A cylindrical tank having radius R with water having density p. There is top of the tank. The tank is moved perpendicular to its length, with acceleration equal to the accelera

University Physics Volume 1
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Chapter14: Fluid Mechanics
Section: Chapter Questions
Problem 91P: (a) Calculate the retarding force due to viscosity of the air layer between a cart and a level air...
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Q. 26. A cylindrical tank having radius R is half filled
with water having density p. There is a hole at the
top of the tank. The tank is moved horizontally,
perpendicular to its length, with a constant
acceleration equal to the acceleration due to
gravity (g). Find the maximum pressure exerted
by water at any point on the tank. Atmospheric
pressure is Po. Assume that there is no spillage.
Transcribed Image Text:Q. 26. A cylindrical tank having radius R is half filled with water having density p. There is a hole at the top of the tank. The tank is moved horizontally, perpendicular to its length, with a constant acceleration equal to the acceleration due to gravity (g). Find the maximum pressure exerted by water at any point on the tank. Atmospheric pressure is Po. Assume that there is no spillage.
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