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MnOx loaded on the WO3 photoanode through photodeposition methods improves the photoelectrochemical water oxidation performance.
The simultaneous estimation of anthropogenic heat discharge and building energy use via two independent methods improves the understanding of the surface energy balance in an urban landscape.
The occurrence of ferrite, which does not occur in regular stainless steel fabricated using conventional metallurgical methods, improves the mechanical and corrosion properties of the LENS-fabricated sample made using 316 L stainless steel powder.
The two-layer approach proposed herein offers an advance over traditional probabilistic seismic demand modeling methods, improves the performance of the developed metamodels and can be employed to study the seismic response of other rigid-body-type structures.
The combination of geometric control and homotopy methods improves the traditional techniques of optimal control theory.
As the α tail parameter increases, these methods improves the average SER, giving the best result for the Gaussian case.
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These methods improve the performance of the classical IDMs.
Therefore, the proposed methods improve the conventional polynomial convergence rate.
Ultimately, both methods improve the physical properties of RAs.
They show that feature selection methods improve the classification accuracy.
Both two methods improve the end effect problem.
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