How much mass is left in the tank
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Power input to the pump is 3 kW. Assuming the pump process to be reversible, determine the pump exit pressure and temperature.
An irrigation pump takes water from a river at 10oC, 100 kPa. Neglect kinetic energies and friction and find the maximum possible mass flow rate.
A small pump takes in water at 20?C, 100 kPa and pumps it to 2.5 MPa at a flow rate of 100 kg/min. Find the required pump power input.
It is to be pumped to 500 kPa and fed to a pipeline at the rate of 0.5 kg/s. How much power input is required for the pump, assuming it to be reversible?
If the initial mass was 1 kg, how much mass is left in the tank and what is the turbine work, assuming a reversible process?
A steam turbine in a power plant receives 5 kg/s steam at 3000 kPa, 500oC. Find the two exit temperatures and the turbine power output.
A small turbine delivers 1.5 MW and is supplied with steam at 700oC, 2 MPa. Find the specific turbine work and the heat transfer in the heat exchanger.
We have a heat source at constant 500oC. If the process should be reversible, how much heat transfer should we have?
Find the final temperature and mass, assuming a reversible adiabatic process for the air remaining inside the tank.
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