Coordinates and covariance: Einstein's view of space-time and the modern view [Book Review]

Foundations of Physics 19 (10):1215-1263 (1989)
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Abstract

Where modern formulations of relatively theory use differentiable manifolds to space-time, Einstein simply used open sets of R 4 , following the then current methods of differential geometry. This fact aids resolution of a number of outstanding puzzles concerning Einstein's use of coordinate systems and covariance principles, including the claimed physical significance of covariance principles, their connection to relativity principles, Einstein's apparent confusion of coordinate systems and frames of reference, and his failure to distinguish active and passive transformations, especially in the context of his hole and point-coincidence arguments

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John D. Norton
University of Pittsburgh

Citations of this work

Background Independence, Diffeomorphism Invariance, and the Meaning of Coordinates.Oliver Pooley - 2016 - In Dennis Lehmkuhl, Gregor Schiemann & Erhard Scholz (eds.), Towards a Theory of Spacetime Theories. New York, NY: Birkhauser.
Geometry and motion.Gordon Belot - 2000 - British Journal for the Philosophy of Science 51 (4):561--95.
General-Relativistic Covariance.Neil Dewar - 2020 - Foundations of Physics 50 (4):294-318.
On the meaning of the relativity principle and other symmetries.Harvey R. Brown & Roland Sypel - 1995 - International Studies in the Philosophy of Science 9 (3):235 – 253.

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References found in this work

Autobiographical Notes.Max Black, Albert Einstein & Paul Arthur Schilpp - 1949 - Journal of Symbolic Logic 15 (2):157.
Albert Einstein: Philosopher-Scientist.Stephen Toulmin - 1950 - Science and Society 14 (4):353-360.
Foundations of Space-Time Theories.Micheal Friedman - 1983 - Princeton University Press.
Relativity and geometry.Roberto Torretti - 1983 - New York: Dover Publications.

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