Results for 'completeness of physics'

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  1. 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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  2.  61
    The completeness of physical and artistic form.Rudolf Arnheim - 1994 - British Journal of Aesthetics 34 (2):109-113.
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  3. 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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  4. 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 may (...)
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  5. 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 (...)
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  6.  11
    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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  7. 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 (...)
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  8.  25
    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 is (...)
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  9. Jeffrey Edwards and Martin Schonfeld.View of Physical Reality - 2006 - Journal of Chinese Philosophy 33:109.
     
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  10. 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. (...)
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  11. Can Quantum-Mechanical Description of Physical Reality be Considered Complete?Niels Bohr - 1935 - Physical Review 48 (696--702):696--702.
  12.  3
    In Physicam Aristotelis.Richard Rufus of Cornwall (ed.) - 2003 - New York: Oup/British Academy.
    As one of the earliest Western physics teachers, Richard Rufus of Cornwall helped transform Western natural philosophy in the 13th century. But despite the importance of Rufus's works, they were effectively lost for 500 years, and the Physics commentary is the first complete work of his ever to be printed. Rufus taught at the Universities of Paris and Oxford from 1231 to 1256, at the very time when exposure to Aristotle's libri naturales was revolutionizing the academic curriculum; indeed (...)
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  13. Can Quantum-Mechanical Description of Physical Reality Be Considered Complete?Albert Einstein, Boris Podolsky & Nathan Rosen - 1935 - Physical Review (47):777-780.
  14.  65
    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, quantum mechanics (...)
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  15. Must the fundamental laws of physics be complete?Marc Lange - 2009 - Philosophy and Phenomenological Research 78 (2):312-345.
    The beauty of electricity, or of any other force, is not that the power is mysterious and unexpected, touching every sense at unawares in turn, but that it is under law... Michael Faraday, Wheatstone's Electric Telegraph's Relation to Science (being an argument in favour of the full recognition of Science as a branch of Education), 1854.
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  16.  23
    Must the Fundamental Laws of Physics be Complete?Marc Lange - 2009 - Philosophy and Phenomenological Research 78 (2):312-345.
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  17.  80
    Should quantum mechanical description of physical reality be considered complete?L. C. B. Ryff - 1990 - Foundations of Physics 20 (9):1061-1078.
    A brief and critical survey of wave-particle duality and nonlocality aspects of light is presented. A recent attempt to establish a reasonable framework for nonlocal realistic theories based on physically sound arguments and a proposed experiment to decide between such theories and the usual interpretation of quantum mechanical formalism are reviewed. It is shown that a nonlocal realistic approach may raise some new questions which could be answered by means of a program based on a sequence of experiments.
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  18. Mathematical physics and philosophy of physics (with special consideration of J. von Neumann's work).Miklós Rédei - 2002 - In Michael Heidelberger & Friedrich Stadler (eds.), History of Philosophy of Science: New Trends and Perspectives. 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 (...)
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  19.  33
    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 C ZI 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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  20.  57
    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 (...)
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  21.  15
    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 of (...)
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  22. Experience and Completeness in Physical Knowledge: Variations on a Kantian Theme.Brigitte Falkenburg - 2004 - History of Philosophy & Logical Analysis 7.
    When philosophers of science relate Kant‘s theory of nature to modern physics, they neglect the critical parts of the Critique of Pure Reason. My paper focuses on the way in which Kant wanted to demonstrate the limitations of physical knowledge by means of the cosmological antinomy. According to Kant, cosmology gives rise to four variations of one-and-the-same antinomy of pure reason. He wanted to show that any attempt to complete our spatio-temporal or dynamical knowledge of the world is based (...)
     
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  23.  17
    Mathematical physics and philosophy of physics (with special consideration of J. von Neumann's work).Miklós Rédei - 2002 - In Michael Heidelberger & Friedrich Stadler (eds.), History of Philosophy of Science: New Trends and Perspectives. Vienna Circle Institute yearbook (9). 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 (...)
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  24.  4
    Einstein's dice and Schrödinger's cat: how two great minds battled quantum randomness to create a unified theory of physics.Paul Halpern - 2015 - New York: Basic Books, a member of the Perseus Group.
