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Beebe, Helen. Does Anything Hold the Universe Together?
2006, Synthese 149(3): 509-533.

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Added by: Laura Jimenez

Abstract: According to 'regularity theories' of causation, the obtaining of causal relations depends on no more than the obtaining of certain kinds of regularity. Regularity theorists are thus anti-realists about necessary connections in nature. Regularity theories of one form or another have constituted the dominant view in analytic Philosophy for a long time, but have recently come in for some robust criticism, notably from Galen Strawson. Strawson's criticisms are natural criticisms to make, but have not so far provoked much response from regularity theorists. The paper considers and rebuts Strawson's objections. For example, Strawson claims that if there were no necessary connections in nature, we ought continually to find the regularity of the Universe surprising. I argue that the fact that the Universe is regular is something we take ourselves (fallibly) to know, and hence, in the light of this knowledge, its continued orderliness is not at all surprising

Comment: An excellent discussion of regularity theories of causation and some key challenges to those theories. Presupposes knowledge of Lewis (1973, 1979), as well as Hume's views. Would work well in a class on causation, or perhaps in a class on metaphysics more broadly, and could form part of the reading for a week about regularity theories. The paper is rich enough to be covered in a postgraduate course as well.

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Kochiras, Hilarie. Locke’s Philosophy of Science
2009, The Stanford Encyclopedia of Philosophy (Summer 2014 Edition), Edward N. Zalta (ed.)

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Added by: Laura Jimenez

Abstract: This article examines questions connected with the two features of Locke's intellectual landscape that are most salient for understanding his philosophy of science: (1) the profound shift underway in disciplinary boundaries, in methodological approaches to understanding the natural world, and in conceptions of induction and scientific knowledge; and (2) the dominant scientific theory of his day, the corpuscular hypothesis. Following the introduction, section 2 addresses questions connected to changing conceptions of scientific knowledge. What does Locke take science (scientia) and scientific knowledge to be generally, why does he think that scientia in natural philosophy is beyond the reach of human beings, and what characterizes the conception of human knowledge in natural philosophy that he develops? Section 3 addresses the question provoked by Locke's apparently conflicting treatments of the corpuscular hypothesis. Does he accept or defend the corpuscular hypothesis? If not, what is its role in his thought, and what explains its close connection to key theses of the Essay? Since a scholarly debate has arisen about the status of the corpuscular hypothesis for Locke, Section 3 reviews some main positions in that debate. Section 4 considers the relationship between Locke's thought and that of a figure instrumental to the changing conceptions of scientific knowledge, Isaac Newton

Comment: Perfect as an introduction for undergraduates to Locke's philosophy of science. It is a really good overview article.

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Mitchell, Sandra. Dimensions of Scientific Law
2000, Philosophy of Science 67(2): 242-265.

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Added by: Laura Jimenez

Abstract: Biological knowledge does not fit the image of science that philosophers have developed. Many argue that biology has no laws. Here I criticize standard normative accounts of law and defend an alternative, pragmatic approach. I argue that a multidimensional conceptual framework should replace the standard dichotomous law/ accident distinction in order to display important differences in the kinds of causal structure found in nature and the corresponding scientific representations of those structures. To this end I explore the dimensions of stability, strength, and degree of abstraction that characterize the variety of scientific knowledge claims found in biology and other sciences.

Comment: Really interesting paper that examines the nature of scientific laws by focusing on the case of laws in biology. It would be recommendable to read Carnap's analysis of the acceptance of different linguistic forms within science before reading this article. Could be used as a paper for a senior undergraduate course or for postgraduate courses in Philosophy of Science.

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Beebee, Helen. Necessary Connections and the Problem of Induction
2011, Noûs 45(3): 504-527.

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Added by: Laura Jimenez

Summary: In this paper Beebee argues that the problem of induction, which she describes as a genuine sceptical problem, is the same for Humeans than for Necessitarians. Neither scientific essentialists nor Armstrong can solve the problem of induction by appealing to IBE (Inference to the Best Explanation), for both arguments take an illicit inductive step.

Comment: This paper describes in a comprehensible way Armstrong's and the Humean approaches to the problem of induction. Ideal for postgraduate philosophy of science courses, although it could be a further reading for undergraduate courses as well.

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Anjum, Rani Lill, Stephen Mumford. A Powerful Theory of Causation
2010, In Anna Marmodoro (ed.) The Metaphysics of Powers, Routledge (2010): 143-59.

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Added by: Jamie Collin

Abstract: Hume thought that if you believed in powers, you believed in necessary connections in nature. He was then able to argue that there were none such because anything could follow anything else. But Hume wrong-footed his opponents. A power does not necessitate its manifestations: rather, it disposes towards them in a way that is less than necessary but more than purely contingent. In this paper a dispositional theory of causation is offered. Causes dispose towards their effects and often produce them. But a set of causes, even though they may succeed in producing an effect, cannot necessitate it since the effect could have been counteracted by some additional power. This would require a separation of our concepts of causal production and causal necessitation. The most conspicuous cases of causation are those where powers accumulate and pass a requisite threshold for an effect to occur. We develop a model for representing powers as constituent vectors within an n-dimensional quality space, where composition of causes appears as vector addition. Even our resultant vector, however, has to be understood as having dispositional force only. This model throws new light on causal modality and cases of prevention, causation by absence and probabilistic causation.

