Results for 'Characterization of physical'

969 found
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  1.  20
    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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  2. (1 other version)A note on information theoretic characterizations of physical theories.Hans Halvorson - 2003 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 35 (2):277-293.
    Clifton, Bub, and Halvorson (CBH) have recently argued that quantum theory is characterized by its satisfaction of three fundamental information-theoretic constraints. However, it is not difficult to construct apparent counterexamples to the CBH characterization theorem. In this paper, we discuss the limits of the characterization theorem, and we provide some technical tools for checking whether a theory (specified in terms of the convex structure of its state space) falls within these limits.
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  3. Why ‘non-mental’ won’t work: on Hempel’s dilemma and the characterization of the ‘physical’.Neal Judisch - 2008 - Philosophical Studies 140 (3):299 - 318.
    Recent discussions of physicalism have focused on the question how the physical ought to be characterized. Many have argued that any characterization of the physical should include the stipulation that the physical is non-mental, and others have claimed that a systematic substitution of ‘non-mental’ for ‘physical’ is all that is needed for philosophical purposes. I argue here that both claims are incorrect: substituting ‘non-mental’ for ‘physical’ in the causal argument for physicalism does not deliver (...)
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  4. Toward a Characterization of Theoretical Physics in Germany.Russell McCormmach & Christa Jungnickel - 2017 - In Russell McCormmach & Christa Jungnickel (eds.), The Second Physicist: On the History of Theoretical Physics in Germany. Springer Verlag.
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  5.  49
    A mathematical characterization of the physical structure of observers.Matthew J. Donald - 1995 - Foundations of Physics 25 (4):529-571.
    It is proposed that the physical structure of an observer in quantum mechanics is constituted by a pattern of elementary localized switching events. A key preliminary step in giving mathematical expression to this proposal is the introduction of an equivalence relation on sequences of spacetime sets which relates a sequence to any other sequence to which it can be deformed without change of causal arrangement. This allows an individual observer to be associated with a finite structure. The identification of (...)
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  6.  58
    The characterization of systems identity in the Physical and the Biological Sciences.Francis Bailly - 1994 - World Futures 42 (1):11-19.
  7.  15
    Porosity Characterization of Thermal Barrier Coatings by Ultrasound with Genetic Algorithm Backpropagation Neural Network.Shuxiao Zhang, Gaolong Lv, Shifeng Guo, Yanhui Zhang & Wei Feng - 2021 - Complexity 2021:1-9.
    Porosity is considered as one of the most important indicators for the characterization of the comprehensive performance of thermal barrier coatings. In this study, the ultrasonic technique and the artificial neural network optimized with the genetic algorithm are combined to develop an intelligent method for automatic detection and accurate prediction of TBCs’s porosity. A series of physical models of plasma-sprayed ZrO2 coating are established with a thickness of 288 μm and porosity varying from 5.71% to 26.59%, and the (...)
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  8. On characterizing the physical.Jessica Wilson - 2006 - Philosophical Studies 131 (1):61-99.
    How should physical entities be characterized? Physicalists, who have most to do with the notion, usually characterize the physical by reference to two components: 1. The physical entities are the entities treated by fundamental physics with the proviso that 2. Physical entities are not fundamentally mental (that is, do not individually possess or bestow mentality) Here I explore the extent to which the appeals to fundamental physics and to the NFM (“no fundamental mentality”) constraint are appropriate (...)
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  9.  24
    Einstein and the Laws of Physics.Friedel Weinert - 2007 - Physics and Philosophy.
    The purpose of this paper is to highlight the importance of constraints in the theory of relativity and, in particular, what philosophical work they do for Einstein's views on the laws of physics. Einstein presents a view of local ``structure laws'' which he characterizes as the most appropriate form of physical laws. Einstein was committed to a view of science, which presents a synthesis between rational and empirical elements as its hallmark. If scientific constructs are free inventions of the (...)
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  10.  53
    Characterizations of Commutative POV Measures.Anna Jenčová & Sylvia Pulmannová - 2009 - Foundations of Physics 39 (6):613-624.
    Two different characterizations of POV measures with commutative range are compared using a representation of some stochastic operators by (weak) Markov kernels. A representation by Choquet theorem is obtained as an integral over functions of a sharp observable appearing in one of the characterizations. A Naimark extension is constructed.
