4. A closed cylindrical tank with 1.5m radius and 12m tall has 2m of water, 3m of oil, 1m of mercury, and 5m of seawater. The pressure inside the tank is 10kPa. Determine the discharge (m³/s) through a 65mm radius orifice located at the bottom of the tank assuming that your coefficient of discharge is 0.713.
4. A closed cylindrical tank with 1.5m radius and 12m tall has 2m of water, 3m of oil, 1m of mercury, and 5m of seawater. The pressure inside the tank is 10kPa. Determine the discharge (m³/s) through a 65mm radius orifice located at the bottom of the tank assuming that your coefficient of discharge is 0.713.
Chapter2: Loads On Structures
Section: Chapter Questions
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![4. A closed cylindrical tank with 1.5m radius and 12m tall has 2m of water, 3m of oil, 1m of mercury, and 5m of
seawater. The pressure inside the tank is 10kPa. Determine the discharge (m³/s) through a 65mm radius
orifice located at the bottom of the tank assuming that your coefficient of discharge is 0.713.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F66aabb23-44f0-45ea-9699-fc6f56e08bd1%2F807be2b1-b0b4-4079-8ee1-8617420780be%2Fwx8e8hx9_processed.png&w=3840&q=75)
Transcribed Image Text:4. A closed cylindrical tank with 1.5m radius and 12m tall has 2m of water, 3m of oil, 1m of mercury, and 5m of
seawater. The pressure inside the tank is 10kPa. Determine the discharge (m³/s) through a 65mm radius
orifice located at the bottom of the tank assuming that your coefficient of discharge is 0.713.
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