Results for 'the dynamical system theory'

988 found
Order:
  1. Paulina Taboada.The General Systems Theory: An Adequate - 2002 - In Paulina Taboada, Kateryna Fedoryka Cuddeback & Patricia Donohue-White (eds.), Person, Society, and Value: Towards a Personalist Concept of Health. Kluwer Academic.
  2.  42
    Dynamic systems theory places the scientist in the system.Alan Fogel, Ilse de Koeyer, Cory Secrist & Ryan Nagy - 2002 - Behavioral and Brain Sciences 25 (5):623-624.
    Dynamic systems theory is a way of describing the patterns that emerge from relationships in the universe. In the study of interpersonal relationships, within and between species, the scientist is an active and engaged participant in those relationships. Separation between self and other, scientist and subject, runs counter to systems thinking and creates an unnecessary divide between humans and animals.
    Direct download (4 more)  
     
    Export citation  
     
    Bookmark  
  3.  54
    Dynamical systems theory in cognitive science and neuroscience.Luis H. Favela - 2020 - Philosophy Compass 15 (8):e12695.
    Dynamical systems theory (DST) is a branch of mathematics that assesses abstract or physical systems that change over time. It has a quantitative part (mathematical equations) and a related qualitative part (plotting equations in a state space). Nonlinear dynamical systems theory applies the same tools in research involving phenomena such as chaos and hysteresis. These approaches have provided different ways of investigating and understanding cognitive systems in cognitive science and neuroscience. The ‘dynamical hypothesis’ claims that (...)
    No categories
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark   4 citations  
  4. Supervenience, Dynamical Systems Theory, and Non-Reductive Physicalism.Jeffrey Yoshimi - 2012 - British Journal for the Philosophy of Science 63 (2):373-398.
    It is often claimed (1) that levels of nature are related by supervenience, and (2) that processes occurring at particular levels of nature should be studied using dynamical systems theory. However, there has been little consideration of how these claims are related. To address the issue, I show how supervenience relations give rise to ‘supervenience functions’, and use these functions to show how dynamical systems at different levels are related to one another. I then use this analysis (...)
    Direct download (9 more)  
     
    Export citation  
     
    Bookmark   14 citations  
  5. Dynamical Systems Theory and Explanatory Indispensability.Juha Saatsi - 2017 - Philosophy of Science 84 (5):892-904.
    I examine explanations’ realist commitments in relation to dynamical systems theory. First I rebut an ‘explanatory indispensability argument’ for mathematical realism from the explanatory power of phase spaces (Lyon and Colyvan 2007). Then I critically consider a possible way of strengthening the indispensability argument by reference to attractors in dynamical systems theory. The take-home message is that understanding of the modal character of explanations (in dynamical systems theory) can undermine platonist arguments from explanatory indispensability.
    Direct download (9 more)  
     
    Export citation  
     
    Bookmark   6 citations  
  6. Extending Dynamical Systems Theory to Model Embodied Cognition.Scott Hotton & Jeff Yoshimi - 2011 - Cognitive Science 35 (3):444-479.
    We define a mathematical formalism based on the concept of an ‘‘open dynamical system” and show how it can be used to model embodied cognition. This formalism extends classical dynamical systems theory by distinguishing a ‘‘total system’’ (which models an agent in an environment) and an ‘‘agent system’’ (which models an agent by itself), and it includes tools for analyzing the collections of overlapping paths that occur in an embedded agent's state space. To illustrate (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark   8 citations  
  7. Dynamical systems theory as an approach to mental causation.Tjeerd Van De Laar - 2006 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 37 (2):307-332.
    Dynamical systems theory (DST) is gaining popularity in cognitive science and philosophy of mind. Recently several authors (e.g. J.A.S. Kelso, 1995; A. Juarrero, 1999; F. Varela and E. Thompson, 2001) offered a DST approach to mental causation as an alternative for models of mental causation in the line of Jaegwon Kim (e.g. 1998). They claim that some dynamical systems exhibit a form of global to local determination or downward causation in that the large-scale, global activity of the (...)
    Direct download (4 more)  
     
    Export citation  
     
    Bookmark   3 citations  
  8. Dynamical Systems Theory, Understanding, and Explanation: Comments on Malapi-Nelson's Paper with Responses from the Author.Pak Ho & Alcibiades Malapi-Nelson - 2002 - Gnosis 6:1-9.
     
