Results for 'Classical physical ontology'

935 found
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  1.  15
    No-signaling in topos formulation and a common ontological basis for classical and non-classical physical theories.Marek Kuś - 2020 - Philosophical Problems in Science 69:129-143.
    Starting from logical structures of classical and quantum mechanics we reconstruct the logic of so-called no-signaling theories, where the correlations among subsystems of a composite system are restricted only by a simplest form of causality forbidding an instantaneous communication. Although such theories are, as it seems, irrelevant for the description of physical reality, they are helpful in understanding the relevance of quantum mechanics. The logical structure of each theory has an epistemological flavor, as it is based on analysis (...)
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  2.  34
    Classical physics and the actualization of quantum pure possibilities.Amihud Gilead - unknown
    This paper differs from any previous view in discussing quantum pure possibilities as individuals, existing independently of any observer or mind. These pure possibilities are also absolutely independent of any metaphysical or logical view that endorses the notion of possible worlds. In my view, the relationship between quantum possibilities and classical physical reality is not between reality as such, as it is in itself, and its phenomena. It is rather between fundamental or primary reality, consisting of quantum pure (...)
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  3.  69
    Symmetry Fundamentalism: A Case Study from Classical Physics.David Schroeren - 2020 - Philosophical Quarterly 71 (2):308-333.
    Physicists have suggested what I call symmetry fundamentalism: the view that symmetries are fundamental aspects of physical reality and that these aspects are more fundamental than what one might ordinarily think of as the fundamental building blocks of the world, such as elementary particles. The goal of this paper is to develop an ontology for classical particle mechanics that provides a precise instance of symmetry fundamentalism.
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  4.  60
    Formal ontology of space, time, and physical entities in classical mechanics.Thomas Bittner - 2018 - Applied ontology 13 (2):135-179.
    Classical (i.e., non-quantum) mechanics is the foundation of many models of dynamical physical phenomena. As such those models inherit the ontological commitments inherent in the underlying physics...
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  5.  44
    The language of classical physics.Edward MacKinnon - 2010 - Linguistic and Philosophical Investigations 9:36-113.
    ABSTRACT. The objectivity of physics has been called into question by social theorists, Kuhnian relativists, and by anomalous aspects of quantum mechanics. Here we focus on one neglected background issue, the categorical structure of the language of classical physics. The first half is an historical overview of the formation of the language of classical physics, beginning with Aristotle's Categories and the novel idea of the quantity of a quality introduced by medieval Aristotelians. Descartes and Newton at-tempted to put (...)
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  6. Ontologies of Common Sense, Physics and Mathematics.Jobst Landgrebe & Barry Smith - 2023 - Archiv.
    The view of nature we adopt in the natural attitude is determined by common sense, without which we could not survive. Classical physics is modelled on this common-sense view of nature, and uses mathematics to formalise our natural understanding of the causes and effects we observe in time and space when we select subsystems of nature for modelling. But in modern physics, we do not go beyond the realm of common sense by augmenting our knowledge of what is going (...)
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  7. A proposal for a metaphysics of self-subsisting structures. I. Classical physics.Antonio Vassallo, Pedro Naranjo & Tim Koslowski - 2022 - Synthese 200 (5):1-32.
    We present a new metaphysical framework for physics that is conceptually clear, ontologically parsimonious, and empirically adequate. This framework relies on the notion of self-subsisting structure, that is, a set of fundamental physical elements whose individuation and behavior are described in purely relational terms, without any need for a background spacetime. Although the specification of the fundamental elements of the ontology depends on the particular physical domain considered---and is thus susceptible to scientific progress---, the empirically successful structural (...)
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  8.  74
    Fundamental physical theories: mathematical structures grounded on a primitive ontology.Valia Allori - 2007 - Dissertation, Rutgers
    In my dissertation I analyze the structure of fundamental physical theories. I start with an analysis of what an adequate primitive ontology is, discussing the measurement problem in quantum mechanics and theirs solutions. It is commonly said that these theories have little in common. I argue instead that the moral of the measurement problem is that the wave function cannot represent physical objects and a common structure between these solutions can be recognized: each of them is about (...)