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  11.  41
    A Mathematical Characterization of Quantum Gaussian Stochastic Evolution Schemes.D. Salgado, J. L. Sánchez-Gómez & M. Ferrero - 2006 - Foundations of Physics 36 (4):526-540.
    We give a common mathematical characterization of relevant stochastic evolution schemes built up in the literatute to attack the quantum measurement problem. This characterization is based on two hypotheses, namely, (i) the trace conservation with probability one and (ii) the existence of a complex phase determining a linear support for the stochastic process driving the random evolution.
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  12.  49
    From Data to Quanta: Niels Bohr’s Vision of Physics.Slobodan Perovic - 2021 - University of Chicago Press.
    Niels Bohr was a central figure in quantum physics, well known for his work on atomic structure and his contributions to the Copenhagen interpretation of quantum mechanics. In this book, philosopher of science Slobodan Perović explores the way Bohr practiced and understood physics, and analyzes its implications for our understanding of modern science. Perović develops a novel approach to Bohr’s understanding of physics and his method of inquiry, presenting an exploratory symbiosis of historical and philosophical analysis that uncovers the key (...)
  13. Laws of physics and the universe.Yuri Balashov - manuscript
    Are the laws of nature real? Do they belong to the world or merely reflect the way we speak about it? And if they are real, what sort of entity are they? These questions have been intensely debated by philosophers. Modern cosmology, however, has given such questions a new twist by introducing a unique perspective on physical reality, the perspective which I shall call the cosmological point of view. In this perspective, the universe as a whole presents itself as (...)
     
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  14. On the extension of Beth's semantics of physical theories.Bas C. van Fraassen - 1970 - Philosophy of Science 37 (3):325-339.
    A basic aim of E. Beth's work in philosophy of science was to explore the use of formal semantic methods in the analysis of physical theories. We hope to show that a general framework for Beth's semantic analysis is provided by the theory of semi-interpreted languages, introduced in a previous paper. After developing Beth's analysis of nonrelativistic physical theories in a more general form, we turn to the notion of the 'logic' of a physical theory. Here we (...)
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  15. An ontology of health: A characterization of human health and existence.Ryan J. Fante - 2009 - Zygon 44 (1):65-84.
    The pursuit of health is one of the most basic and prevalent concerns of humanity. In order to better attain and preserve health, a fundamental and unified description of the concept is required. Using Paul Tillich's ontological framework, I introduce a complete characterization of health and disease is that is useful to the philosophy of medicine and for health-care workers. Health cannot be understood merely as proper functioning of the physical body or of the separated levels of body, (...)
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  16.  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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  17.  17
    Realization and characterization of quantum nondemolition measurements in optics.J. Ph Poizat, J. F. Roch & P. Grangier - 1995 - In M. Ferrero & Alwyn van der Merwe (eds.), Fundamental Problems in Quantum Physics. Springer. pp. 73--237.
  18. On Representing Information: A Characterization of the Analog/Digital Distinction.Aldo Frigerio, Alessandro Giordani & Luca Mari - 2013 - Dialectica 67 (4):455-483.
    The common account of the analog vs digital distinction is based on features of physical systems, being related to the usage of continuous vs discrete supports respectively. It is proposed here to alternatively characterize the concepts of analog and digital as related to coding systems, of which a formal definition is given, by suggesting that the distinction refers to the strategy adopted to define the coding function: extensional in digital systems, isomorphic intensional in analog systems. This thesis is supported (...)
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  19.  14
    Personality-Related Determinants of Physical Activity Among Polish and Spanish Physical Education Students.Maria Gacek, Grażyna Kosiba, Agnieszka Wojtowicz, Guillermo F. López Sánchez & Jacek Szalewski - 2022 - Frontiers in Psychology 12.
    We aimed to analyze personality-related determinants of physical activity among Polish and Spanish physical education students. The study was conducted among 219 Polish and 280 Spanish PE students, using the International Physical Activity Questionnaire and the NEO-FFI Personality Inventory. Compared with Spanish PE students, their Polish counterparts are characterized by a higher level of extraversion and conscientiousness and a lower level of neuroticism. The level of total physical activity for all students was 8,697.21 METs, and this (...)
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  20. E. W. Beth as a philosopher of physics.Dennis Dieks - 2011 - Synthese 179 (2):271-284.