    When the fuzzy indeterminacy of quantum mechanics overthrew the orderly world of Isaac Newton, Albert Einstein and Erwin Schrödinger were at the forefront of the revolution. Neither man was ever satisfied with the standard interpretation of quantum mechanics, however, and both rebelled against what they considered the most preposterous aspect of quantum mechanics: its randomness. Einstein famously quipped that God does not play dice with the universe, and Schrödinger constructed his famous fable of a cat that was neither alive nor (...)
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  25.  28
    The Completeness of the Real Line.Matthew E. Moore - 2007 - Critica 39 (117):61-86.
    It is widely taken for granted that physical lines are real lines, i.e., that the arithmetical structure of the real numbers uniquely matches the geometrical structure of lines in space; and that other number systems, like Robinson's hyperreals, accordingly fail to fit the structure of space. Intuitive justifications for the consensus view are considered and rejected. Insofar as it is justified at all, the conviction that physical lines are real lines is a scientific hypothesis which we may one day reject. (...)
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  26.  8
    “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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    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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  28.  1
    Biography of physics.George Gamow - 1961 - New York,: Harper.
    Dr. Gamow has written a view of physics which does not teach basic facts exclusively or dwell completely on biographical data, but rather, Dr. Gamow does both, for each chapter presents one or two great physicts and then discusses the nature and content of their work.
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  29.  39
    Could Testing of the Laws of Physics Ever BE Complete?Kenneth G. Wilson, George E. Smith, Constance K. Barsky & Stanislaw D. Glazek - 2010 - In Harald Fritzsch & K. K. Phua (eds.), Proceedings of the Conference in Honour of Murray Gell-Mann's 80th Birthday. World Scientific.
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  30.  62
    The Causal Closure of Physics in Real World Contexts.George F. R. Ellis - 2020 - Foundations of Physics 50 (10):1057-1097.
    The causal closure of physics is usually discussed in a context free way. Here I discuss it in the context of engineering systems and biology, where strong emergence takes place due to a combination of upwards emergence and downwards causation. Firstly, I show that causal closure is strictly limited in terms of spatial interactions because these are cases that are of necessity strongly interacting with the environment. Effective Spatial Closure holds ceteris parabus, and can be violated by Black Swan (...)
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  31.  8
    Kant’s Philosophy of Physical Science: Metaphysische Anfangsgründe der Naturwissenschaft 1786–1986.Robert E. Butts - 2011 - Springer.
    The papers in this volume are offered in celebration of the 200th anni versary of the pub 1 i cat i on of Inmanue 1 Kant's The MetaphysicaL Foundations of NatupaL Science. All of the es says (including the Introduction) save two were written espe ci ally for thi s volume. Gernot Bohme' s paper is an amended and enlarged version of one originally read in the series of lectures and colloquia in philosophy of science offered by Boston University. My (...)
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  32.  8
    Exploring the Level of Physical Fitness on Physical Activity and Physical Literacy Among Chinese University Students: A Cross-Sectional Study.Cheng Zhang, Yong Liu, Shuang Xu, Raymond Kim-Wai Sum, Ruisi Ma, Pu Zhong, Shixiang Liu & Minghui Li - 2022 - Frontiers in Psychology 13.
    Physical literacy has received considerable attention in the field of physical education and physical activity worldwide. According to recent studies, the level of physical fitness among Chinese university students is gradually decreasing. This study aims to examine the impact of the PF level on PA and PL, as well as the relationships among PF, PA, and PL, in Chinese university students. Participants comprised 798 university students in Chongqing, China. Participants completed the tests of vital capacity, cardiorespiratory fitness, muscular strength, and (...)
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  33. Can Quantum-Mechanical Description of Physical Reality Be Considered Correct?Gilles Brassard & André Allan Méthot - 2010 - Foundations of Physics 40 (4):463-468.
    In an earlier paper written in loving memory of Asher Peres, we gave a critical analysis of the celebrated 1935 paper in which Einstein, Podolsky and Rosen (EPR) challenged the completeness of quantum mechanics. There, we had pointed out logical shortcomings in the EPR paper. Now, we raise additional questions concerning their suggested program to find a theory that would “provide a complete description of the physical reality”. In particular, we investigate the extent to which the EPR argumentation could (...)
