Results for 'Newtonian physics'

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  1.  17
    Transreal Newtonian physics operates at singularities.James A. D. W. Anderson & Tiago Soares dos Reis - 2015 - Synesis 7 (2):57-81.
    Sir Isaac Newton, writing in Latin, defined his celebrated laws of motion verbally. When the laws of motion are read as relating to his arithmetic and his calculus, division by zero is undefined so his physics fails at mathematical singularities. The situation is unchanged in modern real arithmetic and real calculus: division by zero is undefined so both Newtonian Physics and its modern developments fail at mathematical singularities. However, when Newton’s text is read as relating to transreal (...)
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  2.  23
    Aping Newtonian physics but ignoring brute facts will not transform Skinnerian psychology into genuine science or useful technology.John J. Furedy - 2004 - Behavioral and Brain Sciences 27 (5):693-694.
    The proposal to add the behavioral momentum metaphor to Skinnerian psychology and the use of other borrowed physical explanatory concepts such as velocity and inertial mass has only superficial value. The basic problem is that, in contrast to Newtonian physics, the “laws” do not apply to a significant proportion of the phenomena to be explained, and these evidential discrepancies are ignored, rather than being used to modify the scientific explanations and improve technological applications that are based on those (...)
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  3. Does Post-Newtonian Physics Suggest a Post-Kantian View of Human Experience?Paavo Pylkkänen - 2020 - Pari Perspectives 6 (December 2020):122-128.
    Immanuel Kant famously thought that the presuppositions of Newtonian physics are the necessary conditions of the possibility of experience in general – both “outer” and “inner” experience. Today we know, of course, that Newtonian physics only applies to a limited domain of physical reality and is radically inadequate in the quantum and relativistic domains. This gives rise to an interesting question: could the radical changes in physics suggest new conditions for the possibility of experience? In (...)
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  4.  33
    Non-Newtonian Mathematics Instead of Non-Newtonian Physics: Dark Matter and Dark Energy from a Mismatch of Arithmetics.Marek Czachor - 2020 - Foundations of Science 26 (1):75-95.
    Newtonian physics is based on Newtonian calculus applied to Newtonian dynamics. New paradigms such as ‘modified Newtonian dynamics’ change the dynamics, but do not alter the calculus. However, calculus is dependent on arithmetic, that is the ways we add and multiply numbers. For example, in special relativity we add and subtract velocities by means of addition β1⊕β2=tanh+tanh-1)\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$$\beta _1\oplus \beta _2=\tanh \big +\tanh ^{-1}\big )$$\end{document}, although multiplication β1⊙β2=tanh·tanh-1)\documentclass[12pt]{minimal} (...)
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  5.  30
    Leibniz Against the Unreasonable Newtonian Physics.Laurence Bouquiaux - 2008 - In Marcelo Dascal (ed.), Leibniz: What Kind of Rationalist? Springer. pp. 99--110.
  6. Fundamental and Emergent Geometry in Newtonian Physics.David Wallace - 2020 - British Journal for the Philosophy of Science 71 (1):1-32.
    Using as a starting point recent and apparently incompatible conclusions by Saunders and Knox, I revisit the question of the correct spacetime setting for Newtonian physics. I argue that understood correctly, these two versions of Newtonian physics make the same claims both about the background geometry required to define the theory, and about the inertial structure of the theory. In doing so I illustrate and explore in detail the view—espoused by Knox, and also by Brown —that (...)
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  7.  1
    The Acceptance of Newtonian Physics by Edo Japanese Rangaku: on Translating the Concept of ‘Matter’ to Japanese Term ‘Mono’. 김성근 - 2014 - 동서철학연구(Dong Seo Cheol Hak Yeon Gu; Studies in Philosophy East-West) 74:209-230.
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  8. Universal regularities and initial conditions in Newtonian physics.James W. Mcallister - 1999 - Synthese 120 (3):325-343.
    The Newtonian universe is usually understood to contain two classes of causal factors: universal regularitiesand initial conditions. I demonstrate that,in fact, the Newtonian universe contains no causal factors other thanuniversal regularities: the initial conditions ofany physical system are merely theconsequence of universal regularities acting on previoussystems. It follows that aNewtonian universe lacks the degree of contingency that is usually attributed to it. This is a necessary precondition for maintaining that the Newtonian universe is a block universe that (...)
