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  1. The metaphysics of downward causation: Rediscovering the formal cause.Mariusz Tabaczek - 2013 - Zygon 48 (2):380-404.
    The methodological nonreductionism of contemporary biology opens an interesting discussion on the level of ontology and the philosophy of nature. The theory of emergence (EM), and downward causation (DC) in particular, bring a new set of arguments challenging not only methodological, but also ontological and causal reductionism. This argumentation provides a crucial philosophical foundation for the science/theology dialogue. However, a closer examination shows that proponents of EM do not present a unified and consistent definition of DC. Moreover, they find it (...)
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  • (1 other version)Modos de irredutibilidade das propriedades emergentes.Charbel Niño El-Hani & João Queiroz - 2005 - Scientiae Studia 3 (1):9-41.
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  • Mental causation and neuroscience: The semantic pruning model.José Manuel Muñoz - 2018 - Theoria: Revista de Teoría, Historia y Fundamentos de la Ciencia 33 (3):379-399.
    In this paper I propose a hypothetical model of mental causation that I call semantic pruning and which could be defined as the causal influence of contents and meanings on the spatial configuration of the network of synapses of an individual. I will be guided by two central principles: 1) the causal influence of the mental occurs by virtue of external semantic constraints and consists in the selective activation of certain physical powers, 2) when the selective activation is continual, it (...)
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  • The emergence of transcendental norms in human systems.Mark Graves - 2009 - Zygon 44 (3):501-532.
    Terrence Deacon has described three orders of emergence; Arthur Peacocke and others have suggested four levels of human systems and sciences; and Philip Clayton has postulated an additional, transcendent, level. Orders and levels describe distinct aspects of emergence, with orders characterizing topological complexity and levels characterizing theoretical knowledge and causal power. By using Deacon's orders to analyze and relate each of the four "lower" levels one can project that analysis on the transcendent level to gain insight into the teleodynamic emergence (...)
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  • A semiotic analysis of the genetic information system.Claus Emmeche - 2006 - Semiotica 2006 (160):1-68.
    Terms loaded with informational connotations are often employed to refer to genes and their dynamics. Indeed, genes are usually perceived by biologists as basically ‘the carriers of hereditary information.’ Nevertheless, a number of researchers consider such talk as inadequate and ‘just metaphorical,’ thus expressing a skepticism about the use of the term ‘information’ and its derivatives in biology as a natural science. First, because the meaning of that term in biology is not as precise as it is, for instance, in (...)
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  • Terra incognita: Explanation and reduction in earth science.Maarten G. Kleinhans, Chris J. J. Buskes & Henk W. de Regt - 2005 - International Studies in the Philosophy of Science 19 (3):289 – 317.
    The present paper presents a philosophical analysis of earth science, a discipline that has received relatively little attention from philosophers of science. We focus on the question of whether earth science can be reduced to allegedly more fundamental sciences, such as chemistry or physics. In order to answer this question, we investigate the aims and methods of earth science, the laws and theories used by earth scientists, and the nature of earth-scientific explanation. Our analysis leads to the tentative conclusion that (...)
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  • Emergent properties and the context objection to reduction.Megan Delehanty - 2005 - Biology and Philosophy 20 (4):715-734.
    Reductionism is a central issue in the philosophy of biology. One common objection to reduction is that molecular explanation requires reference to higher-level properties, which I refer to as the context objection. I respond to this objection by arguing that a well-articulated notion of a mechanism and what I term mechanism extension enables one to accommodate the context-dependence of biological processes within a reductive explanation. The existence of emergent features in the context could be raised as an objection to the (...)
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  • Levellism and the method of abstraction.Luciano Floridi & J. W. Sanders - 2004 - IEG Research Report.
    The use of "levels of abstraction" in philosophical analysis (levellism) has recently come under attack. In this paper, we argue that a refined version of epistemological levellism should be retained as a fundamental method, which we call the method of abstraction. After a brief introduction, in section two we make clear the nature and applicability of the (epistemological) method of levels of abstraction. In section three, we show the fruitfulness of the new method by applying it to five case studies: (...)