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  9.  49
    Physics and ontology.Gustav Bergmann - 1961 - Philosophy of Science 28 (1):1-14.
    The recent philosophy of physics is confronted with the new ontology, as it emerges after philosophy proper has fully articulated the linguistic turn. The classical ontologists asserted or denied, controversially, that certain entities "existed." Rather than adding to these controversies, the new ontology uncovers their dialectics. The ontologically problematic entities of physics are of two kinds, represented by forces and particles, respectively. The dialectics has been dominated by eight patterns. Two of these, independence and realism, belong to (...)
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  10.  29
    Quantum Mind and Social Science: Unifying Physical and Social Ontology.Alexander Wendt - 2015 - Cambridge University Press.
    There is an underlying assumption in the social sciences that consciousness and social life are ultimately classical physical/material phenomena. In this ground-breaking book, Alexander Wendt challenges this assumption by proposing that consciousness is, in fact, a macroscopic quantum mechanical phenomenon. In the first half of the book, Wendt justifies the insertion of quantum theory into social scientific debates, introduces social scientists to quantum theory and the philosophical controversy about its interpretation, and then defends the quantum consciousness hypothesis against (...)
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  11.  15
    Solipsism, physical things and personal perceptual space: solipsist ontology, epistemology and communication.Şafak Ural - 2019 - Wilmington, Delaware: Vernon Press.
    Solipsism indicates an epistemological position that denies the existence of ‘others’ by asserting that the ‘self’ is the only thing that can be known to exist. For sophist philosophers, the belief that “we can not know anything, and even if we do so, we cannot communicate it” is central to this theory. However, until now there has been little academic scholarship that has tried to provide answers to the pressing issues raised by solipsism. In Solipsist Ontology: Physical Things (...)
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  12.  17
    Is information something ontological, or physical or perhaps something else? Some remarks on R. Krzanowski approach to concept of information.Łukasz Mścisławski - 2022 - Zagadnienia Filozoficzne W Nauce 73:147-169.
    As one may have noticed, the title of this paper is somewhat provocative. We found Roman Krzanowski’s (2020a,b,c; 2022) proposed approach to the problem of information very intriguing. Our aim here is to highlight some advantages when it comes to answering some fundamental questions in the philosophy of physics and metaphysics, as well as the philosophy of information and computer science. This issue is of great importance, so we propose that the introduction of some subtle distinctions between ontological and epistemological (...)
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  13. Phenomenology, Ontology, and Quantum Physics.Patrick A. Heelan - 2013 - Foundations of Science 18 (2):379-385.
    This essay is dominated by three themes that recur contrapuntally in Heisenberg’s writings: observation, description, and ontology—prompted always by a concern about the role played by the subjective inquirer in scientific meaning-making, and by the ontology of scientific claims. Among the related themes are; the tension between paradigmatic concerns with structure and philosophical concerns with reality, the possibility of scientific revolutions, such as relativity and quantum mechanics, that can overthrow the classical traditions of natural science and the (...)
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  14.  28
    Classical Mechanics and Contemporary Fundamental Physical Research.Marián Ambrozy, Miloš Lokajíček & Michal Valčo - 2019 - Philosophia: International Journal of Philosophy (Philippine e-journal) 20 (2):212-237.
    The contemporary scientific and technological progress builds on the accomplishments of classical mechanics from the 19th century when the so-called ‘European scientific method and values’ were accepted practically by the whole educated world. Most scientific results and conclusions were reached based on the causal ontological approach proposed in principle already by Plato’s Socrates and developed further by Aristotle. Despite the late-modern paradigm shift in science, the topicality of the ontological approach proposed by Aristotle remains. On the other hand, 19th (...)
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  15.  24
    An Operational Notion of Classicality Based on Physical Principles.Shubhayan Sarkar - 2023 - Foundations of Physics 53 (2):1-16.
