Results for ' physical activity5'

929 found
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  1.  22
    Testing the Associations Between Body Image, Social Support, and Physical Activity Among Adolescents and Young Adults Diagnosed With Cancer.Madison F. Vani, Catherine M. Sabiston, Linda Trinh & Daniel Santa Mina - 2022 - Frontiers in Psychology 12:800314.
    Physical activity (PA) is important for managing the side effects and long-term outcomes of cancer treatment, yet many adolescents and young adults diagnosed with cancer (AYAs) are not meeting PA guidelines. Body image and social support are two factors that can influence PA behavior and require further attention in this population. The purpose of this study was to examine the associations between body image, social support, and PA among AYAs. An online cross-sectional survey administered through the Research Electronic Data (...)
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  2.  18
    Maintaining or Losing Intervention-Induced Health-Related Behavior Change. A Mixed Methods Field Study.Frida Skarin, Erik Wästlund & Henrik Gustafsson - 2021 - Frontiers in Psychology 12.
    The aim of this mixed methods field study was to gain a better understanding of how psychological factors can contribute to success in intervention-induced behavior change over time. While it can be difficult to change behavior, the use of interventions means that most participants succeed in change during the intervention. However, it is rare for the immediate change to automatically transform into maintained behavior changes. Most research conducted on health-related behavior change interventions contains quantitative studies that investigate key intervention components (...)
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  3.  62
    to Psychological Causation.Physical Causation - 2008 - In Kenneth S. Kendler & Josef Parnas, Philosophical Issues in Psychiatry: Explanation, Phenomenology, and Nosology. Baltimore: Johns Hopkins University Press. pp. 71--184.
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  4.  26
    Forming physical culture teachers’ motivation to study.Melnyk Anastasiia & Chernii Physical - 2017 - Science and Education: Academic Journal of Ushynsky University 23 (8):150-156.
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  5. Hiking Boots and Wheelchairs.Physical Disability - 2005 - In Barbara S. Andrew, Jean Clare Keller & Lisa H. Schwartzman, Feminist Interventions in Ethics and Politics: Feminist Ethics and Social Theory. Lanham, MD: Rowman & Littlefield Publishers. pp. 131.
     
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  6.  9
    Roberto torret'I 'I (puerto rico).Physical Necessity - 1992 - In Javier Echeverría, Andoni Ibarra & Thomas Mormann, The space of mathematics: philosophical, epistemological, and historical explorations. New York: W. de Gruyter. pp. 132.
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  7. A. The Nature of Intentionality.Physical Phenomena - 2002 - In David John Chalmers, Philosophy of Mind: Classical and Contemporary Readings. New York: Oxford University Press USA. pp. 479.
     
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  8. Tones of Theory a Theoretical Structure for Physical Education--A Tentative Perspective.Celeste Ulrich, John E. Nixon & Physical Education Recreation American Association for Health - 1972 - American Association for Health, Physical Education, and Recreation.
     
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  9.  27
    Trinity and Spirit, DALE M. SCHLITT.Absolute Spirit Revisited & Physical Determinism - 1991 - American Philosophical Quarterly 28 (1).
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  10. Jeffrey Edwards and Martin Schonfeld.View of Physical Reality - 2006 - Journal of Chinese Philosophy 33:109.
     
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  11.  3
    Physical-Recreational Activities in Basic Education Students: A Systematic Review.Helen Priscilla Salvatierra Mendieta, Gina Karina Tumbaco Villamar, Andrea Sinche-Guzmán, Denisse Maricela Salcedo Aparicio, Robby Oliver Gutiérrez Gonzales, Guiceli Codina Patiño García & Carlos Alberto Cherre Antón - forthcoming - Evolutionary Studies in Imaginative Culture:253-266.
    The objective of this research was to systematize the results of existing publications on basic recreational activities in Basic Education students during the years 2019 to 2023. The method adopted in the research was a review of the scientific literature, based on a documentary design, involving the stages that include exploring the sources, carrying out the filtering process to select the most significant and relevant studies, then interpreting the results and subsequently analyzing them. The type of research was a systematic, (...)
