Results for 'Physical Implementation'

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  1. A Model of the Quantum-Classical and Mind-Brain Connections, and of the Role of The Quantum Zeno Effect in the Physical Implementation of Conscious Intent.Henry P. Stapp - unknown
    A simple exactly solvable model is given of the dynamical coupling between a person’s classically described perceptions and that person’s quantum mechanically described brain. The model is based jointly upon von Neumann’s theory of measurements and the empirical findings of close connections between conscious intentions and synchronous oscillations in well separated parts of the brain. A quantum-Zeno-effect-based mechanism is described that allows conscious intentions to influence brain activity in a functionally appropriate way. The robustness of this mechanism in the face (...)
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  2. The physics of implementing logic: Landauer's principle and the multiple-computations theorem.Meir Hemmo & Orly Shenker - 2019 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 68:90-105.
    This paper makes a novel linkage between the multiple-computations theorem in philosophy of mind and Landauer’s principle in physics. The multiple-computations theorem implies that certain physical systems implement simultaneously more than one computation. Landauer’s principle implies that the physical implementation of “logically irreversible” functions is accompanied by minimal entropy increase. We show that the multiple-computations theorem is incompatible with, or at least challenges, the universal validity of Landauer’s principle. To this end we provide accounts of both ideas (...)
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  3.  22
    Implementing the TARGET Model in Physical Education: Effects on Perceived Psychobiosocial and Motivational States in Girls.Laura Bortoli, Maurizio Bertollo, Edson Filho, Selenia di Fronso & Claudio Robazza - 2017 - Frontiers in Psychology 8.
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  4.  73
    Incompatible Implementations of Physical Symbol Systems.Peter Beim Graben - 2004 - Mind and Matter 2 (2):29-51.
    Classical cognitive science assumes that intelligently behaving systems must be symbol processors that are implemented in physical systems such as brains or digital computers. By contrast, connectionists suppose that symbol manipulating systems could be approximations of neural networks dynamics. Both classicists and connectionists argue that symbolic computation and subsymbolic dynamics are incompatible, though on different grounds. While classicists say that connectionist architectures and symbol processors are either incompatible or the former are mere implementations of the latter, connectionists reply that (...)
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  5.  13
    No computation without implementation? A potential problem for the single hierarchy view of physical computation.Jesse Kuokkanen - 2022 - Synthese 200 (5):1-15.
    The so-called integration problem concerning mechanistic and computational explanation asks how they are related to each other. One approach is that a computational explanation is a species of mechanistic explanation. According to this view, computational or mathematical descriptions are mechanism sketches or macroscopic descriptions that include computationally relevant and exclude computationally irrelevant physical properties. Some suggest that this results in a so-called single hierarchy view of physical computation, where computational or mathematical properties sit together in the same mechanistic (...)
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  6.  21
    Bacterial Translocation Ratchets: Shared Physical Principles with Different Molecular Implementations.Christof Hepp & Berenike Maier - 2017 - Bioessays 39 (10):1700099.
    Secretion systems enable bacteria to import and secrete large macromolecules including DNA and proteins. While most components of these systems have been identified, the molecular mechanisms of macromolecular transport remain poorly understood. Recent findings suggest that various bacterial secretion systems make use of the translocation ratchet mechanism for transporting polymers across the cell envelope. Translocation ratchets are powered by chemical potential differences generated by concentration gradients of ions or molecules that are specific to the respective secretion systems. Bacteria employ these (...)
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  7.  20
    What Does it Mean to Say a Physical System is Implements a Computation?Jac Ladyman - 2009 - Theoretical Computer Science 410 (4-5).
    When we are concerned with the logical form of a computation and its formal properties, then it can be theoretically described in terms of mathematical and logical functions and relations between abstract entities. However, actual computation is realised by some physical process, and the latter is of course subject to physical laws and the laws of thermodynamics in particular. An issue that has been the subject of much controversy is that of whether or not there are any systematic (...)
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  8.  69
    Implementation as Resemblance.André Curtis-Trudel - 2021 - Philosophy of Science 88 (5):1021-1032.