    One of the basic observations of the classical world is that physical entities are real and can be distinguished from each other. However, within quantum theory, the idea of physical realism is not well established. A framework to analyse how observations in experiments can be described using some physical states of reality was recently developed, known as ontological models framework. Different principles when imposed on the ontological level give rise to different theories, the validity of which (...)
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  16. The ontological roots of human science: The message of evolution - the physics of freedom (choice).András Balázs - 2007 - World Futures 63 (8):568 – 583.
    The original proposal of H. H. Pattee (1971) of basing quantum theoretical measurement theory on the theory of the origin of life, and its far reaching consequences, is discussed in the light of a recently emerging biological paradigm of internal measurement. It is established that the "measurement problem" of quantum physics can, in principle, be traced back to the internal material constraints of the biological organisms, where choice is a fundamental attribute of the self-measurement of matter. In this light, which (...)
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  17.  35
    Ontology and Mathematics in Classical Field Theories and Quantum Mechanics.Adriano Angelucci & Vincenzo Fano - 2010 - Humana Mente 4 (13).
    A draft of a possible comparison between the use made of mathematics in classical field theories and in quantum mechanics is presented. Hilbert’s space formalism, although not only elegant and powerful but intuitive as well, does not give us a spatio-temporal representation of physical events. The picture of the electromagnetic field as an entity which is real in itself– i.e., as a wave without support – fostered by the emergence of special relativity can be seen as the first (...)
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  18.  88
    Classical versus quantum ontology.P. Busch - 2002 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 33 (3):517-539.
  19. From Quantum Physics to Classical Metaphysics.William Simpson - 2021 - In William Simpson, Koons Robert & James Orr, Neo-Aristotelian Metaphysics and the Theology of Nature. New York, NY, USA: Routledge. pp. 21-65.
    In this chapter, I argue that Aristotle’s doctrine of hylomorphism, which conceived the natural world as consisting of substances which are metaphysically composed of matter and form, is ripe for rehabilitation in the light of quantum physics. I begin by discussing Aristotle’s conception of matter and form, as it was understood by Aquinas, and how Aristotle’s doctrine of hylomorphism was ‘physicalised’ and eventually abandoned with the rise of microphysicalism. I argue that the phenomenon of quantum entanglement, and the emergence of (...)
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  20.  84
    Ontology for Collapse Theories.Wayne C. Myrvold - 2018 - In Shan Gao, Collapse of the Wave Function: Models, Ontology, Origin, and Implications. New York, NY: Cambridge University Press.
    In this chapter, I will discuss what it takes for a dynamical collapse theory to provide a reasonable description of the actual world. I will start with discussions of what is required, in general, of the ontology of a physical theory, and then apply it to the quantum case. One issue of interest is whether a collapse theory can be a quantum state monist theory, adding nothing to the quantum state and changing only its dynamics. Although this was (...)
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  21. Classical versus Quantum Ontology-Book Review Essay: D. Home, Conceptual Foundations of Quantum Mechanics.P. Busch - forthcoming - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics.
  22.  41
    An Ontology of Nature with Local Causality, Parallel Lives, and Many Relative Worlds.Mordecai Waegell - 2018 - Foundations of Physics 48 (12):1698-1730.
    Parallel lives is an ontological model of nature in which quantum mechanics and special relativity are unified in a single universe with a single space-time. Point-like objects called lives are the only fundamental objects in this space-time, and they propagate at or below c, and interact with one another only locally at point-like events in space-time, very much like classical point particles. Lives are not alive in any sense, nor do they possess consciousness or any agency to make decisions—they (...)
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  23.  44
    The theoretical apparatus of semantic realism: A new language for classical and quantum physics. [REVIEW]Claudio Garola & Luigi Solombrino - 1996 - Foundations of Physics 26 (9):1121-1164.
