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  1. Biological mistakes: what they are and what they mean for the experimental biologist.David Oderberg, Jonathan Hill, Christopher Austin, Ingo Bojak, Francois Cinotti & Jon Gibbins - unknown
    Organisms and other biological entities are mistake-prone: they get things wrong. The entities of pure physics, such as atoms and inorganic molecules, do not make mistakes: they do what they do according to physical law, with no room for error except on the part of the physicist or their theory. We set out a novel framework for understanding biology and its demarcation from physics – that of mistake-making. We distinguish biological mistakes from mere failures. We then propose a rigorous definition (...)
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  • Causal Efficacy: A Comparison of Rival Views.R. D. Ingthorsson - forthcoming - In Yafeng Shah (ed.), Alternative Approaches to Causation: Beyond Difference Making and Mechanism. Oxford: Oxford University Press.
    The idea that causation involves the production of changes due to the exertion of influence of something on something else—the core idea of causal realism—used to be the default view. Today this idea is at the heart of (i) transmission/causal process accounts, (ii) mechanistic accounts, and (iii) powers-based accounts. However, as I have previously argued (Ingthorsson 2021) the above-mentioned approaches are based—to varying degree—on the very problematic assumption that causal influence is essentially unidirectional; that it passes from whatever is the (...)
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