    This paper examines E. W. Beth's work in the philosophy of physics, both from a historical and a systematic point of view. Beth saw the philosophy of physics first of all as an opportunity to illustrate and promulgate a new and modern general approach to the philosophy of nature and to philosophy tout court: an approach characterized negatively by its rejection of all traditional metaphysics and positively by its firm orientation towards science. Beth was successful in defending this new ideology, (...)
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  21.  70
    Coalgebras, Chu Spaces, and Representations of Physical Systems.Samson Abramsky - 2013 - Journal of Philosophical Logic 42 (3):551-574.
    We investigate the use of coalgebra to represent quantum systems, thus providing a basis for the use of coalgebraic methods in quantum information and computation. Coalgebras allow the dynamics of repeated measurement to be captured, and provide mathematical tools such as final coalgebras, bisimulation and coalgebraic logic. However, the standard coalgebraic framework does not accommodate contravariance, and is too rigid to allow physical symmetries to be represented. We introduce a fibrational structure on coalgebras in which contravariance is represented by (...)
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  22. Learnability of state spaces of physical systems is undecidable.Petr Spelda & Vit Stritecky - 2024 - Journal of Computational Science 83 (December 2024):1-7.
    Despite an increasing role of machine learning in science, there is a lack of results on limits of empirical exploration aided by machine learning. In this paper, we construct one such limit by proving undecidability of learnability of state spaces of physical systems. We characterize state spaces as binary hypothesis classes of the computable Probably Approximately Correct learning framework. This leads to identifying the first limit for learnability of state spaces in the agnostic setting. Further, using the fact that (...)
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  23.  31
    Mathematical Demonstration and Experimental Activity: A Wittgensteinian Philosophy of Physics.Michel Bitbol - 2018 - Philosophical Investigations 41 (2):188-203.
    This article aims at reducing the gap between mathematics and physics from a Wittgensteinian point of view. This gap is usually characterized by two discriminating features. The propositions of physics assert something which might be false; they have a hypothetical character. On the contrary, since mathematical propositions are rules that condition the form of assertions, they remain immune from falsification. The propositions of physics refer to facts that may confirm or refute them. On the contrary, since mathematical propositions have no (...)
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  24. Nurses’ ethical reasoning in cases of physical restraint in acute elderly care: a qualitative study.Sabine Goethals, Bernadette Dierckx de Casterlé & Chris Gastmans - 2013 - Medicine, Health Care and Philosophy 16 (4):983-991.
    In their practice, nurses make daily decisions that are ethically informed. An ethical decision is the result of a complex reasoning process based on knowledge and experience and driven by ethical values. Especially in acute elderly care and more specifically decisions concerning the use of physical restraint require a thoughtful deliberation of the different values at stake. Qualitative evidence concerning nurses’ decision-making in cases of physical restraint provided important insights in the complexity of decision-making as a trajectory. However (...)
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  25. Counting the Particles: Entity and Identity in the Philosophy of Physics.Francesco Berto - 2017 - Metaphysica 18 (1):69-89.
    I would like to attack a certain view: The view that the concept of identity can fail to apply to some things although, for some positive integer n, we have n of them. The idea of entities without self-identity is seriously entertained in the philosophy of quantum mechanics. It is so pervasive that it has been labelled the Received View. I introduce the Received View in Section 1. In Section 2 I explain what I mean by entity, and I argue (...)
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  26. A mereological characterization of physicalism.David Pineda - 2006 - International Studies in the Philosophy of Science 20 (3):243 – 266.
    Physicalism is usually understood as the claim that every empirical entity is or is determined by physical entities. The claim is however imprecise until it is clarified what are the physical entities in question. A sceptical argument in the form of a dilemma tries to show that this problem of formulation of physicalism cannot be adequately met. If we understand physical entities as the entities introduced by current physics, the resulting claim becomes most probably false. If we (...)
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  27.  24
    Potential Functions and the Characterization of Economics-Based Information.Emmanuel Haven - 2015 - Foundations of Physics 45 (10):1394-1406.
    The formulation of quantum mechanics as a diffusion process by Nelson provides for an interesting approach on how we may transit from classical mechanics into quantum mechanics. Besides the presence of the real potential function, another type of potential function forms an intrinsic part of this theory. In this paper we attempt to show how both types of potential functions can have a use in a resolutely macroscopic context like financial asset pricing. We are particularly interested in uncovering how the (...)
