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Causation with a human face

In Huw Price & Richard Corry (eds.), Causation, Physics and the Constitution of Reality: Russell’s Republic Revisited. New York: Oxford University Press (2007)

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  1. What’s So Spatial about Time Anyway?Sam Baron & Peter W. Evans - 2021 - British Journal for the Philosophy of Science 72 (1):159-183.
    Skow ([2007]), and much more recently Callender ([2017]), argue that time can be distinguished from space due to the special role it plays in our laws of nature: our laws determine the behaviour of physical systems across time, but not across space. In this work we assess the claim that the laws of nature might provide the basis for distinguishing time from space. We find that there is an obvious reason to be sceptical of the argument Skow submits for distinguishing (...)
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  • A new defence of doxasticism about delusions: The cognitive phenomenological defence.Peter Clutton - 2018 - Mind and Language 33 (2):198-217.
    Clinicians and cognitive scientists typically conceive of delusions as doxastic—they view delusions as beliefs. But some philosophers have countered with anti-doxastic objections: delusions cannot be beliefs because they fail the necessary conditions of belief. A common response involves meeting these objections on their own terms by accepting necessary conditions on belief but trying to blunt their force. I take a different approach by invoking a cognitive-phenomenal view of belief and jettisoning the rational/behavioural conditions. On this view, the anti-doxastic claims can (...)
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  • Physics and Causation.Thomas Blanchard - 2016 - Philosophy Compass 11 (5):256-266.
    More than a century ago, Russell launched a forceful attack on causation, arguing not only that modern physics has no need for causal notions but also that our belief in causation is a relic of a pre-scientific view of the world. He thereby initiated a debate about the relations between physics and causation that remains very much alive today. While virtually everybody nowadays rejects Russell's causal eliminativism, many philosophers have been convinced by Russell that the fundamental physical structure of our (...)
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  • Reconstructing Probabilistic Realism: Re-enacting Syntactical Structures.Majid Davoody Beni - 2020 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 51 (2):293-313.
    Probabilistic realism and syntactical positivism were two among outdated theories that Feigl criticised on account of their semantical poverty. In this paper, I argue that a refined version of probabilistic realism, which relies on what Feigl specified as the pragmatic description of the symbolic behaviour of scientists’ estimations and foresight, is defendable. This version of statistical realism does not need to make the plausibility of realist thesis dependent on the conventional acceptance of a constructed semantic metalanguage. I shall rely on (...)
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  • Interdefining causation and intervention.Michael Baumgartner - 2009 - Dialectica 63 (2):175-194.
    Non-reductive interventionist theories of causation and methodologies of causal reasoning embedded in that theoretical framework have become increasingly popular in recent years. This paper argues that one variant of an interventionist account of causation, viz. the one presented, for example, in Woodward (2003 ), is unsuited as a theoretical fundament of interventionist methodologies of causal reasoning, because it renders corresponding methodologies incapable of uncovering a causal structure in a finite number of steps. This finding runs counter to Woodward's own assessment (...)
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  • Interventionist Causation in Thermodynamics.Karen R. Zwier - 2017 - Philosophy of Science 84 (5):1303-1315.
    The interventionist account of causation has been largely dismissed as a serious candidate for application in physics. This dismissal is related to the problematic assumption that physical causation is entirely a matter of dynamical evolution. In this article, I offer a fresh look at the interventionist account of causation and its applicability to thermodynamics. I argue that the interventionist account of causation is the account of causation that most appropriately characterizes the theoretical structure and phenomenal behavior of thermodynamics.
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  • Causal Relations and Explanatory Strategies in Physics.Andrew Wayne - 2015 - International Studies in the Philosophy of Science 29 (1):75-89.
    Many philosophers now regard causal approaches to explanation as highly promising, even in physics. This is due in large part to James Woodward's influential argument that a wide variety of scientific explanations are causal, based on his interventionist approach to causation. This article argues that some derivations describing causal relations and satisfying Woodward's criteria for causal explanation fail to be explanatory. Further, causal relations are unnecessary for a range of explanations, widespread in physics, involving highly idealized models. These constitute significant (...)
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  • Top-Down Causation Without Levels.Jan Voosholz - 2021 - In Jan Voosholz & Markus Gabriel (eds.), Top-Down Causation and Emergence. Cham: Springer Verlag. pp. 269-296.
