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We developed a systematic method for choosing an optimal perturbation size for finite differencing and discuss, for both methods, important implementation issues such as scaling with respect to the number of elements in the gradient vector.
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The modeling errors are discussed for both sets of comparisons.
The mechanisms of PV and PC were discussed for both structures.
Loss of entrainment is discussed for both models in Sect. 5.
In addition, the cost per service and per actor is discussed for both cases.
Grain size dependence of H2sensing behavior has been discussed for both types of Pd films.
Failure modes and fracture paths are analyzed and discussed for both single and double-shear experiments.
Implications of these surprising results are discussed for both academics and practitioners.
A global efficiency was presented and discussed for both fixed ejector types.
The results are discussed for both axisymmetric and non-axisymmetric excitations in frequency domain.
Also, the plastic energy dissipation behavior near cracks with different curvatures is discussed for both materials.
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