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  • ЭМЕРГЕНЦИЯ СУБЪЕКТНОСТИ: АТРИБУТИРОВАНИЕ КАЧЕСТВ, ФЕНОМЕНАЛЬНЫЙ ОПЫТ И СУЩЕСТВОВАНИЕ. ПЕР. С АНГЛ. А.Д. БОРИСОВА.Mark Pharoah - 2020 - METOD 10:91-122.
    Живым существам объективный мир представляется как совокупность чувственно воспринимаемых качеств, воспоминаний, ощущений, мыслей, желаний, убеж- дений и т.д. Почему произошло так, что объективный мир способствовал появлению су- ществ, обладающих субъективным представлением об окружающей их действительности. Почему объективный мир породил существ с субъективным восприятием мира? Эта статья во многом посвящена разрыву между объективным и субъективным, а также проблеме качественного характера феноменального сознания. Я утверждаю, что физиологическое, феноменальное и концептуальное составляют трехуровневую иерархию эмергентных кате- горий. Эти категории каузально и онтологически различны (или (...)
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  • Qualitative Attribution, Phenomenal Experience and Being.Mark Pharoah - 2018 - Biosemiotics 11 (3):427-446.
    I argue that the physiological, phenomenal and conceptual constitute a trichotomous hierarchy of emergent categories. I claim that each category employs a distinctive type of interactive mechanism that facilitates a meaningful kind of environmental discourse. I advocate, therefore, that each have a causal relation with the environment but that their specific class of mechanism qualifies distinctively the meaningfulness of that interaction and subsequent responses. Consequently, I argue that the causal chain of physical interaction feeds distinctive value-laden constructions that are ontologically (...)
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  • Levels of Organization in Biology.Markus Eronen & Daniel Stephen Brooks - unknown - Stanford Encyclopedia of Philosophy.
    Levels of organization are structures in nature, usually defined by part-whole relationships, with things at higher levels being composed of things at the next lower level. Typical levels of organization that one finds in the literature include the atomic, molecular, cellular, tissue, organ, organismal, group, population, community, ecosystem, landscape, and biosphere levels. References to levels of organization and related hierarchical depictions of nature are prominent in the life sciences and their philosophical study, and appear not only in introductory textbooks and (...)
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  • Sixteen Years Later: Making Sense of Emergence (Again).Olivier Sartenaer - 2016 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 47 (1):79-103.
    Sixteen years after Kim’s seminal paper offering a welcomed analysis of the emergence concept, I propose in this paper a needed extension of Kim’s work that does more justice to the actual diversity of emergentism. Rather than defining emergence as a monolithic third way between reductive physicalism and substance pluralism, and this through a conjunction of supervenience and irreducibility, I develop a comprehensive taxonomy of the possible varieties of emergence in which each taxon—theoretical, explanatory and causal emergence—is properly identified and (...)
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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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  • Towards a systemic research methodology in agriculture: Rethinking the role of values in science.Hugo Fjelsted Alrøe & Erik Steen Kristensen - 2002 - Agriculture and Human Values 19 (1):3-23.
    The recent drastic development of agriculture, together with the growing societal interest in agricultural practices and their consequences, pose a challenge to agricultural science. There is a need for rethinking the general methodology of agricultural research. This paper takes some steps towards developing a systemic research methodology that can meet this challenge – a general self-reflexive methodology that forms a basis for doing holistic or (with a better term) wholeness-oriented research and provides appropriate criteria of scientific quality.From a philosophy of (...)
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  • Machine mentality and the nature of the ground relation.Darren Whobrey - 2001 - Minds and Machines 11 (3):307-346.
    John Searle distinguished between weak and strong artificial intelligence (AI). This essay discusses a third alternative, mild AI, according to which a machine may be capable of possessing a species of mentality. Using James Fetzer's conception of minds as semiotic systems, the possibility of what might be called ``mild AI'' receives consideration. Fetzer argues against strong AI by contending that digital machines lack the ground relationship required of semiotic systems. In this essay, the implementational nature of semiotic processes posited by (...)
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  • Three levels of semiosis: Three kinds of kinds.F. Alrøe Hugo - 2016 - Cybernetics and Human Knowing 23 (2):23-38.
