Results for 'Physical completeness'

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  1. What makes a theory physically “complete”?Andrew Elby, Harvey R. Brown & Sara Foster - 1993 - Foundations of Physics 23 (7):971-985.
    Three claims about what makes a theory “physically complete” are (1) Shimony's assertion that a complete theory says “all there is to say” about nature; (2) EPR's requirement that a complete theory describe all “elements of reality”; and (3) Ballentine and Jarrett's claim that a “predictively complete” theory must obey a condition used in Bell deviations. After introducing “statistical completeness” as a partial formalization of (1), we explore the logical and motivational relationships connecting these completeness conditions. We find (...)
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  2. Causal exclusion without physical completeness and no overdetermination.Alexander Gebharter - 2017 - Abstracta 10:3-14.
    Hitchcock demonstrated that the validity of causal exclusion arguments as well as the plausibility of several of their premises hinges on the specific theory of causation endorsed. In this paper I show that the validity of causal exclusion arguments—if represented within the theory of causal Bayes nets the way Gebharter suggests—actually requires much weaker premises than the ones which are typically assumed. In particular, neither completeness of the physical domain nor the no overdetermination assumption are required.
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  3. Universal self consciousness mysticism and the physical completeness principle.Leonard Angel - 2004 - International Journal for Philosophy of Religion 55 (1):1-29.
    Philosophers promoting a version ofUniversal Self Consciousness mysticism(including Wainwright, Alston, Hick, Wilber andForman) take it that their interpretations ofmysticism are consistent with currentscientific findings. However, their theorieshave been implicitly or explicitly against thecentral claim arising from science, namely, thephysical causal completeness principle. Thereis strong ground to accept physical causalcompleteness for human functioning, and theassessment of physical completeness isindependent of the phenomenology of UniversalSelf Consciousness mystical experience.Further, there is a positive account ofUniversal Self Consciousness mysticism thataccepts (...) causal completeness. Such anaccount is preferable to the many accounts thatboth require its denial and yet give nobasically satisfactory evidence to ground thatdenial. (shrink)
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  4. The Fundamentality of Physics: Completeness or Maximality.Alyssa Ney - 2021 - Oxford Studies in Metaphysics 12.
    There is a standard way of interpreting physicalism. This is as a completeness thesis of some kind. Completeness physicalists believe there is or in principle could be some future physics that provides a complete explanatory or ontological basis for our universe. And this provides a sense in which physics is special among the sciences, the sense in which it is fundamental. This paper contrasts this standard completeness physicalism with what is a more plausible maximality physicalism. Maximality physicalists (...)
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  5.  38
    God, Mysticism, and Libertarianism, Versus Physical Completeness.Leonard Angel - 2004 - Philosophical Inquiry 26 (4):89-113.
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  6. Note on the Completeness of ‘Physics’.David Spurrett & David Papineau - 1999 - Analysis 59 (1):25-29.
    David Spurrett, David Papineau; A note on the completeness of ‘physics’, Analysis, Volume 59, Issue 1, 1 January 1999, Pages 25–29, https://doi.org/10.1093/anal.
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  7.  13
    The Completeness of Scientific Theories: On the Derivation of Empirical Indicators within a Theoretical Framework: The Case of Physical Geometry.Martin Carrier - 2012 - Springer.
    Earlier in this century, many philosophers of science (for example, Rudolf Carnap) drew a fairly sharp distinction between theory and observation, between theoretical terms like 'mass' and 'electron', and observation terms like 'measures three meters in length' and 'is _2° Celsius'. By simply looking at our instruments we can ascertain what numbers our measurements yield. Creatures like mass are different: we determine mass by calculation; we never directly observe a mass. Nor an electron: this term is introduced in order to (...)
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  8. Causal Exclusion and Physical Causal Completeness.Dwayne Moore - 2019 - Dialectica 73 (4):479-505.
    Nonreductive physicalists endorse the principle of mental causation, according to which some events have mental causes: Sid climbs the hill because he wants to. Nonreductive physicalists also endorse the principle of physical causal completeness, according to which physical events have sufficient physical causes: Sid climbs the hill because a complex neural process in his brain triggered his climbing. Critics typically level the causal exclusion problem against this nonreductive physicalist model, according to which the physical cause (...)
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  9. Can Physics ever be Complete if there is no Fundamental Level in Nature?Markus Schrenk - 2009 - Dialectica 63 (2):205-208.
