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Determination of the absolute fringe number in Rayleigh interference patterns in systems at sedimentation equilibrium via a newly defined function (k)

机译:通过新定义的函数(k)确定沉积平衡系统中瑞利干扰模式的绝对边缘数

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Analysis of data from the analytical ultracentrifuge used in sedimentation equilibrium modes calls for knowledge of the absolute (as distinct from relative) final solute mass distribution as a function of radial distance. This poses particular problems when Rayleigh interference optics are used, as the resultant fringe patterns provide estimates only for the relative concentration values. Methods for circumventing this problem are discussed, and their limitations described. Computer simulation is used to demonstrate the limitations of the most popular approach (floating the offset value in nonlinear fitting). A new approach to tackling this problem is defined, which is not limited by the number of components present, nor by their interactions if any. A function k (E) is shown to have the value zero only when an assumed offset (E) in the values acquired is equal to the genuine offset. A proof of concept numerical algorithm has been constructed, which shows that the new approach is capable in principle of yielding offset values of a precision similar to that of the data set.
机译:沉积平衡模式中使用的分析超速离心机的数据分析,呼吁以径向距离的函数来了解绝对(与相对)最终溶质质量分布的绝对(与相对)的不同。当使用瑞利干涉光学器件时,这种姿势存在特殊问题,因为所得到的条纹图案仅提供相对浓度值的估计。讨论了规避这个问题的方法,并描述了它们的局限性。计算机仿真用于展示最流行的方法的局限性(浮动非线性拟合中的偏移值)。定义了一种解决此问题的新方法,该方法不受当前的组件数量的限制,如果有的话,他们的互动。函数k(e)仅当在获取的值中的假设偏移(e)等于正版偏移时,才能具有零值零。已经构建了概念数值算法的证据,这表明新方法能够原则上能够产生与数据集的精度的偏移值。

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