Steam exiting a turbine with a quality of 0.90 and a pressure of 70 kPa absolute enters an insulated…
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Tanong
Steam exiting a turbine with a quality of 0.90 and a pressure of 70 kPa absolute enters an insulated condenser (a type of heat exchanger) at a mass flow rate of 110 kg/s. The steam condenses and leaves the condenser as a saturated liquid at 70 kPa absolute. The heat is removed from the steam by a flow of external cooling water, which enters the condenser at 10°C and exits at 40°C. Determine the mass flow rate of the external cooling water.
Mga sagot sa #1 sa Tanong: Steam exiting a turbine with a quality of 0.90 and a pressure of 70 kPa absolute enters an insulated condenser (a type of heat exchanger) at a mass flow rate of 110 kg/s. The steam condenses and leaves the condenser as a saturated liquid at 70 kPa absolute. The heat is removed from the steam by a flow of external cooling water, which enters the condenser at 10°C and exits at 40°C. Determine the mass flow rate of the external cooling water.
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Mga sagot sa #2 sa Tanong: Steam exiting a turbine with a quality of 0.90 and a pressure of 70 kPa absolute enters an insulated condenser (a type of heat exchanger) at a mass flow rate of 110 kg/s. The steam condenses and leaves the condenser as a saturated liquid at 70 kPa absolute. The heat is removed from the steam by a flow of external cooling water, which enters the condenser at 10°C and exits at 40°C. Determine the mass flow rate of the external cooling water.
Steam exiting a turbine with a quality of 0.90 and a pressure of 70 kPa absolute enters an insulated condenser (a type of heat exchanger) at a mass flow rate of 110 kg/s. The steam condenses and leaves the condenser as a saturated liquid at 70 kPa absolute. The heat is removed from the steam by a flow of external cooling water, which enters the condenser at 10°C and exits at 40°C. Determine the mass flow rate of the external cooling water.
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