    This article advertises a new account of computational implementation. According to the resemblance account, implementation is a matter of resembling a computational architecture. The resemblance account departs from previous theories by denying that computational architectures are exhausted by their formal, mathematical features. Instead, they are taken to be permeated with causality, spatiotemporality, and other nonmathematical features. I argue that this approach comports well with computer scientific practice and offers a novel response to so-called triviality arguments.
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  9.  83
    “Cooperative Learning Does Not Work for Me”: Analysis of Its Implementation in Future Physical Education Teachers.David Hortigüela-Alcalá, Alejandra Hernando-Garijo, Sixto González-Víllora, Juan Carlos Pastor-Vicedo & Antonio Baena-Extremera - 2020 - Frontiers in Psychology 11.
    Cooperative learning (CL) is one of the pedagogical models that has had more application in the area of Physical Education (PE) in recent years, being highly worked in the initial training of teachers. The aim of the study is to check to what extent future PE teachers are able to apply in the classroom the PE training they have received at university, deepening their fears, insecurities and problems when carrying it out. Thirteen future PE teachers (7 girls and 6 (...)
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  10.  14
    Implementation of Linear Array of Ultrasonic Transmitter-Receiver Transducers for detection of Non-Smooth Porous Surface.Raman K. Attri - manuscript
    Level measurements, thickness measurement or remote surface detection using ultrasonic pulse transit method require that the target surface be at 90 O to the incident beam so that reflected beam comes back at 180-degree angle to effectively use this method. This is perfectly true in case of flat, solid surface at right angle to the incident beam. But surface irregularities of a porous, non-smooth, uneven material such as snow cause penetration of incident wave into the surface, absorption of the incident (...)
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  11.  63
    Implementation and indeterminacy.Curtis Brown - 2004 - Conferences in Research and Practice in Information Technology 37.
    David Chalmers has defended an account of what it is for a physical system to implement a computation. The account appeals to the idea of a “combinatorial-state automaton” or CSA. It is unclear whether Chalmers intends the CSA to be a computational model in the usual sense, or merely a convenient formalism into which instances of other models can be translated. I argue that the CSA is not a computational model in the usual sense because CSAs do not perspicuously (...)
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  12. On implementing a computation.David J. Chalmers - 1994 - Minds and Machines 4 (4):391-402.
    To clarify the notion of computation and its role in cognitive science, we need an account of implementation, the nexus between abstract computations and physical systems. I provide such an account, based on the idea that a physical system implements a computation if the causal structure of the system mirrors the formal structure of the computation. The account is developed for the class of combinatorial-state automata, but is sufficiently general to cover all other discrete computational formalisms. The (...)
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  13. A theory of computational implementation.Michael Rescorla - 2014 - Synthese 191 (6):1277-1307.
    I articulate and defend a new theory of what it is for a physical system to implement an abstract computational model. According to my descriptivist theory, a physical system implements a computational model just in case the model accurately describes the system. Specifically, the system must reliably transit between computational states in accord with mechanical instructions encoded by the model. I contrast my theory with an influential approach to computational implementation espoused by Chalmers, Putnam, and others. I (...)
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  14.  14
    The evolving policy of equal curricular opportunity in England: A case study of the implementation of sex equality in physical education.Dr Patricia Vertinsky - 1983 - British Journal of Educational Studies 31 (3):229-251.
    (1983). The evolving policy of equal curricular opportunity in England: A case study of the implementation of sex equality in physical education. British Journal of Educational Studies: Vol. 31, No. 3, pp. 229-251.
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  15. Computation in Physical Systems: A Normative Mapping Account.Paul Schweizer - 2019 - In Matteo Vincenzo D'Alfonso & Don Berkich (eds.), On the Cognitive, Ethical, and Scientific Dimensions of Artificial Intelligence. Springer Verlag. pp. 27-47.