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  9.  13
    Verbal Difficulties in the Application of Newtonian Physics.Anatol Rapoport - 1948 - Synthese 7 (1):79 - 92.
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  10.  16
    7. The aftermath: The Cartesian heritage in ’s Gravesande’s foundation of Newtonian physics.Andrea Strazzoni - 2018 - In Dutch Cartesianism and the Birth of Philosophy of Science: From Regius to ‘s Gravesande. Berlin-Boston: De Gruyter. pp. 171-197.
    The seventh chapter focuses on the aftermath of the decline of Cartesianism as a leading force in the Dutch academic context. After De Volder and De Raey, indeed, only Ruardus Andala in Franeker carried on the teaching of Cartesian physics (which he taught by commenting upon Descartes’s Principia) and metaphysics, mainly for the sake of contrasting Spinozism and other forms of radical Cartesianism. Thus, Descartes’s philosophy came a dead end on the eve of the eighteenth century. Yet, Leiden Cartesianism (...)
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  11. The mathematisation of nature and Newtonian physics.Ladislav Kvasz - 2005 - Philosophia Naturalis 42 (2):183-211.
     
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  12. The Natural Motion of Matter in Newtonian and Post-Newtonian Physics.John W. Keck - 2007 - The Thomist 71 (4):529-554.
     
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  13. Willem Jacob's Gravesande's Philosophical Defence of Newtonian Physics: On the Various Uses of Locke.Paul Schuurman - 2003 - In Peter R. Anstey (ed.), The Philosophy of John Locke: New Perspectives. Routledge. pp. 43--57.
     
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  14. Space-time relationism in Newtonian and relativistic physics.Dennis Dieks - 2000 - International Studies in the Philosophy of Science 15 (1):5 – 17.
    I argue that there is natural relationist interpretation of Newtonian and relativistic non-quantum physics. Although relationist, this interpretation does not fall prey to the traditional objections based on the existence of inertial effects.
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  15.  18
    Reconciling intuitive physics and Newtonian mechanics for colliding objects.Adam N. Sanborn, Vikash K. Mansinghka & Thomas L. Griffiths - 2013 - Psychological Review 120 (2):411-437.
  16. Reconciliation of the Newtonian Framework with Thermodynamics by the Reproducibility of a Collective Physical Quantity.J. M. Guido - 1988 - In International Archives of the History of Ideas Archives internationales d'histoire des idées. pp. 183-191.
    -/- Attempts to reduce irreversible processes to the scope of Newton’s mechanics are particularly challenging topics for both physical and philosophical research. Hollinger and Zenzen,1 for instance, claim that macroscopic irreversibility has a mechanical origin, and they explain this within the Newtonian framework. Newton’s Scientific and Philosophical Legacy Newton’s Scientific and Philosophical Legacy Look -/- .
     
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  17.  34
    Polyphonic Music and Classical Physics: The Origin of Newtonian Time.Geza Szamosi - 1990 - History of Science 28 (2):175-191.
  18. Idealizing the Cartesian-Newtonian Paradigm as Reality: The Impact of New-Paradigm Physics on Psychological Theory.J. Wade - 1997 - Poznan Studies in the Philosophy of the Sciences and the Humanities 56:9-34.
     
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  19.  93
    On the status of the geodesic principle in Newtonian and relativistic physics.James Owen Weatherall - 2011 - Studies in History and Philosophy of Science Part A 42 (4):276-281.
    A theorem due to Bob Geroch and Pong Soo Jang ["Motion of a Body in General Relativity." Journal of Mathematical Physics 16, ] provides a sense in which the geodesic principle has the status of a theorem in General Relativity. I have recently shown that a similar theorem holds in the context of geometrized Newtonian gravitation [Weatherall, J. O. "The Motion of a Body in Newtonian Theories." Journal of Mathematical Physics 52, ]. Here I compare the (...)
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  20. Newtonian supertasks: A critical analysis.Joseph S. Alper & Mark Bridger - 1998 - Synthese 114 (2):355-369.