    The standard interpretation of quantum physics (QP) and some recent generalizations of this theory rest on the adoption of a rerificationist theory of truth and meaning, while most proposals for modifying and interpreting QP in a “realistic” way attribute an ontological status to theoretical physical entities (ontological realism). Both terms of this dichotomy are criticizable, and many quantum paradoxes can be attributed to it. We discuss a new viewpoint in this paper (semantic realism, or briefly SR), which applies both (...)
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  24.  51
    Individuality and the Account of Nonlocality: The Case for the Particle Ontology in Quantum Physics.Michael Esfeld - 2019 - In Olimpia Lombardi, Quantum Worlds: Perspectives on the Ontology of Quantum Mechanics. New York, NY: Cambridge University Press. pp. 222--244.
    The paper explains why an ontology of permanent point particles that are individuated by their relative positions and that move on continuous trajectories as given by a deterministic law of motion constitutes the best solution to the measurement problem in both quantum mechanics and quantum field theory. This case is made by comparing the Bohmian theory to collapse theories such as the GRW matter density and the GRW flash theory. It is argued that the Bohmian theory makes the minimal (...)
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  25. Quantum Ontology: A Guide to the Metaphysics of Quantum Mechanics.Peter J. Lewis - 2016 - New York, NY: Oxford University Press USA.
    Metaphysicians should pay attention to quantum mechanics. Why? Not because it provides definitive answers to many metaphysical questions-the theory itself is remarkably silent on the nature of the physical world, and the various interpretations of the theory on offer present conflicting ontological pictures. Rather, quantum mechanics is essential to the metaphysician because it reshapes standard metaphysical debates and opens up unforeseen new metaphysical possibilities. Even if quantum mechanics provides few clear answers, there are good reasons to think that any (...)
  26.  29
    Physics and reality.Kurt Riezler - 1940 - London,: Oxford University PRess.
    Pt. A. The impasse. The problem of motion -- Classical physics -- Quantum physics -- Event -- pt. B. The other way. Concreteness -- Substance -- Motion -- Time -- The one and the many -- Nature and man.
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  27.  7
    Physical Entities and Spatiotemporal Junk.Wilfredo Quezada Pulido & Luis Pavez - 2024 - Revista Colombiana de Filosofía de la Ciencia 24 (48).
    A classic challenge for any theory of physical causation based on conserved quantities and formulated within the framework of special relativity theory, has been to distinguish two regions, that of genuine causal relationships and that of those spurious or noncausal ones. In the causal processes theory defended by P. Dowe, this is done by introducing a criterion based on the possession of a conserved quantity, which would seem to efficiently demarcate between causal processes and causal pseudoprocesses. However, faced with (...)
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  28.  27
    Why Power (Dunamis) Ontology of Causation is Relevant to Managers: Dialogue as an Illustration.Marja-Liisa Kakkuri-Knuuttila - 2023 - Philosophy of Management 22 (3):449-472.
    Since management is about influencing - influencing people who work in the organization, the structure and practices of the organization, as well as its environment - how ‘influencing’ is understood evidently makes a huge difference. The still popular empiricist concept of cause-effect relations as presupposing regularities is mistaken, since it forms no sufficient basis for action in new and unique situations. As alternative notions of causation, the paper discusses the Critical Realist conception of causal powers and the counterfactual conditional view, (...)
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  29.  27
    Nature’s affordances and formation length: The ontology of quantum physical experiments.Steen Brock & Rom Harré - 2016 - SATS 17 (1):1-20.
    We argue that Bohrian complementarity is a framework for making new ontological sense of scientific findings. It provides a conceptual pattern for making sense of the results of an empirical investigation into new realms or fields of natural properties. The idea of “formation length” engenders this mutual attunement of evidence and reality. Physicists want to be able to ascribe ontological features to atomic constituents and atomic processes such as “emission”, “impact”, or “change of energy-state”. These expressions supposedly refer to “local” (...)