    The relationship between abstract formal procedures and the activities of actual physical systems has proved to be surprisingly subtle and controversial, and there are a number of competing accounts of when a physical system can be properly said to implement a mathematical formalism and hence perform a computation. I defend an account wherein computational descriptions of physical systems are high-level normative interpretations motivated by our pragmatic concerns. Furthermore, the criteria of utility and success vary according to our (...)
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  16.  28
    Lupanov O. B.. Implementing the algebra of logic functions in terms of bounded depth formulas in the basis of &, ν, ¯. English translation of XXXVI 572. Soviet physics, Doklady, vol. 6 no. 2 , pp. 107–108. [REVIEW]Louis Hodes - 1971 - Journal of Symbolic Logic 36 (3):547.
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  17. Does a rock implement every finite-state automaton?David J. Chalmers - 1996 - Synthese 108 (3):309-33.
    Hilary Putnam has argued that computational functionalism cannot serve as a foundation for the study of the mind, as every ordinary open physical system implements every finite-state automaton. I argue that Putnam's argument fails, but that it points out the need for a better understanding of the bridge between the theory of computation and the theory of physical systems: the relation of implementation. It also raises questions about the class of automata that can serve as a basis (...)
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  18. Computation, Implementation, Cognition.Oron Shagrir - 2012 - Minds and Machines 22 (2):137-148.
    Putnam (Representations and reality. MIT Press, Cambridge, 1988) and Searle (The rediscovery of the mind. MIT Press, Cambridge, 1992) famously argue that almost every physical system implements every finite computation. This universal implementation claim, if correct, puts at the risk of triviality certain functional and computational views of the mind. Several authors have offered theories of implementation that allegedly avoid the pitfalls of universal implementation. My aim in this paper is to suggest that these theories are (...)
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  19. The physicality of representation.Corey J. Maley - 2021 - Synthese 199 (5-6):14725-14750.
    Representation is typically taken to be importantly separate from its physical implementation. This is exemplified in Marr’s three-level framework, widely cited and often adopted in neuroscience. However, the separation between representation and physical implementation is not a necessary feature of information-processing systems. In particular, when it comes to analog computational systems, Marr’s representational/algorithmic level and implementational level collapse into a single level. Insofar as analog computation is a better way of understanding neural computation than other notions, (...)
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  20. The Implementation, Interpretation, and Justification of Likelihoods in Cosmology.C. D. McCoy - 2018 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 62:19-35.
    I discuss the formal implementation, interpretation, and justification of likelihood attributions in cosmology. I show that likelihood arguments in cosmology suffer from significant conceptual and formal problems that undermine their applicability in this context.
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  21.  24
    The evolving policy of equal curricular opportunity in England: A case study of the implementation of sex equality in physical education.Patricia Vertinsky - 1983 - British Journal of Educational Studies 31 (3):229-251.
  22.  28
    Implementing evidence-based nursing practice: a tale of two intrapartum nursing units.Jan Angus, Ellen Hodnett & Linda O'Brien-Pallas - 2003 - Nursing Inquiry 10 (4):218-228.
    ANGUS J, HODNETT E and O’BRIEN-PALLAS L. Nursing Inquiry 2003; 10: 218–228Implementing evidence-based nursing practice: a tale of two intrapartum nursing unitsDespite concerns that the rise of evidence-based practice threatens to transform nursing practice into a performative exercise disciplined by scientific knowledge, others have found that scientific knowledge is by no means the preeminent source of knowledge within the dynamic settings of health-care. We argue that the contexts within which evidence-based innovations are implemented are as influential in the outcomes as (...)
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  23. When physical systems realize functions.Matthias Scheutz - 1999 - Minds and Machines 9 (2):161-196.
    After briefly discussing the relevance of the notions computation and implementation for cognitive science, I summarize some of the problems that have been found in their most common interpretations. In particular, I argue that standard notions of computation together with a state-to-state correspondence view of implementation cannot overcome difficulties posed by Putnam's Realization Theorem and that, therefore, a different approach to implementation is required. The notion realization of a function, developed out of physical theories, is then (...)
