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Christian Loew
Umeå University
  1.  75
    Humean Laws and (Nested) Counterfactuals.Christian Loew & Siegfried Jaag - 2020 - Philosophical Quarterly 70 (278):93-113.
    Humean reductionism about laws of nature is the view that the laws reduce to the total distribution of non-modal or categorical properties in spacetime. A worry about Humean reductionism is that it cannot motivate the characteristic modal resilience of laws under counterfactual suppositions and that it thus generates wrong verdicts about certain nested counterfactuals. In this paper, we defend Humean reductionism by motivating an account of the modal resilience of Humean laws that gets nested counterfactuals right.
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  2. Making Best Systems Best for Us.Siegfried Jaag & Christian Loew - forthcoming - Synthese:1-26.
    Humean reductionism about laws of nature appears to leave a central aspect of scientific practice unmotivated: If the world’s fundamental structure is exhausted by the actual distribution of non-modal properties and the laws of nature are merely efficient summaries of this distribution, then why does science posit laws that cover a wide range of non-actual circumstances? In this paper, we develop a new version of the Humean best systems account of laws based on the idea that laws need to organize (...)
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  3.  73
    Freier Wille und Naturgesetze: Überlegungen zum Konsequenzargument.Andreas Hüttemann & Christian Loew - 2019 - In Martin Breul, Aaron Langenfeld, Saskia Wendel & Klaus von Stoch (eds.), Streit um die Freiheit – Philosophische und Theologische Perspektiven. Paderborn: Schöningh. pp. 77-93.
    In this paper, we argue that the Consequence Argument relies on empirical premises. In particular, we show how the argument depends upon assumptions about the character of the laws of nature.
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  4. Causation, Physics, and Fit.Christian Loew - 2017 - Synthese 194 (6):1945–1965.
    Our ordinary causal concept seems to fit poorly with how our best physics describes the world. We think of causation as a time-asymmetric dependence relation between relatively local events. Yet fundamental physics describes the world in terms of dynamical laws that are, possible small exceptions aside, time symmetric and that relate global time slices. My goal in this paper is to show why we are successful at using local, time-asymmetric models in causal explanations despite this apparent mismatch with fundamental physics. (...)
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  5. Boltzmannian Immortality.Christian Loew - 2017 - Erkenntnis 82 (4):761-776.
    Plausible assumptions from Cosmology and Statistical Mechanics entail that it is overwhelmingly likely that there will be exact duplicates of us in the distant future long after our deaths. Call such persons “Boltzmann duplicates,” after the great pioneer of Statistical Mechanics. In this paper, I argue that if survival of death is possible at all, then we almost surely will survive our deaths because there almost surely will be Boltzmann duplicates of us in the distant future that stand in appropriate (...)
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  6. Causes As Difference‐Makers For Processes.Christian Loew - 2019 - Philosophy and Phenomenological Research 98 (1):89-106.
    It is natural to think of causes as difference-makers. What exact difference causes make, however, is an open question. In this paper, I argue that the right way of understanding difference-making is in terms of causal processes: causes make a difference to a causal process that leads to the effect. I will show that this way of understanding difference-making nicely captures the distinction between causing an outcome and helping determine how the outcome happens and, thus, explains why causation is not (...)
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