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Dalla Chiara, Maria Luisa. Logical Self Reference, Set Theoretical Paradoxes and the Measurement Problem in Quantum Mechanics
1977, International Journal of Philosophical Logic 6 (1):331-347.

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Added by: Sara Peppe

Introduction: From a logical point of view the measurement problem of quantum mechanics, can be described as a characteristic question of 'semantical closure' of a theory: to what extent can a consistent theory (in this case 2R) be closed with respect to the objects and the concepfs which are described and expressed in its metatheory?

Comment: This paper considers the measurement problem in Quantum Mechanics from a logical perspective. Previous and deep knowledge of logics and Quantum Mechanics' theories is vital.

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Dang, Haixin. Do Collaborators in Science Need to Agree?
2019, Philosophy of Science 86, 1029-1040

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Added by: Björn Freter, Contributed by: Dana Tulodziecki

Abstract: I argue that collaborators do not need to reach broad agreement over the justification of a consensus claim. This is because maintaining a diversity of justifiers within a scientific collaboration has important epistemic value. I develop a view of collective justification that depends on the diversity of epistemic perspectives present in a group. I argue that a group can be collectively justified in asserting that P as long as the disagreement among collaborators over the reasons for P is itself justified. In conclusion, I make a case for multimethod collaborative research and work through an example in the social sciences.

Comment: Reading connecting philosophy of science and social epistemology; suitable for lower-level classes and up; good article for highlighting one way in which science is a social epistemic enterprise

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Demarest, Heather. Fundamental Properties and the Laws of Nature
2015, Philosophy Compass 10(5) 224-344.

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Added by: Laura Jimenez

Abstract: Fundamental properties and the laws of nature go hand in hand: mass and gravitation, charge and electromagnetism, spin and quantum mechanics. So, it is unsurprising that one's account of fundamental properties affects one's view of the laws of nature and vice versa. In this essay,the author surveys a variety of recent attempts to provide a joint account of the fundamental properties and the laws of nature. Many of these accounts are new and unexplored. Some of them posit surprising entities, such as counterfacts. Other accounts posit surprising laws of nature, such as instantaneous laws that constrain the initial configuration of particles. These exciting developments challenge our assumptions about our basic ontology and provide fertile ground for further exploration.

Comment: The article introduces in a simple way some fundamental concepts such as ‘law of nature’, ‘properties’, the notion of ‘categorical’ and ‘dispositional’ or the distinction between the governing and the systems approaches. It could serve as an introduction for those undergraduates that have never heard of these concepts before, or as a further reading for those in need of clarification. Some examples of modern fundamental physics are used as examples.

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Douglas, Heather. Inductive Risk and Values in Science
2000, Philosophy of Science 67(4): 559-579.

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Added by: Nick Novelli

Abstract: Although epistemic values have become widely accepted as part of scientific reasoning, non-epistemic values have been largely relegated to the "external" parts of science (the selection of hypotheses, restrictions on methodologies, and the use of scientific technologies). I argue that because of inductive risk, or the risk of error, non-epistemic values are required in science wherever non-epistemic consequences of error should be considered. I use examples from dioxin studies to illustrate how non-epistemic consequences of error can and should be considered in the internal stages of science: choice of methodology, characterization of data, and interpretation of results.

Comment: A good challenge to the "value-free" status of science, interrogating some of the assumptions about scientific methodology. Uses real-world examples effectively. Suitable for undergraduate teaching.

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Drewery, Alice. Essentialism and the Necessity of the Laws of Nature
2005, Synthese 144(3): 381-396.

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Added by: Laura Jimenez

Abstract: In this paper the author discusses and evaluates different arguments for the view that the laws of nature are metaphysically necessary. She conclude that essentialist arguments from the nature of natural kinds fail to establish that essences are ontologically more basic than laws, and fail to offer an a priori argument for the necessity of all causal laws. Similar considerations carry across to the argument from the dispositionalist view of properties, which may end up placing unreasonable constraints on property identity across possible worlds. None of her arguments preclude the possibility that the laws may turn out to be metaphysically necessary after all, but she argues that this can only be established by a posteriori scientific investigation. She argues for what may seem to be a surprising conclusion: that a fundamental metaphysical question - the modal status of laws of nature - depends on empirical facts rather than purely on a priori reasoning.

Comment: An excellent paper that could serve as further or specialized reading for postgraduate courses in philosophy of science, in particular, for modules related to the study of the laws of nature. The paper offers an in-depth discussion of essentialist arguments, but also touches upon many other fundamental concepts such as grounding, natural kinds, dispositions and necessity.

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Elgin, Catherine Z.. True Enough
2004, Philosophical Issues 14 (1): 113-131. also reprinted in Epistemology: and Anthology, Wiley 2008

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Added by: Giada Fratantonio

Abstract: Truth is standardly considered a requirement on epistemic acceptability. But science and philosophy deploy models, idealizations and thought experiments that prescind from truth to achieve other cognitive ends. I argue that such felicitous falsehoods function as cognitively useful fictions. They are cognitively useful because they exemplify and afford epistemic access to features they share with the relevant facts. They are falsehoods in that they diverge from the facts. Nonetheless, they are true enough to serve their epistemic purposes. Theories that contain them have testable consequences, hence are factually defeasible.