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  24.  90
    The physical condition for consciousness: A comment on R. Shaw and J. Kinsella-Shaw.Wolfgang Baer - 2007 - Journal of Consciousness Studies 14 (8):93-104.
    If the universe is a machine, consciousness is not possible. If the universe is more than a machine, then physics is incomplete. Since we are both part of the universe and conscious, physics must be incomplete and the understanding required to construct conscious mechanisms must be sought through the advancement of physics not the continued application of inadequate concepts. In this paper I will show that an impediment to this advancement is the confusion arising through the use of terms such (...)
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  25.  28
    The physics and the philosophy of time reversal in standard quantum mechanics.Cristian López - 2021 - Synthese 199 (5-6):14267-14292.
    A widespread view in physics holds that the implementation of time reversal in standard quantum mechanics must be given by an anti-unitary operator. In foundations and philosophy of physics, however, there has been some discussion about the conceptual grounds of this orthodoxy, largely relying on either its obviousness or its mathematical-physical virtues. My aim in this paper is to substantively change the traditional structure of the debate by highlighting the philosophical commitments underlying the orthodoxy. I argue that the (...)
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  26.  23
    A physical approach to the construction of cognition and to cognitive evolution.Olaf Diettrich - 2001 - Foundations of Science 6 (4):273-341.
    It is shown that the method of operationaldefinition of theoretical terms applied inphysics may well support constructivist ideasin cognitive sciences when extended toobservational terms. This leads to unexpectedresults for the notion of reality, inductionand for the problem why mathematics is sosuccessful in physics.A theory of cognitive operators is proposedwhich are implemented somewhere in our brainand which transform certain states of oursensory apparatus into what we call perceptionsin the same sense as measurement devicestransform the interaction with the object intomeasurement results. Then, (...)
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  27.  86
    Functional individuation, mechanistic implementation: the proper way of seeing the mechanistic view of concrete computation.Dimitri Coelho Mollo - 2017 - Synthese 195 (8):3477-3497.
    I examine a major objection to the mechanistic view of concrete computation, stemming from an apparent tension between the abstract nature of computational explanation and the tenets of the mechanistic framework: while computational explanation is medium-independent, the mechanistic framework insists on the importance of providing some degree of structural detail about the systems target of the explanation. I show that a common reply to the objection, i.e. that mechanistic explanation of computational systems involves only weak structural constraints, is not enough (...)
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  28.  38
    Physics Teachers’ Challenges in Using History and Philosophy of Science in Teaching.Dietmar Höttecke & Andreas Henke - 2015 - Science & Education 24 (4):349-385.
    The inclusion of the history and philosophy of science in science teaching is widely accepted, but the actual state of implementation in schools is still poor. This article investigates possible reasons for this discrepancy. The demands science teachers associate with HPS-based teaching play an important role, since these determine teachers’ decisions towards implementing its practices and ideas. We therefore investigate the perceptions of 8 HPS-experienced German middle school physics teachers within and beyond an HPS implementation project. Within focused (...)
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  29.  84
    Structuralism, indiscernibility, and physical computation.F. T. Doherty & J. Dewhurst - 2022 - Synthese 200 (3):1-26.
    Structuralism about mathematical objects and structuralist accounts of physical computation both face indeterminacy objections. For the former, the problem arises for cases such as the complex roots i and \, for which a automorphism can be defined, thus establishing the structural identity of these importantly distinct mathematical objects. In the case of the latter, the problem arises for logical duals such as AND and OR, which have invertible structural profiles :369–400, 2001). This makes their physical implementations indeterminate, in (...)
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  30.  64
    Supervenience and implementation.Aaron Sloman - 1998
    How can a virtual machine X be implemented in a physical machine Y? We know the answer as far as compilers, editors, theorem-provers, operating systems are concerned, at least insofar as we know how to produce these implemented virtual machines, and no mysteries are involved. This paper is about extrapolating from that knowledge to the implementation of minds in brains. By linking the philosopher's concept of supervenience to the engineer's concept of implementation, we can illuminate both. In (...)
