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  1. Du Châtelet on the Need for Mathematics in Physics.Aaron Wells - 2021 - Philosophy of Science 88 (5):1137-1148.
    There is a tension in Emilie Du Châtelet’s thought on mathematics. The objects of mathematics are ideal or fictional entities; nevertheless, mathematics is presented as indispensable for an account of the physical world. After outlining Du Châtelet’s position, and showing how she departs from Christian Wolff’s pessimism about Newtonian mathematical physics, I show that the tension in her position is only apparent. Du Châtelet has a worked-out defense of the explanatory and epistemic need for mathematical objects, consistent with their metaphysical (...)
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  • Thought Experiments: Determining Their Meaning.Igal Galili - 2009 - Science & Education 18 (1):1-23.
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  • From Earth to Heaven: Using ‘Newton’s Cannon’ Thought Experiment for Teaching Satellite Physics.Athanasios Velentzas & Krystallia Halkia - 2013 - Science & Education 22 (10):2621-2640.
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  • Experimentos Mentales y Filosofías de Sillón.Rodrigo González (ed.) - 2017 - Santiago, Chile: Bravo y Allende.
    Los experimentos mentales son dispositivos epistémicos de la imaginación, o de análisis de problemas filosóficos, que recorren las fronteras de aquella, desde el sillón. Dichas fronteras tocan dilemas perennes de la filosofía: cuestiones de la metafísica, como el tiempo, el espacio y la realidad, el problema de la libertad y el determinismo, la naturaleza de la mente, la identidad personal, los argumentos acerca del significado, las posibilidades, fuentes y condiciones del conocimiento, las relaciones entre discurso y lógica, la ética, cuestiones (...)
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  • Platonism and the Apriori in Thought Experiments.Thomas Grundmann - 2017 - In Michael T. Stuart, Yiftach Fehige & James Robert Brown (eds.), The Routledge Companion to Thought Experiments. London: Routledge.
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  • Imagination: A Sine Qua Non of Science.Michael T. Stuart - 2017 - Croatian Journal of Philosophy (49):9-32.
    What role does the imagination play in scientific progress? After examining several studies in cognitive science, I argue that one thing the imagination does is help to increase scientific understanding, which is itself indispensable for scientific progress. Then, I sketch a transcendental justification of the role of imagination in this process.
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  • Galileo and the Problem of Free Fall.R. H. Naylor - 1974 - British Journal for the History of Science 7 (2):105-134.
    There can be little doubt that 1973 will remain notable as a year in which knowledge of Galileo's mechanics increased dramatically. Professor Stillman Drake's publication, in May, of some of Galileo's early work on the law of free fall was followed in the autumn by the publication of a number of important manuscripts clearly indicating Galileo's use of precise measurement. From a discussion of these manuscripts and Thomas Settle's performance of Galileo's inclined plane experiment, Drake implies that a clear view (...)
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  • Theories of Scientific Method from Plato to Mach.Laurens Laudan - 1968 - History of Science 7 (1):1-63.
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  • (1 other version)On some unwarranted tacit assumptions in cognitive neuroscience.Rainer Mausfeld - 2012 - Frontiers in Cognition 3 (67):1-13.
    The cognitive neurosciences are based on the idea that the level of neurons or neural networks constitutes a privileged level of analysis for the explanation of mental phenomena. This paper brings to mind several arguments to the effect that this presumption is ill-conceived and unwarranted in light of what is currently understood about the physical principles underlying mental achievements. It then scrutinizes the question why such conceptions are nevertheless currently prevailing in many areas of psychology. The paper argues that corresponding (...)
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  • The Idea Of a Religious Social Science.Khosrow Bagheri Noaparast - 2009 - Alhoda.
    In this book, the words ‘science’ and ‘social science’ are used in their limited sense that refer to experience-based knowledge. This should not indicate that experience is being used in a positivistic sense. Rather, the important insights of all kinds of post-positivist views are embraced to give an extensive meaning to experience. However, the most important characteristic of experience and science that should never be excluded is its dependence on observation and observational evidence. Thus, when ‘science’ is used in combination (...)
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  • The Primary/Secondary Quality Distinction: Berkeley, Locke, and the Foundations of Corpuscularian Science.Arnold I. Davidson & Norbert Hornstein - 1984 - Dialogue 23 (2):281-303.
