Creation Research Database

Astronomical Distance Determination Methods and the Light Travel Time Problem

Faulkner, Danny R. (2013) Astronomical Distance Determination Methods and the Light Travel Time Problem. Answers Research Journal, 6: 15. pp. 211-229. ISSN 1937-9056

Abstract

Some recent creationists have attempted to address the light travel time problem indirectly with an implied appeal to a small universe. If the universe is no more than a few thousand light years in size, then the light travel time is eliminated almost by definition. Here I survey the methods used for establishing astronomical distances. The only direct method of measuring stellar distances generally results in reliably measured distances of less than a thousand light years. However, that limit likely soon will exceed 6000 light years. Indirect methods already produce distances that are thousands, millions, and even billions of light years. The indirect distance determination methods ultimately are tied to direct determinations of distance, and they are reasonably consistent with one another. Furthermore the indirect methods are supported by well-understood physics. It is extremely unlikely that these methods are so wrong that the light travel time problem can be answered with a small universe.

Item Type: Article
Subjects: Q Science (General) > QB Astronomy > QB495 Descriptive astronomy > QB495.2 Stars. Stellar Evolution. Distant Starlight
Q Science (General) > QB Astronomy > QB460 Astrophysics
Depositing User: Admin
Date Deposited: 04 Sep 2026 23:46
Last Modified: 04 Sep 2026 23:46
URI: https://crsq.creationresearch.org/id/eprint/1851

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