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September 10, 2025Mathematics1 citationsOpen Access

Advanced Manifold–Metric Pairs

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PNPierros Ntelis

Key Points

  • The established metrizability for topological manifolds via the Urysohn Metrization Theorem highlights key advancements.
  • Homogeneous and isotropic expanding manifolds are explored, providing deeper insights into metric interactions.
  • Functional methods are employed to construct D-dimensional manifolds, integrating concepts from various mathematical fields.
  • The unified framework enhances understanding of manifold-metric relationships with implications for cosmological models.

Abstract

This article presents a novel mathematical formalism for advanced manifold–metric pairs, enhancing the frameworks of geometry and topology. We construct various D-dimensional manifolds and their associated metric spaces using functional methods, with a focus on integrating concepts from mathematical physics, field theory, topology, algebra, probability, and statistics. Our methodology employs rigorous mathematical construction proofs and logical foundations to develop generalized manifold–metric pairs, including homogeneous and isotropic expanding manifolds, as well as probabilistic and entropic variants. Key results include the establishment of metrizability for topological manifolds via the Urysohn Metrization Theorem, the formulation of higher-rank tensor metrics, and the exploration of complex and quaternionic codomains with applications to cosmological models like the expanding spacetime. By combining spacetime generalized sets with information-theoretic and probabilistic approaches, we achieve a unified framework that advances the understanding of manifold–metric interactions and their physical implications.

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Cite This Study

Pierros Ntelis (2025) studied this question.

synapsesocial.com/papers/68c1b19354b1d3bfb60e8c93https://doi.org/10.3390/math13152510
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