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Orthogonal polynomials, which are often employed to empirically represent unknown and possibly very complex relationships, have been applied to the development of error budgets by fitting the variance of the projection as a function of the standard errors of the parameter estimates of the process model inputs.
As a second step, we have studied the variations of the energy, before [E0, (respectively, E 0 νT )] and after ( E m m ′, [respectively, E m m ′ ν T )] the projection as a function of the ratio G np /G pp. The corresponding results are shown in Fig. 3 for Z = 6 (respectively, Fig. 4 for Z = 8) with (N − Z) = 0, 1, 2, 3.
As a second step, we have studied the variations of the energy, before (E0, (respectively E 0 ν T Open image in new window)) and after ( E m m ′ Open image in new window, (respectively E m m ′ ν T Open image in new window)) the projection as a function of the ratio G np /G pp. The corresponding results are shown in Figure3 for Z = 6 (respectively Figure4 for Z = 8) with (N - Z) = 0,1,2,3.
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Figure 9 plots the obtained projection values as a function of the projection values predicted by the model.
The Q t has a local maxima between 55 and 60 seconds, and the optimal parameters at those times are shown in Table 3. Fig. 6 Amplitudes of the stack of the waveforms from the back projection analysis, as a function of time.
(B ) Membrane voltage in an RA projection neuron as a function of injected current.
(a) The relative amplitude of high- (blue) and low-frequency (red) back-projection results as a function of time.
PEPR method defines the regularization parameter as a function of the projection error developed by difference between experimental measurements and calculated data.
Another illustrative way of displaying this information is achieved by plotting the instantaneous firing rate as a function of both projection values, as in Fig. 5e.
The plot in Fig. 3D shows
Briefly, elliptic Fourier functions use a parametric representation of the x- and y-projections of the outline, treating each independently as a function of contour length.
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