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首页> 外文期刊>Journal of Applied Physics >Statistical Factors Affecting the Intensity of X‐Rays Diffracted by Crystalline Powders
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Statistical Factors Affecting the Intensity of X‐Rays Diffracted by Crystalline Powders

机译:影响结晶粉末衍射的X射线强度的统计因素

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The Laplacian probability equation can be used to predict the reproducibility of the intensities of x-rays diffracted by crystalline powders. If absorption is neglected, and N is the number of particles irradiated, p the proportion of particles which are oriented so as to diffract, and q=1 - p, the relative mean deviation to be expected in repeated intensity measurements is given by Um=0.798 (q/Np)½. When absorption and the actual distribution of particle sizes are taken into account, the expression becomes Um=0.798(qμve/pA) 1 2 , where μ is the linear absorption coefficient of the material, ve the effective volume per particle, and A the cross-sectional area of the incident beam. The theory is confirmed by measurements on four size fractions of quartz powder using a Norelco Geiger-counter x-ray spectrometer. For typical experimental conditions and powders of medium absorbing power for x-rays, it is demonstrated that good reproducibility can be expected only if the effective particle dimension is less than approximately five microns.
机译:拉普拉斯概率方程可用于预测结晶粉末衍射的X射线强度的可再现性。如果忽略吸收,并且N是被照射的粒子数,p是取向以便衍射的粒子比例,并且q = 1-p,则在重复强度测量中预期的相对平均偏差由Um =给出。 0.798(q / Np)1/2。当考虑吸收和粒径的实际分布时,表达式变为Um = 0.798(qμve/ pA)1 2,其中μ是材料的线性吸收系数,ve是每个粒子的有效体积,而A是叉号入射光束的截面积。通过使用Norelco Geiger-counter X射线光谱仪对石英粉的四个尺寸部分进行测量,证实了这一理论。对于典型的实验条件和对X射线具有中等吸收能力的粉末,证明仅当有效颗粒尺寸小于约5微米时,才能获得良好的重现性。

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    《Journal of Applied Physics 》 |1948年第8期| 共12页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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