A large, enclosed (pressurized) cylindrical tank 3 meters high contains 2.8 meters of oil (s.g. = 0.87). An orifice (Cc = 0.75, Cv = 0.95) at the bottom of the tank with a diameter of 25 mm was opened and a volume of 120 liters was collected after 30 seconds. Determine the velocity of the jet at the venna contracta and the pressure of air above the oil. Actual Velocity = m/s Pressure of air = kPa
A large, enclosed (pressurized) cylindrical tank 3 meters high contains 2.8 meters of oil (s.g. = 0.87). An orifice (Cc = 0.75, Cv = 0.95) at the bottom of the tank with a diameter of 25 mm was opened and a volume of 120 liters was collected after 30 seconds. Determine the velocity of the jet at the venna contracta and the pressure of air above the oil. Actual Velocity = m/s Pressure of air = kPa
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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A large, enclosed (pressurized) cylindrical tank 3 meters high contains 2.8 meters of oil (s.g. = 0.87). An orifice (Cc = 0.75, Cv = 0.95) at the bottom of the tank with a diameter of 25 mm was opened and a volume of 120 liters was collected after 30 seconds. Determine the velocity of the jet at the venna contracta and the pressure of air above the oil.
Actual Velocity = m/s
Pressure of air = kPa
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