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    A spacetime endowed with an integrable connection determi... — Carmelics
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    Home/Modality & Possibility
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    Supports→A flat Minkowski spacetime consistent with the complete absence of matter determines all hypothetical free motions.

    A spacetime endowed with an integrable connection determines the geodesic (free-motion) structure of that spacetime.

    CausationModality & Possibility
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    A flat Minkowski spacetime consistent with the complete absence of matter determ...The homogeneous metric field in a matter-empty universe determines an integrable...

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    Weyl proved a theorem showing that the inertial and causal structure o...80%The spacetime metric is fully determined by the inertial and causal st...80%To determine the projective structure of spacetime (and thus its geode...76%Physical spacetime corresponds to a Weyl geometry.76%

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    According to Weyl, the metric field does not cease to exist in a world devoid of matter but is in a state of rest: As a rest field it would possess the property of metric homogeneity; the mutual orientations of the orthogonal groups characterizing the Pythagorean-Riemannian nature of the metric everywhere would not differ from point to point. This means that in a matter-empty universe the metric is fixed. Consequently, the set of congruence relations on spacetime is uniquely determined. Since th

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