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The mathematical analysis towards the dependence on the initial data for a discrete thermostatted kinetic framework for biological systems composed of interacting entities

机译:对依赖性恒温动力学框架依赖性的数学分析,用于互动实体组成的生物系统

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This paper is devoted to a mathematical proof of the continuous dependence on the initial data for the discrete thermostatted kinetic framework, for all T 0. This is a versatile model for describing the time-evolution of a biological complex system which is composed by a large number of interacting entities, called active particles, and is subjected to an external force field due to the environment. A thermostat term is introduced in order to keep the 2nd-order moment of the system, corresponding to the physical global activation energy, constant in time. This model is expressed by a system of nonlinear ordinary differential equations with quadratic nonlinearity.
机译:本文致力于所有T> 0的连续依赖性的数学证据。这是一个多功能模型,用于描述由A组成的生物复杂系统的时间演变。大量相互作用实体,称为活性粒子,并且由于环境而受到外力场。引入恒温术语以保持系统的2nd阶矩,对应于物理全球激活能量,及时恒定。该模型由具有二次非线性的非线性常微分方程系统表示。

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