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  1. Emergent properties.Timothy O'Connor - 1994 - American Philosophical Quarterly 31 (2):91-104.
    All organised bodies are composed of parts, similar to those composing inorganic nature, and which have even themselves existed in an inorganic state; but the phenomena of life, which result from the juxtaposition of those parts in a certain manner, bear no analogy to any of the effects which would be produced by the action of the component substances considered as mere physical agents. To whatever degree we might imagine our knowledge of the properties of the several ingredients of a (...)
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  • (2 other versions)Facing up to the problem of consciousness.David Chalmers - 1995 - Journal of Consciousness Studies 2 (3):200-19.
    To make progress on the problem of consciousness, we have to confront it directly. In this paper, I first isolate the truly hard part of the problem, separating it from more tractable parts and giving an account of why it is so difficult to explain. I critique some recent work that uses reductive methods to address consciousness, and argue that such methods inevitably fail to come to grips with the hardest part of the problem. Once this failure is recognized, the (...)
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  • (5 other versions)What is it like to be a bat?Thomas Nagel - 1974 - Philosophical Review 83 (4):435-50.
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  • Peirce’s legacy for contemporary consciousness studies, the emergence of consciousness from qualia, and its evanescence in habits.Winfried Nöth - 2021 - Semiotica 2021 (243):49-103.
    The paper argues that contemporary consciousness studies can profit from Charles S. Peirce’s philosophy of consciousness. It confronts mainstream tendencies in contemporary consciousness studies, including those which consider consciousness as an unsolvable mystery, with Peirce’s phenomenological approach to consciousness. Peirce’s answers to the following contemporary issues are presented: phenomenological consciousness and the qualia, consciousness as self-controlled agency of humans, self-control and self-reflection, consciousness and language, self-consciousness and introspection, consciousness and the other, consciousness of nonhuman animals, and the question of a (...)
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  • Causation and Information: Where Is Biological Meaning to Be Found?Mark Pharoah - 2020 - Biosemiotics 13 (3):309-326.
    The term ‘information’ is used extensively in biology, cognitive science and the philosophy of consciousness in relation to the concepts of ‘meaning’ and ‘causation’. While ‘information’ is a term that serves a useful purpose in specific disciplines, there is much to the concept that is problematic. Part 1 is a critique of the stance that information is an independently existing entity. On this view, and in biological contexts, systems transmit, acquire, assimilate, decode and manipulate it, and in so doing, generate (...)
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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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  • The Physics of Mind and Thought.Brian Josephson - 2019 - Activitas Nervosa Superior 61:86–90.
    Regular physics is unsatisfactory in that it fails to take into consideration phenomena relating to mind and meaning, whereas on the other side of the cultural divide such constructs have been studied in detail. This paper discusses a possible synthesis of the two perspectives. Crucial is the way systems realising mental function can develop step by step on the basis of the scaffolding mechanisms of Hoffmeyer, in a way that can be clarified by consideration of the phenomenon of language. Taking (...)
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  • (5 other versions)The View from Nowhere.Thomas Nagel - 1986 - Behaviorism 15 (1):73-82.
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  • Deterministic Nonperiodic Flow.Edward Lorenz - 1963 - Journal of Atmospheric Sciences 20 (2):130-148.
    Finite systems of deterministic ordinary nonlinear differential equations may be designed to represent forced dissipative hydrodynamic flow. Solutions of these equations can be identified with trajectories in phase space. For those systems with bounded solutions, it is found that nonperiodic solutions are ordinarily unstable with respect to small modifications, so that slightly differing initial states can evolve into considerably different states. Systems with bounded solutions are shown to possess bounded numerical solutions.A simple system representing cellular convection is solved numerically. All (...)
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  • Just How Emergent is the Emergence of Semiosis?Claudio Julio Rodríguez Higuera - 2016 - Biosemiotics 9 (2):155-167.
