水岸长桥的个人博客分享 http://blog.sciencenet.cn/u/whatsothus 力所能及,至微至远,无可替代,至善至美。让学习成为一生成长的快乐习惯!爱我的不要停,恨我的请继续...

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全息仿生仿真论确界临界跨界过界说附体之有生无害讲同理心本体本真聊梯度制衡通道存在谈细作为空,间而连通述评一切界法皆为通法

已有 537 次阅读 2024-3-28 10:30 |系统分类:观点评述

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The holographic bionic simulation theory refers to a method that utilizes holographic technology to simulate biological systems or processes. Holographic technology is capable of recording and reproducing the three-dimensional information of objects, while bionics studies the structure, function, and behavior of organisms in order to find applications in engineering technology. Combining the two can create more realistic and intricate simulation models, which aid in our understanding and research of biological systems. In scientific research or engineering practice, we often need to define the scope of things and clarify their boundary conditions. The terms "critical" and "cross-boundary" involve the abrupt changes or transitions that occur when a system or phenomenon reaches a certain threshold, as well as the exchange and integration across different fields or boundaries. Additionally, it involves understanding and respecting the inherent essence and authenticity of individuals or systems, as well as empathizing with the emotions and perspectives of others. This is a manifestation of humanistic care and social responsibility, contributing to the harmonious coexistence between people, and between people and nature. The existence of balance and coordination between different levels or gradients within a system, as well as the channels for information or energy transfer between these levels, is crucial for system stability and functional realization. Details are crucial to the overall picture, and space serves as a medium for connecting different elements or systems. This connectivity facilitates the flow of information and the sharing of resources, as well as breaking down disciplinary barriers and promoting interdisciplinary communication and collaboration.



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