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  12.  70
    Physics.Daniel W. Aristotle & Graham - 2018 - Hackett Publishing Company.
    The _Physics_ is a foundational work of western philosophy, and the crucial one for understanding Aristotle's views on matter, form, essence, causation, movement, space, and time. This richly annotated, scrupulously accurate, and consistent translation makes it available to a contemporary English reader as no other does—in part because it fits together seamlessly with other closely associated works in the New Hackett Aristotle series, such as the _Metaphysics_, _De Anima_, and forthcoming _De Caelo_ and _On Coming to Be and Passing Away_. (...)
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  13.  8
    Physics in the 21st Century in Relation to Information and Arrangements.Bernard Dugué - 2017 - In Information and the World Stage. Hoboken, NJ, USA: Wiley. pp. 121–154.
    This chapter provides a few approaches aiming to review the interpretation of matter, nature and the universe by trying to reframe the physical sciences in the context that has taken shape: arrangement, communication and information. In relation to what has just been presented, action regards more a mechanical type of physics with forces, arrangement, movements and orientations. Rational mechanics is the result. The existence of the two types of physics is associated with two great scientists. First of all, Galileo, (...)
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  14. Physics and philosophy: the revolution in modern science.Werner Heisenberg - 1958 - Amherst, N.Y.: Prometheus Books. Edited by Ruth Nanda Anshen.
  15.  56
    Physical Computation: A Mechanistic Account.Gualtiero Piccinini - 2015 - Oxford, GB: Oxford University Press UK.
    Gualtiero Piccinini articulates and defends a mechanistic account of concrete, or physical, computation. A physical system is a computing system just in case it is a mechanism one of whose functions is to manipulate vehicles based solely on differences between different portions of the vehicles according to a rule defined over the vehicles. Physical Computation discusses previous accounts of computation and argues that the mechanistic account is better. Many kinds of computation are explicated, such as digital vs. (...)
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  16.  86
    The Physics of Time Asymmetry.Paul Davies - 1974 - University of California Press.
    The physics of time asymmetry has never been a single well-defined subject, but more a collection of consistency problems which arise in almost all branches ...
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  17. How Physics Makes Us Free.Jenann Ismael - 2016 - , US: Oxford University Press USA.
    In 1687 Isaac Newton ushered in a new scientific era in which laws of nature could be used to predict the movements of matter with almost perfect precision. Newton's physics also posed a profound challenge to our self-understanding, however, for the very same laws that keep airplanes in the air and rivers flowing downhill tell us that it is in principle possible to predict what each of us will do every second of our entire lives, given the early conditions of (...)
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  18. (1 other version)Atomic physics and human knowledge.Niels Bohr - 1958 - New York,: Wiley.
    These articles and speeches by the Nobel Prize-winning physicist date from 1934 to 1958. Rather than expositions on quantum physics, the papers are philosophical in nature, exploring the relevance of atomic physics to many areas of human endeavor. Includes an essay in which Bohr and Einstein discuss quantum and_wave equation theories. 1961 edition.
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  19. Physics and Chance: Philosophical Issues in the Foundations of Statistical Mechanics.Lawrence Sklar - 1993 - New York: Cambridge University Press.
    Statistical mechanics is one of the crucial fundamental theories of physics, and in his new book Lawrence Sklar, one of the pre-eminent philosophers of physics, offers a comprehensive, non-technical introduction to that theory and to attempts to understand its foundational elements. Among the topics treated in detail are: probability and statistical explanation, the basic issues in both equilibrium and non-equilibrium statistical mechanics, the role of cosmology, the reduction of thermodynamics to statistical mechanics, and the alleged foundation of the very notion (...)
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  20. Physical Realization.Sydney Shoemaker - 2007 - Oxford, GB: Oxford University Press UK.
    In Physical Realization, Sydney Shoemaker considers the question of how physicalism can be true: how can all facts about the world, including mental ones, be constituted by facts about the distribution in the world of physical properties? Physicalism requires that the mental properties of a person are 'realized in' the physical properties of that person, and that all instantiations of properties in macroscopic objects are realized in microphysical states of affairs. Shoemaker offers an account of both these (...)