    Export citation  
     
    Bookmark  
  9.  32
    Dynamical systems theory and the mobility gradient: Information, homology and self-similar structure.Gary Goldberg - 1992 - Behavioral and Brain Sciences 15 (2):278-279.
  10. Dynamical Systems Theory, Understanding, and Explanation: Comments on Malapi-Nelson's Paper with Responses from the Author.Pak Kin Ho & Alcibiades Malapi-Nelson - 2011 - Gnosis 6 (1).
     
    Export citation  
     
    Bookmark  
  11.  4
    The Three-Body Problem and the Equations of Dynamics: Poincaré's Foundational Work on Dynamical Systems Theory.Henri Poincaré - 2017 - Cham: Imprint: Springer.
    Here is an accurate and readable translation of a seminal article by Henri Poincaré that is a classic in the study of dynamical systems popularly called chaos theory. In an effort to understand the stability of orbits in the solar system, Poincaré applied a Hamiltonian formulation to the equations of planetary motion and studied these differential equations in the limited case of three bodies to arrive at properties of the equations' solutions, such as orbital resonances and horseshoe (...)
    Direct download  
     
    Export citation  
     
    Bookmark  
  12.  38
    A dynamical system theory approach to cognitive neuroscience.D. Heinke - 2000 - Behavioral and Brain Sciences 23 (4):543-543.
    Neural organization contains a wealth of facts from all areas of brain research and provides a useful overview of physiological data for those working outside the immediate field. Furthermore, it gives a good example that the approach of dynamical system theory together with the concepts of cooperative and competitive interaction can be fruitful for an interdisciplinary approach to cognition.
    Direct download (8 more)  
     
    Export citation  
     
    Bookmark   1 citation  
  13. In What Sense is the Kolmogorov-Sinai Entropy a Measure for Chaotic Behaviour?—Bridging the Gap Between Dynamical Systems Theory and Communication Theory.Roman Frigg - 2004 - British Journal for the Philosophy of Science 55 (3):411-434.
    On an influential account, chaos is explained in terms of random behaviour; and random behaviour in turn is explained in terms of having positive Kolmogorov-Sinai entropy (KSE). Though intuitively plausible, the association of the KSE with random behaviour needs justification since the definition of the KSE does not make reference to any notion that is connected to randomness. I provide this justification for the case of Hamiltonian systems by proving that the KSE is equivalent to a generalized version of Shannon's (...)
    Direct download (11 more)  
     
    Export citation  
     
    Bookmark   18 citations  
  14.  47
    Exploring psychological complexity through dynamic systems theory: A complement to reductionism.Robert M. Galatzer-Levy - 2005 - Behavioral and Brain Sciences 28 (2):206-207.
    Dynamic systems theory (DS) provides tools for exploring how simpler elements can interact to produce complex psychological configurations. It may, as Lewis demonstrates, provide means for explicating relationships between two reductionist approaches to overlapping sets of phenomena. The result is a description of psychological phenomena at a level that begins to achieve the richness we would hope to achieve in examining psychological life as it is experienced and explored in psychoanalysis.
    Direct download (8 more)  
     
    Export citation  
     
    Bookmark  
  15. Thinking the body, from Hegel's speculative logic of measure to dynamic systems theory.David Morris - 2002 - Journal of Speculative Philosophy 16 (3):182-197.
    A study of shifts in scientific strategies for measuring the living body, especially in dynamic systems theory: sheds light on Hegel's concept of measure in The Science of Logic, and the dialectical transition from categories of being to categories of essence; shows how Hegel's speculative logic anticipates and analyzes key tensions in scientific attempts to measure and conceive the dynamic agency of the body. The study's analysis of the body as having an essentially dynamic identity irreducible to measurement aims (...)
    Direct download (5 more)  
     
