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Hubble's Law Implies Benford's Law for Distances to Galaxies

机译:哈勃定律暗示本福德定律到星系的距离

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摘要

A recent article by Alexopoulos and Leontsinis presented empirical evidence that the first digits of the distances from the Earth to galaxies are a reasonably good fit to the probabilities predicted by Benford's law, the well known logarithmic statistical distribution of significant digits. The purpose of the present article is to give a theoretical explanation, based on Hubble's law and mathematical properties of Benford's law, why galaxy distances might be expected to follow Benford's law. The new galaxy-distance law derived here, which is robust with respect to change of scale and base, to additive and multiplicative computational or observational errors, and to variability of the Hubble constant in both time and space, predicts that conformity to Benford's law will improve as more data on distances to galaxies becomes available. Conversely, with the logical derivation of this law presented here, the recent empirical observations may beviewed as independent evidence of the validity of Hubble's law.
机译:Alexopoulos和Leontsinis最近发表的一篇文章提供了经验证据,表明从地球到星系的距离的前几位数字非常符合Benford定律所预测的概率,Benford定律是众所周知的有效对数统计分布。本文的目的是基于哈勃定律和本福德定律的数学性质给出理论解释,为什么可能期望星系距离遵循本福德定律。此处得出的新星系距离定律在尺度和基数的变化,加性和乘性计算或观测误差以及哈勃常数在时间和空间上的可变性方面都很健壮,它预测将遵守本福德定律随着有更多关于银河系距离的数据可用,数据将得到改善。相反,在此提出了该定律的逻辑推论时,最近的经验观察可以被视为哈勃定律有效性的独立证据。

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