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  30. Physics and the Philosophy of Science – Diagnosis and analysis of a misunderstanding, as well as conclusions concerning biology and epistemology.Rudolf Lindpointner - manuscript
    For two reasons, physics occupies a preeminent position among the sciences. On the one hand, due to its recognized position as a fundamental science, and on the other hand, due to the characteristic of its obvious certainty of knowledge. For both reasons it is regarded as the paradigm of scientificity par excellence. With its focus on the issue of epistemic certainty, philosophy of science follows in the footsteps of classical epistemology, and this is also the basis of its 'judicial' (...)
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  31.  69
    The reality of relations: the case from quantum physics.Michael Esfeld - unknown
    As far as classical physics is concerned, it is possible to trace causal relations between physical objects back to intrinsic properties of these objects. On this view, causal relations turn out to be internal instead of external relations, supervening on intrinsic properties of the relata. However, one can raise doubts about this view already in Newtonian mechanics. The decisive blow to this view comes from quantum physics, with Bell’s theorem proving that no dynamics based on local, intrinsic properties (...)
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  32. Realism and Objectivism in Quantum Mechanics.Vassilios Karakostas - 2012 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 43 (1):45-65.
    The present study attempts to provide a consistent and coherent account of what the world could be like, given the conceptual framework and results of contemporary quantum theory. It is suggested that standard quantum mechanics can, and indeed should, be understood as a realist theory within its domain of application. It is pointed out, however, that a viable realist interpretation of quantum theory requires the abandonment or radical revision of the classical conception of physical reality and its traditional (...)
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  33.  35
    Processual Thinking in the Ontological and Epistemological context of Quantum Mechanics.Vladimir I. Arshinov & Vladimir G. Budanov - 2019 - Russian Journal of Philosophical Sciences 62 (7):21-36.
    The problem of commensurability/incommensurability of different cultural codes is a key problem of modern civilizational development. This is the problem of the search for communicative unity in the world of cultural and biological diversity, which has to be protected, and the search for the cohesion of different Umwelten, of semiotically-defined artificial and natural environments, of ecological and cognitive niches, taking into account that each of them has their own identity and uniqueness. The purpose of the article is to draw attention (...)
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  34.  59
    Mathematical Vectors and Physical Vectors.Ingvar Johansson - 2009 - Dialectica 63 (4):433-447.
    From a metaphysical point of view, it is important clearly to see the ontological difference between what is studied in mathematics and mathematical physics, respectively. In this respect, the paper is concerned with the vectors of classical physics. Vectors have both a scalar magnitude and a direction, and it is argued that neither conventionalism nor wholesale anti‐conventionalism holds true of either of these components of classical physical vectors. A quantification of a physical dimension requires the discovery (...)
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  35.  75
    To Be Continued: The Genidentity of Physical and Biological Processes.Alexandre Guay & Thomas Pradeu - 2015 - In Thomas Pradeu & Alexandre Guay, Individuals Across The Sciences. New York, État de New York, États-Unis: Oxford University Press. pp. 317-347.
    The concept of genidentity has been proposed as a way to better understand identity through time, especially in physics and biology. The genidentity view is utterly anti-substantialist in so far as it suggests that the identity of X through time does not presuppose whatsoever the existence of a permanent “core” or “substrate” of X. Yet applications of this concept to real science have been scarce and unsatisfying. In this paper, our aim is to show that a well-defined concept of functional (...)
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  36.  41
    A Minimalist Ontology of the Natural World.Michael Esfeld & Dirk-Andre Deckert - 2017 - New York: Routledge. Edited by Dirk-André Deckert, Dustin Lazarovici, Andrea Oldofredi & Antonio Vassallo.
    This book seeks to work out which commitments are minimally sufficient to obtain an ontology of the natural world that matches all of today’s well-established physical theories. We propose an ontology of the natural world that is defined only by two axioms: (1) There are distance relations that individuate simple objects, namely matter points. (2) The matter points are permanent, with the distances between them changing. Everything else comes in as a means to represent the change in (...)
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  37. Quantum Mechanics, Fields, Black Holes, and Ontological Plurality.Gustavo E. Romero - 2024 - Philosophies 9 (4):97-121.