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  28. Physicalism and Supervenience: A Case for a New Sense of Physical Duplication.Michael Roche - 2016 - Erkenntnis 81 (4):669-681.
    Physicalism is the view, roughly, that everything is physical. This thesis is often characterized in terms of a particular supervenience thesis. Central to this thesis is the idea of physical duplication. I argue that the standard way of understanding physical duplication leads—along with other claims—to a sub-optimal consequence for the physicalist. I block this consequence by shifting to an alternative sense of physical duplication. I then argue that physicalism is best characterized by a supervenience thesis that (...)
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  29.  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 of (...)
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  30.  6
    A Critical Analysis of Current Characterizations of Categorical Properties: Their Insufficiencies in Addressing the Individuation Regress in Dispositionalism.Jing Yu - forthcoming - Theoria.
    Dispositionalism confronts the well‐known challenge of the regress of the individuation of dispositional properties. Proposed solutions to this issue can be broadly categorised into two types: Alexander Bird's holistic‐graph approach, which asserts that dispositional properties can be uniquely individuated by their positions within the holistic graph formed by manifestation‐stimulus relations, and the dispositional‐categorical mixed/dual views, which introduce non‐dispositional (categorical) properties to circumvent the regress. This article critically examines the latter approach, contending that the current characterizations of categorical properties within this (...)
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  31. Characterizing Entropy in Statistical Physics and in Quantum Information Theory.Bernhard Baumgartner - 2014 - Foundations of Physics 44 (10):1107-1123.
    A new axiomatic characterization with a minimum of conditions for entropy as a function on the set of states in quantum mechanics is presented. Traditionally unspoken assumptions are unveiled and replaced by proven consequences of the axioms. First the Boltzmann–Planck formula is derived. Building on this formula, using the Law of Large Numbers—a basic theorem of probability theory—the von Neumann formula is deduced. Axioms used in older theories on the foundations are now derived facts.
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  32. Revision of Phenomenology for Mathematical Physics.Masaki Hrada - 2008 - Proceedings of the Xxii World Congress of Philosophy 43:73-80.
    Fundamental notions Husserl introduced in Ideen I, such as epochè, reality, and empty X as substrate, might be useful for elucidating how mathematical physics concepts are produced. However, this is obscured in the context of Husserl’s phenomenology itself. For this possibility, the author modifies Husserl’s fundamental notions introduced for pure phenomenology, which found all sciences on the absolute Ego. Subsequently, the author displaces Husserl's phenomenological notions toward the notions operating inside scientific activities themselves and shows this using a case study (...)
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  33. Physically Similar Systems: a history of the concept.Susan G. Sterrett - 2017 - In Magnani Lorenzo & Bertolotti Tommaso Wayne (eds.), Springer Handbook of Model-Based Science. Springer. pp. 377-412.
    The concept of similar systems arose in physics, and appears to have originated with Newton in the seventeenth century. This chapter provides a critical history of the concept of physically similar systems, the twentieth century concept into which it developed. The concept was used in the nineteenth century in various fields of engineering, theoretical physics and theoretical and experimental hydrodynamics. In 1914, it was articulated in terms of ideas developed in the eighteenth century and used in nineteenth century mathematics and (...)
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  34.  47
    Concept and Formalization of Constellatory Self-Unfolding: A Novel Perspective on the Relation between Quantum and Relativistic Physics.Albrecht von Müller & Elias Zafiris - 2018 - Cham: Springer. Edited by Elias Zafiris.
    This volume develops a fundamentally different categorical framework for conceptualizing time and reality. The actual taking place of reality is conceived as a “constellatory self-unfolding” characterized by strong self-referentiality and occurring in the primordial form of time, the not yet sequentially structured “time-space of the present.” Concomitantly, both the sequentially ordered aspect of time and the factual aspect of reality appear as emergent phenomena that come into being only after reality has actually taken place. In this new framework, time functions (...)
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  35. Physics and Astronomy in 18th Century Painting in the Context of Religious and Mythological Thinking of the Epoch.Агратина Е.Е - 2025 - Philosophy and Culture (Russian Journal) 1:40-51.
