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The overall analysis time for the LAMP assay method was approximately 24 h.
Transmission Electron Microscopy (TEM) image showed that the particles size of bioactive glass (64SiO2.28CaO.8P2O5) prepared by sol gel method was approximately less than 20 nm.
The detection limit of the method was approximately 102 CFU/ml, either in viable culture, heat inactivated culture or inoculated tomato pulp.
The micelle formed via the dialysis method was approximately 95 nm in diameter and contained 15 wt.% of doxorubicin (DOX) by weight.
Under the optimum conditions (type and concentration of eluent, HCl 1.6 mol L−1; volume of eluent, 6 mL; adsorption solution pH, 6.0; amount of polymer, 30 mg; adsorption time, 25 min; desorption time, 25 min), preconcentration factor of the proposed method was approximately 100.
The proposed method was approximately five times faster than the conventional approach.
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Calculation results from a typical scene reveal that the proposed method is approximately 30 60% more accurate than conventional control practices.
Numerical experiments show that this method is approximately second order accurate in the L∞ norm for piecewise smooth solutions.
The average Vickers hardness number obtained from the energy method is approximately half that from the load method.
This ensures that the method is approximately freestream preserving and satisfies an appropriate form of the divergence constraint.
Compared with the measured values, the predicted values for the theory and the finite element method were approximately 77 96% of the values of the experimental data.
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