    The ontology behind quantum mechanics has been the subject of endless debate since the theory was formulated some 100 years ago. It has been suggested, at one time or another, that the objects described by the theory may be individual particles, waves, fields, ensembles of particles, observers, and minds, among many other possibilities. I maintain that these disagreements are due in part to a lack of precision in the use of the theory’s various semantic designators. In particular, there is (...)
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  38. Whatever is Never and Nowhere is Not: Space, Time, and Ontology in Classical and Quantum Gravity.Gordon Scott Belot - 1996 - Dissertation, University of Pittsburgh
    Substantivalists claim that spacetime enjoys an existence analogous to that of material bodies, while relationalists seek to reduce spacetime to sets of possible spatiotemporal relations. The resulting debate has been central to the philosophy of space and time since the Scientific Revolution. Recently, many philosophers of physics have turned away from the debate, claiming that it is no longer of any relevance to physics. At the same time, there has been renewed interest in the debate among physicists working on quantum (...)
     
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  39. Logic, mathematics, physics: from a loose thread to the close link: Or what gravity is for both logic and mathematics rather than only for physics.Vasil Penchev - 2023 - Astrophysics, Cosmology and Gravitation Ejournal 2 (52):1-82.
    Gravitation is interpreted to be an “ontomathematical” force or interaction rather than an only physical one. That approach restores Newton’s original design of universal gravitation in the framework of “The Mathematical Principles of Natural Philosophy”, which allows for Einstein’s special and general relativity to be also reinterpreted ontomathematically. The entanglement theory of quantum gravitation is inherently involved also ontomathematically by virtue of the consideration of the qubit Hilbert space after entanglement as the Fourier counterpart of pseudo-Riemannian space. Gravitation can (...)
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  40.  56
    Can the Ontology of Bohmian Mechanics Consists Only in Particles? The PBR Theorem Says No.Shan Gao - 2023 - Foundations of Physics 53 (6):1-21.
    The meaning of the wave function is an important unresolved issue in Bohmian mechanics. On the one hand, according to the nomological view, the wave function of the universe or the universal wave function is nomological, like a law of nature. On the other hand, the PBR theorem proves that the wave function in quantum mechanics or the effective wave function in Bohmian mechanics is ontic, representing the ontic state of a physical system in the universe. It is usually (...)
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  41. Explanation of physical phenomena by laws of nature.Peter Mittelstaedt - 2012 - Epistemologia 2:234-246.
    For an ‘explanation' of physical facts by laws of nature, we have to establish a relation between physical facts and laws of nature. It is an open question, whether the laws of nature govern the facts with necessity or whether the laws are related to the facts merely by supervenience. In addition, it is not quite clear, whether the known laws of physics describe only artificially simplified cases, e.g. isolated situations, or whether the laws of physics actually grasp (...)
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  42. Event Ontology, Habit, and Agency.Philip Tryon - 2019 - Process Studies 48 (1):67-87.
    Abstract: The following is an outline of an emerging foundation for science that begins to explain living forms and their patterns of movement beyond the sphere of mechanistic interactions. Employing an event ontology based on a convergence of quantum physics and Alfred North Whitehead’s process philosophy, coupled with the controversial yet promising theory of formative causation, this development will explore possible influences on the outcomes of events beyond any combination of external forces, laws of Nature, and chance. If it (...)
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  43.  32
    The Philosophy of Nature of the Natural Realism. The Operator Algebra from Physics to Logic.Gianfranco Basti - 2022 - Philosophies 7 (6):121.
    This contribution is an essay of formal philosophy—and more specifically of formal ontology and formal epistemology—applied, respectively, to the philosophy of nature and to the philosophy of sciences, interpreted the former as the ontology and the latter as the epistemology of the modern mathematical, natural, and artificial sciences, the theoretical computer science included. I present the formal philosophy in the framework of the category theory (CT) as an axiomatic metalanguage—in many senses “wider” than set theory (ST)—of mathematics and (...)
