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The error of experimental results with regression equation are checked by comparing the predicted values with experimental values and found the results are in adequate.
We report image reconstructions using 126 wavelengths with estimation error in simulations as low as 0.05 and mean square error of experimental data of 0.18 and 0.29 for ink and dye concentrations, respectively, an improvement over reconstructions using fewer specifically chosen wavelengths.
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Due to the effect of roundoff errors or the measurement errors of experimental data, small perturbations are often incorporated in the coefficient matrices of SARE (1a - 1b), and hence we obtain the perturbed SARE A ˜ ⊤ X ˜ + X ˜ A ˜ + C ˜ ⊤ X ˜ C ˜ − ( X ˜ B ˜ + C ˜ ⊤ X ˜ D ˜ + S ˜ ) ( R ˜ + D ˜ ⊤ X ˜ D ˜ ) − 1 ( B ˜ ⊤ X ˜ + D ˜ ⊤ X ˜ C ˜ + S ˜ ⊤ ) + H ˜ = 0, (5a).
Mean and standard errors of experimental values calculated with using Prism 5.0 (GraphPad software Inc .. Statistical analyses comparing the mean of paired experimental groups were conducted with Student's t test using Prism 5.0 (GraphPad software Inc .. Data were considered significantly different when p-values <0.05.
Overall, fitting improved the error range of experimental OP prediction from 39 to 67% to 21-38%.
It is found that deviations between experimental and calculated mole fractions lie within the estimated error of the experimental data.
The deformation results from the numerical analysis agree within 8.5% error of the experimental outcome.
For specimens with two embedded rods the theory predicted strength within 16% error of the experimental results.
Once the regression process was repeated for several times, the calculated viscosity values within 10.0 % error of the experimental data were determined.
Relative error of the experimental with reference circle method is 1.78%%, while the average circle method is 1.32%% in the experiment, which agrees well with the theoretical calculation.
The pure error of the experimental data was determined using replicate blends in the design and was found to be 0.3 °C for freeze point and 2.6 × 10−3 cSt for viscosity.
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