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  31.  55
    Implementing free will.Bruce Edmonds - 2004 - In D. N. Davis (ed.), Visions of Mind: Architectures for Cognition and Affect. IDEA Group Publishing.
    “The demonstration that no possible combination of known substances, known forms of machinery and known forms of force, can be united in a practical machine by which man shall fly long distances through the air, seems to the writer as complete as it is possible for the demonstration of any physical fact to be.” Simon Newcomb, Professor of Mathematics, John Hopkins University, 1901 Abstract Free will is described in terms of the useful properties that it could confer, explaining why (...)
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  32.  34
    Mental contents, tracking counterfactuals, and implementing mechanisms.Josep E. Corbí & Josep L. Prades - 2000 - In The Proceedings of the Twentieth World Congress of Philosophy. Charlottesville: Philosophy Doc Ctr. pp. 1-11.
    In the ongoing debate, there are a set of mind-body theories sharing a certain physicalist assumption: whenever a genuine cause produces an effect, the causal efficacy of each of the nonphysical properties that participate in that process is determined by the instantiation of a well-defined set of physical properties. These theories would then insist that a nonphysical property could only be causally efficacious insofar as it is physically implemented. However, in what follows we will argue against the idea that (...)
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  33.  40
    Mental Contents, Tracking Counterfactuals, and Implementing Mechanisms.Josep E. Corbí & Josep L. Prades - 2000 - The Proceedings of the Twentieth World Congress of Philosophy 9:1-11.
    In the ongoing debate, there are a set of mind-body theories sharing a certain physicalist assumption: whenever a genuine cause produces an effect, the causal efficacy of each of the nonphysical properties that participate in that process is determined by the instantiation of a well-defined set of physical properties. These theories would then insist that a nonphysical property could only be causally efficacious insofar as it is physically implemented. However, in what follows we will argue against the idea that (...)
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  34.  28
    Phenomenological Approaches to Physics.Harald A. Wiltsche & Philipp Berghofer (eds.) - 2020 - Springer (Synthese Library).
    This book offers fresh perspective on the role of phenomenology in the philosophy of physics which opens new avenues for discussion among physicists, "standard" philosophers of physics and philosophers with phenomenological leanings. Much has been written on the interrelations between philosophy and physics in the late 19th and early 20th century, and on the emergence of philosophy of science as an autonomous philosophical sub-discipline. This book is about the under-explored role of phenomenology in the development and the philosophical interpretation of (...)
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  35. Tropes and Physics.Matteo Morganti - 2009 - Grazer Philosophische Studien 78 (1):185--205.
    Th is paper looks at quantum theory and the Standard Model of elementary particles with a view to suggesting a detailed empirical implementation of trope ontology in harmony with our best physics.
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  36.  49
    An Algebraic Approach to Physical Fields.Lu Chen & Tobias Fritz - 2021 - Studies in History and Philosophy of Science Part A 89 (C):188-201.
    According to the algebraic approach to spacetime, a thoroughgoing dynamicism, physical fields exist without an underlying manifold. This view is usually implemented by postulating an algebraic structure (e.g., commutative ring) of scalar-valued functions, which can be interpreted as representing a scalar field, and deriving other structures from it. In this work, we point out that this leads to the unjustified primacy of an undetermined scalar field. Instead, we propose to consider algebraic structures in which all (and only) physical (...)
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  37.  80
    Why Do We Need a Theory of Implementation?André Curtis-Trudel - 2022 - British Journal for the Philosophy of Science 73 (4):1067-1091.
    The received view of computation is methodologically bifurcated: it offers different accounts of computation in the mathematical and physical cases. But little in the way of argument has been given for this approach. This article rectifies the situation by arguing that the alternative, a unified account, is untenable. Furthermore, once these issues are brought into sharper relief we can see that work remains to be done to illuminate the relationship between physical and mathematical computation.
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  38.  98
    Effect of Physical Activity on Self-Concept: Theoretical Model on the Mediation of Body Image and Physical Self-Concept in Adolescents.Juan Gregorio Fernández-Bustos, Álvaro Infantes-Paniagua, Ricardo Cuevas & Onofre Ricardo Contreras - 2019 - Frontiers in Psychology 10.