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  44. Quantum Physics: An overview of a weird world: A guide to the 21st century quantum revolution.Marco Masi - 2019 - Indy Edition.
    This second volume is a continuation of the first volume’s 20th century conceptual foundations of quantum physics extending its view to the principles and research fields of the 21st century. A summary of the standard concepts, from modern advanced experimental tests of 'quantum ontology’ to the interpretations of quantum mechanics, the standard model of particle physics, and the mainstream quantum gravity theories. A state-of-the-art treatise that reports on the recent developments in quantum computing, classical and quantum information theory, (...)
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  45.  7
    Philosophy and logic of quantum physics: an investigation of the metaphysical and logical implications of quantum physics.Jan Philipp Dapprich - 2016 - New York: Peter Lang Edition. Edited by Annika Schuster.
    The book discusses philosophical and logical problems of quantum physics and its interpretations. Emphasis lies on the compatibility of quantum physics with classical logic and various ontological stances.
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  46.  16
    Quantum Physics and the Philosophical Tradition. [REVIEW]O. H. S. - 1969 - Review of Metaphysics 22 (3):576-576.
    This book is a preliminary treatment investigating how quantum physics' view of the world is related to the central concepts and doctrines of the western philosophical tradition. Recognizing the analogy between the subject-object distinction in philosophy and the instrument-system distinction in physics, Petersen sees that the problems of description in quantum theory and in philosophy have a profound kinship and suggests that quantal description and the concept of complementarity might play an important role in the solution of those problems. A (...)
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  47. Can A Quantum Field Theory Ontology Help Resolve the Problem of Consciousness?Anand Rangarajan - 2019 - In Siddheshwar Rameshwar Bhatt, Quantum Reality and Theory of Śūnya. Springer. pp. 13-26.
    The hard problem of consciousness arises in most incarnations of present day physicalism. Why should certain physical processes necessarily be accompanied by experience? One possible response is that physicalism itself should be modified in order to accommodate experience: But, modified how? In the present work, we investigate whether an ontology derived from quantum field theory can help resolve the hard problem. We begin with the assumption that experience cannot exist without being accompanied by a subject of experience (SoE). (...)
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  48. (1 other version)Lessons from realistic physics for the metaphysics of quantum theory.David Wallace - 2018 - Synthese:1-16.
    Quantum mechanics, and classical mechanics, are framework theories that incorporate many different concrete theories which in general cannot be arranged in a neat hierarchy, but discussion of ‘the ontology of quantum mechanics’ tends to proceed as if quantum mechanics were a single concrete theory, specifically the physics of nonrelativistically moving point particles interacting by long-range forces. I survey the problems this causes and make some suggestions for how a more physically realistic perspective ought to influence the metaphysics of (...)
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  49. How to minimize ontological commitments: a grounding-reductive approach.Reuben Sass - 2022 - Synthese 200 (4):1-22.
    Some revisionary ontologies are highly parsimonious: they posit far fewer entities than what we quantify over in ordinary discourse. The most radical examples are minimal ontologies, on which physical simples are the only things that exist. Highly parsimonious ontologies, and especially minimal ones, face the challenge of either accounting for the truth of our ordinary quantificational discourse, or paraphrasing such discourse away. Common strategies for addressing this challenge include classical reduction, paraphrase nihilism, and a distinction between ontological and (...)
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  50. An Ontological Critique of the Trans-Ontology of Enrique Dussel.Andrew B. Irvine - 2011 - Sophia 50 (4):603-624.
    Enrique Dussel has developed a sweeping philosophical critique of the eurocentricity of Western habits of thought and action, with the aim of articulating an ‘ethics of liberation’ that takes the part distinctively of ‘the victims’ of the world system. The heart of Dussel’s effort is an ostensibly new method, ‘analectic’ or ‘anadialectic,’ which comes about through the ‘revelation’ of the other, and goes beyond the self-enclosure that, Dussel asserts, typifies dialectic in Western ontology. Thus, he takes his position to (...)
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