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Let β and β̂ be steepness parameters for the firing rate function.
Here (mathbf{u}_{0}) and (tilde{mathbf{u}}_{0}) denote two initial conditions of (1), while β̂ and β are two steepness parameters.
Since the Urbach energy and steepness parameters are reported for the first time in the case of Mn-doped ZnS nanoparticles, no results are available to compare our results.
Thus, θD and θN are the thresholds for the action of Delta and Notch, respectively, and pD and pN are the corresponding steepness parameters (Additonal file 1: Table S-T1).
Similar(56)
The solution of (1) depends on the steepness parameter β.
Here σ is a steepness parameter and τ a threshold parameter.
In these functions, τ is a threshold parameter and σ a steepness parameter.
The band gap, Urbach energy and steepness parameter are calculated from the absorption spectrum.
The calculated value of the steepness parameter is 0.29 at 300 K.
Fig. 6 Results generated by Matlab's ode15s solver, with steepness parameter (beta=150) and (T=0.2).
Other parameters were set as follows: learning rate (upalpha = 0.85), momentum factor (upmu = 0.9), and the steepness parameter (lambda = 1).
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