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A fluid of constant density (p) at 40 °F (T) is flowing into an initially empty cylindrical tank of radius 10 ft. The cy...

A fluid of constant density (p) at 40 °F (T) is flowing into an initially empty cylindrical tank of radius 10 ft. The cylindrical vešsel is jacketed and heated with saturated steam (T) at 212 °F.The steam jacket does not cover either the top or bottom of the tank. The heat capacity of liquid (Cp liquid is near to that of water. The vessel is well stirred and the heat resistance of the jacket is negligible as are the heat losses from the top and bottom of the tank. The heat transfer coefficient for the condensing steam may be taken as a constant. use , U - overall heat transfer coefficient , F - volumetric flowrate of inlet stream , T # Instantaneous temperature of fluid in the tank, A instantaneous area available for heat transfer, Ve instantaneous volume of liquid in the tank, D- diameter of the tank, T-time, h-instantaneous height of fluid in the tank. Perform an energy balance on the tank to determine the time required to increase the temperature of the fluid.

Please i want this soultion with showing the definition of the problem, controlling factor, parmeter, and varfication

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Tank, dT heat en UG |사 千t 212 211 1b

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