  21.  19
    Spacetime physics.Edwin F. Taylor - 1966 - San Francisco,: W. H. Freeman. Edited by John Archibald Wheeler.
    Collaboration on the First Edition of Spacetime Physics began in the mid-1960s when Edwin Taylor took a junior faculty sabbatical at Princeton University where John Wheeler was a professor. The resulting text emphasized the unity of spacetime and those quantities (such as proper time, proper distance, mass) that are invariant, the same for all observers, rather than those quantities (such as space and time separations) that are relative, different for different observers. The book has become a standard introduction to relativity. (...)
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  22.  5
    Qualitative analysis of physical problems.M. Gitterman - 1981 - New York, N.Y.: Academic Press. Edited by V. Halpern.
    Qualitative Analysis of Physical Problems ...
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  23.  55
    Physical Relativity: Space-Time Structure From a Dynamical Perspective.Harvey R. Brown - 2005 - Oxford, GB: Oxford University Press UK.
    Physical Relativity explores the nature of the distinction at the heart of Einstein's 1905 formulation of his special theory of relativity: that between kinematics and dynamics. Einstein himself became increasingly uncomfortable with this distinction, and with the limitations of what he called the 'principle theory' approach inspired by the logic of thermodynamics. A handful of physicists and philosophers have over the last century likewise expressed doubts about Einstein's treatment of the relativistic behaviour of rigid bodies and clocks in motion (...)
  24. Information, physics, quantum: the search for links.John Archibald Wheeler - 1989 - In Wheeler John Archibald, Proceedings III International Symposium on Foundations of Quantum Mechanics. pp. 354-358.
    This report reviews what quantum physics and information theory have to tell us about the age-old question, How come existence? No escape is evident from four conclusions: (1) The world cannot be a giant machine, ruled by any preestablished continuum physical law. (2) There is no such thing at the microscopic level as space or time or spacetime continuum. (3) The familiar probability function or functional, and wave equation or functional wave equation, of standard quantum theory provide mere continuum (...)
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  25. The physics of extended simples.D. Braddon-Mitchell & K. Miller - 2006 - Analysis 66 (3):222-226.
    The idea that there could be spatially extended mereological simples has recently been defended by a number of metaphysicians (Markosian 1998, 2004; Simons 2004; Parsons (2000) also takes the idea seriously). Peter Simons (2004) goes further, arguing not only that spatially extended mereological simples (henceforth just extended simples) are possible, but that it is more plausible that our world is composed of such simples, than that it is composed of either point-sized simples, or of atomless gunk. The difficulty for these (...)
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  26.  58
    Physics, buddhism, and postmodern interpretation.Dawne C. McCance - 1986 - Zygon 21 (3):287-296.
    . Arguing that the revolution in postmodern physics is concerned essentially not with a change in paradigm but with a change in interpretive standpoint, this paper explores a parallel between the aetiology of disease in Buddhism and the interpretive standpoint introduced by twentieth‐century quantum physics. The paper suggests a need to revise central interpretive assumptions of the natural and human sciences, including the traditional projection of an atomistic self.
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  27.  30
    Physical science and physical reality.Louis Osgood Kattsoff - 1957 - The Hague,: M. Nijhoff.
    This work has been selected by scholars as being culturally important and is part of the knowledge base of civilization as we know it. This work is in the public domain in the United States of America, and possibly other nations. Within the United States, you may freely copy and distribute this work, as no entity has a copyright on the body of the work. Scholars believe, and we concur, that this work is important enough to be preserved, reproduced, and (...)
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  28. The physics of the primary state of matter.Cyril Were Davson - 1955 - London,: Elverton Books.
  29. How the laws of physics lie.Nancy Cartwright - 1983 - New York: Oxford University Press.
    In this sequence of philosophical essays about natural science, the author argues that fundamental explanatory laws, the deepest and most admired successes of modern physics, do not in fact describe regularities that exist in nature. Cartwright draws from many real-life examples to propound a novel distinction: that theoretical entities, and the complex and localized laws that describe them, can be interpreted realistically, but the simple unifying laws of basic theory cannot.
