The diameter of the pipes (1) and (2) connected to the tank shown in the figure are 3 cm and the diameter of the pipe (3) is 5 cm. Alcohol with a density of 0.79 is injected into the tank from pipe (1) with a speed of 9 m/s and water is injected to tank from pipe (2) with a speed of 15 m/s. Assuming that there is an ideal mixture in the tank, find the exit velocity of the mixture in the pipe (3) and the specific mass of the mixture. Alcohol (1)- (3) Admixture Ideal Mixture Water (2)-

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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The diameter of the pipes (1) and (2) connected to the tank shown in the figure are 3 cm and
the diameter of the pipe (3) is 5 cm. Alcohol with a density of 0.79 is injected into the tank
from pipe (1) with a speed of 9 m/s and water is injected to tank from pipe (2) with a speed
of 15 m/s. Assuming that there is an ideal mixture in the tank, find the exit velocity of the
mixture in the pipe (3) and the specific mass of the mixture.
Alcohol (1)
(3) Admixture
Ideal Mixture
Water (2)
Transcribed Image Text:The diameter of the pipes (1) and (2) connected to the tank shown in the figure are 3 cm and the diameter of the pipe (3) is 5 cm. Alcohol with a density of 0.79 is injected into the tank from pipe (1) with a speed of 9 m/s and water is injected to tank from pipe (2) with a speed of 15 m/s. Assuming that there is an ideal mixture in the tank, find the exit velocity of the mixture in the pipe (3) and the specific mass of the mixture. Alcohol (1) (3) Admixture Ideal Mixture Water (2)
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