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Are There Fundamental Intrinsic Properties?

In Allan Hazlett (ed.), New Waves in Metaphysics. Palgrave-Macmillan. pp. 219--39 (2010)

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  1. The Special Power-Composition Question and the Powerful Cosmos.Joaquim Giannotti - 2023 - In Christopher J. Austin, Anna Marmodoro & Andrea Roselli (eds.), Powers, Parts and Wholes: Essays on the Mereology of Powers. New York, NY: Routledge. pp. 167 - 184.
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  • Colors, Perceptual Variation, and Science.Michael Watkins & Elay Shech - 2024 - Erkenntnis 89 (3):1157-1181.
    Arguments from perceptual variation challenge the view that colors are objective properties of objects, properties that objects have independent of how they are perceived. This paper attempts, first, to diagnose one central reason why arguments from perceptual variation seem especially challenging for objectivists about color. Second, we offer a response to this challenge, claiming that once we focus on determinate colors rather than the determinables they determine, a response to arguments from perceptual variation becomes apparent. Third, our nominal opponents are (...)
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  • Intrinsicality and Entanglement.Isaac Wilhelm - 2022 - Mind 131 (521):35-58.
    I explore the relationship between a prominent analysis of intrinsic properties, due to Langton and Lewis, and the phenomenon of quantum entanglement. As I argue, the analysis faces a puzzle. The full analysis classifies certain properties of entangled particles as intrinsic. But when combined with an extremely plausible assumption about duplication, the main part of the analysis classifies those properties as non-intrinsic instead. I conclude that much of Lewis’s metaphysics is in trouble: Lewis based many of his metaphysical views—his thesis (...)
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  • Quantum Entanglement Undermines Structural Realism.Seungbae Park - 2022 - Metaphysica 23 (1):1-13.
    Quantum entanglement poses a challenge to the traditional metaphysical view that an extrinsic property of an object is determined by its intrinsic properties. So structural realists might be tempted to cite quantum entanglement as evidence for structural realism. I argue, however, that quantum entanglement undermines structural realism. If we classify two entangled electrons as a single system, we can say that their spin properties are intrinsic properties of the system, and that we can have knowledge about these intrinsic properties. Specifically, (...)
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  • On quantum entanglement, counterfactuals, causality and dispositions.Tomasz Bigaj - 2020 - Synthese 197 (10):4161-4185.
    The existence of non-local correlations between outcomes of measurements in quantum entangled systems strongly suggests that we are dealing with some form of causation here. An assessment of this conjecture in the context of the collapse interpretation of quantum mechanics is the primary goal of this paper. Following the counterfactual approach to causation, I argue that the details of the underlying causal mechanism which could explain the non-local correlations in entangled states strongly depend on the adopted semantics for counterfactuals. Several (...)
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  • Fundamental Properties and the Laws of Nature.Heather Demarest - 2015 - Philosophy Compass 10 (5):334-344.
    Fundamental properties and the laws of nature go hand in hand: mass and gravitation, charge and electromagnetism, spin and quantum mechanics. So, it is unsurprising that one's account of fundamental properties affects one's view of the laws of nature and vice versa. In this essay, I will survey a variety of recent attempts to provide a joint account of the fundamental properties and the laws of nature. Many of these accounts are new and unexplored. Some of them posit surprising entities, (...)
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  • The Structure of a Quantum World.Jill North - 2013 - In Alyssa Ney & David Albert (eds.), The Wave Function: Essays on the Metaphysics of Quantum Mechanics. , US: Oxford University Press USA. pp. 184-202.
    I argue that the fundamental space of a quantum mechanical world is the wavefunction's space. I argue for this using some very general principles that guide our inferences to the fundamental nature of a world, for any fundamental physical theory. I suggest that ordinary three-dimensional space exists in such a world, but is non-fundamental; it emerges from the fundamental space of the wavefunction.
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  • The Status of our Ordinary Three Dimensions in a Quantum Universe1.Alyssa Ney - 2010 - Noûs 46 (3):525-560.
    There are now several, realist versions of quantum mechanics on offer. On their most straightforward, ontological interpretation, these theories require the existence of an object, the wavefunction, which inhabits an extremely high-dimensional space known as configuration space. This raises the question of how the ordinary three-dimensional space of our acquaintance fits into the ontology of quantum mechanics. Recently, two strategies to address this question have emerged. First, Tim Maudlin, Valia Allori, and her collaborators argue that what I have just called (...)
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  • Spin as a Determinable.Johanna Wolff - 2015 - Topoi 34 (2):379-386.
    In this paper I aim to answer two questions: Can spin be treated as a determinable? Can a treatment of spin as a determinable be used to understand quantum indeterminacy? In response to the first question I show that the relations among spin number, spin components and spin values cannot be captured by a single determination relation; instead we need to look at spin number and spin value separately. In response to the second question I discuss three ways in which (...)
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  • Dewey and the Question of Realism.Peter Godfrey-Smith - 2013 - Noûs 50 (1):73-89.
    An interpretation is given of John Dewey's views about “realism” in metaphysics, and of how these views relate to contemporary debates. Dewey rejected standard formulations of realism as a general metaphysical position, and interpreters have often been taken him to be sympathetic to some form of verificationism or constructivism. I argue that these interpretations are mistaken, as Dewey's unease with standard formulations of realism comes from his philosophical emphasis on intelligent control of events, by means of ordinary action. Because of (...)
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  • Quantum Humeanism, or: Physicalism without Properties.Michael Esfeld - 2014 - Philosophical Quarterly 64 (256):453-470.
    In recent literature, it has become clear that quantum physics does not refute Humeanism: Lewis’s thesis of Humean supervenience can be literally true even in the light of quantum entanglement. This point has so far been made with respect to Bohm’s quantum theory. Against this background, this paper seeks to achieve the following four results: to generalize the option of quantum Humeanism from Bohmian mechanics to primitive ontology theories in general; to show that this option applies also to classical mechanics; (...)
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  • Is There a (Compelling) Gauge-Theoretic Argument against the Intrinsicality of Fundamental Properties?Vassilios Livanios - 2012 - European Journal of Analytic Philosophy 8 (2):30-38.
    In this paper I critically examine the most recent gauge-theoretic argument against the intrinsicality of fundamental properties formulated by French and McKenzie (2012). I show that it cannot achieve its intended goal (which is to undermine Lewis’s neo-Humean metaphysical project) but it can have a signifi cant infl uence to dispositional essentialists that hold that the fundamental physical properties are intrinsic features of their bearers.
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