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Responses for the case of isotropic materials known in the literature are recoverable from present results.
The results show that combining the two strategies (smoother and proposed algorithm) generate accurate dynamical responses for the case studies used in this report.
By using a number magnitude comparison task we were able to replicate the activation pattern typically associated with number magnitude processing with manual responses for the case of mental decisions (for a review see [ 28]).
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The phase current at the grid coupling during the inertia response for the case when the inertia response was the best is shown in Fig. 13.
The effects of the physical differences between the high- and low-fidelity models are identified in the aerofoil response for the case of either weak or strong travelling gust, where the influence of the aerofoil on the latter is accounted for in the high-fidelity simulations only.
Furthermore, the results of amplitude-differential ERK phosphorylations within the transient case are mainly attributed to the balance between activation and inactivation of Ras while duration-differential ERK responses for the sustained case are, in addition to Ras, markedly affected by dephospho-/phosphorylation of both MEK and ERK.
Despite this, we were able to refine the coding of the qualitative responses for the prospective case collection stage.
The resulting frequency response equation has the same form as the frequency response equation for the case of primary excitation only, except for an apparent shift in the linear natural frequency of the system.
The acoustic responses for these cases are estimated by applying the multi-frequency acoustic calculation method based on the Fourier series decomposition of the velocity and the Boundary Element Method.
For an ad-hoc combination of channel geometry and flap gate characteristics, modal excitation can give significantly larger response than for the case of a single or a sparse gate system.
Generalization of classical control tools like root locus and frequency response function for the case of complex variables will be shown in this paper to provide tremendous insight in the analysis and design of high performance, three-phase current regulators for AC systems.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com