    In two recent papers Perez Laraudogoitia has described a variety of supertasks involving elastic collisions in Newtonian systems containing a denumerably infinite set of particles. He maintains that these various supertasks give examples of systems in which energy is not conserved, particles at rest begin to move spontaneously, particles disappear from a system, and particles are created ex nihilo. An analysis of these supertasks suggests that they involve systems that do not satisfy the mathematical conditions required of Newtonian (...)
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  21.  75
    Newtonian Mechanics.Ryan Samaroo - 2022 - In Eleanor Knox & Alastair Wilson (eds.), The Routledge Companion to Philosophy of Physics. London, UK: Routledge.
    Newtonian mechanics is more than just an empirically successful theory of matter in motion: it is an account of what knowledge of the physical world should look like. But what is this account? What is distinctive about it? To answer these questions, I begin by introducing the laws of motion, the relations among them, and the spatio-temporal framework that is implicit in them. Then I turn to the question of their methodological character. This has been the locus of philosophical (...)
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  22.  43
    Newtonian Equivalence Principles.James Read & Nicholas J. Teh - 2023 - Erkenntnis 88 (8):3479-3503.
    The equivalence principle has constituted one of the cornerstones of discussions in the foundations of spacetime theories over the past century. However, up to this point the principle has been considered overwhelmingly only within the context of relativistic physics. In this article, we demonstrate that the principle has much broader, super-theoretic significance: to do so, we present a unified framework for understanding the principle in its various guises, applicable to both relativistic and Newtonian contexts. We thereby deepen significantly (...)
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  23.  50
    The Newtonian Limit of Relativity Theory and the Rationality of Theory Change.Andrés Rivadulla - 2004 - Synthese 141 (3):417 - 429.
    The aim of this paper is to elucidate the question of whether Newtonian mechanics can be derived from relativity theory. Physicists agree that classical mechanics constitutes a limiting case of relativity theory. By contrast, philosophers of science like Kuhn and Feyerabend affirm that classical mechanics cannot be deduced from relativity theory because of the incommensurability between both theories; thus what we obtain when we take the limit c → ∞ in relativistic mechanics cannot be Newtonian mechanics sensu stricto. (...)
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  24. The Newtonian revolution: with illustrations of the transformation of scientific ideas.I. Bernard Cohen - 1980 - New York: Cambridge University Press.
  25. The Newtonian limit of relativity theory and the rationality of theory change.Ardnés Rivadulla - 2004 - Synthese 141 (3):417 - 429.
    The aim of this paper is to elucidate the question of whether Newtonian mechanics can be derived from relativity theory. Physicists agree that classical mechanics constitutes a limiting case of relativity theory. By contrast, philosophers of science like Kuhn and Feyerabend affirm that classical mechanics cannot be deduced from relativity theory because of the incommensurability between both theories; thus what we obtain when we take the limit c in relativistic mechanics cannot be Newtonian mechanics sensu stricto. In this (...)
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  26. Newtonian space-time.Howard Stein - 1967 - Texas Quarterly 10 (3):174--200.
     
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  27.  53
    Does Newtonian Space Provide Identity to Quantum Systems?Décio Krause - 2019 - Foundations of Science 24 (2):197-215.
    Physics is not just mathematics. This seems trivial, but poses difficult and interesting questions. In this paper we analyse a particular discrepancy between non-relativistic quantum mechanics and ‘classical’ space and time. We also suggest, but not discuss, the case of the relativistic QM. In this work, we are more concerned with the notion of space and its mathematical representation. The mathematics entails that any two spatially separated objects are necessarily different, which implies that they are discernible —we say that (...)
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  28.  53
    Four Causal Classes of Newtonian Frames.Bartolomé Coll, Joan Josep Ferrando & Juan Antonio Morales-Lladosa - 2009 - Foundations of Physics 39 (11):1280-1295.
    The causal characters (spacelike, lightlike, timelike) of the coordinate lines, coordinate surfaces and coordinate hypersurfaces of a coordinate system in Relativity define what is called its causal class. It is known that, in any relativistic space-time, there exist one hundred and ninety nine such causal classes. But in Newtonian physics (where only spacelike and timelike characters exist) the corresponding causal classes have not been discussed until recently. Here it is shown that, in sharp contrast with the relativistic case, (...)