    Objective: The aim of this research was to study the mediation of body dissatisfaction, physical self-concept, and body mass index (BMI) on the relationship between physical activity and self-concept in adolescents. Materials and Methods: A sample of 652 Spanish students between 12 and 17 years participated in a cross-sectional study. Physical self-concept and general self-concept were assessed with the Physical Self-Concept Questionnaire (CAF), body dissatisfaction with the Body Shape Questionnaire (BSQ), and physical activity was estimated (...)
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  39.  29
    Chalmers on implementation and computational sufficiency.J. Brendan Ritchie - unknown
    Chalmers argues for the following two principles: computational sufficiency and computational explanation. In this commentary I present two criticisms of Chalmers’ argument for the principle of computational sufficiency, which states that implementing the appropriate kind of computational structure suffices for possessing mentality. First, Chalmers only establishes that a system has its mental properties in virtue of the computations it performs in the trivial sense that any physical system can be described computationally to some arbitrary level of detail; further argumentation (...)
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  40.  4
    The Concept of "Physical Object" in the History of Philosophy. Appropriateness of Application.Taras Kononenko & Yaroslav Sobolievskyi - 2023 - Bulletin of Taras Shevchenko National University of Kyiv Philosophy 2 (9):25-29.
    B a c k g r o u n d. According to the genre characteristics, the article is a form of publicizing analytical conclusions from the experience of research in the field of the history of philosophy in the local community of philosophers of Ukraine. The material for understanding was supplied from the environment of educational and scientific professional activity of the authors and was based on the long experience of using a certain type of historical and philosophical sources, which (...)
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  41. Contextual emergence from physics to cognitive neuroscience.Harald Atmanspacher - 2007 - Journal of Consciousness Studies 14 (1-2):18-36.
    The concept of contextual emergence has been proposed as a non-reductive, yet well- defined relation between different levels of description of physical and other systems. It is illustrated for the transition from statistical mechanics to thermodynamical properties such as temperature. Stability conditions are shown to be crucial for a rigorous implementation of contingent contexts that are required to understand temperature as an emergent property. Are such stability conditions meaningful for contextual emergence beyond physics as well? An affirmative example (...)
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  42.  84
    Computability and physical theories.Robert Geroch & James B. Hartle - 1986 - Foundations of Physics 16 (6):533-550.
    The familiar theories of physics have the feature that the application of the theory to make predictions in specific circumstances can be done by means of an algorithm. We propose a more precise formulation of this feature—one based on the issue of whether or not the physically measurable numbers predicted by the theory are computable in the mathematical sense. Applying this formulation to one approach to a quantum theory of gravity, there are found indications that there may exist no such (...)
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  43.  16
    Change in Physical Activity During the Coronavirus Disease 2019 Lockdown in Norway: The Buffering Effect of Resilience on Mental Health.Frederick Anyan, Odin Hjemdal, Linda Ernstsen & Audun Havnen - 2020 - Frontiers in Psychology 11.
    Imposition of lockdown restrictions during the coronavirus disease 2019 (COVID-19) pandemic was sudden and unprecedented and dramatically changed the life of many people, as they were confined to their homes with reduced movement and access to fitness training facilities. Studies have reported significant associations between physical inactivity, sedentary behavior, and common mental health problems. This study investigated relations between participants’ reports of change in physical activity (PA; i.e., Reduced PA, Unchanged PA, or Increased PA) and levels of anxiety (...)
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  44. A Scoping Review on the Implementation of Active Recreational Activities.Louie Gula - 2022 - INDONESIAN SPORT INNOVATION REVIEW 3 (1):56-70.
    The purpose of the study. This study aims to identify the prevalence of participants in physical activities, the motivation needed by the students to engage in the activity, challenges encountered by the implementors, health benefits, and recommendations and suggestions needed for the improvement of the implementation. -/- Materials and methods. A systematic analysis of the data from different articles was conducted using Arksey and O’Malley’s (2005) scoping review framework. -/- Results. It was found that the implementation of (...)
