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  1. Energy, dynamics, hidden machinery: Rankine, Thomson and Tait, Maxwell.Donald Franklin Moyer - 1977 - Studies in History and Philosophy of Science Part A 8 (3):251-268.
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  • Natural Philosophy and Thermodynamics: William Thomson and ‘The Dynamical Theory of Heat’.Crosbie Smith - 1976 - British Journal for the History of Science 9 (3):293-319.
    William Thomson's image as a professional mathematical physicist who adheres, particularly in his work in classical thermodynamics, to a strict experimental basis for his science, avoids speculative hypotheses, and becomes renowned for his omission of philosophical declarations has been reinforced in varying degrees by those historians who have attempted, as either admirers or critics of Thomson, to describe and assess his life. J. G. Crowther, for example, sees him as a thinker of great intellectual strength, but deficient in intellectual taste; (...)
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  • Resources for Research on Analogy: A Multi-disciplinary Guide.Marcello Guarini, Amy Butchart, Paul Simard Smith & Andrei Moldovan - 2009 - Informal Logic 29 (2):84-197.
    Work on analogy has been done from a number of disciplinary perspectives throughout the history of Western thought. This work is a multidisciplinary guide to theorizing about analogy. It contains 1,406 references, primarily to journal articles and monographs, and primarily to English language material. classical through to contemporary sources are included. The work is classified into eight different sections (with a number of subsections). A brief introduction to each section is provided. Keywords and key expressions of importance to research on (...)
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  • The Heuristic Role of Maxwell's Mechanical Model of Electromagnetic Phenomena.Alan F. Chalmers - 1985 - Studies in History and Philosophy of Science Part A 17 (4):415.
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  • ‘To reason by means of images’: J. J. Thomson and the mechanical picture of nature.David R. Topper - 1980 - Annals of Science 37 (1):31-57.
    Throughout his life J. J. Thomson was committed to a mechanical interpretation of nature. This work proceeded in several stages. Early in his career he attempted a Lagrangian formulation of mechanics. But due to certain epistemological difficulties with this approach, he began exploring various analogies and models, particularly those involving vortex motion. After his discovery of the electron in 1897, he commenced a synthesis of the electron with his previous physical conceptions. The result was a hypothesis of the ether as (...)
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  • By design: James Clerk Maxwell and the evangelical unification of science.Matthew Stanley - 2012 - British Journal for the History of Science 45 (1):57-73.
    James Clerk Maxwell's electromagnetic theory famously unified many of the Victorian laws of physics. This essay argues that Maxwell saw a deep theological significance in the unification of physical laws. He postulated a variation on the design argument that focused on the unity of phenomena rather than Paley's emphasis on complexity. This argument of Maxwell's is shown to be connected to his particular evangelical religious views. His evangelical perspective provided encouragement for him to pursue a unified physics that supplemented his (...)
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  • W. J. M. Rankine and the Rise of Thermodynamics.Keith Hutchison - 1981 - British Journal for the History of Science 14 (1):1-26.
    In the history of thermodynamics, two dates stand out as especially important: 1824, when Sadi Carnot's brilliant memoirRéflexions sur la puissance motrice du feuappeared in print; and 1850, when Rudolf Clausius published his similarly titled paper ‘Ueber die bewegende Kraft der Wärme’. In this paper Clausius narrowly beat the Scottish physicist William Thomson to the solution of a puzzle which had been highlighted in the latter's recent publications: how could Carnot's theory, with all its intellectual attractions, be reconciled with the (...)
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  • Philosophy and the kinetic theory of gases.Henk W. de Regt - 1996 - British Journal for the Philosophy of Science 47 (1):31-62.
    This article examines the role of philosophy in the development of the kinetic theory of gases. Two opposing accounts of this role, by Peter Clark and John Nyhof, are discussed and criticized. Contrary to both accounts, it is argued that philosophical views of scientists can fundamentally influence the results of their scientific work. This claim is supported by a detailed analysis of the philosophical views of Maxwell and Boltzmann, and of their work on the kinetic theory, especially concerning the so-called (...)
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  • The Confined Atom: James Clerk Maxwell on the Fundamental Particles and the Limits of Scientific Knowledge.Charis Charalampous - 2021 - Perspectives on Science 29 (2):189-214.
    This paper distinguishes in Maxwell’s thought between “atomic molecules” and “ultimate atoms,” and arrives at a set of properties that characterize each type of atom. It concludes that Maxwell is a mathematical atomist, an approach that entails the notion that although it is impossible to observe the ultimate atoms as free particles, we can nevertheless study them as mathematical observables, on the caveat that mathematical formalism remains tied to phenomenalism and to theoretical interpretations of such phenomena as, for example, mass (...)
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  • Maxwell's Methodology and his application of it to Electromagnetism.A. F. Chalmers - 1973 - Studies in History and Philosophy of Science Part A 4 (2):107.
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  • Maxwell's methodology and his.A. F. Chalmers - 1973 - Studies in History and Philosophy of Science Part A 4 (2):107-164.
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  • On Understanding: Maxwell on the Methods of Illustration and Scientific Metaphor.Jordi Cat - 2001 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 32 (3):395-441.
    In this paper I examine the notion and role of metaphors and illustrations in Maxwell's works in exact science as a pathway into a broader and richer philosophical conception of a scientist and scientific practice. While some of these notions and methods are still at work in current scientific research-from economics and biology to quantum computation and quantum field theory-, here I have chosen to attest to their entrenchment and complexity in actual science by attempting to make some conceptual sense (...)
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  • The issue of hypotheses and scientific theories in the philosophical thoughts of Marian Smoluchowski.Małgorzata Dziekan - 2017 - Philosophical Problems in Science 62:7-71.
    The main purpose of this paper is to investigate and reconstruct the philosophical thoughts in Marian Smoluchowski’s papers. He was an outstanding Polish physicist, who lived at the turn of the XIX and XX century. Smoluchowski was particularly interested in theoretical physics. His achievements in this discipline, some even very significant, have caused him to be perceived mainly as a physicist. His work in the theory of fluctuations and kinetic theory of gases, especially in the theory of Brownian motions, is (...)
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