    Export citation  
     
    Bookmark  
  16.  71
    Grounding Cognitive‐Level Processes in Behavior: The View From Dynamic Systems Theory.Larissa K. Samuelson, Gavin W. Jenkins & John P. Spencer - 2015 - Topics in Cognitive Science 7 (2):191-205.
    Marr's seminal work laid out a program of research by specifying key questions for cognitive science at different levels of analysis. Because dynamic systems theory focuses on time and interdependence of components, DST research programs come to very different conclusions regarding the nature of cognitive change. We review a specific DST approach to cognitive-level processes: dynamic field theory. We review research applying DFT to several cognitive-level processes: object permanence, naming hierarchical categories, and inferring intent, that demonstrate the difference (...)
    Direct download (5 more)  
     
    Export citation  
     
    Bookmark   1 citation  
  17. Questions For The Dynamicist: The Use of Dynamical Systems Theory in the Philosophy of Cognition.Marco Van Leeuwen - 2005 - Minds and Machines 15 (3):271-333.
    The concepts and powerful mathematical tools of Dynamical Systems Theory (DST) yield illuminating methods of studying cognitive processes, and are even claimed by some to enable us to bridge the notorious explanatory gap separating mind and matter. This article includes an analysis of some of the conceptual and empirical progress Dynamical Systems Theory is claimed to accomodate. While sympathetic to the dynamicist program in principle, this article will attempt to formulate a series of problems the proponents (...)
    Direct download (8 more)  
     
    Export citation  
     
    Bookmark   5 citations  
  18.  11
    Formalizing the Dynamics of Information.Martina Faller, Stefan C. Kaufmann, Marc Pauly & Center for the Study of Language and Information S.) - 2000 - Center for the Study of Language and Information Publications.
    The papers collected in this volume exemplify some of the trends in current approaches to logic, language and computation. Written by authors with varied academic backgrounds, the contributions are intended for an interdisciplinary audience. The first part of this volume addresses issues relevant for multi-agent systems: reasoning with incomplete information, reasoning about knowledge and beliefs, and reasoning about games. Proofs as formal objects form the subject of Part II. Topics covered include: contributions on logical frameworks, linear logic, and different approaches (...)
    Direct download  
     
    Export citation  
     
    Bookmark   4 citations  
  19. The Dynamics of Belief Systems: Foundations vs. Coherence Theories.Peter GÄrdenfors - 1990 - Revue Internationale de Philosophie 44 (172):24.
     
    Export citation  
     
    Bookmark   35 citations  
  20.  37
    Developmental affective neuroscience describes mechanisms at the core of dynamic systems theory.Allan N. Schore - 2005 - Behavioral and Brain Sciences 28 (2):217-218.
    Lewis describes the developmental core of dynamic systems theory. I offer recent data from developmental neuroscience on the sequential experience-dependent maturation of components of the limbic system over the stages of infancy. Increasing interconnectivity within the vertically integrated limbic system allows for more complex appraisals of emotional value. The earliest organization of limbic structures has an enduring impact on all later emotional processing.
    Direct download (6 more)  
     
    Export citation  
     
    Bookmark  
  21.  5
    The Impact of an Intensive English Reading Course Based on the Production-Oriented Approach on the L2 Motivational Self System Among Chinese University English Majors From a Dynamic Systems Theory Perspective.Chili Li, Chujia Zhou & Wen Zhang - 2022 - Frontiers in Psychology 12.
    This article reports on a study that took a Dynamic Systems Theory perspective to second language motivational self system. More specifically, it investigated the influence of an Intensive English Reading course based on the Production-Oriented Approach upon the L2MSS of Chinese university English majorsfrom the DST perspective. To this end, two intact classes composed of 50 students were assigned into experimental group and control group, who responded to an L2MSS scale before and after the one-semester intervention. Eight and (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
  22. The fold and the body schema in Merleau-ponty and dynamic systems theory.David Morris - 1999 - Chiasmi International 1:275-286.
  23. The dynamics of embodiment: A field theory of infant perseverative reaching.Esther Thelen, Gregor Schöner, Christian Scheier & Linda B. Smith - 2001 - Behavioral and Brain Sciences 24 (1):1-34.
    The overall goal of this target article is to demonstrate a mechanism for an embodied cognition. The particular vehicle is a much-studied, but still widely debated phenomenon seen in 7–12 month-old-infants. In Piaget's classic “A-not-B error,” infants who have successfully uncovered a toy at location “A” continue to reach to that location even after they watch the toy hidden in a nearby location “B.” Here, we question the traditional explanations of the error as an indicator of infants' concepts of objects (...)
    Direct download (5 more)  
     
