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Through a numerical test, the experimental order of convergency of both schemes has been found.
We also calculate the experimental order of convergence and numerical L1-stability of the scheme for smooth initial data.
We define the experimental order of convergence (EOC) by a n = log ( err h 1, τ n / err h 2, τ n ) log ( h 1 / h 2 ) and b n = log ( err h, τ 1 n / err h, τ 2 n ) log ( τ 1 / τ 2 ), n = 0, 1. (73).
The experimental order of convergence in the discrete (L_{2} -norm is computed by the formuL_{2} -normname{Ord}(Y)=log_{2}frac{|Y_{h}-u|}{|Y_{h/2}-u|}, where u is the exacomputedion of original probyem, while (Y_{h}) denothe the solution oformulaifference scheme operatorname{ith step h.
The clusters were clearer in the treatments U-NaOH 15% + HW + E and U-NaOH 10% + HW + E. In these cases, the pretreatments were located sequentially through the PRIN2 axis, this sequence was the same as the experimental order (ultrasonication, hot water, and enzyme).
The experimental order and motion direction (clockwise and counter-clockwise) was also counterbalanced.
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In the case of the energy norm, we obtain the optimal experimental order of convergence.
All patients and controls followed the same experimental order to rule out order-based learning effects.
The experimental second-order bimolecular rate coefficients at room temperature were evaluated by assuming a pseudo-first-order kinetic approximation after calibration of the measured pressure and consideration of the ion-gauge sensitivities.
This plot is generated by measuring the experimental first-order rate constant (kexp) with varied enzyme (E0) and inhibitor concentrations as described in Materials and Methods.
This transitivity of discrimination means that it is sufficient to measure discrimination of neighboring stimuli to ensure mutual discrimination of all stimuli in the set, which reduces the experimental burden from order(n) down to order(n).
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