Furthermore, we deduce a local to global theorem for injective (or hyperconvex) metric spaces, saying that under certain conditions a complete, simply-connected, locally injective metric space is injective.
Source: wiktionary
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Furthermore, we deduce a local to global theorem for injective (or hyperconvex) metric spaces, saying that under certain conditions a complete, simply-connected, locally injective metric space is injective.
Source: wiktionary
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