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  1. Philosophy of the Physical Sciences.Chris Smeenk & Hoefer Carl - 2016 - In Paul Humphreys (ed.), The Oxford Handbook of Philosophy of Science. Oxford University Press USA.
    The authors survey some debates about the nature and structure of physical theories and about the connections between our physical theories and naturalized metaphysics. The discussion is organized around an “ideal view” of physical theories and criticisms that can be raised against it. This view includes controversial commitments regarding the best analysis of physical modalities and intertheory relations. The authors consider the case in favor of taking laws as the primary modal notion, discussing objections related to alleged violations of the (...)
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  • Fictions, Conditionals, and Stellar Astrophysics.Mauricio Suárez - 2013 - International Studies in the Philosophy of Science 27 (3):235-252.
    This article argues in favour of an inferential role for fictions in scientific modelling. The argument proceeds by means of a detailed case study, namely models of the internal structure of stars in stellar astrophysics. The main assumptions in such models are described, and it is argued that they are best understood as useful fictions. The role that conditionals play in these models is explained, and it is argued that fictional assumptions play an important role as either background or antecedent (...)
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  • Naturalized philosophy of science with a plurality of methods.David Stump - 1992 - Philosophy of Science 59 (3):456-460.
    Naturalism implies unity of method--an application of the methods of science to the methodology of science itself and to value theory. Epistemological naturalists have tried to find a privileged discipline to be the methodological model of philosophy of science and epistemology. However, since science itself is not unitary, the use of one science as a model amounts to a reduction and distorts the philosophy of science just as badly as traditional philosophy of science distorted science, despite the fact that the (...)
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  • Einstein, Cassirer, and General Covariance — Then and Now.T. A. Ryckman - 1999 - Science in Context 12 (4):585-619.
    The ArgumentRecent archival research has brought about a new understanding of the import of Einstein's puzzling remarks (1916) attributing a physical meaning to general covariance. Debates over the scope and meaning of general covariance still persist, even within physics. But already in 1921 Cassirer identified the significance of general covariance as a novel stage in the development of the criterion of objectivity within physics; an account of this development, and its implications, is the primary task undertaken in his monograph of (...)
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  • Styles for philosophers of science.Jack Ritchie - 2012 - Studies in History and Philosophy of Science Part A 43 (4):649-656.
    In this paper I discuss the bearing of Hacking’s ideas about Scientific Styles on traditional debates in the philosophy of science concerning rationality and realism. I argue that a kind of deflationary position with regard to realism debates is a natural consequence of Hacking’s claim that styles are self-authenticating. I then go on to argue, using an example of van Fraassen’s, that Hacking should allow a methodological role for realism debates and hence they are not idle, as he has claimed, (...)
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  • The importance of the Strasbourg period in L. I. Mandelstam's life for his further work in science.Alexander A. Pechenkin - 1999 - NTM Zeitschrift für Geschichte der Wissenschaften, Technik und Medizin 7 (1):93-104.
    L.I. Mandelstam, the outstanding Soviet physicist, leader of a prominent and productive scientific community, was educated as a physicist and started as a researcher and an university teacher at Strasbourg University. We consider the intellectual influence of the main currents in contemporary German science on Mandelstam's work in science.
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  • Scientific Realism and Quantum Mechanics: Revisiting a Controversial Relation.Maria Panagiotatou - 2017 - International Studies in the Philosophy of Science 31 (3):243-259.
    ABSTRACT: The article examines the controversial relation of scientific realism with quantum mechanics. To this end, two distinct discussions are invoked: the discussion about ‘realism’ in the context of quantum mechanics and the discussion about ‘scientific realism’ in the context of the general philosophy of science. The aim is to distinguish them in order, first, to argue that the former—revolving around ‘local realism’ and the theorems of Bell and Kochen–Specker—unjustifiably identifies realism with features of a particular worldview, and thereby fosters (...)
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  • Open Problems in Relational Quantum Mechanics.Federico Laudisa - 2019 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 50 (2):215-230.
    The Rovelli relational interpretation of quantum mechanics is based on the assumption that the notion of observer-independent state of a physical system is to be rejected. In RQM the primary target of the theory is the analysis of the whole network of relations that may be established among quantum subsystems, and the shift to a relational perspective is supposed to address in a satisfactory way the general problem of the interpretation of quantum mechanics. Here I discuss two basic issues, that (...)
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  • Understanding, Knowledge, and Scientific Antirealism.Kareem Khalifa - 2011 - Grazer Philosophische Studien 83 (1):93-112.
    Epistemologists have recently debated whether understanding is a species of knowledge. However, because they have offered little in the way of a detailed analysis of understanding, they lack the resources to resolve this issue. In this paper, I propose that S understands why p if and only if S has the non-Gettierised true belief that p, and for some proposition q, S has the non-Gettierised true belief that q is the best available explanation of p, S can correctly explain p (...)
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  • Social constructivism and the aims of science.Kareem Khalifa - 2010 - Social Epistemology 24 (1):45 – 61.