    Recent interpretations of Locke's primary/secondary quality distinction have tended to emphasize Locke's relationship to the corpuscularian science of his time, especially to that of Boyle. Although this trend may have corrected the unfortunate tendency to view Locke in isolation from his scientific contemporaries, it nevertheless has resulted in some over- simplifications and distortions of Locke's general enterprise. As everyone now agrees, Locke was attempting to provide a philosophical foundation for English corpuscularianism and one must therefore look not only at the (...)
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  • How Science Became Technical.Theodore M. Porter - 2009 - Isis 100 (2):292-309.
    Not until the twentieth century did science come to be regarded as fundamentally technical in nature. A technical field, after all, meant not just a difficult one, but one relying on concepts and vocabulary that matter only to specialists. The alternative, to identify science with an ideal of public reason, attained its peak of influence in the late nineteenth century. While the scale and applicability of science advanced enormously after 1900, scientists have more and more preferred the detached objectivity of (...)
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  • The Paradox of Conceptual Novelty and Galileo’s Use of Experiments.Maarten Van Dyck - 2005 - Philosophy of Science 72 (5):864-875.
    Starting with a discussion of what I call Koyré’s paradox of conceptual novelty, I introduce the ideas of Damerow et al. on the establishment of classical mechanics in Galileo’s work. I then argue that although the view of Damerow et al. on the nature of Galileo’s conceptual innovation is convincing, it misses an essential element: Galileo’s use of the experiments described in the first day of the Two New Sciences. I describe these experiments and analyze their function. Central to my (...)
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  • Bayesian confirmation of theories that incorporate idealizations.Michael J. Shaffer - 2001 - Philosophy of Science 68 (1):36-52.
    Following Nancy Cartwright and others, I suggest that most (if not all) theories incorporate, or depend on, one or more idealizing assumptions. I then argue that such theories ought to be regimented as counterfactuals, the antecedents of which are simplifying assumptions. If this account of the logic form of theories is granted, then a serious problem arises for Bayesians concerning the prior probabilities of theories that have counterfactual form. If no such probabilities can be assigned, the the posterior probabilities will (...)
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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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  • Remodeling the past.Tim De Mey - 2005 - Foundations of Science 10 (1):47-66.
    In some of the papers in which she develops and defends the mental modelview of thought experiments in physics, Nersessian expresses the belief that her account has implications for thought experiments in other domains as well. In this paper, I argue, firstly, that counterfactual reasoning has a legitimate place in historical inquiry, and secondly, that the mental model view can account for such "alternative histories". I proceed as follows. Firstly, I review the main accounts of thought experiments in physics and (...)
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  • Lebenswelt structures of galilean physics: The case of Galileo's pendulum. [REVIEW]Dušan I. Bjelic - 1996 - Human Studies 19 (4):409 - 432.
    The aim of this paper is to give a self-reflective account of the building of Galileo's pendulum in order to discover what were the practical contingencies of building and using the pendulum for demonstrating the law of isochronism. In doing this, the unique Lebenswelt structures of Galilean physics are explicated through the ethnomethodological concepts developed by Harold Garfinkel. The presupposition is that the practical logic of Galilean physics is embedded in the instruments themselves. In building the pendulum and recovering its (...)
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  • Virtues and vices – between ethics and epistemology.Nenad Cekić (ed.) - 2023 - Belgrade: Faculty of Philosophy, University of Belgrade.
    The statement everyone wants to live a fulfilled and happy life may seem simple, self-evident, and even trivial at first glance. However, upon closer philosophical analysis, can we unequivocally assert that people are truly focused on well-being? Assuming they are, the question becomes: what guidelines should be followed and how should one behave in order to achieve true well-being and attain their goals? One popular viewpoint is that cultivating moral virtues and personal qualities is essential for a life of "true" (...)
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  • Promotion of Cultural Content Knowledge Through the Use of the History and Philosophy of Science.Igal Galili - 2012 - Science & Education 21 (9):1283-1316.
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  • Philosophy and science in Adam Smith’s ‘History of Astronomy’: A metaphysico-scientific view.Kwangsu Kim - 2017 - History of the Human Sciences 30 (3):107-130.
    This article casts light on the intimate relationship between metaphysics and science in Adam Smith’s thought. Understanding this relationship can help in resolving an enduring dispute or misreading concerning the status and role of natural theology and the ‘invisible hand’ doctrine. In Smith’s scientific realism, ontological issues are necessary prerequisites for scientific inquiry, and metaphysical ideas thus play an organizing and regulatory role. Smith also recognized the importance of scientifically informed metaphysics in science’s historical development. In this sense, for Smith, (...)
