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The relaxivity was determined by a linear fit.
The initial models were obtained by a linear fit to the traveltime-distance curve.
The initial models were obtained by a linear fit to the travel-time-distance curve.
Trends are indicated by a linear fit for each CH4 ratio (5% and 6% represented by the same symbols).
The relaxation times were calculated by a linear fit of the logarithmic region-of-interest signal amplitudes versus TE.
The ratio curve was inter- and extrapolated from 0 s up to the end of acquisition by a linear fit.
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The background estimation is performed by calculating a linear fit by means of least squares estimation (LSE) [21].
By performing a linear fit of the hyperthermia data (temperature versus time) in the initial time interval, t = [1 10] s, we obtain the experimental value of.
By using a linear fit to the two different sets of measurements, the S values of 804.7 μV/K for the 20 mK/s heating rate and 791.2 μV/K for the 0.8 mK/s heating rate were obtained.
The value of m for the samples is estimated from the slope of the log vs log (hν) plots by taking a linear fit, which is found to be 2 [8, 9].
Initial hydrolysis rates (g/(L*h)) were calculated by applying a linear fit to the reducing sugar concentration data from 0 to 6 h.
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