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The tube is centrifuged for 15 min at 1100 × g, room temperature, with a low acceleration rate.
The explanations of all graphs are summarized in Table 1. Figure 5 Sample scenarios for combination of unwanted and intentional camera motions: (a) high acceleration with high noise, (b) high acceleration with no noise, (c) high noise with no acceleration, (d) low acceleration with low noise, (e) constant velocity without noise and acceleration, (f) constant velocity with noise.
These cells were cytospun on glass slides at 1000 RPM for 5 minutes with low acceleration.
Samples were applied to glass slides by centrifugation at 28×g for 5 min with low acceleration.
Low acceleration.
These structures were designed for increasing levels of peak ground acceleration ranging from values close to zero (i.e. buildings located in regions with very low seismic hazard) up to 0.40 g (i.e. moderate to high seismic hazard).
The estimated peak ground accelerations range from 0.15 to 0.25g in this general area.
In bivariate analyses, x-acceleration range and perturbation both increased over training (see Table 3).
The first step of this analysis was significant for perturbation and x-acceleration range (12 % and 4, respectively, p's<.005), while y-acceleration range was only marginally explained at 2% (p = .06).
The x-acceleration range changed significantly across all 150 trials, but was not predicted significantly by the block number variable.
(B ) Number of low-acceleration events (events with acceleration in the range 4 9 µm/ms) measured on four textures.
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