    The Age of Enlightenment was characterized by passionate scientific discussions, which involved not only scientists, but also representatives of various social circles. Sciences such as physics and astronomy are becoming a hobby and entertainment, scientific experiments are being conducted at home, friends and acquaintances are invited to conduct them, and amateur scientific courses are being organized. The article highlights how these processes were reflected in the painting of the XVIII century. Science is considered not only as a widespread subject in (...)
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  36.  36
    Physics as a Mode of Production.Aristides Baltas - 1993 - Science in Context 6 (2):569-616.
    The ArgumentStarting from the thesis that a science constructs the knowledge of the part of the world allotted to it, the present paper aims at bringing together all the various aspects of physics under a unified conceptual framework — that provided by the Marxian concept “mode of production.” After an introduction providing the initial plausibility grounds for the undertaking, the concept is analyzed into its conceptual elements in Part I of the paper. The analysis presents the reconstruction initiated by Louis (...)
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  37. On the Structure of Rationality in the Thought and Invention or Creation of Physical Theories DOI:10.5007/1808-1711.2011v15n2p303. [REVIEW]Michel Paty - 2011 - Principia: An International Journal of Epistemology 15 (2):303-332.
    We want to consider anew the question, which is recurrent along the history of philosophy, of the relationship between rationality and mathematics, by inquiring to which extent the structuration of rationality, which ensures the unity of its function under a variety of forms, could be considered as homeomorphic with that of mathematical thought, taken in its movement and made concrete in its theories. This idea, which is as old as philosophy itself, although it has not been dominant, has still been (...)
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  38. On the relation between the probabilistic characterization of the common cause and Bell׳s notion of local causality.Gábor Hofer-Szabó - 2015 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 49:32-41.
    In the paper the relation between the standard probabilistic characterization of the common cause and Bell's notion of local causality will be investigated. It will be shown that the probabilistic common cause follows from local causality if one accepts, as Bell did, two assumptions concerning the common cause: first, the common cause is localized in the intersection of the past of the correlating events; second, it provides a complete specification of the `beables' of this intersection. However, neither assumptions are (...)
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  39.  51
    Order in the nothing: autopoiesis and the organizational characterization of the living.Leonardo Bich & Luisa Damiano - 2008 - In World Scientific (ed.), Physics of Emergence and Organization. pp. 343-373.
    An approach which has the purpose to catch what characterizes the specificity of a living system, pointing out what makes it different with respect to physical and artificial systems, needs to find a new point of view – new descriptive modalities. In particular it needs to be able to describe not only the single processes which can be observed in an organism, but what integrates them in a unitary system. In order to do so, it is necessary to consider (...)
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  40.  29
    The Significance of a Non-Reductionist Ontology for the Discipline of Physics: A Historical and Systematic Analysis.D. F. M. Strauss - 2010 - Axiomathes 20 (1):53-80.
    An overview of the history of the concept of matter highlights the fact that alternative modes of explanation were successively employed. With the discovery of irrational numbers the initial conviction of the Pythagorean School collapsed and was replaced by an exploration of space as a principle of understanding. This legacy dominated the medieval period and had an after-effect well into modernity—for both Descartes and Kant still characterized matter in spatial terms. However, even before Galileo the mechanistic world view slowly entered (...)
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  41.  41
    The measurement statistics interpretation of quantum mechanics: Possible values and possible measurement results of physical quantities. [REVIEW]Gianni Cassinelli & Pekka J. Lahti - 1989 - Foundations of Physics 19 (7):873-890.
    Starting with the Born interpretation of quantum mechanics, we show that the quantum theory of measurement, supplemented by the strong law of large numbers, leads to a measurement statistics interpretation of quantum mechanics. A probabilistic characterization of the spectrum of a physical quantity is given, and an analysis of the notions of possible values and possible measurement results is carried out.
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  42.  91
    The physical interpretation of wave mechanics. II.L. Jánossy - 1974 - Foundations of Physics 4 (4):445-452.
    Continuing the considerations given in the first part of this series (I), we use the analysis of the Aharonov-Bohm effect to show that the hydrodynamical variables by which the quantum mechanical one-body problem can be represented are of direct physical significance. It is shown in a particular case that the final state of a system can be obtained from its initial state in a unique manner if both states are characterized by hydrodynamical variables.
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  43.  46
    Probing the Vacuum of Particle Physics with Precise Laser Interferometry.Maurizio Consoli - 2015 - Foundations of Physics 45 (1):22-43.