    In philosophy, there is an as yet unresolved discussion on whether there are different kinds of kinds and what those kinds are. In particular, there is a distinction between indifferent kinds, which are unaffected by observation and representation, and interactive kinds, which respond to being studied in ways that alter the very kinds under study. This is in essence a discussion on ontologies and, I argue, more precisely about ontological levels. The discussion of kinds of kinds can be resolved by (...)
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  • On the Vitality of Vitalism.Monica Greco - 2005 - Theory, Culture and Society 22 (1):15-27.
    The term ‘vitalism’ is most readily associated with a series of debates among 18th- and 19th-century biologists, and broadly with the claim that the explanation of living phenomena is not compatible with, or is not exhausted by, the principles of basic sciences like physics and chemistry. Scientists and philosophers have continued to address vitalism - mostly in order to reject it - well into the second half of the 20th century, in connection with classic concepts such as mechanism, reductionism, emergence, (...)
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  • Reductionism and the Irreducibility of Consciousness.John R. Searle - 1997 - In Ned Block, Owen Flanagan & Guven Guzeldere (eds.), The Nature of Consciousness: Philosophical Debates. MIT Press.
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  • Aspects of Complexity in Life and Science.Claus Emmeche - 1997 - Philosophica 59 (1).
    A short review of complexity research from the perspective of history and philosophy of biology is presented. Complexity and its emergence has scientific and metaphysical meanings. From its beginning, biology was a science of complex systems, but with the advent of electronic computing and the possibility of simulating mathematical models of complicated systems, new intuitions of complexity emerged, together with attempts to devise quantitative measures of complexity. But can we quantify the complex?
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  • Essential Difference: Toward a Metaphysics of Emergence.James Blachowicz - 2012 - State University of New York Press.
    Proposes a new way of understanding the nature of metaphysics, focusing on nonreductionist emergence theory, both in ancient and modern philosophy, as well as in contemporary philosophy of science.
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  • Emergence and the realist account of cause.Dave Elder-Vass - 2005 - Journal of Critical Realism 4 (2):315-338.
    This paper aims to improve critical realism's understanding of emergence by discussing, first, what emergence is and how it works; second, the need for a compositional account of emergence; and third, the implications of emergence for causation. It goes on to argue that the theory of emergence leads to the recognition of certain hitherto neglected similarities between real causal powers and actual causation. (edited).
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  • How Causal is Downward Causation?Menno Hulswit - 2005 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 36 (2):261-287.
    The purpose of this paper is to lay bare the major problems underlying the concept of downward causation as discussed within the perspective of the present interest for phenomena that are characterized by self-organization. In our discussion of the literature, we have focussed on two questions: (1) What sorts of things are said to be, respectively, causing and caused within the context of downward causation? And (2) What is the meaning of ‘causing’ in downward causation? We have concluded that the (...)
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  • Temporalizing ontology: a case for pragmatic emergence.Ludger van Dijk - 2020 - Synthese 198 (9):9021-9034.
    Despite an attempt to break with the hierarchical picture in traditional emergentist thought, non-standard accounts of emergence are often still committed to a premise that ontology is prior to epistemology. This paper aims to topple this last remnant of the traditional hierarchy by explicating a pragmatic view of emergence based on John Dewey’s work. Dewey argued that the traditional notion of ontology is premised on a view of existence as complete. Through a discussion of Dewey’s work it is argued that (...)
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  • Part-whole science.Rasmus Grønfeldt Winther - 2011 - Synthese 178 (3):397-427.
    A scientific explanatory project, part-whole explanation, and a kind of science, part-whole science are premised on identifying, investigating, and using parts and wholes. In the biological sciences, mechanistic, structuralist, and historical explanations are part-whole explanations. Each expresses different norms, explananda, and aims. Each is associated with a distinct partitioning frame for abstracting kinds of parts. These three explanatory projects can be complemented in order to provide an integrative vision of the whole system, as is shown for a detailed case study: (...)
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  • Neither metaphysical dichotomy nor pure identity: Clarifying the emergentist creed.Olivier Sartenaer - 2013 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 44 (3):365-373.