Comment: In a context in which epistemology takes truth to be a necessary condition for knowledge and falsehood as an immediate knowledge defeater, this paper offers a new perspective on the epistemic value of falsehood as playing an important role both in science and in philosophy. In a nutshell, the author argues that although falsehoods diverge from the facts, they are "true enough" to serve their epistemic purpose. Some of the falsehoods employed both in science and philosophy result in models, idealisations and thought experiments: by sharing and exemplifying relevant features of the facts, they end up being cognitively useful. This could work as secondary literature for a postgraduate course in epistemology and philsoophy of science, insofar as it gives a new perspective on epistemic value falshood can play. In a context in which epistemology takes truth to be a necessary condition for knowledge and falsehood as an immediate knowledge defeater, this paper offers a new perspective on the epistemic value of falsehood as playing an important role both in science and in philosophy. In a nutshell, the author argues that although falsehoods diverge from the facts, they are "true enough" to serve their epistemic purpose. Some of the falsehoods employed both in science and philosophy result in models, idealisations and thought experiments: by sharing and exemplifying relevant features of the facts, they end up being cognitively useful. This could work as secondary literature for a postgraduate course in epistemology and philsoophy of science, insofar as it gives a new perspective on epistemic value falshood can play.

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Elsamahi, Mohamed. A ctitique of localized realism
2005, Philosophy of Science 72(5): 1350-1360.

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Added by: Laura Jimenez

Abstract: In an attempt to avert Laudan's pessimistic induction, Worrall and Psillos introduce a narrower version of scientific realism. According to this version, which can be referred to as "localized realism", realists need not accept every component in a successful theory. They are supposed only to accept those components that led to the theory's empirical success. Consequently, realists can avoid believing in dubious entities like the caloric and ether. This paper examines and critiques localized realism. It also scrutinizes Psillos's historical study of the caloric theory of heat, which is intended to support localized realism.

Comment: Recommended as further reading for studying scientific realism and anti-realism. Preferable for postgraduate students since previous knowledge of theories in science helps to a better understanding of this article.

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Emery, Nina. Chance, Possibility and explanation
2015, The British Journal for the Philosophy of Science 0(2015): 1–64.

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Added by: Laura Jimenez

Summary: In this paper the author argues against the common and influential view that non-trivial chances arise only when the fundamental laws are indeterministic. The problem with this view, she claims, is not that it conflicts with some antecedently plausible metaphysics of chance or that it fails to capture our everyday use of 'chance' and related terms, but rather that it is unstable. Any reason for adopting the position that non-trivial chances arise only when the fundamental laws are indeterministic is also a reason for adopting a much stronger, and far less attractive, position. Emery suggests an alternative account, according to which chances are probabilities that play a certain explanatory role: they are probabilities that explain associated frequencies.

Comment: This could serve as a secondary reading for those studying metaphysic theories of chance. Previous background in metaphysics is needed. The paper is recommended for postgraduate students.

Émilie du Châtelet. Foundations of Physics
2009, Selected Philosophical and Scientific Writings, ed. with an Introduction by Judith P. Zinsser, transl. by Isabelle Bour, Judith P. Zinsser, Chicago, London: University of Chicago Press, 115-200

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Added by: Björn Freter

Abstract: I have always thought that the most sacred duty of men was to give their children an education that prevented them at a more advanced age from regretting their youth, the only time when one can truly gain instruction. You are, my dear son, in this happy age when the mind begins to think, and when the heart has passions not yet lively enough to disturb it.
Now is perhaps the only time of your life that you will devote to the study of nature. Soon the passions and pleasures of your age will occupy all your moments; and when this youthful enthusiasm has passed, and you have paid to the intoxication of the world the tribute of your age and rank, ambition will take possession of your soul; and even if in this more advanced age, which often is not any more mature, you wanted to apply yourself to the study of the true Sciences, your mind then no longer having the flexibility characteristic of its best years, it would be necessary for you to purchase with painful study what you can learn today with extreme facility. So, I want you to make the most of the dawn of your reason; I want to try to protect you from the ignorance that is still only too common among those of your rank, and which is one more fault, and one less merit.
You must early on accustom your mind to think, and to be self-sufficient. You will perceive at all the times in your life what resources and what consolations one finds in study, and you will see that it can even furnish pleasure and delight.

Comment: Introduces the conception of scientific revolution and compares it to political revolutions. A quick introduction for undergraduates can be found at https://plato.stanford.edu/entries/scientific-revolutions/#SciRevTopForHisSci and, more generally, https://plato.stanford.edu/entries/emilie-du-chatelet/.

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Franklin, L. R.. Exploratory Experiments
2005, Philosophy of Science 72(5): 888-899.

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Added by: Nick Novelli

Abstract: Philosophers of experiment have acknowledged that experiments are often more than mere hypothesis-tests, once thought to be an experiment's exclusive calling. Drawing on examples from contemporary biology, I make an additional amendment to our understanding of experiment by examining the way that `wide' instrumentation can, for reasons of efficiency, lead scientists away from traditional hypothesis-directed methods of experimentation and towards exploratory methods.

Comment: Good exploration of the role of experiments, challenging the idea that they are solely useful for testing clearly defined hypotheses. Uses many practical examples, but is very concise and clear. Suitable for undergraduate teaching in an examination of scientific methods in a philosophy of science course.

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