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tin seconds Table | 15 20 25 30 35 4-5 lift) in feet per second 141.4 108.83 90.30 55.53 35.91 2.65 Table II tin seconds
tin seconds Table | 15 20 25 30 35 4-5 lift) in feet per second 141.4 108.83 90.30 55.53 35.91 2.65 Table II tin seconds off} in feet per second 86.08 You have been hired by a firm that is designing a runway for an airport. Your job is to confirm that the runway is long enough for an airplane to land, but not unnecessarily long. You are given the velocity data for the largest aircraft that will land at the airport. The velocity data will be used to calculate the distance required for the aircraft to safely land and come to a stop. Below is a set of data that represents the velocity (in feet per second) of the final 45 seconds of the landing. At t = 0, the plane is on its final descent
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