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  1. Interaction and bio-cognitive order.C. A. Hooker - 2009 - Synthese 166 (3):513-546.
    The role of interaction in learning is essential and profound: it must provide the means to solve open problems (those only vaguely specified in advance), but cannot be captured using our familiar formal cognitive tools. This presents an impasse to those confined to present formalisms; but interaction is fundamentally dynamical, not formal, and with its importance thus underlined it invites the development of a distinctively interactivist account of life and mind. This account is provided, from its roots in the interactivist (...)
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  • Applying self-directed anticipative learning to science I: Agency, error, and the interactive exploration of possibility space in early ape-langugae research.Robert P. Farrell & C. A. Hooker - 2007 - Perspectives on Science 15 (1):87-124.
    : The purpose of this paper and its sister paper (Farrell and Hooker, b) is to present, evaluate and elaborate a proposed new model for the process of scientific development: self-directed anticipative learning (SDAL). The vehicle for its evaluation is a new analysis of a well-known historical episode: the development of ape-language research. In this first paper we outline five prominent features of SDAL that will need to be realized in applying SDAL to science: 1) interactive exploration of possibility space; (...)
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  • Re-modelling scientific change: complex systems frames innovative problem solving.Cliff Hooker - 2018 - Lato Sensu: Revue de la Société de Philosophie des Sciences 5 (1):4-12.
    Complex systems are used, studied and instantiated in science, with what con-sequences? To be clear and systematic in response it is necessary to distin-guish the consequences, for science, of science using and studying complex systems, for philosophy of science, of science using and studying complex systems, for philosophy of science, of philosophy of science modelling sci-ence as a complex system. Each of these is explored in turn, especially. While has been least studied, it will be shown how modelling science as (...)
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  • The Nature of Moral Compromise.Barry Hoffmaster & Cliff Hooker - 2017 - Social Theory and Practice 43 (1):55-78.
    Compromise is a pervasive fact of life. It occurs when obligations conflict and repudiating one obligation entirely to satisfy another entirely is unacceptable—for example, when a single parent cannot both raise a child satisfactorily and earn the income that living together demands. Compromise is unsettling, but properly negotiating difficult circumstances develops moral and emotional maturity. Yet compromise has no place in moral philosophy, where it is logically anathematized and deemed to violate integrity. This paper defends compromise with more expansive accounts (...)
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  • Cognition in Skilled Action: Meshed Control and the Varieties of Skill Experience.Wayne Christensen, John Sutton & Doris J. F. McIlwain - 2016 - Mind and Language 31 (1):37-66.
    We present a synthetic theory of skilled action which proposes that cognitive processes make an important contribution to almost all skilled action, contrary to influential views that many skills are performed largely automatically. Cognitive control is focused on strategic aspects of performance, and plays a greater role as difficulty increases. We offer an analysis of various forms of skill experience and show that the theory provides a better explanation for the full set of these experiences than automatic theories. We further (...)
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  • Rationality as Effective Organisation of Interaction and Its Naturalist Framework.Cliff Hooker - 2011 - Axiomathes 21 (1):99-172.
    The point of this paper is to provide a principled framework for a naturalistic, interactivist-constructivist model of rational capacity and a sketch of the model itself, indicating its merits. Being naturalistic, it takes its orientation from scientific understanding. In particular, it adopts the developing interactivist-constructivist understanding of the functional capacities of biological organisms as a useful naturalistic platform for constructing such higher order capacities as reason and cognition. Further, both the framework and model are marked by the finitude and fallibility (...)
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  • Formalist rationality: The limitations of Popper's theory of reason.C. A. Hooker - 1981 - Metaphilosophy 12 (3-4):247-264.
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  • Error, error-statistics and self-directed anticipative learning.R. P. Farrell & C. A. Hooker - 2008 - Foundations of Science 14 (4):249-271.
    Error is protean, ubiquitous and crucial in scientific process. In this paper it is argued that understanding scientific process requires what is currently absent: an adaptable, context-sensitive functional role for error in science that naturally harnesses error identification and avoidance to positive, success-driven, science. This paper develops a new account of scientific process of this sort, error and success driving Self-Directed Anticipative Learning (SDAL) cycling, using a recent re-analysis of ape-language research as test example. The example shows the limitations of (...)
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  • Idealisation, naturalism, and rationality: Some lessons from minimal rationality.C. A. Hooker - 1994 - Synthese 99 (2):181 - 231.
    In his bookMinimal Rationality (1986), Christopher Cherniak draws deep and widespread conclusions from our finitude, and not only for philosophy but also for a wide range of science as well. Cherniak's basic idea is that traditional philosophical theories of rationality represent idealisations that are inaccessible to finite rational agents. It is the purpose of this paper to apply a theory of idealisation in science to Cherniak's arguments. The heart of the theory is a distinction between idealisations that represent reversible, solely (...)
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  • Applying self-directed anticipative learning to science II: Learning how to learn across a revolution in early ape language research.Robert P. Farrell & C. A. Hooker - 2007 - Perspectives on Science 15 (2):222-255.
    : The purpose of this paper and its sister paper I (Farrell and Hooker, a) is to present, evaluate and elaborate a proposed new model for the process of scientific development: self-directed anticipative learning. The vehicle for its evaluation is a new analysis of a well-known historical episode: the development of ape language research. Paper I examined the basic features of SDAL in relation to the early history of ape-language research. In this second paper we examine the reconceptualization of ape-language (...)
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  • An interactivist-constructivist approach to intelligence: Self-directed anticipative learning.Wayne D. Christensen & Clifford A. Hooker - 2000 - Philosophical Psychology 13 (1):5 – 45.
    This paper outlines an original interactivist-constructivist approach to modelling intelligence and learning as a dynamical embodied form of adaptiveness and explores some applications of I-C to understanding the way cognitive learning is realized in the brain. Two key ideas for conceptualizing intelligence within this framework are developed. These are: intelligence is centrally concerned with the capacity for coherent, context-sensitive, self-directed management of interaction; and the primary model for cognitive learning is anticipative skill construction. Self-directedness is a capacity for integrative process (...)
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  • Machine Learning and the Future of Realism.Giles Hooker & Cliff Hooker - 2018 - Spontaneous Generations 9 (1):174-182.
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  • Science: Legendary, Academic – and Post-Academic? [REVIEW]Cliff Hooker - 2003 - Minerva 41 (1):71-81.
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