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This can be explained as at low-bit rate range, coarse quantization step sizes are generally used for encoding, resulting in a large QCS for each integer transform coefficient.
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This result can be explained as follows: At low concentration of dye, the discoloration efficiency is lower (ED 39% for the concentration of AO7 5 mg/L).
These outliers can be observed and the reason that they occur can be explained as follows: at each individual timestamp there are different blocks being mined from different benches.
This phenomenon can be explained as follows: At a much higher salt concentration, the anions are sufficient enough for complete binding the positive charged surface of individual nanoparticle, leading to neutralization of the surface charges.
The effect of the molar ratio ([Bi3+]/[S2−]) on nanoparticle size may be explained as follows: at pH = 2.5 and 3.5, all of the amine groups of chitosan are protonated [27] and negatively charged sulfides (S2−) interact with –NH3 + groups as represented in Eqs.
Based on the above discussion, we conclude that the results presented in Fig. 6 can be explained as follows: at low porosities, the increase in S with increasing porosity is due to the decreasing carrier concentration, resulting in both an increasing S d due to energy filtering effects and an increasing S ph.
The above phenomena can be explained as follows: At high concentrations, the higher ECL from TPA is due to its inherently higher excitation efficiency toward Ru bpy 32+ emission, but the diffusion velocity of the two co-reactants is similar because of the high difference in concentration gradient from the bulk solution to the modified electrode surface.
Our findings can most be explained as regulation at the level of chromatin structure for the following reasons.
This can be explained as follows: At time point t=0 the stomach compartment y9is the only compartment with non-zero Zr concentration.
This can be explained as backward reflection at the upper collimator.
Especially, the rain wind induced vibration that can be explained as vortex-induced vibration at high reduced wind velocity has been reported at many cable-stayed bridges in the world.
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