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  1. What physical properties are.David Spurrett - 2001 - Pacific Philosophical Quarterly 82 (2):201-225.
    This paper concerns the question of how to specify what is to count as physical for the purposes of debates concerning either physicalism or the completeness of physics. I argue that what is needed from an account of the physical depends primarily on the particular issue at stake, and that the demand for a general a priori specification of the physical is misplaced. A number of attempts to say what should be counted as physical are defended from recent attacks by (...)
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  • Picturing Knowledge: Historical and Philosophical Problems Concerning the Use of Art in Science.Brian Scott Baigrie (ed.) - 1996 - University of Toronto Press.
    List of Illustrations Introduction 1 The Didactic and the Elegant: Some Thoughts on Scientific and Technological Illustrations in the Middle Ages and Renaissance 3 2 Temples of the Body and Temples of the Cosmos: Vision and Visualization in the Vesalian and Copernican Revolutions 40 3 Descartes’s Scientific Illustrations and ’la grande mecanique de la nature’ 86 4 Illustrating Chemistry 135 5 Representations of the Natural System in the Nineteenth Century 164 6 Visual Representation in Archaeology: Depicting the Missing-Link in Human (...)
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  • The process of microRNAs discovery.Paweł Kawalec - 2020 - Philosophical Problems in Science 68:219-242.
    The widespread particularist account of the onset of molecular biology that identifies it with the discovery of the DNA structure in 1953 has been recently contested. The paper contributes to this debate by focusing on a more recent discovery of small noncoding RNAs. First, it outlines a particularist account of the microRNAs discovery and the origins of the particularist predilection of the modern scientometric studies of science dynamics. Next, it discusses its limitations and proposes an alternative, modified processualist account of (...)
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  • What To Do With Seventeenth-Century Natural Philosophy? A Taxonomic Problem.Christoph Lüthy - 2000 - Perspectives on Science 8 (2):164-195.
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  • The origin of language: A scientific approach to the study of man.Rüdiger Schreyer - 1985 - Topoi 4 (2):181-186.
    The Enlightenment regarded language as one of the most significant achievements of man. Consequently inquiries into the origin and development of language play a central role in eighteenth-century moral philosophy. This new science of man consciously adopts the method of analysis and synthesis used in the natural sciences of the time. In moral philosophy, analysis corresponds to the search for the basic principles of human nature. Synthesis is identified with the attempt to interpret all artificial achievements of man (arts, sciences (...)
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  • A History of Universalism: Conceptions of the Internationality of Science from the Enlightenment to the Cold War. [REVIEW]Geert J. Somsen - 2008 - Minerva 46 (3):361-379.
    That science is fundamentally universal has been proclaimed innumerable times. But the precise geographical meaning of this universality has changed historically. This article examines conceptions of scientific internationalism from the Enlightenment to the Cold War, and their varying relations to cosmopolitanism, nationalism, socialism, and ‘the West’. These views are confronted with recent tendencies to cast science as a uniquely European product.
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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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  • On Lavoisier's Achievement in Chemistry.Geoffrey Blumenthal - 2013 - Centaurus 55 (1):20-47.
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  • De Volder’s Cartesian Physics and Experimental Pedagogy.Tammy Nyden - 2013 - In Mihnea Dobre Tammy Nyden (ed.), Cartesian Empiricisms. Dordrecht: Springer.
    In 1675, Burchard de Volder (1643–1709) was the first professor to introduce the demonstration of experiment into a university physics course and built the Leiden Physics Theatre to accommodate this new pedagogy. When he requested the funds from the university to build the facility, he claimed that the performance of experiments would demonstrate the “truth and certainty” of the postulates of theoretical physics. Such a claim is interesting given de Volder’s lifelong commitment to Cartesian scientia. This chapter will examine de (...)
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  • Constructivism and Realism in Boltzmann’s Thermodynamics’ Atomism.Luiz Pinguelli Rosa, Elaine Andrade, Paulo Picciani & Jean Faber - 2020 - Foundations of Physics 50 (11):1270-1293.
    Ludwig Boltzmann is one of the foremost responsible for the development of modern atomism in thermodynamics. His proposition was revolutionary not only because it brought a new vision for Thermodynamics, merging a statistical approach with Newtonian physics, but also because he produced an entirely new perspective on the way of thinking about and describing physical phenomena. Boltzmann dared to flirt with constructivism and realism simultaneously, by hypothesizing the reality of atoms and claiming an inherent probabilistic nature related to many particles (...)
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  • The Baconian character of Locke's ‘essay’.Neal Wood - 1975 - Studies in History and Philosophy of Science Part A 6 (1):43-84.
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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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  • Duhem and the origins of statics: Ramifications of the crisis of 1903–04.R. N. D. Martin - 1990 - Synthese 83 (3):337 - 355.
    Much speculation on the sources of Duhem's historical interests fails to account for the major shifts in these interests: neither his belief in the continuous development of physics nor his Catholicism, when his Church was encouraging the study of generally Aristotelian scholastic thought, led to any interest in mediaeval science before 1904. Equally, his own claim that he was merely testing his views on the nature of physical theory is easily squared only with earlier work with no trace of mediaeval (...)
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