    The paper addresses a question concerning George Ellis’s theory of top-down causation by considering a challenge to the “level-picture of nature” which he employs as a foundational element in his theory. According to the level-picture, nature is ordered by distinct and finitely many levels, each characterised by its own types of entities, relations, laws and principles of behavior, and causal relations to their respective neighbouring top- and bottom-level. The branching hierarchy that results from this picture enables Ellis to build his (...)
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  • In defense of causal eliminativism.Alice van’T. Hoff - 2022 - Synthese 200 (5):1-22.
    Causal eliminativists maintain that all causal talk is false. The prospects for such a view seem to be stymied by an indispensability argument, charging that any agent must distinguish between effective and ineffective strategies, and that such a distinction must commit that agent to causal notions. However, this argument has been under-explored. The contributions of this paper are twofold: first, I provide a thorough explication of the indispensability argument and the various ways it might be defended. Second, I point to (...)
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  • Getting a grip: On causation, agency, and the meaning of “manipulation”.Erik van Aken - 2022 - Theoria 88 (6):1228-1247.
    In the philosophy of causation, manipulationist literature is broadly divided into agency and interventionist accounts. The division between these accounts is partially due to a dispute regarding the meaning of “manipulation”, which specifically questions, “Must one analyse manipulation by appealing to human agency?” This paper attempts to clarify the notion of manipulation and defends the thesis that agency theorists and interventionists analyse manipulation by appealing to human agency. However, following Collingwood's work, I argue that there are two ways to interpret (...)
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  • Desperately seeking sourcehood.Hannah Tierney & David Glick - 2020 - Philosophical Studies 177 (4):953-970.
    In a recent essay, Deery and Nahmias :1255–1276, 2017) utilize interventionism about causation to develop an account of causal sourcehood in order to defend compatibilism about free will and moral responsibility from manipulation arguments. In this paper, we criticize Deery and Nahmias’s analysis of sourcehood by drawing a distinction between two forms of causal invariance that can come into conflict on their account. We conclude that any attempt to resolve this conflict will either result in counterintuitive attributions of moral responsibility (...)
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  • Can Interventionists Be Neo-Russellians? Interventionism, the Open Systems Argument, and the Arrow of Entropy.Alexander Reutlinger - 2013 - International Studies in the Philosophy of Science 27 (3):273-293.
    International Studies in the Philosophy of Science, Volume 27, Issue 3, Page 273-293, September 2013.
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  • A Theory of Non-universal Laws.Alexander Reutlinger - 2011 - International Studies in the Philosophy of Science 25 (2):97 - 117.
    Laws in the special sciences are usually regarded to be non-universal. A theory of laws in the special sciences faces two challenges. (I) According to Lange's dilemma, laws in the special sciences are either false or trivially true. (II) They have to meet the ?requirement of relevance?, which is a way to require the non-accidentality of special science laws. I argue that both challenges can be met if one distinguishes four dimensions of (non-) universality. The upshot is that I argue (...)
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  • Valid and invalid causal arguments for physicalism.Thomas Kroedel - 2024 - Asian Journal of Philosophy 3 (65):1-13.
    In “A Causal Argument for Physicalism”, Lei Zhong presents an argument for physicalism in general, that is, for the disjunction of reductive physicalism and non-reductive physicalism. Zhong’s argument attempts to show that mental properties are physically acceptable, that is, physical in a wide sense. The crucial assumption of the argument is that physically acceptable effects do not have both sufficient causes that are physically acceptable and simultaneous sufficient causes that are not physically acceptable. I argue that Zhong’s argument is invalid, (...)
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  • (1 other version)Expressivism about explanatory relevance.Josh Hunt - 2024 - Philosophical Studies 181 (9):2063-2089.
    Accounts of scientific explanation disagree about what’s required for a cause, law, or other fact to be a reason why an event occurs. In short, they disagree about the conditions for explanatory relevance. Nonetheless, most accounts presuppose that claims about explanatory relevance play a descriptive role in tracking reality. By rejecting the need for this descriptivist assumption, I develop an expressivist account of explanatory relevance and explanation: to judge that an answer is explanatory is to express an attitude of _being (...)
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  • Quantum computing.Amit Hagar & Michael Cuffaro - 2019 - Stanford Encyclopedia of Philosophy.
    Combining physics, mathematics and computer science, quantum computing and its sister discipline of quantum information have developed in the past few decades from visionary ideas to two of the most fascinating areas of quantum theory. General interest and excitement in quantum computing was initially triggered by Peter Shor (1994) who showed how a quantum algorithm could exponentially “speed-up” classical computation and factor large numbers into primes far more efficiently than any (known) classical algorithm. Shor’s algorithm was soon followed by several (...)
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