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Against the Statistical Account of Special Science Laws

In Vassilios Karakostas & Dennis Dieks (eds.), Recent Progress in Philosophy of Science: Perspectives and Foundational Problems. The Third European Philosophy of Science Association Proceedings. Springer. pp. 181-192 (2013)

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  1. Depth: An Account of Scientific Explanation.Michael Strevens - 2008 - Cambridge, Mass.: Harvard University Press.
    Approaches to explanation -- Causal and explanatory relevance -- The kairetic account of /D making -- The kairetic account of explanation -- Extending the kairetic account -- Event explanation and causal claims -- Regularity explanation -- Abstraction in regularity explanation -- Approaches to probabilistic explanation -- Kairetic explanation of frequencies -- Kairetic explanation of single outcomes -- Looking outward -- Looking inward.
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  • How the laws of physics lie.Nancy Cartwright - 1983 - New York: Oxford University Press.
    In this sequence of philosophical essays about natural science, the author argues that fundamental explanatory laws, the deepest and most admired successes of modern physics, do not in fact describe regularities that exist in nature. Cartwright draws from many real-life examples to propound a novel distinction: that theoretical entities, and the complex and localized laws that describe them, can be interpreted realistically, but the simple unifying laws of basic theory cannot.
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  • Laws and dispositions.Andreas Hüttemann - 1998 - Philosophy of Science 65 (1):121-135.
    Laws are supposed to tell us how physical systems actually behave. The analysis of an important part of physical practice--abstraction--shows, however, that laws describe the behavior of physical systems under very special circumstances, namely when they are isolated. Nevertheless, laws are applied in cases of non-isolation as well. This practice requires an explanation. It is argued that one has to assume that physical systems have dispositions. I take these to be innocuous from an empiricist's standpoint because they can--at least in (...)
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  • (1 other version)The methodological character of theoretical concepts.R. Carnap - 1956 - Minnesota Studies in the Philosophy of Science 1 (1):38--76.
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  • (1 other version)General scholium.Isaac Newton - 1999 - In The Principia: Mathematical Principles of Natural Philosophy. University of California Press. pp. 939-944.
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  • Models and fictions in science.Peter Godfrey-Smith - 2009 - Philosophical Studies 143 (1):101 - 116.
    Non-actual model systems discussed in scientific theories are compared to fictions in literature. This comparison may help with the understanding of similarity relations between models and real-world target systems. The ontological problems surrounding fictions in science may be particularly difficult, however. A comparison is also made to ontological problems that arise in the philosophy of mathematics.
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  • Ceteris paribus laws: Classification and deconstruction. [REVIEW]Gerhard Schurz - 2002 - Erkenntnis 57 (3):351Ð372.
    It has not been sufficiently considered in philosophical discussions of ceteris paribus (CP) laws that distinct kinds of CP-laws exist in science with rather different meanings. I distinguish between (1.) comparative CP-laws and (2.) exclusive CP-laws. There exist also mixed CP-laws, which contain a comparative and an exclusive CP-clause. Exclusive CP-laws may be either (2.1) definite, (2.2) indefinite or (2.3) normic. While CP-laws of kind (2.1) and (2.2) exhibit deductivistic behaviour, CP-laws of kind (2.3) require a probabilistic or non-monotonic reconstruction. (...)
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  • (1 other version)Who's Afraid of Ceteris-Paribus Laws? Or: How I Learned to Stop Worrying and Love Them.Marc Lange - 2002 - Erkenntnis 57 (3):407-423.
    Ceteris-paribus clauses are nothing to worry about; aceteris-paribus qualifier is not poisonously indeterminate in meaning. Ceteris-paribus laws teach us that a law need not be associated straightforwardly with a regularity in the manner demanded by regularity analyses of law and analyses of laws as relations among universals. This lesson enables us to understand the sense in which the laws of nature would have been no different under various counterfactual suppositions — a feature even of those laws that involve no ceteris-paribus (...)
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  • (1 other version)Who’s Afraid of C eteris-Paribus Laws? Or: How I Learned to Stop Worrying and Love Them.Marc Lange - 2002 - Erkenntnis 57 (3):407-423.