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  30.  50
    Reconciling physics and the order-producing universe: Evolutionary competence and the new vision of the second law.Sally Goerner - 1993 - World Futures 36 (2):165-179.
    (1993). Reconciling physics and the order‐producing universe: Evolutionary competence and the new vision of the second law. World Futures: Vol. 36, Evolutionary Consciousness, pp. 165-179.
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  31.  28
    Introduction: Physics, Technology, and Technics during the Interwar Period.Shaul Katzir - 2018 - Science in Context 31 (3):251-261.
    Historians, philosophers, and physicists portray the 1920s and 1930s as a period of major theoretical breakthrough in physics, quantum mechanics, which led to the expansion of physics into the core of the atom and the growth and strengthening of the discipline. These important developments in scientific inquiry into the micro-world and light have turned historical attention away from other significant historical processes and from other equally important causes for the expansion of physics. World War II, on the other hand, is (...)
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  32. New physical foundations for cognitive science.Stephen W. Kercel - 2008 - Journal of Mind and Behavior 29 (1-2):159-193.
    Why should the subject of physics arise in a paper ostensibly concerned with cognitive science and evolutionary biology? If we were advocating a new physics of life and mind simply because we cannot devise an explanation of brain function within the framework of conventional physics, it would appear to reveal a fundamental flaw in the paradigm that we are discussing. If cognition is a biological process, and if biology is ultimately reducible to physics, should not physics be sufficient to entail (...)
     
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  33.  32
    Physical education and moral development.Lesley Wright - 1987 - Journal of Philosophy of Education 21 (1):93–102.
    Lesley Wright; Physical Education and Moral Development, Journal of Philosophy of Education, Volume 21, Issue 1, 30 May 2006, Pages 93–102, https://doi.org/10.1.
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  34. From physics to physicalism.Barry Loewer - 2001 - In Carl Gillett & Barry Loewer, Physicalism and its Discontents. New York: Cambridge University Press.
    The appeal of materialism lies precisely in this, in its claim to be natural metaphysics within the bounds of science. That a doctrine which promises to gratify our ambition (to know the noumenal) and our caution (not to be unscientific) should have great appeal is hardly something to be wondered at. (Putnam (1983), p.210) Materialism says that all facts, in particular all mental facts, obtain in virtue of the spatio- temporal distribution, and properties, of matter. It was, as Putnam says, (...)
     
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  35.  66
    The Physical Aspect of the Universe: An Alternative Scheme to That of Sir James Jeans.Oliver Lodge - 1932 - Philosophy 7 (26):138 - 152.
    In the January number of the quarterly journal published by The British Institute of Philosophy, called Philosophy, Sir James Jeans with extraordinary ability has represented the view of the universe which may be held now in the twentieth century by a mathematician, and concludes that this representation contributes to and upholds an idealistic philosophy. Now with the contention that an idealistic philosophy is superior to any other, that is to say nearer the truth, we may be allowed to sympathize. Several (...)
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  36.  27
    Contemporary Physics and Lenin's Conception of Objective Truth.V. Ia Pakhomov - 1970 - Russian Studies in Philosophy 9 (1):60-80.
    Central among the complex philosophical problems created by the development of contemporary physics is the problem of the objectivity of physical knowledge, the problem of the reflection of objective reality in our knowledge.
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  37.  20
    Physics as Metaphor: An Inaugural Lecture Given in the University of Fort Hare on the 9th May, 1974.R. H. Hobart - 1974
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  38.  54
    (1 other version)Quantum physics, illusion or reality?Alastair I. M. Rae - 1986 - New York: Cambridge University Press.
    Quantum physics is believed to be the fundamental theory underlying our understanding of the physical universe. However, it is based on concepts and principles that have always been difficult to understand and controversial in their interpretation. This book aims to explain these issues using a minimum of technical language and mathematics. After a brief introduction to the ideas of quantum physics, the problems of interpretation are identified and explained. The rest of the book surveys, describes and criticises a range (...)
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  39.  82
    Physics and the Measurement of Continuous Variables.R. N. Sen - 2008 - Foundations of Physics 38 (4):301-316.
