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ULTRAHIGH-SPEED CALCULATION OF ISOTOPE DISTRIBUTIONS

机译:同位素分布的超高速计算

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This paper introduces an ultrahigh-speed algorithm for calculating isotope distributions from molecular formulas, elemental isotopic masses, and elemental isotopic abundances, For a given set of input data (molecular formula, elemental isotopic masses, and elemental isotopic abundances), and assuming round-off error to be negilgible, the new algorithm rigorously produces isotope distributions whose mean and standard deviation are ''correct'' in the sense that an error-free algorithm would produce a distribution having the same mean and standard deviation, The peak heights are also ''correct'' in the sense that the height of each nominal isotope peak from the ultra-high-speed calculation equals the integrated peak area of the corresponding nominal isotope peak hem an exact calculation, As a consequence of these properties, the algorithm generally places isotope peaks within millidaltons of their true centroids, The method uses Fourier transform methods and relates closely to two other recently introduced algorithms. The suite of capabilities provided by these three algorithms is sufficient to solve an extremely wide range of problems requiring isotope distribution simulation.
机译:本文介绍了一种超高速算法,用于根据分子式,元素同位素质量和元素同位素丰度计算同位素分布,对于给定的一组输入数据(分子式,元素同位素质量和元素同位素丰度),并假设为了使误差可以忽略不计,新算法严格地产生了均值和标准偏差为“正确”的同位素分布,即无差错算法将产生均值和标准偏差相同的分布,并且峰高也为“正确”是指从超高速计算得出的每个标称同位素峰的高度等于相应标称同位素峰下摆的积分峰面积(精确计算)。由于这些特性,该算法通常将同位素峰置于其真实质心的毫达尔顿内,该方法使用傅立叶变换方法,并且与其他两个r紧密相关引入了算法。这三种算法提供的功能套件足以解决需要同位素分布模拟的各种问题。

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