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At the point of maximum formation of DE, TE increased rapidly.
Neither catalyst type, however, is optimized for the maximum formation of N2.
As the etching in n-Si wafer depends on the concentration of valance band holes available at the Si-electrolyte interface, the maximum formation of the PS layer is achieved towards the anodic location of the sample.
According to the model, the optimum conditions to achieve maximum formation of the Amadori compound were 60 °C, 0.44 aw and 2 1 weight ratio of dextran to β-Lg.
The maximum formation of pyruvic acid, the degradation end product was obtained at time, 3 h; pH, 7; temperature, 40 ºC; concentration of MICE, 4 mg and agitation speed, 75 rpm.
A central composite face design was used to carry out an optimisation of the reaction conditions leading to the maximum formation of the Amadori compound, with the concentration of furosine as response variable.
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The maximum formation efficiencies of methane and ethylene were of 7.5% and 6.8% with the electrode consisted of Cu2O/Zn, respectively.
We used the average 143Nd/144Nd ratio of the source mantle of mid-ocean ridge basalt (MORB; ( frac^{143}mathrm{N}mathrm{d}}^{144}mathrm{N}mathrm{d}}=0.513151; upvarepsilon ^{143}mathrm{N}mathrm{d}=10 )) as the maximum value of 143Nd/144Nd in the ASE and obtained the maximum formation time of the EER.
In order to apply the stagnant-lid convection model to our model, we need to confirm that the source mantle region for the formation of the EER would have experienced adiabatic melting within 33.5 Myr, which is the maximum formation time of the EER after Solar System formation.
The selective formation of HCOOH on the prepared Sn electrocatalyst was observed with high faradaic efficiency and HCOOH formation rate over the rod shaped Sn catalysts, resulted in a maximum faradaic efficiency of 94.5% at 1.6 V vs Ag/AgCl and a maximum formation rate of about 0.5 mol/gcat h at 2 V vs Ag/AgCl.
The blue bar indicates the maximum formation age of the EER.
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