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  1. The rising of galilean mechanics: history and historiography.Fernando Tula Molina - 2005 - Scientiae Studia 3 (3):357-394.
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  • Galilean Idealization.Ernan McMullin - 1985 - Studies in History and Philosophy of Science Part A 16 (3):247.
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  • What do patterns in empirical data tell us about the structure of the world?James W. McAllister - 2011 - Synthese 182 (1):73-87.
    This article discusses the relation between features of empirical data and structures in the world. I defend the following claims. Any empirical data set exhibits all possible patterns, each with a certain noise term. The magnitude and other properties of this noise term are irrelevant to the evidential status of a pattern: all patterns exhibited in empirical data constitute evidence of structures in the world. Furthermore, distinct patterns constitute evidence of distinct structures in the world. It follows that the world (...)
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  • Thought experiments and the belief in phenomena.James W. McAllister - 2004 - Philosophy of Science 71 (5):1164-1175.
    Thought experiment acquires evidential significance only on particular metaphysical assumptions. These include the thesis that science aims at uncovering "phenomena"universal and stable modes in which the world is articulatedand the thesis that phenomena are revealed imperfectly in actual occurrences. Only on these Platonically inspired assumptions does it make sense to bypass experience of actual occurrences and perform thought experiments. These assumptions are taken to hold in classical physics and other disciplines, but not in sciences that emphasize variety and contingency, such (...)
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  • The explanative recourse to realism.James W. McAllister - 1988 - International Studies in the Philosophy of Science 3 (1):2 – 18.
    (1988). The explanative recourse to realism. International Studies in the Philosophy of Science: Vol. 3, No. 1, pp. 2-18. doi: 10.1080/02698598808573321.
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  • The evidential significance of thought experiment in science.James W. McAllister - 1996 - Studies in History and Philosophy of Science Part A 27 (2):233-250.
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  • Laws of nature, natural history, and the description of the world.James W. McAllister - 1997 - International Studies in the Philosophy of Science 11 (3):245 – 258.
    The modern sciences are divided into two groups: law-formulating and natural historical sciences. Sciences of both groups aim at describing the world, but they do so differently. Whereas the natural historical sciences produce “transcriptions” intended to be literally true of actual occurrences, laws of nature are expressive symbols of aspects of the world. The relationship between laws and the world thus resembles that between the symbols of classical iconography and the objects for which they stand. The natural historical approach was (...)
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  • Reflections on 25 Years of Journal Editorship.Michael R. Matthews - 2015 - Science & Education 24 (5-6):749-805.
    These reflections range over some distinctive features of the journal Science & Education, they acknowledge in a limited way the many individuals who over the past 25 years have contributed to the success and reputation of the journal, they chart the beginnings of the journal, and they dwell on a few central concerns—clear writing and the contribution of HPS to teacher education. The reflections also revisit the much-debated and written-upon philosophical and pedagogical arguments occasioned by the rise and possible demise (...)
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  • Galileo’s defense of the application of geometry to physics in the Dialogue.Douglas Bertrand Marshall - 2013 - Studies in History and Philosophy of Science Part A 44 (2):178-187.
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  • (1 other version)In Praise of Truth and Substantive Rationality: Comments on Laudan’s Progress and Its Problems.Noretta Koertge - 1978 - PSA Proceedings of the Biennial Meeting of the Philosophy of Science Association 1978 (2):505-521.
    Like most philosophers, Laudan [7] believes that by and large science makes cognitive progress and that the development of science is more or less rational. His book deals with two major problems:(a)In what sense does science progress? What is scientific progress?(b)Wherein lies the rationality of the growth of science? What is scientific rationality?In the main body of this paper, I first summarize and evaluate some of Laudan’s criticisms of his predecessors. Then I outline and criticize Laudan’s own theory of scientific (...)
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  • On Kepler's awareness of the problem of experimental error.Giora Hon - 1987 - Annals of Science 44 (6):545-591.
    SummaryThis paper is an account of Kepler's explicit awareness of the problem of experimental error. As a study of the Astronomia nova shows, Kepler exploited his awareness of the occurrences of experimental errors to guide him to the right conclusion. Errors were thus employed, so to speak, perhaps for the first time, to bring about a major physical discovery: Kepler's laws of planetary motion. ‘Know then’, to use Kepler's own words, ‘that errors show us the way to truth.’ With a (...)
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  • Galileo and the Demonstrative Ideal of Science.Martha Fehér - 1982 - Studies in History and Philosophy of Science Part A 13 (2):87.
