Description Abstract: This study presents a rigorous thermodynamic audit of the universe, treated as a closed informational system. By synthesizing the principles of Tolman's thermodynamics, the Bekenstein holographic limit, and Hawking radiation, we derive the fundamental saturation constants of the cosmic horizon based solely on the observable mass of the universe (M₎₁ₒ). Key Findings: We introduce the Costa Volumetric Tension Factor (8. 8535), a dimensionless calibration constant derived from the ratio between the current observable volume and the theoretical saturation volume. Applying this constant to standard cosmological datasets reveals remarkable alignments without the need for arbitrary fine-tuning or exotic dark sector particles: Vacuum Catastrophe: The 10^120 discrepancy in vacuum energy density is resolved as a direct consequence of holographic dilution within a finite informational capacity. Hubble Tension: The H₀ discrepancy emerges naturally as the orthogonal vector sum of gravitational density and holographic entropic pressure. Primordial Nucleosynthesis: The "Lithium Problem" is identified as a thermodynamic signature of an expansion rate constrained by global saturation, correctly predicting ^7Li abundance while maintaining ^4He consistency. Galactic Dynamics: The anomalous rotational velocities of spiral galaxies and dwarf systems are shown to be structural consequences of the spacetime grid stretching to satisfy the Bekenstein-Hawking limit, providing a non-local, parameter-free derivation of the MOND critical acceleration (a₀). Conclusion: This framework does not claim to establish a new "Theory of Everything. " Instead, it demonstrates that the most respected laws of thermodynamics, when applied to the cosmos as a holistic entity, yield consistent, quantifiable resolutions to modern cosmological anomalies. The results presented here invite the scientific community to consider that the dark sector—dark energy, dark matter, and inflationary scalars—may be observational artifacts of a three-dimensional manifold undergoing informational saturation. Keywords: Cosmology; Thermodynamics; Bekenstein-Hawking Entropy; Volumetric Tension Constant; Dark Energy; Hubble Tension; Primordial Nucleosynthesis; Emergent Gravity.
C Costa (2026) studied this question.