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  29. Newtonian science.Arthur Bell - 1961 - London,: E. Arnold.
  30. “In Nature as in Geometry”: Du Châtelet and the Post-Newtonian Debate on the Physical Significance of Mathematical Objects.Aaron Wells - 2023 - In Wolfgang Lefèvre (ed.), Between Leibniz, Newton, and Kant: Philosophy and Science in the Eighteenth Century. Springer Verlag. pp. 69-98.
    Du Châtelet holds that mathematical representations play an explanatory role in natural science. Moreover, she writes that things proceed in nature as they do in geometry. How should we square these assertions with Du Châtelet’s idealism about mathematical objects, on which they are ‘fictions’ dependent on acts of abstraction? The question is especially pressing because some of her important interlocutors (Wolff, Maupertuis, and Voltaire) denied that mathematics informs us about the properties of material things. After situating Du Châtelet in this (...)
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  31.  23
    Non-Newtonian Aspects of Artificial Intelligence.Michail Zak - 2016 - Foundations of Physics 46 (5):517-553.
    The challenge of this work is to connect physics with the concept of intelligence. By intelligence we understand a capability to move from disorder to order without external resources, i.e., in violation of the second law of thermodynamics. The objective is to find such a mathematical object described by ODE that possesses such a capability. The proposed approach is based upon modification of the Madelung version of the Schrodinger equation by replacing the force following from quantum potential with non-conservative (...)
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  32.  37
    A Newtonian tale details on notes and proofs in Geneva edition of Newton's Principia.Raffaele Pisano & Paolo Bussotti - 2016 - BSHM-Journal of the British Society for the History of Mathematics:1-19.
    Based on our research regarding the relationship between physics and mathematics in HPS, and recently on Geneva Edition of Newton's Philosophiae Naturalis Principia Mathematica (1739–42) by Thomas Le Seur (1703–70) and François Jacquier (1711–88), in this paper we present some aspects of such Edition: a combination of editorial features and scientific aims. The proof of Proposition XLIII is presented and commented as a case study.
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  33.  8
    Newtonian Fractional-Dimension Gravity and MOND.Gabriele U. Varieschi - 2020 - Foundations of Physics 50 (11):1608-1644.
    This paper introduces a possible alternative model of gravity based on the theory of fractional-dimension spaces and its applications to Newtonian gravity. In particular, Gauss’s law for gravity as well as other fundamental classical laws are extended to a D-dimensional metric space, where D can be a non-integer dimension. We show a possible connection between this Newtonian Fractional-Dimension Gravity (NFDG) and Modified Newtonian Dynamics (MOND), a leading alternative gravity model which accounts for the observed properties of galaxies (...)
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  34.  48
    The Newtonian Equivalence Principle: How the Relativity of Acceleration Led Newton to the Equivalence of Inertial and Gravitational Mass.Craig W. Fox - 2016 - Philosophy of Science 83 (5):1027-1038.
    From late 1684 through mid-1685, Isaac Newton turned to developing and refining the conceptual foundations presupposed by his emerging physics. Analysis of his manuscripts from this period reveals that Newton’s understanding of the relativity of acceleration led him to seek a spatiotemporally invariant quantity of matter. He found two such quantities and then designed an experiment to discover their relationship. Interpreting the experiment, however, required distinguishing a new notion of force. Others have recognized the conceptual distinction between inertial and (...)
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  35.  28
    On biological analogs of Newtonian paradigms.Thomas S. Hall - 1968 - Philosophy of Science 35 (1):6-27.
    To what extent is the scientist's endeavor qua scientist influenced by his philosophic image of himself? A preliminary and partial answer to this question is suggested by a study of eight physiological thinkers of the second half of the eighteenth century, a period during which biology was much influenced by the scientific and philosophical ideas of Isaac Newton. At this time, physiologists invoked certain "principles," "properties," and "powers" which were deemed useful as explanatory devices, even though they could not themselves (...)
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  36. Was Newtonian cosmology really inconsistent?Peter Vickers - 2009 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 40 (3):197-208.