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  45.  56
    Epistemic, Evolutionary, and Physical Conditions for Biological Information.H. H. Pattee - 2013 - Biosemiotics 6 (1):9-31.
    The necessary but not sufficient conditions for biological informational concepts like signs, symbols, memories, instructions, and messages are (1) an object or referent that the information is about, (2) a physical embodiment or vehicle that stands for what the information is about (the object), and (3) an interpreter or agent that separates the referent information from the vehicle’s material structure, and that establishes the stands-for relation. This separation is named the epistemic cut, and explaining clearly how the stands-for relation (...)
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  46.  66
    Practical Implementation of a Test of Event-Based Corpuscular Model as an Alternative to Quantum Mechanics.Sergey V. Polyakov, Fabrizio Piacentini, Paolo Traina, Ivo P. Degiovanni, Alan Migdall, Giorgio Brida & Marco Genovese - 2013 - Foundations of Physics 43 (8):913-922.
    We describe in detail the first experimental test that distinguishes between an event-based corpuscular model of the interaction of photons with matter and quantum mechanics. The test looks at the interference that results as a single photon passes through a Mach-Zehnder interferometer. The experimental results, obtained with a low-noise single-photon source, agree with the predictions of standard quantum mechanics.
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  47.  58
    Physical dimensions and covariance.E. J. Post - 1982 - Foundations of Physics 12 (2):169-195.
    The nonadditive properties of mass make it desirable to abandon mass as a basis unit in physics and to replace it by a unit of the dimension of the quantum of action [h]. The ensuing four-unit system of action, charge, length, and time [h, q, l, t] interacts in a much more elucidating fashion with experiment and with the fundamental structure of physics. All space-time differential forms expressing fundamental laws of physics are forms of physical dimensions, h, h/q, or (...)
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  48.  22
    Physics and Computation:The Statues of Landauer's Principle.James A. C. Ladyman - 2007 - In S. B. Cooper, B. Löwe & A. Sorbi (eds.), Computation and Logic in the Real World. CiE 2007. Lecture Notes in Computer Science, vol 4497.
    Realism about computation is the view that whether or not a particular physical system is performing a particular computation is at least sometimes a mindindependent feature of reality. The caveat ’at least sometimes’ is necessary here because a realist about computation need not believe that all instances of computation should be realistically construed. The computational theory of mind presupposes realism about computation. If whether or not the human nervous system implements particular computations is not a natural fact about the (...)
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  49.  19
    Physical Activity and Well-Being of High Ability Students and Community Samples During the COVID-19 Health Alert.María de los Dolores Valadez, Elena Rodríguez-Naveiras, Doris Castellanos-Simons, Gabriela López-Aymes, Triana Aguirre, Juan Francisco Flores & África Borges - 2020 - Frontiers in Psychology 11.
    The health alert caused by the COVID-19 pandemic and the lockdown have caused significant changes in people’s lives. Therefore, it has been essential to study the quality of life, especially in vulnerable populations, including children and adolescents. In this work, the psychological well-being, distribution of tasks and routines, as well as the physical activity done by children and adolescents from two samples: community and high abilities, have been analyzed. The methodology used was Mixed Method Research, through a survey conducted (...)
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  50.  47
    Physical Activity With Eduball Stimulates Graphomotor Skills in Primary School Students.Sara Wawrzyniak, Ireneusz Cichy, Ana Rita Matias, Damian Pawlik, Agnieszka Kruszwicka, Michal Klichowski & Andrzej Rokita - 2021 - Frontiers in Psychology 12.
    Despite the general agreement that the interdisciplinary model of physical education (PE), based on the incorporation of core academic subjects into the PE curriculum, stimulates the holistic development of students, there is still a lack of methods for its implementation. Therefore, Eduball was created, i.e., a method that uses educational balls with printed letters, numbers, and other signs. Numerous studies have shown that children participating in activities with Eduballs can develop their physical fitness while simultaneously improving their (...)
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