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Computing Method about the Optimal Spontaneous Fission Quantity of Agent during Ultra High Frequency High-Dimensional Linear Computing

机译:超高频高维线性计算中Agent最佳自发裂变量的计算方法

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A method to improve the ultra high frequency high-dimensional linear computing power is explored in this paper. A description is given on the process that agent simulates the differentiation and resistance of leukocyte and that the optimal quantity of spontaneous fission is determined. First, the time scalage is calculated to screen and classify important indicators of UCP, based on which the standard host environment is established. Second, the environmental detector of logic structure design of microvillus is simulated, the computing method to determine the optimal quantity of spontaneous fission of agent under different conditions is discussed. Third, to precisely describe the linear computing power of the host environment, an evaluation method based on transcendental number precision calculation is proposed, besides, the adaptability of different measure formulas for objective function is discussed in this paper. Finally, weak exclusion force inside Structure of Quasi-Nanometer Crystal is computed to verify the effectiveness of the method.
机译:本文探讨了一种提高超高频高维线性计算能力的方法。描述了该试剂模拟白细胞的分化和抵抗力的过程,并确定了自发裂变的最佳量。首先,计算时间尺度以筛选和分类UCP的重要指标,并以此为基础建立标准宿主环境。其次,模拟了微绒毛的逻辑结构设计环境检测器,讨论了确定不同条件下药剂自发裂变最佳量的计算方法。第三,为精确描述宿主环境的线性计算能力,提出了一种基于先验数精度计算的评估方法,并讨论了不同度量公式对目标函数的适应性。最后,计算了准纳米晶体结构内部的弱排斥力,验证了该方法的有效性。

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