Q2: The large compressed-air tank shown in the figure bellow exhausts from a nozzle at an exit velocity of V= 235 m/s. Assuming isentropic flow, compute: a) the exit Mach number. b) the pressure in the tank. (take; k = 1.396, C, = 917 J/Kg.k and R = 260 J/Kg.k) %3D

Elements Of Electromagnetics
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Q2: The large compressed-air tank shown in the figure bellow exhausts from a
nozzle at an exit velocity of V= 235 m/s. Assuming isentropic flow, compute:
a) the exit Mach number. b) the pressure in the tank.
(take; k = 1.396, C, = 917 J/Kg.k and R =
260 J/Kg.k)
air at 30 °C
tank conditions
V.
remain constant
Paim = 101 kPa
Transcribed Image Text:Q2: The large compressed-air tank shown in the figure bellow exhausts from a nozzle at an exit velocity of V= 235 m/s. Assuming isentropic flow, compute: a) the exit Mach number. b) the pressure in the tank. (take; k = 1.396, C, = 917 J/Kg.k and R = 260 J/Kg.k) air at 30 °C tank conditions V. remain constant Paim = 101 kPa
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