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- W2029014705 abstract "Quantitative phase analysis of a system of n phases can be effected without the need for calibration standards provided at least n different mixtures of these phases are available. A series of linear equations relating diffracted X-ray intensities, weight fractions and quantitation factors coupled with mass balance relationships can be solved for the unknown weight fractions and factors. Uncertainties associated with the measured X-ray intensities, owing to counting of random X-ray quanta, are used to estimate the errors in the calculated parameters utilizing a Monte Carlo simulation. The Monte Carlo approach can be generalized and applied to any quantitative X-ray diffraction phase analysis method. Two examples utilizing mixtures of CaCO3, Fe2O3 and CaF2 with an α-SiO2 (quartz) internal standard illustrate the quantitative method and corresponding error analysis. One example is well conditioned; the other is poorly conditioned and, therefore, very sensitive to errors in the measured intensities." @default.
- W2029014705 created "2016-06-24" @default.
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- W2029014705 date "1986-08-01" @default.
- W2029014705 modified "2023-10-18" @default.
- W2029014705 title "A Monte Carlo error simulation applied to calibration-free X-ray diffraction phase analysis" @default.
- W2029014705 cites W1522694318 @default.
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- W2029014705 doi "https://doi.org/10.1107/s0021889886089549" @default.
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