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离散系统中共享涌现特性的起源。

The Origin of Shared Emergent Properties in Discrete Systems.

作者信息

Hatton Les, Warr Greg

机构信息

School of Computer Science and Mathematics, Kingston University, London KT1 1LQ, UK.

Department of Biochemistry and Molecular Biology, Medical University of South Carolina, Charleston, SC 29425, USA.

出版信息

Entropy (Basel). 2025 May 26;27(6):561. doi: 10.3390/e27060561.

Abstract

Here, we propose that the shared emergent properties reproducibly observed in discrete systems can be explained by a theory that embeds the Conservation of Hartley-Shannon Information (CoHSI) in a statistical mechanics framework. Specific predictions of global properties that represent the most likely equilibrium state should be apparent in all qualifying systems, regardless of provenance. We demonstrate that these predictions of emergent global properties hold true in systems as disparate as collections of software written in the programming language C and collections of proteins. The implication is that the emergence of such shared properties is not driven by any specific local mechanism as the systems are so different. This raises the interesting prospect that important properties of biological systems (exemplified here by the length and multiplicity distributions of proteins) have little, if anything, to do with natural selection. Similarly, the size distribution of components and the frequency of tokens observed in computer software in C emerge as the most likely states, and are thus properties that are divorced from human agency, regardless of functionality.

摘要

在此,我们提出,在离散系统中可重复观察到的共享涌现特性,可以用一种将哈特利 - 香农信息守恒(CoHSI)嵌入统计力学框架的理论来解释。代表最可能平衡态的全局特性的具体预测,在所有符合条件的系统中都应是明显的,无论其来源如何。我们证明,这些涌现全局特性的预测在诸如用编程语言C编写的软件集合和蛋白质集合等截然不同的系统中都是成立的。这意味着,由于这些系统差异极大,此类共享特性的出现并非由任何特定的局部机制驱动。这引发了一个有趣的前景,即生物系统的重要特性(此处以蛋白质的长度和多重性分布为例)与自然选择几乎没有关系。同样,C语言计算机软件中组件的大小分布和令牌频率呈现为最可能的状态,因此这些特性与人类行为无关,无论其功能如何。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ed9/12192501/9b429008cdcf/entropy-27-00561-g001.jpg

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