    The discovery of the Higgs boson at LHC confirms that what we experience as empty space should actually be thought as a condensate of elementary quanta. This condensate characterizes the physically realized form of relativity and could play the role of preferred reference frame in a modern Lorentzian approach. This observation suggests a new interpretative scheme to understand the unexplained residuals in the old ether-drift experiments where light was still propagating in gaseous systems. Differently from present vacuum experiments, where anyhow (...)
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  44.  33
    The Physical Basis of Predication.Andrew Newman - 1992 - Cambridge and New York: Cambridge University Press.
    In this book about metaphysics the author defends a realistic view of universals, characterizing the notion of universal by considering language and logic, the idea of possibility, hierarchies of universals, and causation. He argues that neither language nor logic is a reliable guide to the nature of reality and that basic universals are the fundamental type of universal and are central to causation. All assertions and predications about the natural world are ultimately founded on these basic universals. A distinction is (...)
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  45.  61
    The Physics of Forgetting: Thermodynamics of Information at IBM 1959–1982.Aaron Sidney Wright - 2016 - Perspectives on Science 24 (1):112-141.
    . The origin and history of Landauer’s principle is traced through the development of the thermodynamics of computation at IBM from 1959 to 1982. This development was characterized by multiple conceptual shifts: memory came to be seen not as information storage, but as delayed information transmission; information itself was seen not as a disembodied logical entity, but as participating in the physical world; and logical irreversibility was connected with physical, thermodynamic, irreversibility. These conceptual shifts were characterized by an (...)
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  46.  17
    Foundations of Statistical Physics, Spacetime Theories, and Quantum Field Theory-Changing the Subject: Redei on Causal Dependence and Screening Off in Relativistic Quantum Field Theory.Rob Clifton & Laura Ruetsche - 1999 - Philosophy of Science 66 (3):S156-S169.
    In a pair of articles and in his recent book, Miklos Redei has taken enormous strides toward characterizing the conditions under which relativistic quantum field theory is a safe setting for the deployment of causal talk. Here, we challenge the adequacy of the accounts of causal dependence and screening off on which rests the relevance of Redei's theorems to the question of causal good behavior in the theory.
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  47.  50
    The physics of representation.Russell A. Poldrack - 2020 - Synthese 199 (1-2):1307-1325.
    The concept of “representation” is used broadly and uncontroversially throughout neuroscience, in contrast to its highly controversial status within the philosophy of mind and cognitive science. In this paper I first discuss the way that the term is used within neuroscience, in particular describing the strategies by which representations are characterized empirically. I then relate the concept of representation within neuroscience to one that has developed within the field of machine learning. I argue that the recent success of artificial neural (...)
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  48. Physical Relations or Functional Relations? A non-metaphysical construal of Rovelli’s Relational Quantum Mechanics.Michel Bitbol - unknown
    Rovelli’s RQM is first characterized by contrast with both Everett’s and Bohr’s interpretations of quantum mechanics. Then, it is shown that a basic difficulty arises from the choice of formulating RQM in a naturalistic framework. Even though, according to Rovelli’s interpretation, statements about the world only make sense relative to certain naturalized observers described by means of quantum mechanics, this very meta-statement seems to make sense relative to a sort of super-observer which does not partake of the naturalized status of (...)
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  49.  20
    Systematic error in the organization of physical action.C. B. Walter, S. P. Swinnen, N. Dounskaia & H. Langendonk - 2001 - Cognitive Science 25 (3):393-422.
    Current views of the control of complex, purposeful movements acknowledge that organizational processes must reconcile multiple concerns. The central priority is of course accomplishing the actor's goal. But in specifying the manner in which this occurs, the action plan must accommodate such factors as the interaction of mechanical forces associated with the motion of a multilinked system (classical mechanics) and, in many cases, intrinsic bias toward preferred movement patterns, characterized by so-called “coordination dynamics.” The most familiar example of the latter (...)
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  50. The Mathematical Description of a Generic Physical System.Federico Zalamea - 2015 - Topoi 34 (2):339-348.
    When dealing with a certain class of physical systems, the mathematical characterization of a generic system aims to describe the phase portrait of all its possible states. Because they are defined only up to isomorphism, the mathematical objects involved are “schematic structures”. If one imposes the condition that these mathematical definitions completely capture the physical information of a given system, one is led to a strong requirement of individuation for physical states. However, we show there are (...)
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