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Density evolution by the low-field limit of kinetic frameworks with thermostat and mutations

机译:通过具有恒温器和突变的动力学框架的低场限制进行密度演化

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摘要

This paper is concerned with an asymptotic limit of a thermostatted kinetic framework which can be proposed for the modeling of complex biological and chemical systems where proliferative/destructive/mutative interactions and random velocity-jump processes occur. Specifically the macroscopic equations fulfilled by the local and global densities of the system are obtained by performing an asymptotic limit of a low-field rescaling of a kinetic framework with a thermostat and mutative interactions.
机译:本文涉及恒温动力学框架的渐近极限,该极限可以提出用于复杂的生化系统的建模,其中发生增生/破坏/突变相互作用和随机速度跳跃过程。具体地,通过执行具有恒温器和突变相互作用的动力学框架的低场重新标定的渐近极限,可以获得由系统的局部和全局密度满足的宏观方程。

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