    This paper follows up a debate as to the consistency of Newtonian cosmology. Whereas Malament (1995) has shown that Newtonian cosmology *is* not inconsistent, to date there has been no analysis of Norton’s claim (1995) that Newtonian cosmology *was* inconsistent prior to certain advances in the 1930s, and in particular prior to Seeliger’s seminal paper of 1895. In this paper I agree that there are assumptions, Newtonian and cosmological in character, and relevant to the real history (...)
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  37.  22
    Was Newtonian cosmology really inconsistent?Peter Vickers - 2009 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 40 (3):197-208.
    This paper follows up a debate as to the consistency of Newtonian cosmology. Whereas Malament has shown that Newtonian cosmology *is* not inconsistent, to date there has been no analysis of Norton’s claim that Newtonian cosmology *was* inconsistent prior to certain advances in the 1930s, and in particular prior to Seeliger’s seminal paper of 1895. In this paper I agree that there are assumptions, Newtonian and cosmological in character, and relevant to the real history of science, (...)
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  38. Overcoming the Newtonian Paradigm: The Unfinished Project of Theoretical Biology from a Schellingian Perspective.Arran Gare - 2013 - Progress in Biophysics and Molecular Biology 113:5-24.
    Defending Robert Rosen’s claim that in every confrontation between physics and biology it is physics that has always had to give ground, it is shown that many of the most important advances in mathematics and physics over the last two centuries have followed from Schelling’s demand for a new physics that could make the emergence of life intelligible. Consequently, while reductionism prevails in biology, many biophysicists are resolutely anti-reductionist. This history is used to identify and defend (...)
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  39. Theories of Newtonian gravity and empirical indistinguishability.Jonathan Bain - 2004 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 35 (3):345--76.
    In this essay, I examine the curved spacetime formulation of Newtonian gravity known as Newton–Cartan gravity and compare it with flat spacetime formulations. Two versions of Newton–Cartan gravity can be identified in the physics literature—a ‘‘weak’’ version and a ‘‘strong’’ version. The strong version has a constrained Hamiltonian formulation and consequently a well-defined gauge structure, whereas the weak version does not (with some qualifications). Moreover, the strong version is best compared with the structure of what Earman (World enough (...)
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  40.  44
    Thomas Reid’s Newtonian Theism: his differences with the classical arguments of Richard Bentley and William Whiston.Robert Callergård - 2010 - Studies in History and Philosophy of Science Part A 41 (2):109-119.
    Reid was a Newtonian and a Theist, but did he found his Theism on Newton’s physics? In opposition to commonplace assumptions about the role of Theism in Reid’s philosophy, my answer is no. Reid prefers to found his Theism on a priori reasons, rather than on physics. Reid’s understanding of physics as an empirical science stops it from contributing in any clear and efficient way to issues of natural theology. In addition, Reid is highly sceptical of (...)
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  41. The Newtonian settlement and the origins of atheism.Michael J. Buckley - 1988 - In Robert J. Russell, William R. Stoeger & George V. Coyne (eds.), Physics, philosophy, and theology: a common quest for understanding. Notre Dame, Ind.: University of Notre Dame Press [distributor]. pp. 81--102.
  42.  50
    Discrete Newtonian gravitation and the three-body problem.Donald Greenspan - 1974 - Foundations of Physics 4 (2):299-310.
    Newtonian gravitation is studied from a discrete point of view, in that the dynamical equation is an energy-conserving difference equation. Application is made to planetary-type, nondegenerate three-body problems and several computer examples of perturbed orbits are given.
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  43.  29
    Newtonian Dynamics from the Principle of Maximum Caliber.Diego González, Sergio Davis & Gonzalo Gutiérrez - 2014 - Foundations of Physics 44 (9):923-931.
    The foundations of Statistical Mechanics can be recovered almost in their entirety from the principle of maximum entropy. In this work we show that its non-equilibrium generalization, the principle of maximum caliber (Jaynes, Phys Rev 106:620–630, 1957), when applied to the unknown trajectory followed by a particle, leads to Newton’s second law under two quite intuitive assumptions (both the expected square displacement in one step and the spatial probability distribution of the particle are known at all times). Our derivation explicitly (...)
