t = 15 [°C] & P = 582,2 [kPa] (abs) Tatm = 25 [°C]; Patm = 101,325 [kPa] An ideal gas (Air) flows isentropic from a large tank where the air is maintained at a temperature and pressure of 15 [°C] and 582.2 [kPa](abs) respectively. The atmospheric temperature and pressure are 25 [°C] and 101,325 [kPa] abs. Assume the exit pressure is atmospheric conditions. 1) Determine the duct exit Mach number and velocity

Elements Of Electromagnetics
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t = 15 [°C] &
P = 582,2 [kPa](abs)
T.
= 25 [°C];
P = 101,325 [kPa]
atm
atm
An ideal gas (Air) flows isentropic from a large tank where the air is maintained at a
temperature and pressure of 15 [°C] and 582.2 [kPa](abs) respectively. The
atmospheric temperature and pressure are 25 [°C] and 101,325 [kPa] abs. Assume the
exit pressure is atmospheric conditions.
1) Determine the duct exit Mach number and velocity
Transcribed Image Text:t = 15 [°C] & P = 582,2 [kPa](abs) T. = 25 [°C]; P = 101,325 [kPa] atm atm An ideal gas (Air) flows isentropic from a large tank where the air is maintained at a temperature and pressure of 15 [°C] and 582.2 [kPa](abs) respectively. The atmospheric temperature and pressure are 25 [°C] and 101,325 [kPa] abs. Assume the exit pressure is atmospheric conditions. 1) Determine the duct exit Mach number and velocity
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