摘要翻译:
我们以1千克不同形式的物质为例,研究了复杂性的建立。我们从理想气体的最简单例子开始,然后继续讨论更复杂的化学、生物、生命以及社会和技术结构。我们根据这些系统的熵来定量地评估它们的复杂性。我们提出了一种方法,将相同的熵归因于已知的物理系统和复杂的有机分子,直至DNA。讨论了该方案中的重要步骤和基本障碍。
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英文标题:
《Quantitative assessment of increasing complexity》
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作者:
L.P. Csernai, S.F. Spinnangr, S. Velle
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最新提交年份:
2017
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分类信息:
一级分类:Quantitative Biology 数量生物学
二级分类:Other Quantitative Biology 其他定量生物学
分类描述:Work in quantitative biology that does not fit into the other q-bio classifications
不适合其他q-bio分类的定量生物学工作
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一级分类:Physics 物理学
二级分类:Statistical Mechanics 统计力学
分类描述:Phase transitions, thermodynamics, field theory, non-equilibrium phenomena, renormalization group and scaling, integrable models, turbulence
相变,热力学,场论,非平衡现象,重整化群和标度,可积模型,湍流
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英文摘要:
We study the build up of complexity on the example of 1 kg matter in different forms. We start on the simplest example of ideal gases, and then continue with more complex chemical, biological, life and social and technical structures. We assess the complexity of these systems quantitatively, based on their entropy. We present a method to attribute the same entropy to known physical systems and to complex organic molecules up to a DNA. The important steps in this program and the basic obstacles are discussed.
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PDF链接:
https://arxiv.org/pdf/1609.04637