    In their recent book Every Thing Must Go, Ladyman and Ross claim: (i) Physics is analytically complete since it is the only science that cannot be left incomplete. (ii) There might not be an ontologically fundamental level. (iii) We should not admit anything into our ontology unless it has explanatory and predictive utility. In this discussion note I aim to show that the ontological commitment in implies that the completeness of no science can be achieved where no fundamental level (...)
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  10.  39
    Completing the Physical Representation of Quantum Algorithms Provides a Quantitative Explanation of Their Computational Speedup.Giuseppe Castagnoli - 2018 - Foundations of Physics 48 (3):333-354.
    The usual representation of quantum algorithms, limited to the process of solving the problem, is physically incomplete. We complete it in three steps: extending the representation to the process of setting the problem, relativizing the extended representation to the problem solver to whom the problem setting must be concealed, and symmetrizing the relativized representation for time reversal to represent the reversibility of the underlying physical process. The third steps projects the input state of the representation, where the problem solver (...)
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  11.  65
    A Completeness Proof of Kiczuk’s Logic of Physical Change.Robert Trypuz - 2010 - Studia Logica 95 (1-2):139-159.
    In this paper the class of minimal models CZI for Kiczuk’s system of physical change ZI is provided and soundness and completeness proofs of ZI with respect to these models are given. ZI logic consists of propositional logic von Wright’s And Then and six specific axioms characterizing the meaning of unary propositional operator “Zm”, read “there is a change in the fact that”. ZI is intended to be a logic which provides a formal account for describing two kinds (...)
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  12. The completeness of physics.David Spurrett - 1999 - Dissertation, University of Natal, Durban
    The present work is focussed on the completeness of physics, or what is here called the Completeness Thesis: the claim that the domain of the physical is causally closed. Two major questions are tackled: How best is the Completeness Thesis to be formulated? What can be said in defence of the Completeness Thesis? My principal conclusions are that the Completeness Thesis can be coherently formulated, and that the evidence in favour if it significantly outweighs (...)
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  13. Projection, physical intelligibility, objectivity and completeness: The divergent ideals of Bohr and Einstein.C. A. Hooker - 1991 - British Journal for the Philosophy of Science 42 (4):491-511.
    It is shown how the development of physics has involved making explicit what were homocentric projections which had heretofore been implicit, indeed inexpressible in theory. This is shown to support a particular notion of the invariant as the real. On this basis the divergence in ideals of physical intelligibility between Bohr and Einstein is set out. This in turn leads to divergent, but explicit, conceptions of objectivity and completeness for physical theory. *I am indebted to Dr. G. (...)
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  14. Fundamental laws and the completeness of physics.David Spurrett - 1999 - International Studies in the Philosophy of Science 13 (3):261 – 274.
    The status of fundamental laws is an important issue when deciding between the three broad ontological options of fundamentalism (of which the thesis that physics is complete is typically a sub-type), emergentism, and disorder or promiscuous realism. Cartwright’s assault on fundamental laws which argues that such laws do not, and cannot, typically state the facts, and hence cannot be used to support belief in a fundamental ontological order, is discussed in this context. A case is made in defence of a (...)
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  15.  71
    The completeness of physical and artistic form.Rudolf Arnheim - 1994 - British Journal of Aesthetics 34 (2):109-113.
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  16.  64
    Can stochastic physics be a complete theory of nature?Steven M. Moore - 1979 - Foundations of Physics 9 (3-4):237-259.
    The prospects for a complete stochastic theory of microscopic phenomena are considered. The two traditional schools of stochastic physics, the diffusion process school and the zero-point electromagnetic field school, are reviewed. A completely relativistic theory, stochastic field theory, is proposed as an extension of the ideas of these two schools. Within the context of stochastic field theory we present the following new results: an elementary stochastization scheme which produces the zero-point electromagnetic field; a physical interpretation of the mathematical methods (...)
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  17.  80
    Complete Hamiltonian Description of Wave-Like Features in Classical and Quantum Physics.A. Orefice, R. Giovanelli & D. Ditto - 2009 - Foundations of Physics 39 (3):256-272.
    The analysis of the Helmholtz equation is shown to lead to an exact Hamiltonian system describing in terms of ray trajectories, for a stationary refractive medium, a very wide family of wave-like phenomena (including diffraction and interference) going much beyond the limits of the geometrical optics (“eikonal”) approximation, which is contained as a simple limiting case. Due to the fact, moreover, that the time independent Schrödinger equation is itself a Helmholtz-like equation, the same mathematics holding for a classical optical beam (...)
