If the gate was designed to withstand a maximum force of 6,000 lbs, verify the gate will not break when the tank is filled with gas.
If the gate was designed to withstand a maximum force of 6,000 lbs, verify the gate will not break when the tank is filled with gas.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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If the gate was designed to withstand a maximum force of 6,000 lbs, verify the gate will not break when the tank is filled with gas.
![# 2
Hydrostatic Force = Pressure x Area
Suppose that a vertical, parabolic gate is installed on the side of a 24 ft
deep gas tank.
The shape of the gate is defined by the equation y=2-x,
so that y=0 coincides with the bottom edge of the tank (units in feet).
If the gate was designed to withstand a maximum force of 6,000 lbs , verify the
gate will not break when the tank is filled with gas.
lbs
The weight density of gas is 44-
ft](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F946c4c3a-a83c-4c45-97b5-97abe4183de9%2Fe2c671d0-b2cf-467b-a31d-d64ab463e675%2Fhdmvm5e_processed.png&w=3840&q=75)
Transcribed Image Text:# 2
Hydrostatic Force = Pressure x Area
Suppose that a vertical, parabolic gate is installed on the side of a 24 ft
deep gas tank.
The shape of the gate is defined by the equation y=2-x,
so that y=0 coincides with the bottom edge of the tank (units in feet).
If the gate was designed to withstand a maximum force of 6,000 lbs , verify the
gate will not break when the tank is filled with gas.
lbs
The weight density of gas is 44-
ft
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