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The phase portrait of the FNSG is also depicted for different fractional orders to show the overall chaotic behavior of the system.
Figures are depicted for different values of radiation parameter (Rd), Darcy number (Da), Fe3O4 water volume fraction, Rayleigh (Ra) and Hartmann (Ha) numbers.
Figure 12 Impulse responses of the first branch of the nonlinear model depicted for different input levels (pedal 1). Figure 13 Impulse responses of the first branch of the nonlinear model depicted for different input levels (pedal 2).
In Figure 8(a), the CDF for the minimum distance between nodes intentionally utilizing the same slot within sensing range is depicted for different packet lengths.
In Figures 12 and 13, the impulse responses of the first branch of the nonlinear model are depicted for different input levels, for the case of pedals 1 and 2 respectively.
The received signal energy can be transformed to the link path loss in decibels, depicted for different geometries in Figure 4. We also compare the proposed model with Reilly's single scattering model.
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For a clear comparison, the overall rate-distortion (R-D) curves are depicted for the different quantizations.
In Figure 4d, two profile lines are depicted for two different sample biases, namely 50 mV (red line) and 25 mV (blue line) (refer to Figure 4c as well).
In the bottom charts, ∆ pSTAT5 values (MFI) (difference to pSTAT5 level in absence of IL-2 or IL-7) after stimulation with IL-2 (left panel) and IL-7 (right panel) are depicted for the different haplotype carriers.
The experiment was depicted for two different amounts of the catalyst acceptor, 1 ±0.1)×10−6 g (solid lines) and 6 ±0.4 ×10−6 g (dashed lines).
This is mathematically equivalent to the release rate constants depicted for the different vesicle states in the allosteric model in A and thus yields the same prediction of the non-linear relation between Ca2+ and release rate.
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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