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  18. Constructing or completing physical geometry? On the relation between theory and evidence in accounts of space-time structure.Martin Carrier - 1990 - Philosophy of Science 57 (3):369-394.
    The aim of this paper is to discuss the relation between the observation basis and the theoretical principles of General Relativity. More specifically, this relation is analyzed with respect to constructive axiomatizations of the observation basis of space-time theories, on the one hand, and in attempts to complete them, on the other. The two approaches exclude one another so that a choice between them is necessary. I argue that the completeness approach is preferable for methodological reasons.
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  19.  85
    Can classical description of physical reality be considered complete?Gabriel Catren - unknown
    We propose a definition of physical objects that aims to clarify some interpretational issues in quantum mechanics. We claim that the transformations generated by the objective properties of a physical system must be strictly interpreted as gauge transformations. We will argue that the uncertainty principle is a consequence of the mutual intertwining between objective properties and gauge-dependant properties. The proposed definition implies that in classical mechanics gauge-dependant properties are wrongly considered objective. We will conclude that, unlike classical mechanics, (...)
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  20. On the causal completeness of physics.Agustín Vicente - 2006 - International Studies in the Philosophy of Science 20 (2):149 – 171.
    According to an increasing number of authors, the best, if not the only, argument in favour of physicalism is the so-called 'overdetermination argument'. This argument, if sound, establishes that all the entities that enter into causal interactions with the physical world are physical. One key premise in the overdetermination argument is the principle of the causal closure of the physical world, said to be supported by contemporary physics. In this paper, I examine various ways in which physics (...)
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  21.  42
    Excellence As Completion in Aristotle’s Physics and Metaphysics.Christopher V. Mirus - 2013 - Review of Metaphysics 66 (4):663-690.
    This essay explores Aristotle’s description of virtue or excellence as a completion through a contextual reading of two texts: the entry on “the complete” in his philosophical lexicon and the brief discussion of excellence in Physics 7.3. In both Aristotle explores conceptual and ontological issues germane to a general concept of excellence; in both, the key premise is that excellence is best thought of as a completion. His development of this claim draws on two larger themes. In Metaphysics 5, the (...)
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  22. Emergence, Downwards Causation and the Completeness of Physics.David Yates - 2009 - Philosophical Quarterly 59 (234):110-131.
    The 'completeness of physics' is the key premise in the causal argument for physicalism. Standard formulations of it fail to rule out emergent downwards causation. I argue that it must do this if it is tare in a valid causal argument for physicalism. Drawing on the notion of conferring causal power, I formulate a suitable principle, 'strong completeness'. I investigate the metaphysical implications of distinguishing this principle from emergent downwards causation, and I argue that categoricalist accounts of properties (...)
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  23.  26
    A Physical Basis for the Second Law of Thermodynamics: Quantum Nonunitarity.Ruth Kastner - unknown
    It is argued that if the non-unitary measurement transition, as codified by Von Neumann, is a real physical process, then the ‘probability assumption’ needed to derive the Second Law of Thermodynamics naturally enters at that point. The existence of a real, indeterministic physical process underlying the measurement transition would therefore provide an ontological basis for Boltzmann’s Stosszahlansatz and thereby explain the unidirectional increase of entropy against a backdrop of otherwise time-reversible laws. It is noted that the Transactional Interpretation (...)
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  24.  18
    “Menstrual Health is a complete state of physical, men-tal and social well-being”: therapeutic searches, market and subjectivation processes in Argentine Menstrual Activism.Núria Calafell Sala - 2024 - Recerca.Revista de Pensament I Anàlisi 29 (1).
    This article presents a critical discursive analysis around the concept of menstrual health in a series of texts published in book format and in social networks in the last five years (2019-2023) by different activists and menstrual educators in Argentina. In a reading itinerary that goes from the singular to the collective, I identify the configuration of an experiential episteme that redefines the menstruating body as informational and multidimensional, which enables that, in addition to a physiological dimension, its role in (...)
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  25.  29
    Experience and Completeness in Physical Knowledge: Variations on a Kantian Theme.Brigitte Falkenburg - 2004 - History of Philosophy & Logical Analysis 7 (1):153-176.
