2026-07-072026-07-07http://salesiana.dossiersoluciones.com/handle/123456789/177330If the diffeomorphism symmetry of general relativity is fully implemented into a path integral quantum theory, the path integral leads to a partition function which is an invariant of smooth manifolds. We comment on the physical implications of results on the classification of smooth and piecewise-linear 4-manifolds which show that the partition function can already be computed from a triangulation of space-time. Such a triangulation characterizes the topology and the differentiable structure, but is completely unrelated to any physical cut-off. It can be arbitrarily refined without affecting the physical predictions and without increasing the number of degrees of freedom proportionally to the volume. Only refinements at the boundary have a physical significance as long as the experimenters who observe through this boundary, can increase the resolution of their measurements. All these are consequences of the symmetries. The Planck scale cut-off expected in quantum gravity is rather a dynamical effect.4 pages, RevTeX with combined PicTeX/postscript figures; v2: presentation improved, typos correctedGeneral Relativity and Quantum CosmologyDiffeomorphisms from finite triangulations and absence of 'local' degrees of freedomtext