    Ceteris-paribus clauses are nothing to worry about; aceteris-paribus qualifier is not poisonously indeterminate in meaning. Ceteris-paribus laws teach us that a law need not be associated straightforwardly with a regularity in the manner demanded by regularity analyses of law and analyses of laws as relations among universals. This lesson enables us to understand the sense in which the laws of nature would have been no different under various counterfactual suppositions — a feature even of those laws that involve no ceteris-paribus (...)
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  • Shifting to structures in physics and biology: A prophylactic for promiscuous realism.Steven French - 2011 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 42 (2):164-173.
    Within the philosophy of science, the realism debate has been revitalised by the development of forms of structural realism. These urge a shift in focus from the object oriented ontologies that come and go through the history of science to the structures that remain through theory change. Such views have typically been elaborated in the context of theories of physics and are motivated by, first of all, the presence within such theories of mathematical equations that allow straightforward representation of the (...)
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  • Ceteris-paribus-Gesetze in der Physik.Andreas Hüttemann - 2012 - In Michael Esfeld (ed.), Philosophie der Physik. Berlin: Suhrkamp.
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  • Optimality explanations: a plea for an alternative approach.Collin Rice - 2012 - Biology and Philosophy 27 (5):685-703.
    Recently philosophers of science have begun to pay more attention to the use of highly idealized mathematical models in scientific theorizing. An important example of this kind of highly idealized modeling is the widespread use of optimality models within evolutionary biology. One way to understand the explanations provided by these models is as a censored causal explanation: an explanation that omits certain causal factors in order to focus on a modular subset of the causal processes that led to the explanandum. (...)
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  • The Principia: Mathematical Principles of Natural Philosophy.Isaac Newton - 1999 - University of California Press.
    Presents Newton's unifying idea of gravitation and explains how he converted physics from a science of explanation into a general mathematical system.
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  • Natural laws and the problem of provisos.Marc Lange - 1993 - Erkenntnis 38 (2):233Ð248.
    Hempel and Giere contend that the existence of provisos poses grave difficulties for any regularity account of physical law. However, Hempel and Giere rely upon a mistaken conception of the way in which statements acquire their content. By correcting this mistake, I remove the problem Hempel and Giere identify but reveal a different problem that provisos pose for a regularity account — indeed, for any account of physical law according to which the state of affairs described by a law-statement presupposes (...)
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  • Provisoes: A problem concerning the inferential function of scientific theories.Carl Gustav Hempel - 1988 - Erkenntnis 28 (2):147 - 164.
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  • "Ceteris Paribus", There Is No Problem of Provisos.John Earman & John T. Roberts - 1999 - Synthese 118 (3):439 - 478.
    Much of the literature on "ceteris paribus" laws is based on a misguided egalitarianism about the sciences. For example, it is commonly held that the special sciences are riddled with ceteris paribus laws; from this many commentators conclude that if the special sciences are not to be accorded a second class status, it must be ceteris paribus all the way down to fundamental physics. We argue that the (purported) laws of fundamental physics are not hedged by ceteris paribus clauses and (...)
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  • Ceteris Paribus Lost.John Earman, John T. Roberts & Sheldon Smith - 2002 - Erkenntnis 57 (3):281-301.
    Many have claimed that ceteris paribus (CP) laws are a quite legitimate feature of scientific theories, some even going so far as to claim that laws of all scientific theories currently on offer are merely CP. We argue here that one of the common props of such a thesis, that there are numerous examples of CP laws in physics, is false. Moreover, besides the absence of genuine examples from physics, we suggest that otherwise unproblematic claims are rendered untestable by the (...)
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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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  • What is 'normal'? An evolution-theoretic foundation for normic laws and their relation to statistical normality.Gerhard Schurz - 2001 - Philosophy of Science 68 (4):476-497.
    Normic laws have the form "if A, then normally B." They are omnipresent in everyday life and non-physical 'life' sciences such as biology, psychology, social sciences, and humanities. They differ significantly from ceteris-paribus laws in physics. While several authors have doubted that normic laws are genuine laws at all, others have argued that normic laws express a certain kind of prototypical normality which is independent of statistical majority. This paper presents a foundation for normic laws which is based on generalized (...)
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