Links between Entropy, Complexity, and the Technological Singularity

Fuente: arXiv
Saved in:
Bibliographic Details
Main Author: Modis, Theodore
Format: Preprint
Published: 2024
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866908282177716224
author Modis, Theodore
author_facet Modis, Theodore
contents Entropy always increases monotonically in a closed system but complexity increases at first and then decreases as equilibrium is approached. Commonsense information-related definitions for entropy and complexity demonstrate that complexity behaves like the time derivative of entropy, which is proposed here as a new definition for complexity. A 20-year-old study had attempted to quantify complexity (in arbitrary units) for the entire Universe in terms of 28 milestones, breaks in historical perspective, and had concluded that complexity will soon begin decreasing. That conclusion is now corroborated by other researchers. In addition, the exponential runaway technology trend advocated by supporters of the singularity hypothesis, which was in part based on the trend of the very 28 milestones mentioned above, would have anticipated five new such milestones by now, but none have been observed. The conclusions of the 20-year-old study remain valid: we are at the maximum of complexity and we should expect the next two milestones at around 2033 and 2078.
format Preprint
id arxiv_https___arxiv_org_abs_2410_10844
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Links between Entropy, Complexity, and the Technological Singularity
Modis, Theodore
Physics and Society
Entropy always increases monotonically in a closed system but complexity increases at first and then decreases as equilibrium is approached. Commonsense information-related definitions for entropy and complexity demonstrate that complexity behaves like the time derivative of entropy, which is proposed here as a new definition for complexity. A 20-year-old study had attempted to quantify complexity (in arbitrary units) for the entire Universe in terms of 28 milestones, breaks in historical perspective, and had concluded that complexity will soon begin decreasing. That conclusion is now corroborated by other researchers. In addition, the exponential runaway technology trend advocated by supporters of the singularity hypothesis, which was in part based on the trend of the very 28 milestones mentioned above, would have anticipated five new such milestones by now, but none have been observed. The conclusions of the 20-year-old study remain valid: we are at the maximum of complexity and we should expect the next two milestones at around 2033 and 2078.
title Links between Entropy, Complexity, and the Technological Singularity
topic Physics and Society
url https://arxiv.org/abs/2410.10844