7A) Find the total FORCE against one vertical face of the aquarium pictured below (you choose the face). The aquarium is full of water and is shaped like a box, length 3ft, width 2ft height 1ft. Subdivide into thin horizontal layers and show the correspondence with your integrai. Remember that Pressure = depth * density and that Force=pressure * area.

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7B) Calculate the work done to pump out all of the water from the aquarium in problem 8A
through an opening located at the top of the tank.
Subdivide into thin horizontal layers and show the correspondence with your integral.
remember Work = Force * Distance
Force in this case is the same as Weight.
Transcribed Image Text:7B) Calculate the work done to pump out all of the water from the aquarium in problem 8A through an opening located at the top of the tank. Subdivide into thin horizontal layers and show the correspondence with your integral. remember Work = Force * Distance Force in this case is the same as Weight.
7A) Find the total FORCE against one vertical face of the aquarium pictured below (you choose
the face). The aquarium is full of water and is shaped like a box, length 3ft, width 2ft height 1ft.
Subdivide into thin horizontal layers and show the correspondence with your integrai.
Remember that Pressure = depth * density and that Force=pressure * area.
1ff
2 ft
3ft
Transcribed Image Text:7A) Find the total FORCE against one vertical face of the aquarium pictured below (you choose the face). The aquarium is full of water and is shaped like a box, length 3ft, width 2ft height 1ft. Subdivide into thin horizontal layers and show the correspondence with your integrai. Remember that Pressure = depth * density and that Force=pressure * area. 1ff 2 ft 3ft
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