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The most important are the amount of lead time and the physical properties of the object its size, shape, spin rate, density, strength, and other characteristics.
Therefore, the integral form of the rate density is used.
Figure 6 CAM rate density for a single lane.
The heat transfer rate density increases as the optimized structure becomes more complex.
Once again, the duct aspect ratio can be optimized for maximal heat transfer rate density.
Figure 6 shows the CAM rate density of a single lane.
Open image in new window Figure 2 Recombination rate density under 50-kV dc voltage.
Figure 12 shows the recombination rate density versus time under 10-kV dc applied voltage.
The relations between these factors and the erosion rate density have been determined.
The following is a brief description of the EEPAS model rate density.
The heat transfer rate density increases (with diminishing returns) as the optimized structure becomes more complex.
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