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  26. From physics to physicalism.Barry Loewer - 2001 - In Carl Gillett & Barry Loewer (eds.), 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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  27.  52
    (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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  28. Can Quantum-Mechanical Description of Physical Reality Be Considered Complete?Albert Einstein, Boris Podolsky & Nathan Rosen - 1935 - Physical Review (47):777-780.
  29.  18
    The Bachelor’s to PhD Transition: Factors Influencing PhD Completion Among Women in Chemistry and Physics.Robert H. Tai, Katy A. Warner, Amy C. Hutton, Devasmita Chakraverty & Katherine P. Dabney - 2016 - Bulletin of Science, Technology and Society 36 (4):203-210.
    Existing research has examined if undergraduate factors influence chemistry and physics, or physical science, doctoral degree entry and whether variables during PhD programs associate with graduation. Yet research on the transition from bachelor’s degree to doctoral degree entry (i.e., PhD entry in less than 6 months, attainment of a master’s degree prior to doctoral degree entry, or working in a science-related job for more than a year prior to doctoral degree entry) on PhD degree graduation remains scarce. Our study (...)
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  30.  35
    Physical Action, Species, and Matter: The Debate between Roger Bacon and Peter John Olivi.Dominique Demange & Yael Kedar - 2020 - Journal of the History of Philosophy 58 (1):49-69.
    did roger bacon and peter john olivi ever meet? We suggest a positive answer to this question. After he became a Franciscan in 1257, Roger Bacon spent ten years at the Franciscan Paris convent. In those years he wrote the De multiplicatione specierum —his most thought-out piece—the Opus majus, Opus minus, and Opus tertium, which he completed by early 1268. It is not clear whether Bacon returned to England after 1268, or remained in Paris until 1280.1 Peter John Olivi wrote (...)
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  31. (1 other version)Can Quantum-Mechanical Description of Physical Reality be Considered Complete?Niels Bohr - 1935 - Physical Review 48 (696--702):696--702.
  32.  39
    Mathematical physics and philosophy of physics (with special consideration of J. von Neumann's work).Miklós Rédei - 2002 - In M. Heidelberger & Friedrich Stadler (eds.), History of Philosophy of Science: New Trends and Perspectives. Springer. pp. 239-243.
    The main claim of this talk is that mathematical physics and philosophy of physics are not different. This claim, so formulated, is obviously false because it is overstated; however, since no non-tautological statement is likely to be completely true, it is a meaningful question whether the overstated claim expresses some truth. I hope it does, or so I’ll argue. The argument consists of two parts: First I’ll recall some characteristic features of von Neumann’s work on mathematical foundations of quantum mechanics (...)
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  33. The complete Duhemian underdetermination argument: scientific language and practice.Karen Merikangas Darling - 2002 - Studies in History and Philosophy of Science Part A 33 (3):511-533.
    Current discussion of scientific realism and antirealism often cites Pierre Duhem’s argument for the underdetermination of theory choice by evidence. Participants draw on an account of his underdetermination thesis that is familiar, but incomplete. The purpose of this article is to complete the familiar account. I argue that a closer look at Duhem’s The aim and structure of physical theory suggests that the rationale for his underdetermination thesis comes from his philosophy of scientific language. I explore how an understanding (...)
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  34.  90
    Can Bell’s Prescription for Physical Reality Be Considered Complete?Joy Christian - unknown
    An experiment is proposed to test Bell’s theorem in a purely macroscopic domain. If realized, it would determine whether Bell inequalities are satisfied for a manifestly local, classical system. It is stressed why the inequalities should not be presumed to hold for such a macroscopic system without actual experimental evidence. In particular, by providing a purely classical, topological explanation for the EPR-Bohm type spin correlations, it is demonstrated why Bell inequalities must be violated in the manifestly local, macroscopic domain, just (...)
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  35.  66
    Physically Distributed Learning: Adapting and Reinterpreting Physical Environments in the Development of Fraction Concepts.Taylor Martin & Daniel L. Schwartz - 2005 - Cognitive Science 29 (4):587-625.
    Five studies examined how interacting with the physical environment can support the development of fraction concepts. Nine‐ and 10‐year‐old children worked on fraction problems they could not complete mentally. Experiments 1 and 2 showed that manipulating physical pieces facilitated children's ability to develop an interpretation of fractions. Experiment 3 demonstrated that when children understood a content area well, they used their interpretations to repurpose many environments to support problem solving, whereas when they needed to learn, they were prone (...)
