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The group-based pruning FFT algorithm applies the scheme of the grouped frequency indices to accelerate computations of selected discrete Fourier transform (DFT) outputs.
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We apply the scheme to electromagnetic Vlasov simulations.
We applied the scheme to the human olfactory receptor (OR) genes.
We then apply the scheme to the agent-based model itself.
We then apply the scheme to two classes of materials; ferromagnetic ferroelectrics and half-metallic antiferromagnets.
She added that, even for those who were aware of the need to apply, the scheme presented difficulties for individuals without the expected form of documentation and those who are not fluent in English.
We apply the scheme to the anisotropic heat-conduction equation, and compare its results with those of existing finite-volume schemes for anisotropic diffusion.
Then we apply the scheme to a general n dimensional linear system subject to time-varying delay in the state feedback.
Furthermore, we apply the scheme to direct numerical simulation of a homogeneous charge compression ignition (HCCI) process in an enclosure studied previously in the literature.
We apply the scheme to a two-dimensional problem involving a laminar premixed methane air flame interacting with a counterrotating vortex pair using detailed GRIMech3.0 chemical kinetics.
Let us apply the scheme above for the step sizes (h=0.05), (tau =0.05).
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com