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Kinetic Models of (M-R)-Systems

机译:(M-R)-系统的动力学模型

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Kinetic models using enzyme kinetics are developed for the three ways that Louie proved that Rosen’s minimal (M-R)-System can be closed to efficient cause; i.e., how the “replication” component can itself be entailed from within the system. The kinetic models are developed using the techniques of network thermodynamics. As a demonstration, each model is simulated using a SPICE circuit simulator using arbitrarily chosen rate constants. The models are built from SPICE sub-circuits representing the key terms in the chemical rate equations. The models include the addition of an ad hoc semi-permeable membrane so the system can achieve steady state fluxes and also to illustrate the need for all the efficient cause agents to be continually replaced. Comments are made about exactly what is being simulated.
机译:路易(Louis)证明了罗森的最小(M-R)系统可以封闭有效原因的三种方式,利用酶动力学建立了动力学模型。即,如何从系统内部本身就需要“复制”组件。使用网络热力学技术开发动力学模型。作为演示,使用任意选择的速率常数,使用SPICE电路仿真器对每个模型进行仿真。这些模型由SPICE子电路构建而成,这些子电路代表化学速率方程式中的关键术语。该模型包括添加特设的半透膜,因此该系统可以实现稳态通量,并且还说明了需要不断更换所有有效起因剂的需求。对确切模拟的内容进行评论。

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