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  • The Content of Science Debate in the Historiography of the Scientific Revolution.John Nnaji & José Luis Luján - 2016 - International Studies in the Philosophy of Science 30 (2):99-109.
    The issue of internalism and externalism in historiography of science was intensely debated two decades ago. The conclusions of such debate on the ‘context of science’ appear to be a reinstatement of the positivist view of the ‘content of science’ as comprising only ideas and concepts uninfluenced by extra-scientific factors. The description of the roles of politics, economy, and socio-cultural factors in science was limited only within the ‘context of science’. This article seeks to resituate the ‘content of science’ debate (...)
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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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  • The Place of Knowledge A Methodological Survey.Adi Ophir & Steven Shapin - 1991 - Science in Context 4 (1):3-22.
    A generation ago scientific ideas floated free in the air, as historians gazed up at them in wonder and admiration. From time to time, historians agreed, the ideas that made up the body of scientific truth became incarnate: they were embedded into the fleshly forms of human culture and attached to particular times and places. How this incarnation occurred was a great mystery. How could spirit be made flesh? How did the transcendent and the timeless enter the forms of the (...)
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  • A Process Ontology.Haines Brown - 2014 - Axiomathes 24 (3):291-312.
    The paper assumes that to be of practical interest process must be understood as physical action that takes place in the world rather than being an idea in the mind. It argues that if an ontology of process is to accommodate actuality, it must be represented in terms of relative probabilities. Folk physics cannot accommodate this, and so the paper appeals to scientific culture because it is an emergent knowledge of the world derived from action in it. Process is represented (...)
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  • Proclus on Nature: Philosophy of Nature and its Methods in Proclus’ Commentary on Plato’s timaeus.Marije Martijn - 2010 - Brill.
    One of the hardest questions to answer for a (Neo)platonist is to what extent and how the changing and unreliable world of sense perception can itself be an object of scientific knowledge. My dissertation is a study of the answer given to that question by the Neoplatonist Proclus (Athens, 411-485) in his Commentary on Plato’s Timaeus. I present a new explanation of Proclus’ concept of nature and show that philosophy of nature consists of several related subdisciplines matching the ontological stratification (...)
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  • Experiment as intervention.J. E. Tiles - 1993 - British Journal for the Philosophy of Science 44 (3):463-475.
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  • On consensus and stability in science.Brian S. Baigrie & J. N. Hattiangadi - 1992 - British Journal for the Philosophy of Science 43 (4):435-458.
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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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  • Descartes vs. the Scholastics: Lessons from Contemporary Philosophy and Cognitive Neuroscience.Yakir Levin - 2023 - Acta Analytica 38 (3):393-415.
    The demise of the scholastic worldview and the rise of the mechanistic one may give the impression of a parallel demise of the scholastic explanatory framework. In this paper, I argue that this impression is wrong. To this end, I first outline Descartes’ representative and particularly sharp mechanistic criticism of the scholastic notion of explanation. Deploying conceptual machinery from contemporary philosophy of science, I then suggest a reconstruction of the scholastic notion that is immune to Descartes’ criticism. Based on this (...)
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  • Naked wax and necessary existence: modal voluntarism and Descartes’s motives.Jason Jordan - 2018 - Intellectual History Review 28 (4):477-513.
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  • Robert Boyle and Mathematics: Reality, Representation, and Experimental Practice.Steven Shapin - 1988 - Science in Context 2 (1):23-58.
    The ArgumentThis paper is a study of the role of language in scientific activity. It recommends that language be viewed as a community's means of patterning its affairs. Language represents where the boundaries of the community are and who is entitled to speak within it, and it displays the structures of authority in the community. Moreover, language precipitates the community's view of what the world is like, such that linguistic usages can be taken as referring to that world. Thus, language (...)
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  • In search of the chemical revolution: Interpretive strategies in the history of chemistry.John G. McEvoy - 2000 - Foundations of Chemistry 2 (1):47-73.
    In recent years the Chemical Revolution has become a renewed focus of interest among historians of science. This interest isshaped by interpretive strategies associated with the emergence anddevelopment of the discipline of the history of science. The disciplineoccupies a contested intellectual terrain formed in part by thedevelopment and cultural entanglements of science itself. Threestages in this development are analyzed in this paper. Theinterpretive strategies that characterized each stage are elucidatedand traced to the disciplinary interests that gave rise to them. Whilepositivists (...)
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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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