Emergence - Key Concept in Systems Thinking

所在平台: Udemy

课程主页: https://www.udemy.com/course/emergence/

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课程名称:涌现——系统思维中的关键概念 课程概述:涌现是系统思维中的一个核心概念,描述了一种普遍的生成或创造过程。当基本部分相互作用并自我组织时,新的特征和属性会出现,从而创造出新的组织模式。涌现这一高度抽象的概念无处不在,从宇宙的演化到交通堵塞的形成,从社会运动的发展到鸟群的聚集,从数万亿细胞合作形成人体到飓风和金融危机的产生。尽管涌现的思想自古以来受到许多人的关注,但它常常被视为一种神秘现象。随着复杂性理论的发展,我们逐渐拥有了理解涌现的计算和概念工具。在本课程中,我们将结合复杂性和系统理论的不同思想,构建一个系统化理解涌现的框架。我们将特别探讨涌现作为一种非线性模式形成的形式,分析基本部分之间的协同作用如何产生自我组织并形成独特的模式,从而创造出新的、涌现的组织层次,这些层次受到进化动态的驱动。 内容结构:在介绍涌现理论后,课程设计围绕四个主要部分进行。第一部分讨论一般的相关模式,然后关注成为涌现基础的协同互动。第二部分重点介绍模式形成,探讨部分如何自我组织;同步状态以形成新的组织层次。我们将讨论涌现的强涌现与弱涌现这两种主要分类。第三部分讨论综合层次的概念,分析协同作用如何导致模式形成以及新组织层次的涌现,探讨这些不同层次如何具有不可简化的内部结构和流程,从而导致微观和宏观组织之间的复杂动态关系。最后一部分将探讨涌现如何在某些过程中随时间发展。我们将讨论混沌边缘假说,分析自我组织的涌现系统如何在有序与无序之间动态演变,创造出新层次的复杂现象。 适用对象:该课程为入门级,内容非技术性,但需要注意的是,涌现的概念高度抽象,为了充分理解,我们将使用高层次的抽象模型。因此,学生需对形式抽象模型感到舒适。课程不需要学员具备特定的科学背景,适用于多个领域,尤其是计算机科学、生物学、生态学、哲学、认知科学等领域,适合所有希望更好理解复杂性和系统理论框架下这一核心概念的人士。

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Emergence is one of the central concepts within systems thinking as it describes a universal process of becoming or creation, a process whereby novel features and properties emerge when we put elementary parts together as they interact and self-organize to create new patterns of organization. Emergence being a highly abstract concept is literally everywhere, from the evolution of the universe to the formation of traffic jams, from the development of social movements to the flocking of birds, from the cooperation of trillions of cells giving rise to the human body to the formation of hurricanes and financial crises. Although the ideas of emergence have been of interest to many for millennia it has often been seen as something of a mystery, but with the development of complexity theory, we increasingly have the computational and conceptual tools to understand it in a structured, scientific fashion. During the course, we will be drawing upon different ideas in complexity and systems theory to build up a framework for understanding emergence in a coherent fashion. More specifically, we will explore emergence as a form of nonlinear pattern formation. Where synergies between elementary parts give rise to self-organization and the formation of a distinct pattern, that creates new, emergent levels of organization, that are driven by an evolutionary dynamic.ContentAfter giving an overview of emergence theory, the course is designed around four main sections. In the first section, we start off by talking about patterns of correlation in general before going on to look at synergistic interactions that are the foundations to emergence.The next section is focused on pattern formation, the question of how the parts come to self-organize; to synchronize their states into forming a new level of organization. Here we will talk about the two primary different types of emergence that are often used categorizations; what are called strong and weak emergence.In the third section, we will look at the idea of integrative levels, how synergies give rise to pattern formation and the emergence of new levels of organization called integrative levels. We will talk about how these different levels come to have their own irreducible internal structure and processes that result in a complex dynamic between the micro and macro levels of organization.In the last section of the course, we will look at how emergence plays out over time within some process. We will talk about the edge of chaos hypothesis; how self-organizing, emergent systems never quite lock into place but instead evolve through a dynamic interplay between order and disorder, to create novel phenomena at new levels of complexity.AudienceThis is an introductory course and is non-technical, however, it is important to note that the concept of emergence is highly abstract, to do it justice we will have to use high-level abstractions, as such students will need to feel comfortable with formal abstract models.The course should be accessible without need for any specific background in science and should be of relevance to many different domains, in particular for those in the areas of computer science, biology and ecology, philosophy, the cognitive sciences and anyone with an interest in better understanding this central concept with the complexity and systems theory framework.

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