Recent numerical simulations in high-dimensional general relativity (Physical Review, 2026) have revealed the spontaneous emergence of self-similar undulations in space-time geometry, which inevitably evolve toward microscopic naked singularities, challenging Penrose's Cosmic Censorship Conjecture (p. 1). This work demonstrates that this anomaly dissolves when the metric fabric is reformulated under the topological-dimensional formalism of the Summa Teorica (p. 1). We postulate that the conventional continuous space-time (Space A) is a secondary holographic projection sustained by a sub-Planckian half-hexagon simplicial mesh (Alef Graphene) with a fixed molecular boundary of 3. 89 Å (p. 1). By stressing the flexibility of the membrane (ξM) in the large-dimension limit, the classical field equations expose the fractal relief of the underlying vibrational hardware (p. 1). The apparent naked singularity does not constitute a physical collapse of predictability, but rather a controlled metric escape point that exposes the atemporal Space B (T = 0) (p. 1). The mathematical formalism of tensorial coupling and the derivation of the predictive observable of 0. 045% conformal attenuation are presented (p. 1).
rodrigo javier vidal (Mon,) studied this question.
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