Steam enters a nozzle at 350C and 800 kPa with a velocity of 12 m/s, and leaves at 250C and 200 kPa while losing heat at a rate of 25 kW. For an inlet area of 0.1 m², the velocity of the steam at the nozzle exit in m/sec is

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Steam enters a nozzle at 350C and 800 kPa with a velocity of 12 m/s, and leaves at 250C and 200 kPa while
losing heat at a rate of 25 kW. For an inlet area of 0.1 m?, the velocity of the steam at the nozzle exit in
m/sec is
The mass flow rate (kg/s) is equal to:
The first enthalpy (h; (kJ/kg)) is equal to:
The second enthalpy (h2 (kJ/kg)) is equal to:
velocity of the steam at the nozzle exit (v2 (m/s)) is equal to:
Transcribed Image Text:Steam enters a nozzle at 350C and 800 kPa with a velocity of 12 m/s, and leaves at 250C and 200 kPa while losing heat at a rate of 25 kW. For an inlet area of 0.1 m?, the velocity of the steam at the nozzle exit in m/sec is The mass flow rate (kg/s) is equal to: The first enthalpy (h; (kJ/kg)) is equal to: The second enthalpy (h2 (kJ/kg)) is equal to: velocity of the steam at the nozzle exit (v2 (m/s)) is equal to:
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