3) A two-dimensional circular cylinder is placed in a high-speed uniform flow. Vortices shed from the cylinder at a constant frequency, and pressure sensors on the rear surface of the cylinder detect this frequency by calculating how often the pressure oscillates. Given three data points, use Newton's interpolation method to find the time where the pressure was zero. Time 0.60 0.62 0.64 Pressure 20 50 60

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3) A two-dimensional circular cylinder is placed in a high-speed uniform flow. Vortices shed
from the cylinder at a constant frequency, and pressure sensors on the rear surface of the cylinder
detect this frequency by calculating how often the pressure oscillates. Given three data points,
use Newton's interpolation method to find the time where the pressure was zero.
Time
0.60 0.62 0.64
Pressure 20 50 60
Transcribed Image Text:3) A two-dimensional circular cylinder is placed in a high-speed uniform flow. Vortices shed from the cylinder at a constant frequency, and pressure sensors on the rear surface of the cylinder detect this frequency by calculating how often the pressure oscillates. Given three data points, use Newton's interpolation method to find the time where the pressure was zero. Time 0.60 0.62 0.64 Pressure 20 50 60
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