    Export citation  
     
    Bookmark   122 citations  
  24. Sense-Making and Symmetry-Breaking: Merleau-Ponty, Cognitive Science, and Dynamic Systems Theory.Noah Moss Brender - 2013 - Symposium: Canadian Journal of Continental Philosophy/Revue canadienne de philosophie continentale 17 (2):247-273.
    From his earliest work forward, phenomenologist Maurice Merleau-Ponty attempted to develop a new ontology of nature that would avoid the antinomies of realism and idealism by showing that nature has its own intrinsic sense which is prior to reflection. The key to this new ontology was the concept of form, which he appropriated from Gestalt psychology. However, Merleau-Ponty struggled to give a positive characterization of the phenomenon of form which would clarify its ontological status. Evan Thompson has recently taken up (...)
    Direct download (4 more)  
     
    Export citation  
     
    Bookmark   6 citations  
  25.  43
    The dynamics of belief systems: Foundations versus coherence theories.Peter Gärdenfors - 1992 - In Cristina Bicchieri, Dalla Chiara & Maria Luisa (eds.), Knowledge, Belief, and Strategic Interaction. Cambridge University Press. pp. 377.
  26.  30
    Descriptive Modeling of the Dynamical Systems and Determination of Feedback Homeostasis at Different Levels of Life Organization.G. N. Zholtkevych, K. V. Nosov, Yu G. Bespalov, L. I. Rak, M. Abhishek & E. V. Vysotskaya - 2018 - Acta Biotheoretica 66 (3):177-199.
    The state-of-art research in the field of life’s organization confronts the need to investigate a number of interacting components, their properties and conditions of sustainable behaviour within a natural system. In biology, ecology and life sciences, the performance of such stable system is usually related to homeostasis, a property of the system to actively regulate its state within a certain allowable limits. In our previous work, we proposed a deterministic model for systems’ homeostasis. The model was based (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
  27.  9
    Return of the math: Markov blankets, dynamical systems theory, and the bounds of mind.Lincoln John Colling - 2022 - Behavioral and Brain Sciences 45:e190.
    Bruineberg and colleagues highlight work using Markov blankets to demarcate the bounds of the mind. This echoes earlier attempts to demarcate the bounds of the mind from a dynamical systems perspective. Advocates of mechanistic explanation have challenged the dynamical approach to independently motivate the application of the formalism, a challenge that Markov blanket theorists must also meet.
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
  28.  48
    Could dancing be coupled oscillation? – The interactive approach to linguistic communication and dynamical systems theory.Erik Myin & Sonja Smets - 2002 - Behavioral and Brain Sciences 25 (5):634-635.
    Although we applaud the interactivist approach to language and communication taken in the target article, we notice that Shanker & King (S&K) give little attention to the theoretical frameworks developed by dynamical system theorists. We point out how the dynamical idea of causality, viewed as multidirectional across multiple scales of organization, could further strengthen the position taken in the target article.
    Direct download (5 more)  
     
    Export citation  
     
    Bookmark  
  29.  12
    Updating the dual systems model of temporal cognition: Reasoning with dynamic systems theory.Annette Hohenberger - 2019 - Behavioral and Brain Sciences 42.
    This commentary construes the relation between the two systems of temporal updating and temporal reasoning as a bifurcation and tracks it across three time scales: phylogeny, ontogeny, and microgeny. In taking a dynamic systems approach, flexibility, as mentioned by Hoerl & McCormack, is revealed as the key characteristic of human temporal cognition.
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
  30.  30
    Micro-Level Affect Dynamics in Psychopathology Viewed From Complex Dynamical System Theory.M. Wichers, J. T. W. Wigman & I. Myin-Germeys - 2015 - Emotion Review 7 (4):362-367.
    This article discusses the role of moment-to-moment affect dynamics in mental disorder and aims to integrate recent literature on this topic in the context of complex dynamical system theory. First, we will review the relevance of temporal and contextual aspects of affect dynamics in relation to psychopathology. Related to this, we will discuss recent insights resulting from a network view on affect dynamics in psychopathology. Next, we explore how we can reconcile literature findings from a perspective of (...)
    Direct download  
     