Comment: This paper develops a sophisticated formulation of a powers theory of causation in both a clear and non-technical way. It would be generally useful in a course on metaphysics, philosophy of science, or any course in which philosophical accounts of causation are relevant. More specifically, it would work well as further reading in an undergraduate course on causation and as core reading in a postgraduate course on causation.

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Anjum, Rani Lill, Stephen Mumford. Causation: A Very Short Introduction
2013, Oxford University Press.

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Added by: Jamie Collin

Publisher's Note: Causation is the most fundamental connection in the universe. Without it, there would be no science or technology. There would be no moral responsibility either, as none of our thoughts would be connected with our actions and none of our actions with any consequences. Nor would we have a system of law because blame resides only in someone having caused injury or damage. Any intervention we make in the world around us is premised on there being causal connections that are, to a degree, predictable. It is causation that is at the basis of prediction and also explanation. This Very Short Introduction introduces the key theories of causation and also the surrounding debates and controversies. Do causes produce their effects by guaranteeing them? Do causes have to precede their effects? Can causation be reduced to the forces of physics? And are we right to think of causation as one single thing at all?

Comment: This would be a useful introductory text in a course on metaphysics, philosophy of science, or any course in which philosophical accounts of causation are relevant. Individual chapters could be used as primers for separate topics as well as the book as a whole. Suitable for undergraduates of all levels.

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Ismael, Jenann. Causation, Free Will, and Naturalism
2013, In Don Ross, James Ladyman, and Harold Kincaid (eds.), Scientific Metaphysics, (2013) OUP.

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Added by: Jamie Collin
Abstract:
This chapter addresses the worry that the existence of causal antecedents to your choices means that you are causally compelled to act as you do. It begins with the folk notion of cause, leads the reader through recent developments in the scientific understanding of causal concepts, and argues that those developments undermine the threat from causal antecedents. The discussion is then used as a model for a kind of naturalistic metaphysics that takes its lead from science, letting everyday concepts be shaped and transformed by scientific developments.

Comment: This would be useful in a course on metaphysics (either in sections on causation or free will), philosophy of science, or naturalism. The paper is quite long, but it is clearly written and not too technical. It provides a nice overview of the folk notion of causation, and how this may be amended in the light of scientific developments. It also serves as a good example of peculiarly naturalistic metaphyisics more generally.

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Anscombe, G. Elizabeth M.. Causality and Determination
1981, In Anscombe, G. E. M. Metaphysics and the Philosophy of Mind: Collected Philosophical Papers Volume II. Oxford: Basil Blackwell.

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Added by: Jamie Collin

Summary: A classic text in which Anscombe argues for a realist view of causation. Specifically, Anscombe holds that causation is both directly perceivable and not subject to philosophical analysis. Anscombe seeks to establish that causal relations do not presuppose laws, and that causal relations can be perceived in a direct way.

Comment: This would be useful in a course on metaphysics, philosophy of science or philosophy of action. Anscombe is not always an easy writer, but this paper is not technical and is widely considered to be a classic. This could be used at any undergraduate or graduate level.

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Beebee, Helen. The non-governing conception of laws of nature
2000, Philosophy and Phenomenological Research 56: 571-594.

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Added by: Jamie Collin

Abstract: Recently several thought experiments have been developed (by John Carroll amongst others) which have been alleged to refute the Ramsey-Lewis view of laws of nature. The paper aims to show that two such thought experiments fail to establish that the Ramsey-Lewis view is false, since they presuppose a conception of laws of nature that is radically at odds with the Humean conception of laws embodied by the Ramsey- Lewis view. In particular, the thought experiments presuppose that laws of nature govern the behavior of objects. The paper argues that the claim that laws govern should not be regarded as a conceptual truth, and shows how the governing conception of laws manifests itself in the thought experiments. Hence the thought experiments do not constitute genuine counter-examples to the Ramsey-Lewis view, since the Humean is free to reject the conception of laws which the thought experiments presuppose.

Comment: Good primary or secondary reading for advanced undergraduate or graduate philosophy of science or metaphysics courses; or any course where laws of nature are relevant (for instance, a course considering the contemporary impact of Hume).

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Cartwright, Nancy. Where Do Laws of Nature Come From?
1997, Dialectica 51(1): 65-78.

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Added by: Jamie Collin

Summary: Cartwright explains and defends the view that causal capacities are more fundamental than laws of nature. She does this by considering scientific practice: the kind of knowledge required to make experimental setups and predictions is knowledge of the causal capacities of the entities in those systems, not knowledge of laws of nature.

Comment: A good introduction to Cartwright's views and the position that causal capacities are real and more fundamental than laws of nature. Useful reading for both undergraduate and graduate courses in philosophy of science and metaphysics.

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