    Emergentism is often misleadingly described as a monolithic “third way” between radical monism and pluralism. In the particular case of biology, for example, emergentism is perceived as a middle course between mechanicism and vitalism. In the present paper I propose to show that the conceptual landscape between monism and pluralism is more complex than this classical picture suggests. On the basis of two successive analyses—distinguishing three forms of tension between monism and pluralism and a distinction between derivational and functional reduction—I (...)
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  • The Constraint Interpretation of Physical Emergence.James Blachowicz - 2013 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 44 (1):21-40.
    I develop a variant of the constraint interpretation of the emergence of purely physical (non-biological) entities, focusing on the principle of the non-derivability of actual physical states from possible physical states (physical laws) alone. While this is a necessary condition for any account of emergence, it is not sufficient, for it becomes trivial if not extended to types of constraint that specifically constitute physical entities, namely, those that individuate and differentiate them. Because physical organizations with these features are in fact (...)
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  • (1 other version)From representation to emergence: Complexity's challenge to the epistemology of schooling.Deborah Osberg, Gert Biesta & Paul Cilliers - 2008 - Educational Philosophy and Theory 40 (1):213–227.
    In modern, Western societies the purpose of schooling is to ensure that school-goers acquire knowledge of pre-existing practices, events, entities and so on. The knowledge that is learned is then tested to see if the learner has acquired a correct or adequate understanding of it. For this reason, it can be argued that schooling is organised around a representational epistemology: one which holds that knowledge is an accurate representation of something that is separate from knowledge itself. Since the object of (...)
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  • Intervals of Quasi-Decompositionality and Emergent Properties.Emilio Cáceres Vázquez & Cristian Saborido - 2017 - Theoria : An International Journal for Theory, History and Fundations of Science 32 (1):89-108.
    The notion of emergence has accompanied philosophy of science since the late XIX century, claiming that in some systems there are properties in certain levels that cannot be deduced from properties of their components as seen in more fundamental levels. Throughout the XX century, emergence has been characterized by four pillars: unpredictability, novelty, restriction and downward causation. These four pillars have been related to the assumption of a hierarchical order of reality in different levels of organization. In this paper, we (...)
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  • What shall we do with emergence? A survey of a fundamental issue in the metaphysics and epistemology of science.Sami Pihlström - 1999 - South African Journal of Philosophy 18 (2):192-210.
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  • The limits of reductionism in biology: what alternatives?Fulvio Mazzocchi - 2011 - E-Logos 18 (1):1-19.
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  • Ernst Mayr (1904–2005) and the new philosophy of biology.Thomas Junker - 2007 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 38 (1):1-17.
    p. 13: But if Mayr himself was an unconscious 'physicalist', why did he argue so forcefully against the machine theory of life? In part his dissatisfaction with this approach can be explained as a residue of earlier experiences. When he started to argue for the autonomy of biology in the early 1960s, the unique, emergent characteristics of organisms were ignored by the philosophy of science which was dominated by physics (Greene 1994; Hull 1994). In this situation Mayr not only criticised (...)
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  • Distinctions as embodied experiences.Carlos M. Parra & Masakazu Yano - 2004 - Semiotica 2004 (151).
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  • Fastidious, foundational heresies.Jason Scott Robert - 2000 - Biology and Philosophy 15 (1):133-145.
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  • In search of a reconciliation between semiotics, thermodynamics and metasystem transition theory.Vefa Karatay & Yagmur Denizhan - 2005 - Axiomathes 15 (1):47-61.
    The disciplines of cybernetics, semiotics and thermodynamics investigate evolutionary processes quite independently from each other. The aim of this paper is to draw the parallels and point out the possibility and necessity of a reconciliation between these disciplines. The concept of metasystem transition has been proposed by Turchin as a quantum of evolution from a cybernetic point of view. Semiotic processes are of prime importance for the realisation of metasystem transitions in the course of evolution. From a thermodynamic point of (...)
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  • Downward determination.Charbel Niño El-Hani - 2005 - Abstracta 1 (2):162-192.
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