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  36.  7
    The Physical Principles of Natural Philosophy —The Third Discussion on Contradictions between Quantum Mechanics and Relativity Using the Cosmic Origin Principle.Samo Liu - 2024 - Open Journal of Philosophy 14 (4):967-994.
    The philosophical Framework of modern physics puts forward a philosophical solution to the contradiction between relativity theory and quantum mechanics theory, aiming to break through the restriction of material philosophy on human thought and solve the artificial contradiction generated by material philosophy. This scheme is the physical principle of natural philosophy. Newton discovered the mathematical principles of natural philosophy, he expressed the principles of the universe’s natural philosophy through mathematics, discovering universal gravitation, the mutual perception and motion of material (...)
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  37. Art & physics: parallel visions in space, time, and light.Leonard Shlain - 1991 - New York: Quill/W. Morrow.
    Art interprets the visible world, physics charts its unseen workings--making the two realms seem completely opposed. But in Art & Physics, Leonard Shlain tracks their breakthroughs side by side throughout history to reveal an astonishing correlation of visions. From teh classical Greek sculptors to Andy Warhol and Jasper Johns, and from Aristotle to Einstein, aritsts have foreshadowed the discoveries of scientists, such as when Money and Cezanne intuited the coming upheaval in physics that Einstein would initiate. In this lively and (...)
     
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  38.  19
    The language of modern physics.Ernest H. Hutten - 1956 - New York,: Macmillan.
    First published in 1956 The Language of Modern Physics gives a complete account of the concepts both of classical and quantum physics. It deals with themes like logic and semantics; basic ideas of physics and the methods scientists use for confirming their hypotheses.
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  39.  44
    When Do We Stop Digging? Conditions on a Fundamental Theory of Physics.Karen Crowther - 2019 - In Anthony Aguirre, Brendan Foster & Zeeya Merali (eds.), What is Fundamental? Cham: Springer Verlag. pp. 123-133.
    In seeking an answer to the question of what it means for a theory to be fundamental, it is enlightening to ask why the current best theories of physics are not generally believed to be fundamental. This reveals a set of conditions that a theory of physics must satisfy in order to be considered fundamental. Physics aspires to describe ever deeper levels of reality, which may be without end. Ultimately, at any stage we may not be able to tell whether (...)
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  40.  5
    Mathematical physics and philosophy of physics (with special consideration of J. von Neumann's work).Michael Heidelberger & Friedrich Stadler - 2002 - In M. Heidelberger & Friedrich Stadler (eds.), History of Philosophy of Science: New Trends and Perspectives. Springer. pp. 239-243.
    The main claim of this talk is that mathematical physics and philosophy of physics are not different. This claim, so formulated, is obviously false because it is overstated; however, since no non-tautological statement is likely to be completely true, it is a meaningful question whether the overstated claim expresses some truth. I hope it does, or so I’ll argue. The argument consists of two parts: First I’ll recall some characteristic features of von Neumann’s work on mathematical foundations of quantum mechanics (...)
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  41.  82
    Mental Causation and the Causal Completeness of Physics.Wilson Mendonça - 2002 - Principia: An International Journal of Epistemology 6 (1):121-132.
    This paper takes issue with a widely accepted view of mental causation. This is the view that mental causation is either reducible to physical causation or ultimately untenable, because incompatible with the causal completeness of physics The paper examines, first, why recent attempts to save the phenomena of mental causation by way of the notion of supervenient causation fail The result of t/us examination is the claim that any attempted specification of the most basic causal factors which supposedly (...)
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  42. Two Kinds of Completeness and the Uses (and Abuses) of Exclusion Principles.Matthew C. Haug - 2009 - Southern Journal of Philosophy 47 (4):379-401.
    I argue that the completeness of physics is composed of two distinct claims. The first is the commonly made claim that, roughly, every physical event is completely causally determined by physical events. The second has rarely, if ever, been explicitly stated in the literature and is the claim that microphysics provides a complete inventory of the fundamental categories that constitute both the causal features and intrinsic nature of all the events that causally affect the physical universe. (...)
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  43.  41
    Physical Entropy in Computer Games.Andreas Schiffler - 2010 - Technoetic Arts 8 (1):39-45.