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  34.  18
    The Completeness of Scientific Theories. [REVIEW]Thomas Breuer - 1998 - Vienna Circle Institute Yearbook 5:424-429.
    Philosophy of modern physics seemed not to be among the strongholds of post-war German philosophy. As this book testifies, Martin Carrier is among the few exceptions. He makes valuable and original contributions to some important problems in philosophy of science: the theory-ladenness of observation, the possibility of universally valid theories, and the status of physical geometry. I will report first on his main theses and then point to some open problems.
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  35.  31
    The algebra of physical magnitudes.R. M. Cooke & J. Hilgevoord - 1980 - Foundations of Physics 10 (5-6):363-373.
    We define a physical magnitude as an equivalence class of measurement procedures and formulate sufficient restrictions on the equivalence relation to guarantee meaningful algebraic operations between magnitudes. These restrictions are not sufficient to let the Kochen and Specker argument go through. They are, however, stronger than mere statistical equivalence of measurement procedures and thus are relevant to the problem of the completeness of quantum mechanics. In fact, they give rise to a strong argument for the incompleteness of quantum mechanics.
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  36.  6
    Mathematical physics and philosophy of physics (with special consideration of J. von Neumann's work).Miklós Rédei - 2002 - In Michael Heidelberger & Friedrich Stadler (eds.), History of Philosophy of Science: New Trends and Perspectives. 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 (...)
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  37. The Constraint Interpretation of Physical Emergence.James Blachowicz - 2013 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 44 (1):21-40.
    I develop a variant of the constraint interpretation of the emergence of purely physical (non-biological) entities, focusing on the principle of the non-derivability of actual physical states from possible physical states (physical laws) alone. While this is a necessary condition for any account of emergence, it is not sufficient, for it becomes trivial if not extended to types of constraint that specifically constitute physical entities, namely, those that individuate and differentiate them. Because physical organizations with these features are in fact (...)
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  38. 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. McLelland. (...)
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  39.  31
    Mathematical Physics and Philosophy of Physics.Miklós Rédei - 2002 - Vienna Circle Institute Yearbook 9:239-243.
    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 (...)
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  40. 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 (...)
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  41.  13
    Hume’s Natural Philosophy and Philosophy of Physical Science by Matias Slavov (review).Krisztián Pete - 2024 - Hume Studies 49 (1):170-174.
    In lieu of an abstract, here is a brief excerpt of the content:Reviewed by:Hume’s Natural Philosophy and Philosophy of Physical Science by Matias SlavovKrisztián PeteMatias Slavov. Hume’s Natural Philosophy and Philosophy of Physical Science. London: Bloomsbury Academic, 2020. Pp. 216. Hardcover. ISBN 9781350087866, £95.Although the relationship between Hume and Newton is a recurring theme in the Hume literature, Matias Slavov’s book does not seek to contribute to the debate between the traditional (Hume imitated Newton’s natural philosophy) and the critical (Hume (...)
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  42.  15
    Information Theoretic Characterization of Physical Theories with Projective State Space.Marco Zaopo - 2015 - Foundations of Physics 45 (8):943-958.
    Probabilistic theories are a natural framework to investigate the foundations of quantum theory and possible alternative or deeper theories. In a generic probabilistic theory, states of a physical system are represented as vectors of outcomes probabilities and state spaces are convex cones. In this picture the physics of a given theory is related to the geometric shape of the cone of states. In quantum theory, for instance, the shape of the cone of states corresponds to a projective space over (...)
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  43.  23
    Christian Revelation and the Completion of the Aristotelian Revolution. [REVIEW]David B. Burrell - 1989 - Review of Metaphysics 43 (1):172-173.
    This work offers a bold and illuminating exercise in philosophy as narrative, and in doing so presents itself quite consciously as an alternative mode of explanation to the "rationalist paradigm" which dominated Greek philosophy. Yet while acknowledging the inspiration of Hegel, the work hews far more closely than the author of Phänomenologie des Geistes to the actual dialectic of explanation as it worked itself out from Aristotle through Plotinus to Aquinas--to mention only the most prominent milestones. In that respect, the (...)
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  44.  26
    A formal theory of physical necessity.Marcin Tkaczyk - 2007 - Logic and Logical Philosophy 16 (1):65-83.
