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Tables 1, 2, and 3 give the errors in the sense of -norm and -norm of the numerical solutions under various steps of and at for and.
Tables 1, 2, and 3 give the errors in the sense of the (L^{infty} -norm of the numerical solutions under various steps of (tau=h=0.4, 0.2, 0.1, 0.05) at (t=60) for (p=2, 3 mbox{ and } -norm
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There were three steps processing the raw BSG and PM: (1) thermochemical pretreatment, which broke down the structure of raw materials to increase the solubilization yield; (2) enzymatic hydrolysis, which was performed by various steps of enzymes under different pHs and temperatures; (3) filtration, which separated the liquid and solid fraction in the last step.
The maximal errors of the numerical solutions under various mesh steps (h=tau) at (t=10) are listed on Table 2.
The errors in the sense of (L_{infty} -norm of the numerical solutions at different time t under various mesh steps (h=tau) are listed on Table 1.
In Tables 1-3, the values of (E^{n}) for the scheme (2.1) are presented for three cases (p=2,3,4) under various mesh steps h and τ, respectively.
In order to verify the second-order accuracy (O tau^{2}+h^{2})), the convergence order figure of (log(e^{n}_{epsilon})mboxlog(h)) is given in Figure 1 under various mesh steps h and τ at (t=10).
The convergence order figure of (log(e^{n}_{epsilon})mboxlog (h)) is given in Figure 4 under various mesh steps h and τ at (t=10). Figure 4 shows that scheme (2.6 - 2.8 2.6 - 2.8rgent is the maximum norm and the convergente order in (O(the ^{2}+h^{2})).
Fig. 7 Compare area under the ROC curve for convolutional neural network in various steps.
The various substrate and inhibitor titrations employed in this study permitted an examination of various steps of oxidative phosphorylation and electron transport under resting respiration and maximally ADP-stimulated O2 flux by ADP (state 3).
Both NaDCC and PPM were essential to suppress microbial growth at various steps of the process from wild collecting to culture of seeds under laboratory conditions.
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