    This paper addresses the doubts voiced by Wigner about the physical relevance of the concept of geometrical points by exploiting some facts known to all but honored by none: Almost all real numbers are transcendental; the explicit representation of any one will require an infinite amount of physical resources. An instrument devised to measure a continuous real variable will need a continuum of internal states to achieve perfect resolution. Consequently, a laboratory instrument for measuring a continuous variable in (...)
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  40. (1 other version)From physics to metaphysics.Michael Redhead - 1995 - New York: Cambridge University Press.
    The book is drawn from the Tarner lectures, delivered in Cambridge in 1993. It is concerned with the ultimate nature of reality, and how this is revealed by modern physical theories such as relativity and quantum theory. The objectivity and rationality of science are defended against the views of relativists and social constructionists. It is claimed that modern physics gives us a tentative and fallible, but nevertheless rational, approach to the nature of physical reality. The role of subjectivity (...)
  41.  30
    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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  42. Physically Similar Systems: a history of the concept.Susan G. Sterrett - 2017 - In Magnani Lorenzo & Bertolotti Tommaso Wayne, Springer Handbook of Model-Based Science. Springer. pp. 377-412.
    The concept of similar systems arose in physics, and appears to have originated with Newton in the seventeenth century. This chapter provides a critical history of the concept of physically similar systems, the twentieth century concept into which it developed. The concept was used in the nineteenth century in various fields of engineering, theoretical physics and theoretical and experimental hydrodynamics. In 1914, it was articulated in terms of ideas developed in the eighteenth century and used in nineteenth century mathematics and (...)
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  43.  19
    Quantum Physics, Digital Computers, and Life from a Holistic Perspective.George F. R. Ellis - 2024 - Foundations of Physics 54 (4):1-29.
    Quantum physics is a linear theory, so it is somewhat puzzling that it can underlie very complex systems such as digital computers and life. This paper investigates how this is possible. Physically, such complex systems are necessarily modular hierarchical structures, with a number of key features. Firstly, they cannot be described by a single wave function: only local wave functions can exist, rather than a single wave function for a living cell, a cat, or a brain. Secondly, the quantum to (...)
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  44. Physical Systems: Conceptual Pathways Between Spacetime and Matter.Ori Belkind - 2004 - Dissertation, University of Washington
    This dissertation elucidates the notion of physical system which opens new conceptual pathways that connect the three realms of physical theory; spacetime, material bodies and their properties, and the laws of nature which govern their evolution. The notion of physical system includes two presuppositions regarding their structure. The first presupposition is a description of isolated systems and their evolution in time, which amounts to a Paradigm of Uniform Motion. The second presupposition describes how parts of a (...) system are combined into wholes. This presupposition amounts to a Rule of Composition. Once we make these presuppositions explicit we can derive the spacetime structures and the fundamental equations of motion. "Newtonian" and "relativistic" systems are shown to differ with respect to the paradigm of uniform motion, a difference that leads to the respective structures of Newtonian mechanics and the Special Theory of Relativity. ;The philosophical framework offered in this dissertation provides a new interpretation of the concept of mass, and a new elucidation of the relation between the conservations of mass and momentum. Previous analyses of the concept have claimed that "mass" cannot be defined and broken down to more primitive predicates. The framework offered here, on the other hand, enables the systematic reduction of the concept of mass to motions and the presuppositions we have regarding the nature of physical systems. The new interpretation of mass reveals a surprising connection between mass and inertial reference frames, as they are both shown to be derived, in a similar way, from our definition of physical systems. Mass is by necessity attributed to bodies in virtue of the frame we use to describe their motions. This account also enables us to understand the different conceptual roles of mass and their interconnections. In the context of Newtonian mechanics, the roles of mass as a Quantity of Matter, as the Inertial property of bodies, and as Gravitational mass are shown to be various aspects of a single role the concept has in the new framework offered here. In the context of the Special Theory of Relativity, rest mass and relativistic mass are similarly analyzed as consequences of our presuppositions regarding physical systems. (shrink)
     
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  45.  22
    Quantum Physics and Cognitive Science from a Wittgensteinian Perspective: Bohr’s Classicism, Chomsky’s Universalism, and Bell’s Contextualism.Yoshihiro Maruyama - 2019 - In Newton Da Costa & Shyam Wuppuluri, Wittgensteinian : Looking at the World From the Viewpoint of Wittgenstein's Philosophy. Springer Verlag. pp. 375-407.
