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Microtubule Tip Tracking by the Spindle and Kinetochore Protein Ska1 Requires Diverse Tubulin-Interacting Surfaces.
In prometaphase the APC/C becomes active again, but is controlled by the spindle assembly checkpoint.
In anaphase each chromatid pair separates into two identical chromosomes that are pulled to opposite ends of the cell by the spindle fibres.
When drilling of the Al layer, the damping-induced vibration led to an increase in the background noises (39.1 117.2 Hz), whereas the frequencies produced by the spindle remained largely the same.
Analysis of variance (ANOVA) carried out to find the significance of parameters on multiple performance characteristics revealed that the feed rate has the highest contribution on GFRG followed by the spindle speed.
The type of material has the most significant effects on the variations of thickness and depth of the spun parts, followed by the spindle speed and the feed ratio.
Meanwhile, the vibration frequencies induced by the spindle rotation are detected by the signal analyzer, and the detected frequency has been found to agree well with the experimental wave period of the workpiece surface (WS).
Additionally, it can be seen that the largest amount of energy is consumed by the spindle motor.
We tugged on chromosomes to measure the forces produced by the spindle and chopped spindles apart to locate the motor for chromosome movement.
In detail, 1.6 W·h of energy and 3.3 W·h of energy were saved by the spindle motor in the rough machining process and finish machining process, respectively.
The schematic diagram of ultra-precision flycutting and its machined surface is shown in Figure 3 [20], which shows the tool trajectory is actually determined by the spindle rotation angle [20].
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