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Exact(12)
The theoretical background of both the methods is discussed.
The performance of both the methods is judged by finding Spearman's rank correlation coefficient.
The microstructure of samples from both the methods is similar, with some porosity found in powder-feed components, but the surface finish and material usage efficiency is better for wire-feed samples.
The source code for both the methods is available from the websites of the respective authors.
The stiffness of each storey for every model in both the methods is shown in Fig. 7.
For the mismatch scenario, the performance of both the methods is comparable as shown in Table 6.
Similar(48)
It is found that the results from both the methods are very similar.
Both the methods are matching with a correlation coefficient of >0.9.
Simulation results demonstrate that both the methods are effective ways to mitigate blind velocities in DDMA MIMO GMTI radar systems.
The liquid and vapour densities at coexistence and the critical point data from both the methods are found to be in agreement.
Comparative results from the analysis of copolymers produced by Ziegler Natta, chromium and metallocene catalysts show that both the methods are useful for characterizing LLDPE resins.
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