    Although Wittgenstein’s influence on logic and foundations of mathematics is well recognized, nonetheless, his legacy concerning other sciences is much less elucidated, and in this article we aim at shedding new light on physics, artificial intelligence, and cognitive science from a Wittgensteinian perspective. We focus upon three issues amongst other things: the Chosmky versus Norvig debate on the nature of language; a Neo-Kantian parallelism between Bohr’s philosophy of physics and Hilbert’s philosophy of mathematics; the relationships between cognitive contextuality and (...) contextuality as shown by recent Bell-type results. The Chosmky versus Norvig debate may be seen as a battle between Wittgenstein’s earlier and later conceptions of meaning, i.e., picture theory and use theory. From a Wittgensteinian point of view, quantum physics may be seen as a physical version of the Linguistic Turn. The parallelism between Bohr’s philosophy of classical concepts and Hilbert’s philosophy of finitism builds upon transcendental philosophy in the Kantian tradition, both Bohr and Hilbert having been influenced by Neo-Kantian thinkers, such as Hertz, whose sign theory is actually a common root of Wittgenstein’s picture theory and Hilbert’s axiomatics. Wittgenstein is considered a root of contextualism in contemporary philosophy. Contextuality has different manifestations in physics and cognitive science, and contextuality studies across the sciences are rapidly developing in cutting-edge research. We elucidate both analogies and disanalogies between contextuality of reality and contextuality of reason in terms of the nature of probabilities involved. In passing, we also give a reformulation of Penrose’s quantum mind thesis. (shrink)
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  46.  34
    Physics and Necessity: Rationalist Pursuits From the Cartesian Past to the Quantum Present.Olivier Darrigol - 2014 - Oxford, United Kingdom: Oxford University Press.
    This book recounts a few ingenious attempts to derive physical theories by reason only, beginning with Descartes' geometric construction of the world, and finishing with recent derivations of quantum mechanics from natural axioms.
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  47.  67
    (1 other version)Physics of the Stoics.Samuel Sambursky - 1959 - Princeton, N.J.: Princeton University Press.
    Stoic physics, based entirely on the continuum concept, is one of the great original contributions in the history of physical systems. Building on The Physical World of the Greeks, the author describes the main aspects of the Stoic continuum theory, traces its origins back to pre-Stoic science and philosophy, and shows the attempts of the Stoics to work out a coherent system of thought that would explain the essential phenomena of the physical world by a few basic (...)
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  48. The Character of Physical Law.Richard Phillips Feynman - 1965 - MIT Press.
    The law of gravitation, an example of physical law The relation of mathematics to physics The great conservation principles Symmetry in physical law The distinction of past and future Probability and uncertainty: the quantum mechanical view of nature Seeking new laws.
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  49.  28
    Physical Influence and Mental Reference.C. Lloyd Morgan - 1936 - Philosophy 11 (42):176 - 185.
    In a scientific discussion of the processes which we designate “vital,” attention is concentrated on an interpretation of that which happens within a relational system of physical influence. In a scientific discussion of the processes which we reflectively distinguish as “mental,” attention is directed to what occurs in a relational system of psychological reference. We should seek to distinguish each from the other in any given context where both are in evidence.
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  50.  47
    Physics with and without the equivalence principle.J. Gruszczak, M. Heller & P. Multarzynski - 1989 - Foundations of Physics 19 (5):607-618.
    A differential manifold (d-manifold, for short) can be defined as a pair (M, C), where M is any set and C is a family of real functions on M which is (i) closed with respect to localization and (ii) closed with respect to superposition with smooth Euclidean functions; one also assumes that (iii) M is locally diffeomorphic to Rn. These axioms have a straightforward physical interpretation. Axioms (i) and (ii) formalize certain “compatibility conditions” which usually are supposed to be (...)
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