    Digital computers are by design completely deterministic, yet they are often consumers of randomness in cryptography, simulations, science experiments and computer games. To generate randomness in software, programmers implement special mathematical algorithms, which produce a series of numbers that appear nondeterministic, so called pseudo random number generators (PRNGs). Computer games make heavy use of such PRNGs to make game simulations and behaviors of game elements appear more natural. An important design element of many video games is game physics, the simulation (...)
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  44. Can Physics Make Us Free?Tuomas K. Pernu - 2017 - Frontiers in Physics 5.
    A thoroughly physical view on reality and our common sense view on agency and free will seem to be in a direct conflict with each other: if everything that happens is determined by prior physical events, so too are all our actions and conscious decisions; you have no choice but to do what you are destined to do. Although this way of thinking has intuitive appeal, and a long history, it has recently began to gain critical attention. A (...)
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  45.  12
    (1 other version)Physics.Robin Waterfield & David Bostock (eds.) - 1996 - Oxford University Press.
    For many centuries, Aristotle's Physics was the essential starting point for anyone who wished to study the natural sciences. This is the first complete translation since 1930 of Aristotle's key work on science. It presents Aristotle's thought accurately, while at the same time simplifying and expanding the often crabbed and elliptical style of the original, so that it is very much easier to read. A lucid introduction and extensive notes explain the general structure of each section of the book, and (...)
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  46.  71
    Fundamental Physics.Wolfgang Kundt - 2007 - Foundations of Physics 37 (9):1317-1369.
    A survey is given of the elegant physics of N-particle systems, both classical and quantal, non-relativistic (NR) and relativistic, non-gravitational (SR) and gravitational (GR). Chapter 1 deals exclusively with NR systems; the correspondence between classical and quantal systems is highlighted and summarized in two tables of Sec. 1.3. Chapter 2 generalizes Chapter 1 to the relativistic regime, including Maxwell’s theory of electromagnetism. Chapter 3 follows Einstein in allowing gravity to curve the spacetime arena; its Sec. 3.2 is devoted to the (...)
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  47.  78
    Categorization and representation of physics problems by experts and novices.Michelene T. H. Chi, Paul J. Feltovich & Robert Glaser - 1981 - Cognitive Science 5 (2):121-52.
    The representation of physics problems in relation to the organization of physics knowledge is investigated in experts and novices. Four experiments examine the existence of problem categories as a basis for representation; differences in the categories used by experts and novices; differences in the knowledge associated with the categories; and features in the problems that contribute to problem categorization and representation. Results from sorting tasks and protocols reveal that experts and novices begin their problem representations with specifiably different problem categories, (...)
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  48.  57
    On completely positive maps in generalized quantum dynamics.Ralph F. Simmons & James L. Park - 1981 - Foundations of Physics 11 (1-2):47-55.
    Several authors have hypothesized that completely positive maps should provide the means for generalizing quantum dynamics. In a critical analysis of that proposal, we show that such maps are incompatible with the standard phenomenological theory of spin relaxation and that the theoretical argument which has been offered as justification for the hypothesis is fallacious.
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  49.  40
    Physical Time Within Human Time.Ronald P. Gruber, Richard A. Block & Carlos Montemayor - 2022 - Frontiers in Psychology 13:718505.
    A possible solution is offered to help resolve the “two times problem” regarding the veridical and illusory nature of time. First it is recognized that the flow (passage) of time is part of a wider array of temporal experiences referred to as manifest time, all of which need to be reconciled. Then, an information gathering and utilizing system (IGUS) model is used as a basis for a view of manifest time. The model IGUS robot of Hartle that solves the “unique (...)
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  50.  16
    Higher Physical Activity Levels May Help Buffer the Negative Psychological Consequences of Coronavirus Disease 2019 Pandemic.Raul Antunes, Ricardo Rebelo-Gonçalves, Nuno Amaro, Rogério Salvador, Rui Matos, Pedro Morouço & Roberta Frontini - 2021 - Frontiers in Psychology 12.
    This study explored the associations between physical activity anxiety levels, and the perception of satisfaction of basic psychological needs, during Coronavirus Disease 2019 lockdown. Thus, 1,404 participants ranging from 18 to 89 years old completed a questionnaire in the period between 1st and 15th April 2021. The survey included sociodemographic data and the following validated instruments: the International Physical Activity Questionnaire, the Basic Need General Satisfaction Scale and the State-Trait Anxiety Inventory. The Kruskal-Wallis test was performed to examine (...)
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