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  • Idealization and Galileo’s Proto-Inertial Principle.Maarten Van Dyck - 2018 - Philosophy of Science 85 (5):919-929.
    Galileo proposed what has been called a proto-inertial principle, according to which a body un horizontal motion will conserve its motion. This statement is only true in counterfactual circumstances where no impediments are present. This paper analyzes how Galileo could have been justified in ascribing definite properties to this idealized motion. This analysis is then used to better understand the relation of Galileo’s proto-inertial principle to the classical inertial principle.
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  • Experiment, Speculation, and Galileo’s Scientific Reasoning.Gregory Dawes - 2016 - Perspectives on Science 24 (3):343-360.
    Peter Anstey has suggested that in our analyses of early modern natural philosophy we should abandon a frequently used distinction: that between rationalism and empiricism. He argues that we should replace it with another distinction, that between experimental and speculative natural philosophy. The second distinction, he argues, was not only widely used at the time, but has a greater explanatory range. It follows, he suggests, that it is a better way of “carving up” the writings of that period.It is clear (...)
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  • What did Adam Smith learn from François Quesnay?Toni Vogel Carey - 2020 - Journal of Scottish Philosophy 18 (2):175-191.
    Book IV of Adam Smith's Wealth of Nations concerns two rival economic theories, Mercantilism and Physiocracy. The latter, François Quesnay's system, occupies only the ninth and final chapter, and it begins with a stunning dismissal. Yet, fifteen pages later, Smith praises this theory to the skies. That cries out for explanation. Like Mercantilism, Smith's system emphasizes commerce, whereas Quesnay's is confined to agriculture. But like Physiocracy, Smith's system is built on individual liberty, whereas Mercantilism is one of government control. Despite (...)
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  • Always or Never: Two Approaches to Ceteris Paribus. [REVIEW]Toni Vogel Carey - 2012 - Erkenntnis 77 (3):317-333.
    The Scientific Revolution spawned not just one methodology, but two. We have emphasized Bacon's inductivism at the expense of Galileo's more abstract, sophisticated method of successive approximation, and so have failed to appreciate Galileo's contribution to the ceteris paribus problem in philosophy of science. My purpose here is to help redress this imbalance. I first briefly review the old unsolved problems, and then point out the Baconian basis of ceteris paribus, as this clause is conventionally understood, and its history from (...)
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  • Knowing what would happen: The epistemic strategies in Galileo's thought experiments.Kristian Camilleri - 2015 - Studies in History and Philosophy of Science Part A 54:102-112.
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  • Galileo's first new science: The science of matter.Zvi Biener - 2004 - Perspectives on Science 12 (3):262-287.
    : Although Galileo's struggle to mathematize the study of nature is well known and oft discussed, less discussed is the form this struggle takes in relation to Galileo's first new science, the science of the second day of the Discorsi. This essay argues that Galileo's first science ought to be understood as the science of matter—not, as it is usually understood, the science of the strength of materials. This understanding sheds light on the convoluted structure of the Discorsi's first day. (...)
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  • Galileusz i rozróżnienie między jakościami pierwotnymi a wtórnymi (I). Argument superesencjalistyczny.Bartosz Żukowski - 2022 - Ruch Filozoficzny 78 (1):25-49.
    "Galileo on the Distinction between Primary and Secondary Qualities (I). A Superessentialist Argument" Galileo’s distinction between primary and secondary qualities has hitherto been examined almost exclusively from a contextual, historical perspective. This paper, the first of two planned, aims to fill this gap by providing a systematic, theoretical analysis of his principal argument for the distinction, as advanced in "The Assayer". I begin with a reconstruction of the key steps in the argument, and then proceed to identify and discuss the (...)
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  • Why Computer Simulation Cannot Be an End of Thought Experimentation.N. K. Shinod - 2021 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 52 (3):431-453.
    Computer simulation (CS) and thought experiments (TE) seem to produce knowledge about the world without intervening in the world. This has called for a comparison between the two methods. However, Chandrasekharan et al. (2013) argue that the nature of contemporary science is too complex for using TEs. They suggest CS as the tool for contemporary sciences and conclude that it will replace TEs. In this paper, by discussing a few TEs from the history of science, I show that the replacement (...)
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  • International Handbook of Research in History, Philosophy and Science Teaching.Michael R. Matthews (ed.) - 2014 - Springer.
