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The detection limits were calculated to be 1.09 and 1.35 μM.
Repeatability within and among days, accuracy and detection limits were calculated from these calibration curves.
Lower detection limits were calculated for GC-ECD ranging between 0.15 0.30 ng g−1 and 0.18 0.48 ng g−1, respectively.
The detection limits were calculated to be 0.12 μM for Cd2+ and 1.19 μg mL−1 for NB based on signal-to-noise ratio of 3 1.
Under optimized conditions, calibration graphs for Na, K, Mg, Ca, Cu, Al, Cr, Cd, Pb and Zn were constructed and detection limits were calculated.
Moreover, the detection limits were calculated to be 4.23 × 10−6 mol/L for Fe3+ ion and 5.67 × 10−6 mol/L for Cu2+ ion.
Critical manufacturing limits were calculated for the key attributes of a low enriched TRISO-coated nuclear fuel particle with a kernel diameter of 425 μm.
The detection limits were calculated and equaled 0.02, 0.003 and 0.009 mg L−1, while repeatability of the peak current was 2%, 1% and 3%, respectively.
Under optimized conditions, calibration graphs were plotted and detection limits were calculated in the range of 0.002 0.667 ng mL−1.
Second, confidence limits were calculated for each individual parameter.
Quantification limits were calculated to a signal-to-noise (S/N) ratio of 10.
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