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The study demonstrates that a decrease of the delta phase layer with respect to the zeta phase layer improves crack resistance of the coating layers.
The present study demonstrates that a decrease in the amplitude of GABAergic mIPSC during development may result from a decrease in the GABA contents of synaptic vesicles and from changes in the kinetics of postsynaptic GABA-activated Cl− channels.
Interestingly, our study demonstrates that a decrease in GCIPL thickness is more sensitive to retinal involvement in RRMS than an alteration in the temporal pRNFL.
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Turnbaugh et al. (2009a, b) also demonstrated that a decrease in this phylum may be correlated with the obesity.
At the same time, the control experiments were carried out to demonstrate that a decrease in current actually stems from the specific surface chemistry.
The control experiments were performed to demonstrate that a decrease in current actually stems from the specific surface chemistry in Figure 6B.
A sensitivity study demonstrated that a decrease in the material cost for the containment system could significantly increase the breakeven shipping distance.
We observed that the ionic current in Figure 6(B) (black) remained unchanged compared to that in Figure 6A (red), which demonstrated that a decrease in current stems from modification of 3-APTES.
Similarly, Sorensson and Lausberg (1996) demonstrated that a decrease in spiral grain in juvenile wood of 3 degrees was sufficient to reduce rejection rates for twist from 12%to5%5%, and would save the New Zealand forest industry about $58 million per annum.
Finally, it was demonstrated that a decrease in the nominal diameter increased dispersion and reduced the plug flow ratio; however, the retention times obtained were closer to those of the ideal plug flow system.
It is demonstrated that a decrease in grain size from 300 to 10 nm in Al and α-Fe decreases their critical stress intensity factors by a factor of 2 3 and thereby dramatically reduces the toughness/ductility of these materials.
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