    Export citation  
     
    Bookmark   12 citations  
  31.  15
    Dynamical Systems on Monoids. Toward a General Theory of Deterministic Systems and Motion.Marco Giunti & Claudio Mazzola - 2012 - In Gianfranco Minati, Mario Abram & Eliano Pessa (eds.), Methods, Models, Simulations and Approaches towards a General Theory of Change. Singapore: World Scientific. pp. 173-186.
    Dynamical systems are mathematical structures whose aim is to describe the evolution of an arbitrary deterministic system through time, which is typically modeled as (a subset of) the integers or the real numbers. We show that it is possible to generalize the standard notion of a dynamical system, so that its time dimension is only required to possess the algebraic structure of a monoid: first, we endow any dynamical system with an associated graph and, (...)
    Direct download  
     
    Export citation  
     
    Bookmark   2 citations  
  32.  45
    ‘Knowledge Must Be Contextual’: Some possible implications of complexity and dynamic systems theories for educational research.Tamsin Haggis - 2008 - Educational Philosophy and Theory 40 (1):158–176.
    It is now widely accepted that qualitative and quantitative research traditions, rather than being seen as opposed to or in competition with each other should be used, where appropriate, in some kind of combination. How this combining is to be understood ontologically, and therefore epistemologically, however, is not always clear. Rather than endlessly discussing the relationship between different approaches, this paper explores some of the assumptions of the ontologies that underpin such apparent differences, arguing that approaches which declare themselves to (...)
    Direct download (4 more)  
     
    Export citation  
     
    Bookmark   4 citations  
  33.  8
    ‘Knowledge Must Be Contextual’: Some possible implications of complexity and dynamic systems theories for educational research.Tamsin Haggis - 2008 - Educational Philosophy and Theory 40 (1):158-176.
    It is now widely accepted that qualitative and quantitative research traditions, rather than being seen as opposed to or in competition with each other ( ; ) should be used, where appropriate, in some kind of combination (; ). How this combining is to be understood ontologically, and therefore epistemologically, however, is not always clear. Rather than endlessly discussing the relationship between different approaches, this paper explores some of the assumptions of the ontologies that underpin such apparent differences, arguing that (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark   4 citations  
  34.  25
    Information, representation, and the dynamic systems approach to language.John Symons - 2002 - Behavioral and Brain Sciences 25 (5):640-641.
    Shanker & King (S&K) provide a criticism of information-theoretic approaches to language, but the real obstacle to their dynamicist approach is the argument that representations are an indispensable part of any cognitive theory. Since the dynamicist approach has a prima facie anti-representationalist bent, the authors must show why dynamicist views can provide adequate explanations of intelligent behavior.
    Direct download (5 more)  
     
    Export citation  
     
    Bookmark  
  35.  3
    Explanation versus Understanding: On Two Roles of Dynamical Systems Theory in Extended Cognition Research.Katarzyna Kuś & Krzysztof Wójtowicz - forthcoming - Foundations of Science:1-26.
    It is widely believed that mathematics carries a substantial part of the explanatory burden in science. However, mathematics can also play important heuristic roles of a different kind, being a source of new ideas and approaches, allowing us to build toy models, enhancing expressive power and providing fruitful conceptualizations. In this paper, we focus on the application of dynamical systems theory (DST) within the extended cognition (EC) field of cognitive science, considering this case study to be a good (...)
    Direct download (3 more)  
     
    Export citation  
     
    Bookmark  
  36.  30
    Dynamical Systems and the Direction of Time.Claudio Mazzola - 2013 - In Pierluigi Graziani, Luca Guzzardi & Massimo Sangoi (eds.), Open Problems in Philosophy of Sciences. London: College Publications. pp. 217-232.
    The problem of the direction of time is reconsidered in the light of a generalized version of the theory of abstract deterministic dynamical systems, thanks to which the mathematical model of time can be provided with an internal dynamics, solely depending on its algebraic structure. This result calls for a reinterpretation of the directional properties of physical time, which have been typically understood in a strictly topological sense, as well as for a reexamination of the theoretical meaning of (...)
    Direct download  
     
