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Lisle, Jason (2010) Anisotropic Synchrony Convention—A Solution to the Distant Starlight Problem. Answers Research Journal, 3: 13. pp. 191-207. ISSN 1937-9056
We here explore a way in which light from distant galaxies can reach earth within the biblical timescale. Though the universe is created mature, we will find that this by itself appears to be insufficient to explain our ability to see distant events, prompting the need for a solution to the "distant starlight problem." The concept of synchrony conventions in physics is examined. The fact that relativistic physics precludes an absolute, invariant synchrony space is reviewed. We then explore the consequences and motivation for the use of the standard Einstein synchrony convention, followed by an investigation of alternative synchrony conventions. In particular, we find that an observer-centric anisotropic synchrony convention eliminates the distant starlight problem by reducing radially inward-directed light travel-time in the reference frame of the observer to zero. Such a convention implies that everything in the universe has an age of a few thousand years as we currently see it. The biblical basis for such a convention is explored. Potential objections to this synchrony convention are considered. When the anisotropic synchrony convention is applied to standard cosmological parameters, a new young-universe cosmological model emerges which makes falsifiable predictions.
| Item Type: | Article |
|---|---|
| Subjects: | Q Science (General) > QB Astronomy > QB495 Descriptive astronomy > QB495.2 Stars. Stellar Evolution. Distant Starlight Q Science (General) > QC Physics > QC350 Optics. Light |
| Depositing User: | Admin |
| Date Deposited: | 04 Sep 2026 23:47 |
| Last Modified: | 04 Sep 2026 23:47 |
| URI: | https://crsq.creationresearch.org/id/eprint/1912 |