    Studying the origin of semiosis is a task obscured by terminological and metaphysical issues which create an ambiguous set of definitions for biosemiotics when referring to the concept of emergence. The question is, how emergent can semiosis be? And what are the conditions for semiosis to be an emergent of a certain type? This paper will attempt to briefly deal with the general terminology of emergence from a philosophical point of view and will discuss the characterization of semiosis as an (...)
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  • Towards a semiotic definition of discourse and a basis for a typology of discourses.Max Boholm - 2016 - Semiotica 2016 (208).
    Name der Zeitschrift: Semiotica Jahrgang: 2016 Heft: 208 Seiten: 177-201.
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  • Introduction: Semiotic Scaffolding.Jesper Hoffmeyer - 2015 - Biosemiotics 8 (2):153-158.
    Introduction: Semiotic ScaffoldingA central idea in biosemiotic writings has been the idea of growth in semiotic freedom as a persistent trend in evolution . By semiotic freedom we mean the capacity of species or organisms to derive useful information by help of semiosis or, in other words, by processes of interpretation in the widest sense of this term. While even bacteria have a certain very limited ability to interpret cues in the medium this ability obviously becomes more developed in more (...)
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  • The Theory of Meaning.Jakob von Uexküll - 1982 - Semiotica 42 (1).
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  • (5 other versions)What is it like to be a bat?Thomas Nagel - 1979 - In Mortal questions. New York: Cambridge University Press. pp. 435 - 450.
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  • Emergent Properties.Timothy O' Connor - 1994 - American Philosophical Quarterly 31:91.
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  • A New Kind of Science.Stephen Wolfram - 2002 - Bulletin of Symbolic Logic 10 (1):112-114.
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  • (5 other versions)The View from Nowhere.Thomas Nagel - 1986 - Zeitschrift für Philosophische Forschung 43 (2):399-403.
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  • A biosemiotic approach to the question of meaning.Jesper Hoffmeyer - 2010 - Zygon 45 (2):367-390.
    A sign is something that refers to something else. Signs, whether of natural or cultural origin, act by provoking a receptive system, human or nonhuman, to form an interpretant (a movement or a brain activity) that somehow relates the system to this "something else." Semiotics sees meaning as connected to the formation of interpretants. In a biosemiotic understanding living systems are basically engaged in semiotic interactions, that is, interpretative processes, and organic evolution exhibits an inherent tendency toward an increase in (...)
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  • (5 other versions)The View from Nowhere.Thomas Nagel - 1986 - Tijdschrift Voor Filosofie 50 (4):729-730.
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  • Introduction: Toward a Definition of Biosemiosic Chance.Victoria N. Alexander - 2014 - Biosemiotics 7 (3):329-334.
    In this special issue, our objective is to clarify what biosemioticians may mean insofar as they claim that living systems are capable of making choices or that biosemiotic interpretations are partially indeterminate. A number of different senses of the term “chance” are discussed as we move toward a consensus. We find that biosemiosic chance may arise out of conditions involving quantum indeterminacy, randomness, deterministic chaos, or unpredictability, but biosemiosic chance is mainly due to the fact that living entities invest their (...)
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  • On the Meaning of Chance in Biology.James A. Coffman - 2014 - Biosemiotics 7 (3):377-388.
    Chance has somewhat different meanings in different contexts, and can be taken to be either ontological or epistemological . Here I argue that, whether or not it stems from physical indeterminacy, chance is a fundamental biological reality that is meaningless outside the context of knowledge. To say that something happened by chance means that it did not happen by design. This of course is a cornerstone of Darwin’s theory of evolution: random undirected variation is the creative wellspring upon which natural (...)
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  • Semiotic Scaffolding of Multicellularity.Jesper Hoffmeyer - 2015 - Biosemiotics 8 (2):159-171.
    The threshold from unicellularity to multicellularity has been crossed only in three major living domains in evolution with any lasting success. The hard problem was to create a multicellular self. Such a self is vulnerable to breakdown due to the unavoidable appearance of mutant anarchistic cells, and stringent semiotic scaffoldings had to emerge to prevent this. While a unicellular self may go on to live practically forever, the multicellular self most often must run through an individuation process ending in the (...)
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