    Export citation  
     
    Bookmark  
  37. Computers, Dynamical Systems, Phenomena, and the Mind.Marco Giunti - 1992 - Dissertation, Indiana University
    This work addresses a broad range of questions which belong to four fields: computation theory, general philosophy of science, philosophy of cognitive science, and philosophy of mind. Dynamical system theory provides the framework for a unified treatment of these questions. ;The main goal of this dissertation is to propose a new view of the aims and methods of cognitive science--the dynamical approach . According to this view, the object of cognitive science is a particular set (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark   5 citations  
  38. Developmental Systems Theory as a Process Theory.Paul Edmund Griffiths & Karola Stotz - 2018 - In Daniel J. Nicholson & John Dupré (eds.), Everything Flows: Towards a Processual Philosophy of Biology. Oxford, United Kingdom: Oxford University Press. pp. 225-245.
    Griffiths and Russell D. Gray (1994, 1997, 2001) have argued that the fundamental unit of analysis in developmental systems theory should be a process – the life cycle – and not a set of developmental resources and interactions between those resources. The key concepts of developmental systems theory, epigenesis and developmental dynamics, both also suggest a process view of the units of development. This chapter explores in more depth the features of developmental systems theory that favour treating (...)
    Direct download  
     
    Export citation  
     
    Bookmark   13 citations  
  39.  96
    Psychological-level systems theory: The missing link in bridging emotion theory and neurobiology through dynamic systems modeling.Philip Barnard & Tim Dalgleish - 2005 - Behavioral and Brain Sciences 28 (2):196-197.
    Bridging between psychological and neurobiological systems requires that the system components are closely specified at both the psychological and brain levels of analysis. We argue that in developing his dynamic systems theory framework, Lewis has sidestepped the notion of a psychological level systems model altogether, and has taken a partisan approach to his exposition of a brain-level systems model.
    Direct download (8 more)  
     
    Export citation  
     
    Bookmark  
  40.  10
    Nonlinear Dynamical Systems Analysis for the Behavioral Sciences Using Real Data.Stephen J. Guastello & Robert A. M. Gregson (eds.) - 2010 - Crc Press.
    Although its roots can be traced to the 19th century, progress in the study of nonlinear dynamical systems has taken off in the last 30 years. While pertinent source material exists, it is strewn about the literature in mathematics, physics, biology, economics, and psychology at varying levels of accessibility. A compendium research methods reflecting the expertise of major contributors to NDS psychology, Nonlinear Dynamical Systems Analysis for the Behavioral Sciences Using Real Data examines the techniques proven to be (...)
    Direct download  
     
    Export citation  
     
    Bookmark   5 citations  
  41.  52
    Dynamic systems and the evolution of language.J. Gogate Lakshmi - 2006 - Behavioral and Brain Sciences 29 (3):287.
    Locke & Bogin (L&B) suggest that theoretical principles of ontogenetic development apply to language evolution. If this is the case, then evolutionary theory should utilize epigenetic theories of development to theorize, model, and elucidate the evolution of language wherever possible. In this commentary, I evoke principles of dynamic systems theory to evaluate the evolutionary phenomena presented in the target article.
    Direct download (6 more)  
     
    Export citation  
     
    Bookmark  
  42.  99
    Theory of Dynamical Systems and the Relations Between Classical and Quantum Mechanics.A. Carati & L. Galgani - 2001 - Foundations of Physics 31 (1):69-87.
    We give a review of some works where it is shown that certain quantum-like features are exhibited by classical systems. Two kinds of problems are considered. The first one concerns the specific heat of crystals (the so called Fermi–Pasta–Ulam problem), where a glassy behavior is observed, and the energy distribution is found to be of Planck-like type. The second kind of problems concerns the self-interaction of a charged particle with the electromagnetic field, where an analog of the tunnel effect is (...)
    Direct download (4 more)  
     
    Export citation  
     
    Bookmark   1 citation  
  43. A dynamic systems view of economic and political theory.Christian Fuchs & John Collier - 2007 - Theoria 54 (113):23-52.
    Economic logic impinges on contemporary political theory through both economic reductionism and economic methodology applied to political decision-making (through game theory). The authors argue that the sort of models used are based on mechanistic and linear methodologies that have now been found wanting in physics. They further argue that complexity based self-organization methods are better suited to model the complexities of economy and polity and their interactions with the overall social system.
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
  44. A Counterexample t o All Future Dynamic Systems Theories of Cognition.Eric Dietrich - 2000 - J. Of Experimental and Theoretical AI 12 (2):377-382.
    Years ago, when I was an undergraduate math major at the University of Wyoming, I came across an interesting book in our library. It was a book of counterexamples t o propositions in real analysis (the mathematics of the real numbers). Mathematicians work more or less like the rest of us. They consider propositions. If one seems to them to be plausibly true, then they set about to prove it, to establish the proposition as a theorem. Instead o f setting (...)
    Direct download (3 more)  
     
