Question
Review. The tank in Figure $\mathrm{P} 14.13$ is filled with water of depth $d=2.00 \mathrm{m} .$ At the bottom of one sidewall is a rectangular hatch of height $h=1.00 \mathrm{m}$ and width $w=2.00 \mathrm{m}$ that is hinged at the top of the hatch. (a) Determine the magnitude of the force the water exerts on the hatch. (b) Find the magnitude of the torque exerted by the water about the hinges.
Step 1
The pressure at this depth is given by $P = P_0 + \rho g x$, where $P_0$ is the atmospheric pressure, $\rho$ is the density of water, $g$ is the acceleration due to gravity, and $x$ is the depth. Show more…
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The tank shown in Figure $\mathrm{P} 15.14$ is filled with water to a depth of $2.00 \mathrm{~m}$. At the bottom of one of the side walls is a rectangular hatch $1.00 \mathrm{~m}$ high and $2.00 \mathrm{~m}$ wide. The hatch is hinged at its top. (a) Determine the force that the water exerts on the hatch. (b) Find the torque exerted about the hinges.
The tank in Figure $\mathrm{P} 14.14$ is filled with water 2.00 $\mathrm{m}$ deep. At the bottom of one side wall is a rectangular hatch 1.00 $\mathrm{m}$ high and 2.00 $\mathrm{m}$ wide, which is hinged at the top of the hatch. (a) Determine the force the water exerts on the hatch. (b) Find the torque exerted by the water about the hinges.
The tank in Figure P14.14 is filled with water $2.00 \mathrm{m}$ deep. At the bottom of one side wall is a rectangular hatch $1.00 \mathrm{m}$ high and $2.00 \mathrm{m}$ wide, which is hinged at the top of the hatch. (a) Determine the force the water exerts on the hatch. (b) Find the torque exerted by the water about the hinges.
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