Megasphere Theory Resolution of the Time Paradox and Logarithmic Law of Cosmic Scales
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The Megasphere Theory addresses one of the most fundamental paradoxes in physics: the nature of time. Classical mechanics, following Newton, assumes a unique and universal time, while Einstein’s relativity demonstrates that time is elastic, varying with velocity and gravity. This tension between absolute and relative time has persisted as an unresolved contradiction. In the Megasphere framework, the paradox is reconciled by introducing Dynamic Spiral Time: a universal temporal flow that fragments into spirals with specific angular frequencies, such that the observed time is defined as . This approach preserves a common temporal substrate while explaining the relativity of local measurements. On this foundation, the Logarithmic Law of Cosmic Scales is formulated, establishing a hierarchy of temporal and spatial structures governed by simple relations such as and . This law reveals that cosmic organization is not linear but logarithmic, connecting subatomic phenomena with galactic superstructures through a unified mathematical framework. By resolving the time paradox and proposing a law that orders the universe in logarithmic scales, the Megasphere Theory provides a coherent bridge between relativity, quantum mechanics, and cosmology. The model suggests that the evolution of the cosmos is not chaotic but harmonically layered, opening new possibilities for both theoretical development and observational validation.



