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MONTE CARLO SIMULATION OF N-MEMBER ASSOCIATING FLUIDS - APPLICATION TO ANTIGEN-ANTIBODY SYSTEMS

机译:N成员缔合液的蒙特卡罗模拟-在抗原-抗体系统中的应用

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An association biased Monte Carlo (ABMC) method of simulating associating systems with two bonding sites on each particle is described. The method includes a strategy for frequently forming two simultaneous bonds by a single particle during a Monte Carlo move. This strategy is employed to obtain adequate configuration statistics at each state point and is particularly important when ring formation is possible. A variety of thermodynamic and physicochemical parameters of the associating system were monitored including the compressibility factor, internal potential energy, isothermal compressibility, chain and ring number, and shape were monitored. Our analysis indicated that there is a strong dependence of these monitored quantities upon the angle between vectors representing the bonding sites on each particle. Also presented are results which suggest the existence of a two phase region, which we believe is a gas-liquid coexistence, which is dependent upon density, bonding energy, and the relative angle between the bonding sites. (C) 1996 American Institute of Physics. [References: 40]
机译:描述了一种模拟每个粒子具有两个键合位点的缔合系统的缔合偏置蒙特卡洛(ABMC)方法。该方法包括一种在蒙特卡洛运动期间由单个粒子频繁形成两个同时键的策略。该策略用于在每个状态点获得足够的配置统计信息,并且在可能形成环时特别重要。监测了缔合体系的各种热力学和理化参数,包括可压缩因子,内部势能,等温可压缩性,链和环数以及形状。我们的分析表明,这些监控量对表示每个粒子上键合位点的矢量之间的角度有很大的依赖性。还提供了表明存在两相区域的结果,我们认为这是气液共存,这取决于密度,键合能和键合位点之间的相对角度。 (C)1996年美国物理研究所。 [参考:40]

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