Milk with a density of 970 kg/m^3 is transported on a level road in a 9-m long, 3-m diameter cylindrical tanker. The tanker is completely filled with milk, i.e., no air space in the tank. If the truck is accelerating from a stop signal at 7.0 m/s^2 to the left, determine the pressure difference between the maximum and minimum pressures in the tank. Depict on the figure the location of the minimum and maximum pressures in the tank. 1 min 9m 3m

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Milk with a density of 970 kg/m^3 is transported on a level road in a 9-m long, 3-m diameter cylindrical
tanker. The tanker is completely filled with milk, i.e., no air space in the tank. If the truck is accelerating
from a stop signal at 7.0 m/s^2 to the left, determine the pressure difference between the maximum
and minimum pressures in the tank. Depict on the figure the location of the minimum and maximum
pressures in the tank.
min.
9m
3m
Transcribed Image Text:Milk with a density of 970 kg/m^3 is transported on a level road in a 9-m long, 3-m diameter cylindrical tanker. The tanker is completely filled with milk, i.e., no air space in the tank. If the truck is accelerating from a stop signal at 7.0 m/s^2 to the left, determine the pressure difference between the maximum and minimum pressures in the tank. Depict on the figure the location of the minimum and maximum pressures in the tank. min. 9m 3m
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