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In the present paper we have made an attempt to investigate the importance of the concepts of dynamical stability and complexity along with their interelationship in an evolving biological systems described by a system of kinetic (both deterministic and chaotic) equations. The key to the investigation lies in the expres-sion of a time-dependent Boltzmann-like entropy function derived from the dynamical model of the system. A significant result is the determination of the expression of Boltzmann - entropy production rate of the evolving system leading to the well-known Pesin-type identity which provides an elegant and simple meas-ure of dynamical complexity in terms of positive Lyapunov exponents. The expression of dynamical com-plexity has been found to be very suitable in the study of the increase of dynamical complexity with the suc-cessive instabilities resulting from the appearance of new polymer species (or ecological species) into the original system. The increase of the dynamical complexity with the evolutionary process has been explained with a simple competitive model system leading to the “principle of natural selection”.
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篇名 Biological Evolution: Entropy, Complexity and Stability
来源期刊 现代物理(英文) 学科 数学
关键词 Boltzmann-Entropy DYNAMICAL STABILITY Pesin-type Identity and DYNAMICAL COMPLEXITY Lyapunov EXPONENTS Structural INSTABILITIES Biological Evolution
年,卷(期) xdwlyw_2011,(6) 所属期刊栏目
研究方向 页码范围 621-626
页数 6页 分类号 O1
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Boltzmann-Entropy
DYNAMICAL
STABILITY
Pesin-type
Identity
and
DYNAMICAL
COMPLEXITY
Lyapunov
EXPONENTS
Structural
INSTABILITIES
Biological
Evolution
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研究去脉
引文网络交叉学科
相关学者/机构
期刊影响力
现代物理(英文)
月刊
2153-1196
武汉市江夏区汤逊湖北路38号光谷总部空间
出版文献量(篇)
1826
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0
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