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  1. Concept Formation and Scientific Objectivity: Weyl’s Turn against Husserl.Iulian D. Toader - 2013 - Hopos: The Journal of the International Society for the History of Philosophy of Science 3 (2):281-305.
    This paper argues that Weyl's view that scientific objectivity requires that concepts be freely created, i.e., introduced via Hilbert-style axiomatizations, led him to abandon the phenomenological view of objectivity.
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  • (1 other version)Talking at cross-purposes: how Einstein and the logical empiricists never agreed on what they were disagreeing about.Marco Giovanelli - 2013 - Synthese 190 (17):3819-3863.
    By inserting the dialogue between Einstein, Schlick and Reichenbach into a wider network of debates about the epistemology of geometry, this paper shows that not only did Einstein and Logical Empiricists come to disagree about the role, principled or provisional, played by rods and clocks in General Relativity, but also that in their lifelong interchange, they never clearly identified the problem they were discussing. Einstein’s reflections on geometry can be understood only in the context of his ”measuring rod objection” against (...)
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  • Early philosophical interpretations of general relativity.Thomas A. Ryckman - 2008 - Stanford Encyclopedia of Philosophy.
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  • (1 other version)Traditions in Collision: The Emergence of Logical Empiricism between the Riemannian and Helmholtzian Traditions.Giovanelli Marco - 2017 - Hopos: The Journal of the International Society for the History of Philosophy of Science 7 (2):328-380.
    This paper attempts to explain the emergence of the logical empiricist philosophy of space and time as a collision of mathematical traditions. The historical development of the ``Riemannian'' and ``Helmholtzian'' traditions in 19th century mathematics is investigated. Whereas Helmholtz's insistence on rigid bodies in geometry was developed group theoretically by Lie and philosophically by Poincaré, Riemann's Habilitationsvotrag triggered Christoffel's and Lipschitz's work on quadratic differential forms, paving the way to Ricci's absolute differential calculus. The transition from special to general relativity (...)
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  • (1 other version)Mathematical Analogies in Physics: the Curious Case of Gauge Symmetries.Guy Hetzroni & Noah Stemeroff - 2023 - In Carl Posy & Yemima Ben-Menahem (eds.), Mathematical Knowledge, Objects and Applications: Essays in Memory of Mark Steiner. Springer.
    Gauge symmetries provide one of the most puzzling examples of the applicability of mathematics in physics. The presented work focuses on the role of analogical reasoning in the gauge argument, motivated by Mark Steiner's claim that the application of the gauge principle relies on a Pythagorean analogy whose success undermines naturalist philosophy. In this paper, we present two different views concerning the analogy between gravity, electromagnetism, and nuclear interactions, each providing a different philosophical response to the problem of the applicability (...)
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  • Hermann Weyl motivations philosophiques d'un choixMaverik.Demetrio Ria - 2005 - Revue de Synthèse 126 (2):463-479.
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  • Introduction to the special issue Hermann Weyl and the philosophy of the ‘New Physics’.Silvia De Bianchi & Gabriel Catren - 2018 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 61:1-5.
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  • Becker–Blaschke problem of space.Julien Bernard - 2015 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 52 (Part B):251-266.
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  • (1 other version)Talking at Cross-Purposes. How Einstein and Logical Empiricists never Agreed on what they were Discussing about.Marco Giovanelli - unknown
    By inserting the dialogue between Einstein, Schlick and Reichenbach in a wider network of debates about the epistemology of geometry, the paper shows, that not only Einstein and Logical Empiricists came to disagree about the role, principled or provisional, played by rods and clocks in General Relativity, but they actually, in their life-long interchange, never clearly identified the problem they were discussing. Einstein’s reflections on geometry can be understood only in the context of his “measuring rod objection” against Weyl. Logical (...)
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  • Hermann Weyl’s neighborhood. [REVIEW]Peter Pesic - 2013 - Studies in History and Philosophy of Science Part A 44 (1):150-153.
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  • Metaphors for Mathematics from Pasch to Hilbert.Dirk Schlimm - 2016 - Philosophia Mathematica 24 (3):308-329.
    How mathematicians conceive of the nature of mathematics is reflected in the metaphors they use to talk about it. In this paper I investigate a change in the use of metaphors in the late nineteenth and early twentieth centuries. In particular, I argue that the metaphor of mathematics as a tree was used systematically by Pasch and some of his contemporaries, while that of mathematics as a building was deliberately chosen by Hilbert to reflect a different view of mathematics. By (...)
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  • Interpreting Heisenberg interpreting quantum states.Simon Friederich - 2012 - Philosophia Naturalis 50 (1):85-114.
