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The measured voltage was related to baseplate micromotion (μm) using the manufacturer's provided linear calibration coefficient.
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For 5mdC and dC the established linear calibration curves had correlation coefficients >0.99 while for 5hmdC a correlation coefficient around 0.98 was observed (see Figure 2).
A linear calibration plot having correlation coefficient 0.985 was obtained in the range 0.05 1.5 mM paracetamol concentration and the sensitivity of the method has been found as 13.04 μA mM−1.
Each compound was calibrated with a linear calibration model with a 9-point correlation coefficient (R) of 0.99 or better.
Correlation coefficient (R) was calculated from the calibration curves and linearity was evaluated by linear calibration analysis.
The proposed MSPE GC MS analytical method has a linear calibration curve for all target analytes with coefficients of determination to range from 0.9950 to 0.9999.
Linear calibration plots were obtained for all hormones whose regression coefficients were larger than 0.98.
Linear calibration curves were obtained for the respective electrodes with correlation coefficients higher than 0.995.
Quantitative determination of E2 was conducted using a linear calibration curve between the range of 0.78 25 μg/mL with a 0.99 correlation coefficient.
Linear calibration curves obtained for BPA ranged from 3.9-250 ng/ml, and the coefficients of the determinations (r) were ≥ 0.995.
This design gave a satisfied sensitivity with a linear calibration graph over the range of 0.1 3.0 μg mL−1 of Cu II) and correlation coefficient 0.9991.
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