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Fig. 6 offers some evidence that the apparent bimodality in total flight speed (Fig. 4A) reflects trajectories being either largely 'fast' (coloured orange through red, corresponding to the mode around 2.3 ms−1) or largely 'slow' (coloured blue through green, corresponding to the mode around 1.2 ms−1.2
The histograms showed a right-skewed unimodal distribution curve with the mode around zero.
The histogram yielded a right-skewed unimodal distribution curve with the mode around 2. A normal distribution curve representing the variability of the data around zero was then fitted around the mode, mirroring the Gaussian profile of the left part of the histogram.
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Indeed, the second mode (around 3) mainly relies on the architecture of β-strands within sheets, where side chains in positions i, i + 1, i + 2 in one strand occupy a roughly equilateral triangle.
The third mode (around 6) mainly corresponds to a geometry with two tetrahedra (one strand sandwiched by two others) sharing a vertex, which has 6 first non-trivial neighbors (Fig. 10C).
The second most important transport mode (around 4percentt) is by bicycle, which is particularly important for trips to market.
The control law is designed to guarantee the existence of the sliding mode around the nonlinear surface, and the damping ratio of the closed-loop system is increased as the output approaches the set-point.
Furthermore, the coupling between the resonant mode and the plate mode around the band gap is characterized, as well as the effect of the geometrical parameters on the band gap.
By this method, the electric field distribution of the nanocavity mode around the whole nanocavity region needs to be simulated and then integrated.
Experimental results show that the vibration of the first mode around 92 Hz and the second mode around 240 Hz of the three smart links are reduced respectively by 64.98%, 59.47%, 62.28%, and 45.80%, 36.79%, 33.33%, which further verify the multi-mode vibration control ability of the smooth adaptive sliding mode control law.
The mean is 5.43, the median is 4.88 and the mode is around 4, all of which are pretty close to the conditioning data.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com