Abstract
All of the previous considerations have been based upon the assumption that all inertial systems are equivalent for the description of physical phenomena, but that they are preferred, for the formulation of the laws of nature, to spaces of reference in a different state of motion. We can think of no cause for this preference for definite states of motion to all others, according to our previous considerations, either in the perceptible bodies or in the concept of motion; on the contrary, it must be regarded as an independent property of the space-time continuum. The principle of inertia, in particular, seems to compel us to ascribe physically objective properties to the space-time continuum. Just as it was consistent from the Newtonian standpoint to make both the statements, tempus est absolutum, spatium est absolutum, so from the standpoint of the special theory of relativity we must say, continuum spatii et temporis est absolutum. In this latter statement absolutum means not only ‘physically real’, but also ‘independent in its physical properties, having a physical effect, but not itself influenced by physical conditions’.
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© 1922 Springer Science + Business Media, LLC.
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Einstein, A. (1922). The General Theory of Relativity. In: The Meaning of Relativity. Springer, Dordrecht. https://doi.org/10.1007/978-94-011-6022-3_3
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DOI: https://doi.org/10.1007/978-94-011-6022-3_3
Publisher Name: Springer, Dordrecht
Print ISBN: 978-0-412-20560-6
Online ISBN: 978-94-011-6022-3
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