    A system HW of normal modal logic, developed by R. Bigelow & R. Pargetter is presented. Some formal issues concerning the system are examined, such as completeness, number of distinct modalities and relations to other systems. Some philosophical topics are also discussed. The Authors interpret the system HW as the system of physical (nomic) modalities. It is questioned, whether or not the system HW is justified to be claimed to be the logic of physical necessity. The answer seems to (...)
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  45.  31
    The matter myth: dramatic discoveries that challenge our understanding of physical reality.P. C. W. Davies - 2007 - New York: Simon & Schuster. Edited by John Gribbin.
    In this sweeping survey, acclaimed science writers Paul Davies and John Gribbin provide a complete overview of advances in the study of physics that have revolutionized modern science. From the weird world of quarks and the theory of relativity to the latest ideas about the birth of the cosmos, the authors find evidence for a massive paradigm shift. Developments in the studies of black holes, cosmic strings, solitons, and chaos theory challenge commonsense concepts of space, time, and matter, and (...)
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  46.  15
    Finitely additive states and completeness of inner product spaces.Anatolij Dvurečenskij, Tibor Neubrunn & Sylvia Pulmannová - 1990 - Foundations of Physics 20 (9):1091-1102.
    For any unit vector in an inner product space S, we define a mapping on the system of all ⊥-closed subspaces of S, F(S), whose restriction on the system of all splitting subspaces of S, E(S), is always a finitely additive state. We show that S is complete iff at least one such mapping is a finitely additive state on F(S). Moreover, we give a completeness criterion via the existence of a regular finitely additive state on appropriate systems of (...)
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  47.  8
    Wittgenstein and the Grammar of Physics: A Study of Ludwig Wittgenstein's 1929--1930 Manuscripts and the Roots of His Later Philosophy.Anton Alterman - 2000 - Dissertation, City University of New York
    In 1929 Wittgenstein began to work on the first philosophical manuscripts he had kept since completing the Tractatus Logico-Philosophicus in 1918. The impetus for this was his conviction that the logic of the TLP was flawed: it was unable to account for the fact that a proposition that assigns a single value on a continuum to a simple object thereby excludes all assignments of different values to the object . Consequently Wittgenstein's "atomic propositions" could not be logically independent of one (...)
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  48.  13
    The Poetics of Physics.Chris Jeynes, Michael C. Parker & Margaret Barker - 2023 - Philosophies 8 (1):3.
    Physics has been thought to truly represent reality since at least Galileo, and the foundations of physics are always established using philosophical ideas. In particular, the elegant naming of physical entities is usually very influential in the acceptance of physical theories. We here demonstrate (using current developments in thermodynamics as an example) that both the epistemology and the ontology of physics ultimately rest on poetic language. What we understand depends essentially on the language we use. We wish (...)
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  49.  1
    A Tentative Completion of Quantum Mechanics.Jürg Fröhlich, Zhou Gang & Alessandro Pizzo - 2024 - In Angelo Bassi, Sheldon Goldstein, Roderich Tumulka & Nino Zanghi (eds.), Physics and the Nature of Reality: Essays in Memory of Detlef Dürr. Springer. pp. 151-165.
    We review a proposal of how to complete non-relativistic Quantum Mechanics to a physically meaningful, mathematically precise and logically coherent theory. This proposal has been dubbed ETH-Approach to Quantum Mechanics, “E” standing for “Events,” “T” for “Trees,” and “H” for “Histories.” The ETH-Approach supplies the last one of three pillars Quantum Mechanics can be constructed upon in such a way that its foundations are solid and stable. Two of these pillars are well known. The third one has been proposed quite (...)
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  50.  6
    Exploring the ethics of physical restraints: Students’ questioning.Maki Tanaka - 2023 - Nursing Ethics 30 (3):408-422.
    Background Physical restraints are routinely employed to ensure patient safety in Japanese acute care. Little is known about nursing students' perspectives and how they begin to question their value and knowledge in the face of restraint experiences in clinical practice. Objective To investigate nursing students’ questions about patient restraints and how they understand the ethics of the use of restraints in nursing. Research design Qualitative descriptive research using narrative analysis. Participants and research context Experiential data were generated and thematically analyzed (...)
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