Tuomo Suntola
This paper examines the Dynamic Universe model, which posits that the rest energy of all matter in space is equivalent to the total gravitational energy in space, establishing a dynamic zero-energy balance. The objective is to demonstrate that time is absolute and to introduce a universal frame of reference through the study of spherically closed space. The methodology includes the derivation of predictions for local physical phenomena and cosmological observations using simple mathematics devoid of additional parameters. Key results indicate that in interactions, total energy is conserved, and while motion affects the observed time, it does not alter the fundamental rate of time's flow. The Dynamic Universe model rejects notions such as dark energy and the constancy of the velocity of light, yet it successfully explains observed phenomena like the perihelion shift and the bending of light. Furthermore, predictions about the magnitude versus redshift of standard candles align closely with recent supernova data, providing insights into structures such as planetary systems and galaxies as they expand proportionally to space's expansion.
@article{a907a9c5-ef33-4890-bdda-27445e500bc1,
title={Global relativity establishes absolute t},
author={Tuomo Suntola},
year={2026},
language={en}
}TY - JOUR TI - Global relativity establishes absolute t AU - Tuomo Suntola PY - 2026 LA - en ER -
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