    The paper investigates possible readings of the later Heisenberg's remarks on the nature of quantum states. It discusses, in particular, whether Heisenberg should be seen as a proponent of the epistemic conception of states – the view that quantum states are not descriptions of quantum systems but rather reflect the state assigning observers' epistemic relations to these systems. On the one hand, it seems plausible that Heisenberg subscribes to that view, given how he defends the notorious "collapse of the wave (...)
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  • The notorious man-in-the-street: Hermann Weyl and the problem of knowledge.Noah Stemeroff - 2024 - Studies in History and Philosophy of Science Part A 104 (C):48-60.
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  • (2 other versions)Weyl’s Philosophy of Physics: From Apriorism to Holism (1918-1927).Christophe Eckes - 2018 - Philosophia Scientiae:163-184.
    Dans cet article, j’entends décrire comment évolue la philosophie de la physique de Weyl au cours de la période 1918-1927. Je rappellerai en particulier qu’il développe différentes formes d’« apriorisme» entre 1918 et 1923: un apriorisme « spéculatif» avec sa théorie unifiée des champs (1918-1921), puis une conception des connaissances a priori largement inspirée de la Wesensanalyse de Husserl dans ses travaux sur le problème de l’espace (1921-1923). Je montrerai par ailleurs que le holisme de Weyl, i.e., la thèse selon (...)
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  • Riemann’s and Helmholtz-Lie’s problems of space from Weyl’s relativistic perspective.Julien Bernard - 2018 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 61:41-56.
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  • (1 other version)History of Mathematics and History of Science Reunited?Jeremy Gray - 2011 - Isis 102 (3):511-517.
    ABSTRACT For some years now, the history of modern mathematics and the history of modern science have developed independently. A step toward a reunification that would benefit both disciplines could come about through a revived appreciation of mathematical practice. Detailed studies of what mathematicians actually do, whether local or broadly based, have often led in recent work to examinations of the social, cultural, and national contexts, and more can be done. Another recent approach toward a historical understanding of the abstractness (...)
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  • Logic of Gauge.Alexander Afriat - 2019 - In Carlos Lobo & Julien Bernard (eds.), Weyl and the Problem of Space: From Science to Philosophy. Springer Verlag.
    The logic of gauge theory is considered by tracing its development from general relativity to Yang-Mills theory, through Weyl's two gauge theories. A handful of elements---which for want of better terms can be called \emph{geometrical justice}, \emph{matter wave}, \emph{second clock effect}, \emph{twice too many energy levels}---are enough to produce Weyl's second theory; and from there, all that's needed to reach the Yang-Mills formalism is a \emph{non-Abelian structure group} (say $\mathbb{SU}\textrm{(}N\textrm{)}$).
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  • (2 other versions)Weyl’s Philosophy of Physics: From Apriorism to Holism.Christophe Eckes - 2018 - Philosophia Scientiae 22:163-184.
    Dans cet article, j’entends décrire comment évolue la philosophie de la physique de Weyl au cours de la période 1918-1927. Je rappellerai en particulier qu’il développe différentes formes d’« apriorisme» entre 1918 et 1923: un apriorisme « spéculatif» avec sa théorie unifiée des champs, puis une conception des connaissances a priori largement inspirée de la Wesensanalyse de Husserl dans ses travaux sur le problème de l’espace. Je montrerai par ailleurs que le holisme de Weyl, i.e., la thèse selon laquelle seule (...)
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  • Gauge Symmetries, Symmetry Breaking, and Gauge-Invariant Approaches.Philipp Berghofer, Jordan François, Simon Friederich, Henrique Gomes, Guy Hetzroni, Axel Maas & René Sondenheimer - 2023 - Cambridge University Press.
    Gauge symmetries play a central role, both in the mathematical foundations as well as the conceptual construction of modern (particle) physics theories. However, it is yet unclear whether they form a necessary component of theories, or whether they can be eliminated. It is also unclear whether they are merely an auxiliary tool to simplify (and possibly localize) calculations or whether they contain independent information. Therefore their status, both in physics and philosophy of physics, remains to be fully clarified. In this (...)
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  • (2 other versions)Weyl’s Philosophy of Physics: From Apriorism to Holism (1918-1927).Christophe Eckes - 2018 - Philosophia Scientiae 22:163-184.
    Dans cet article, j’entends décrire comment évolue la philosophie de la physique de Weyl au cours de la période 1918-1927. Je rappellerai en particulier qu’il développe différentes formes d’« apriorisme» entre 1918 et 1923: un apriorisme « spéculatif» avec sa théorie unifiée des champs (1918-1921), puis une conception des connaissances a priori largement inspirée de la Wesensanalyse de Husserl dans ses travaux sur le problème de l’espace (1921-1923). Je montrerai par ailleurs que le holisme de Weyl, i.e., la thèse selon (...)
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