    Export citation  
     
    Bookmark  
  45.  66
    Attractor spaces as modules: A semi-eliminative reduction of symbolic AI to dynamic systems theory[REVIEW]Teed Rockwell - 2004 - Minds and Machines 15 (1):23-55.
    I propose a semi-eliminative reduction of Fodors concept of module to the concept of attractor basin which is used in Cognitive Dynamic Systems Theory (DST). I show how attractor basins perform the same explanatory function as modules in several DST based research program. Attractor basins in some organic dynamic systems have even been able to perform cognitive functions which are equivalent to the If/Then/Else loop in the computer language LISP. I suggest directions for future research programs which could find (...)
    Direct download (6 more)  
     
    Export citation  
     
    Bookmark   1 citation  
  46.  8
    ‘Knowledge Must Be Contextual’: Some Possible Implications of Complexity and Dynamic Systems Theories for Educational Research.Tamsin Haggis - 2008 - In Mark Mason (ed.), Complexity Theory and the Philosophy of Education. Malden, MA: Wiley-Blackwell. pp. 150–168.
    This chapter contains sections titled: How is the Combining of Qualitative/Quantitative Methods to be Understood? ‘Critical Connections’? Problems Conceptualising and Researching Difference, Specificity and Context Complexity Theory: Redefining Order (and Chaos)? A Complexity‐Based Ontology Conceptualising Difference, Specificity and Context Conclusion Notes References.
    No categories
    Direct download  
     
    Export citation  
     
    Bookmark  
  47.  15
    Chaos and complexity in psychology: the theory of nonlinear dynamical systems.Stephen J. Guastello, Matthijs Koopmans & David Pincus (eds.) - 2009 - New York: Cambridge University Press.
    This book reports recent landmark developments and the state of the art in NDS science in psychological theory and research.
    Direct download  
     
    Export citation  
     
    Bookmark   14 citations  
  48.  53
    Is the dynamical hypothesis falsifiable? On unification in theories of cognition.David C. Noelle - 1998 - Behavioral and Brain Sciences 21 (5):647-648.
    The dynamical hypothesis is strong in that, for it to be true, every cognitive phenomenon must be best modeled by a dynamical system. Depending on how it is interpreted, however, the hypothesis may be seen as probably false or even unfalsifiable. Strengthening the hypothesis to require unification, or at least coherence, across models in different cognitive domains alleviates this problem.
    Direct download (6 more)  
     
    Export citation  
     
    Bookmark  
  49.  70
    Dynamical Reduction Theories: Changing Quantum Theory so the Statevector Represents Reality.GianCarlo Ghirardi & Philip Pearle - 1990 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1990:19 - 33.
    The propositions, that what we see around us is real and that reality should be represented by the statevector, conflict with quantum theory. In quantum theory, the statevector can readily become a sum of states of comparable norm, each state representing a different reality. In this paper we present the Continuous Spontaneous Localization (CSL) theory, in which a modified Schrodinger equation, while scarcely affecting the dynamics of a microscopic system, rapidly "reduces" the statevector of a macroscopic (...)
    Direct download  
     
    Export citation  
     
    Bookmark  
  50.  13
    A Dynamic Systems Framework for Gender/Sex Development: From Sensory Input in Infancy to Subjective Certainty in Toddlerhood.Anne Fausto-Sterling - 2021 - Frontiers in Human Neuroscience 15:613789.
    From birth to 15 months infants and caregivers form a fundamentally intersubjective, dyadic unit within which the infant’s ability to recognize gender/sex in the world develops. Between about 18 and 36 months the infant accumulates an increasingly clear and subjective sense of self as female or male. We know little about how the precursors to gender/sex identity form during the intersubjective period, nor how they transform into an independent sense of self by 3 years of age. In this Theory (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark   4 citations  
1 — 50 / 988