    In this essay, I provide normative guidelines for developing a philosophically interesting and plausible version of social constructivism as a philosophy of science, wherein science aims for social-epistemic values rather than for truth or empirical adequacy. This view is more plausible than the more radical constructivist claim that scientific facts are constructed. It is also more interesting than the modest constructivist claim that representations of such facts emerge in social contexts, as it provides a genuine rival to the scientific axiologies (...)
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  • 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 philosophical presuppositions. (...)
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  • Nonseparability, Potentiality, and the Context-Dependence of Quantum Objects.Vassilios Karakostas - 2007 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 38 (2):279-297.
    Standard quantum mechanics undeniably violates the notion of separability that classical physics accustomed us to consider as valid. By relating the phenomenon of quantum nonseparability to the all-important concept of potentiality, we effectively provide a coherent picture of the puzzling entangled correlations among spatially separated systems. We further argue that the generalized phenomenon of quantum nonseparability implies contextuality for the production of well-defined events in the quantum domain, whereas contextuality entails in turn a structural-relational conception of quantal objects, viewed as (...)
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  • Three Paradoxes Concerning Causality and Time: Parmenides, Leibniz, Einstein/Schrödinger.David Hyder - 2018 - The European Legacy 23 (5):490-509.
    Parmenides’ Poem on Nature contains a proof that the world could not have come into being in time, because no explanation could be given for why it would do so at a given time. This same proof reappears in the Leibniz-Clarke Correspondence, where it is directed against Newtonian absolute time. Newtonians, Leibniz explains, believe that time is homogeneous and absolute, but this makes it inexplicable how God could have chosen to create the world on a given day. Similarly, in his (...)
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  • Do Disputes over Priority Tell Us Anything about Science?Alan G. Gross - 1998 - Science in Context 11 (2):161-179.
    The ArgumentConflicts between scientists over credit for their discoveries are conflicts, not merely in, but of science because discovery is not a historical event, but a retrospective social judgment. There is no objective moment of discovery; rather, discovery is established by means of a hermeneutics, a way of reading scientific articles. The priority conflict between Roger Guillemin and Andrew Schally over the discovery of the brain hormone, TRF, serves as an example. The work of Robert Merton, Thomas Kuhn, Augustine Brannigan, (...)
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  • Universalizing hermeneutics as hermeneutic realism.Dimitri Ginev - 2012 - Principia: An International Journal of Epistemology 16 (2):209-227.
    http://dx.doi.org/10.5007/1808-1711.2012v16n2p209 This article explores and attempts to resolve some issues that arise when at stake is the incommensurability between the concepts of reality developed by philosophical hermeneutics, on the one hand, and realist branches of analytical philosophy, on the other. The view of hermeneutic realism is suggested not as a remedy against this incommensurability, but as a vehicle for revising those aspects of both hermeneutics and ontological realism which impede the dialogue between them. It is a view that opposes epistemological (...)
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  • Einstein y el efecto Compton (Einstein and the Compton Effect).Alejandro Cassini, Leonardo Levinas & Hernán Pringe - 2013 - Scientiae Studia 11 (1):185-209.
    PORTUGUESE: Neste artigo, apresentaremos uma visão particular do desenvolvimento de teorias científicas que denominamos (inspirados em Ortega y Gasset) "perspectivismo". Discutiremos como, através desse enfoque, é possível compatibilizar diversas descrições aparentemente distintas e incompatíveis de uma suposta realidade que se investiga. Fazemos isso distinguindo entre a "realidade" (R) e a "descrição empírica da realidade" (Re). Aceitando que podemos ter diversas descrições empíricas de uma mesma realidade, discutimos o caso particular em que esse esquema é utilizado nos debates atuais acerca da (...)
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  • Quantum Mechanics and 3 N - Dimensional Space.Bradley Monton - 2006 - Philosophy of Science 73 (5):778-789.
    I maintain that quantum mechanics is fundamentally about a system of N particles evolving in three-dimensional space, not the wave function evolving in 3N-dimensional space.
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  • Non-relativistic quantum mechanics.Michael Dickson - unknown
    This essay is a discussion of the philosophical and foundational issues that arise in non-relativistic quantum theory. After introducing the formalism of the theory, I consider: characterizations of the quantum formalism, empirical content, uncertainty, the measurement problem, and non-locality. In each case, the main point is to give the reader some introductory understanding of some of the major issues and recent ideas.
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  • Relevancia causal de la medida en experimentos EPR: consideraciones ontológicas.Iñaki San Pedro - 2010 - Azafea: Revista de Filosofia 12:19-34.
    Se discuten en este trabajo las implicaciones ontológicas de un posible modelo de causa común para las correlaciones EPR, cuya característica principal radica en el hecho de que las operaciones de medida en ambas alas del experimento son explícitamente relevantes para las causas comunes. Gracias precisamente a este tipo de dependencias entre causas comunes y operaciones de medida, el modelo sortea las implicaciones del teorema de Bell. El modelo, sin embargo, resulta patentemente no local, lo que se refleja bien en (...)
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