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Power law behavior and world system evolution: A millennial learning process

机译:幂律行为与世界体系演化:千禧年学习过程

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摘要

Is social change on the scale of the human species a millennial learning process? The authors answer in the affirmative, demonstrating that world system evolution, viewed as a cascade of multilevel, nested, and self-similar, Darwinian-like processes ranging in "size" from one to over 250 generations, exhibits power law behavior, which is also known as self-organized criticality. World social organization, poised as it is on the boundary between order and chaos, is neither subcritical nor supercritical, and that allows for flexibility, which is a necessary condition of evolution and learning, and these in turn account for the major transitions marking world history and serving as the general framework for long-range forecasting. A literature review confirms the close affinity between evolution and learning, mathematical analysis reveals the crucial role of the learning rate as pacemaker of evolutionary change, and empirical evidence supports the concept of a cascade of evolutionary processes. The general equation describing world system emergence shows it to be a project whose current period is now 80% complete, suggesting that its major features might now be in place.
机译:人类规模的社会变革是否是千禧年的学习过程?作者肯定地回答,表明世界系统进化被看作是多级,嵌套且自相似的达尔文式过程,级数从“一代”到超过250代,表现出幂律行为,即也称为自组织临界度。世界社会组织处于秩序与混乱的边界上,既不是亚临界的也不是超临界的,它允许灵活性,这是进化和学习的必要条件,而这些反过来又说明了标志着世界历史的重大转变并作为远程预测的一般框架。文献综述证实了进化与学习之间的紧密联系,数学分析揭示了学习率作为进化变化的起搏器的关键作用,而经验证据则支持了一系列进化过程的概念。描述世界系统出现的一般方程式表明它是一个项目,目前该阶段的完成时间为80%,这表明它的主要特征可能已经存在。

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