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  44.  57
    Fundamental Physics and the Mind – Is There a Connection?Paavo Pylkkänen - 2016 - In Atmanspacher H., Filk T. & Pothos E. (eds.), Quantum Interaction 2015: 9th International Conference, QI 2015,. Springer Publishing Company. pp. 76-87.
    Recent advances in the field of quantum cognition suggest a puzzling connection between fundamental physics and the mind. Many researchers see quantum ideas and formalisms merely as useful pragmatic tools, and do not look for deeper underlying explanations for why they work. However, others are tempted to seek for an intelligible explanation for why quantum ideas work to model cognition. This paper first draws attention to how the physicist David Bohm already in 1951 suggested that thought and quantum processes (...)
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  45.  88
    Aristotelian force as Newtonian power.John Aidun - 1982 - Philosophy of Science 49 (2):228-235.
    Aristotle's rule of proportions of the factors of motion, presented in VII 5 of the Physics, characterizes Aristotelian force. Observing that the locomotion to which Aristotle applied the Rule is the motion produced by manual labor, I develop an interpretation of the factors of motion that reveals that Aristotelian force is Newtonian power. An alternate interpretation of the Rule by Toulmin and Goodfield implicitly identifies Aristotelian force with Newtonian force. In order to account for the absence of (...)
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  46.  11
    Archibald Pitcairne and the Newtonian Turn of Medical Philosophy.Sebastiano Gino - 2023 - Journal of Scottish Philosophy 21 (2):211-228.
    Archibald Pitcairne’s medical writings are inspired by Newton’s Principia mathematica, as the Scottish physician assumed Newtonian physics as a model for scientific inquiry that should be applied to other branches of natural philosophy, including physiology and pathology. The ideal of a comprehensive mathematical science was very appealing to late seventeenth-century intellectuals, including physicians. This essay focuses on how Pitcairne tried to implement these ideas. In particular, I argue that Pitcairne’s medical thinking is based on three philosophical assumptions: first, (...)
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  47. Forces in a true and physical sense: from mathematical models to metaphysical conclusions.Corey Dethier - 2019 - Synthese 198 (2):1109-1122.
    Wilson [Dialectica 63:525–554, 2009], Moore [Int Stud Philos Sci 26:359–380, 2012], and Massin [Br J Philos Sci 68:805–846, 2017] identify an overdetermination problem arising from the principle of composition in Newtonian physics. I argue that the principle of composition is a red herring: what’s really at issue are contrasting metaphysical views about how to interpret the science. One of these views—that real forces are to be tied to physical interactions like pushes and pulls—is a superior guide to real (...)
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  48.  34
    Framework confirmation by Newtonian abduction.Erik Curiel - 2019 - Synthese:1-39.
    The analysis of theory-confirmation generally takes the deductive form: show that a theory in conjunction with physical data and auxiliary hypotheses yield a prediction about phenomena; verify the prediction; provide a quantitative measure of the degree of theory-confirmation this yields. The issue of confirmation for an entire framework either does not arise, or is dismissed in so far as frameworks are thought not to be the kind of thing that admits scientific confirmation. I argue that there is another form of (...)
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  49.  26
    Framework confirmation by Newtonian abduction.Erik Curiel - 2019 - Synthese 198 (Suppl 16):3813-3851.
    The analysis of theory-confirmation generally takes the deductive form: show that a theory in conjunction with physical data and auxiliary hypotheses yield a prediction about phenomena; verify the prediction; provide a quantitative measure of the degree of theory-confirmation this yields. The issue of confirmation for an entire framework (e.g., Newtonian mechanics en bloc, as opposed, say, to Newton’s theory of gravitation) either does not arise, or is dismissed in so far as frameworks are thought not to be the kind (...)
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  50. The force of Newtonian cosmology: Acceleration is relative.John D. Norton - 1995 - Philosophy of Science 62 (4):511-522.
    1. Introduction. David Malament has described a natural and satisfying resolution of the traditional problems of Newtonian cosmology—natural in the sense that it effects the escape by altering Newtonian gravitation theory in a way that leaves its observational predictions completely unaffected. I am in full agreement with his approach. There is one part of his account, however, over which Malament has been excessively modest. The resolution requires a modification to Newtonian gravitation theory. Malament presents the modification as (...)
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