    This inaugural handbook documents the distinctive research field that utilizes history and philosophy in investigation of theoretical, curricular and pedagogical issues in the teaching of science and mathematics. It is contributed to by 130 researchers from 30 countries; it provides a logically structured, fully referenced guide to the ways in which science and mathematics education is, informed by the history and philosophy of these disciplines, as well as by the philosophy of education more generally. The first handbook to cover the (...)
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  • (1 other version)Empirical thought experiments: A trascendental-operational view.Buzzoni Marco - 2010 - Epistemologia. An Italian Journal for the Philosophy of Science 33:05-26.
    The operational perspective here defended permits a reflexive-transcendental point of view that sharply distinguishes the two concepts, while, at the same time, maintaining the connection between them. On the one hand, simply imagining that the experimental apparatus, counterfactually anticipated in a thought experiment, has really been constructed is sufficient to erase any difference between thought and real experiments. On the other hand, this very ‘imagining’, this capacity of the mind to assume every real entity as a possible entity, underpins the (...)
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  • Models in physics.Michael Redhead - 1980 - British Journal for the Philosophy of Science 31 (2):145-163.
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  • Mechanics Lost: Husserl’s Galileo and Ihde’s Telescope.Harald A. Wiltsche - 2017 - Husserl Studies 33 (2):149-173.
    Don Ihde has recently launched a sweeping attack against Husserl’s late philosophy of science. Ihde takes particular exception to Husserl’s portrayal of Galileo and to the results Husserl draws from his understanding of Galilean science. Ihde’s main point is that Husserl paints an overly intellectualistic picture of the “father of modern science”, neglecting Galileo’s engagement with scientific instruments such as, most notably, the telescope. According to Ihde, this omission is not merely a historiographical shortcoming. On Ihde’s view, it is only (...)
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  • Gravitating towards stability: Guidobaldo's Aristotelian-Archimedean synthesis.Maarten Van Dyck - 2006 - History of Science 44 (4):373-407.
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  • Idealized laws, antirealism, and applied science: A case in hydrogeology.K. S. Shrader-Frechette - 1989 - Synthese 81 (3):329 - 352.
    When is a law too idealized to be usefully applied to a specific situation? To answer this question, this essay considers a law in hydrogeology called Darcy''s Law, both as it is used in what is called the symmetric-cone model, and as it is used in equations to determine a well''s groundwater velocity and hydraulic conductivity. After discussing Darcy''s law and its applications, the essay concludes that this idealized law, as well as associated models and equations in hydrogeology, are not (...)
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  • Twilight of the perfect model model.Paul Teller - 2001 - Erkenntnis 55 (3):393-415.
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  • (1 other version)Empirical Thought Experiments: A Transcendental-Operational View.Marco Buzzoni - 2009 - Epistemologia 33 (1):5-26.
    The operational perspective here defended permits a reflexive-transcendental point of view that sharply distinguishes the two concepts, while, at the same time, maintaining the connection between them. On the one hand, simply imagining that the experimental apparatus, counterfactually anticipated in a thought experiment, has really been constructed is sufficient to erase any difference between thought and real experiments. On the other hand, this very ‘imagining’, this capacity of the mind to assume every real entity as a possible entity, underpins the (...)
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  • Two explanations of evolutionary progress.Gregory Radick - 2000 - Biology and Philosophy 15 (4):475-491.
    Natural selection explains how living forms are fitted to theirconditions of life. Darwin argued that selection also explains what hecalled the gradual advancement of the organisation, i.e.evolutionary progress. Present-day selectionists disagree. In theirview, it is happenstance that sustains conditions favorable to progress,and therefore happenstance, not selection, that explains progress. Iargue that the disagreement here turns not on whether there exists aselection-based condition bias – a belief now attributed to Darwin – but on whether there needs to be such a bias (...)
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  • Chaos and Stochastic Models in Physics: Ontic and Epistemic Aspects.Sergio Caprara & Angelo Vulpiani - 1st ed. 2016 - In Emiliano Ippoliti, Fabio Sterpetti & Thomas Nickles (eds.), Models and Inferences in Science. Cham: Springer.
    There is a persistent confusion about determinism and predictability. In spite of the opinions of some eminent philosophers, it is possible to understand that the two concepts are completely unrelated. In few words we can say that determinism is ontic and has to do with how Nature behaves, while predictability is epistemic and is related to what the human beings are able to compute. An analysis of the Lyapunov exponents and the Kolmogorov-Sinai entropy shows how deterministic chaos, although with an (...)
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