, emergence, and the mind-body problem.Katalin Balog - 2006 - In Günter Abel, Kreativität. pp. 371-399.
    This paper is an exposition and comparison between two views concerning fundamental ontology in the context of the Mind-Body Problem: physicalism and emergent property dualism. I assess the pros and cons of each position and argue that physicalism provides an overall more plausible metaphysics.
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  47. Group Field Theories: Decoupling Spacetime Emergence from the Ontology of non-Spatiotemporal Entities.Marco Forgione - 2024 - European Journal for Philosophy of Science 14 (22):1-23.
    With the present paper I maintain that the group field theory (GFT) approach to quantum gravity can help us clarify and distinguish the problems of spacetime emergence from the questions about the nature of the quanta of space. I will show that the mechanism of phase transition suggests a form of indifference between scales (or phases) and that such an indifference allows us to black-box questions about the nature of the ontology of the fundamental levels of the theory. I consider (...)
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  48. Are self-organizing biochemical networks emergent?Christophe Malaterre - 2009 - In Maryvonne Gérin & Marie-Christine Maurel, Origins of Life: Self-Organization and/or Biological Evolution? EDP Sciences. pp. 117--123.
    Biochemical networks are often called upon to illustrate emergent properties of living systems. In this contribution, I question such emergentist claims by means of theoretical work on genetic regulatory models and random Boolean networks. If the existence of a critical connectivity Kc of such networks has often been coined “emergent” or “irreducible”, I propose on the contrary that the existence of a critical connectivity Kc is indeed mathematically explainable in network theory. This conclusion also applies to many other (...)
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  49. Truthmaking and the Mysteries of Emergence.Kevin Morris - 2018 - In Elly Vintiadis & Constantinos Mekios, Brute Facts. Oxford, UK: Oxford University Press.
    The concept of truthmaking, the idea that when a statement is true, there is typically something about the world in virtue of which it is true, has garnered much interest in recent metaphysics. Often, the motivation has been the thought that truthmaking can provide a new perspective on an important issue. This paper evaluates the claim that truthmaking can play a substantive role in defining an unproblematic notion of emergence. For despite playing an important role in philosophical discourse over the (...)
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  50. Emulation, reduction, and emergence in dynamical systems.Marco Giunti - 2005 - In Proceedings of the 6th Systems Science European Congress, Paris, September 19-22, 2005. (CD-ROM). AFSCET.
    The received view about emergence and reduction is that they are incompatible categories. I argue in this paper that, contrary to the received view, emergence and reduction can hold together. To support this thesis, I focus attention on dynamical systems and, on the basis of a general representation theorem, I argue that, as far as these systems are concerned, the emulation relationship is sufficient for reduction (intuitively, a dynamical system DS1 emulates a second dynamical system DS2 when DS1 exactly reproduces (...)
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