首页> 外文期刊>International journal of design & nature and ecodynamics >'IN' OR 'AS' SPACE?: A MODEL OF COMPLEXITY, WITH PHILOSOPHICAL, SIMULATORY, AND EMPIRICAL RAMIFICATIONS
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'IN' OR 'AS' SPACE?: A MODEL OF COMPLEXITY, WITH PHILOSOPHICAL, SIMULATORY, AND EMPIRICAL RAMIFICATIONS

机译:“在”还是“在”空间中?:一种复杂的模型,带有哲学,模拟和实证的证明

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摘要

A General Systems model based on ideas originating with the writings of Benedict de Spinoza is described, starting with its philosophical underpinnings and proceeding on to its relation to modern systems concepts, including attempts to simulate the relationships posed and measure real-world structures. Central to the idea is the notion that spatial extension may not have a prior existence but emerges only through an entropy maximization process in which information and energy exchange is balanced among some limited number of subsystems that in sum comprise any given functioning complex system. Related published empiricism concerning geographical/geological systems - the hypsometry of stream basins and overall internal zonation properties of earth structure - is briefly described; the former, especially, reveals a hierarchical pattern of potential energy relations that seems to fit well the organizational hypothesis. Possible applications of the model to genomic codon and medical imaging modeling are alluded to. A brief treatment of the relation of the model to basic properties of complex systems (connectivity, autonomy, emergence, etc.) is provided.
机译:描述了一个基于本尼迪克特·德·斯宾诺莎著作的思想的通用系统模型,从其哲学基础开始,一直到与现代系统概念的关系,包括尝试模拟所构成的关系并测量实际结构。该思想的中心思想是,空间扩展可能没有先验存在,而仅通过熵最大化过程出现,在该过程中,信息和能量交换在一定数量的子系统之间进行了平衡,这些子系统合计包括任何给定的功能复杂系统。简要介绍了有关地理/地质系统的相关经验主义-流域的水压法和地球结构的整体内部分区特性-尤其是前者,揭示了一种潜在的能量关系的分层模式,这似乎很适合组织的假设。提到了该模型在基因组密码子和医学成像模型中的可能应用。提供了对模型与复杂系统的基本属性(连接性,自治性,出现等)之间关系的简要处理。

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