4.11 The mass flow of air through a supersonic nozzle is 1.5 lb/s. The exit velocity is 1500 ft/s, and the reservoir temperature and pressure are 1000'R and 7 atm, respectively. Calculate the area of the nozzle exit. For air. c₂=6000 ft-lb/(slug) ("R). Use metric units instead: mass flow rate = 0.68 kg/s exit velocity = 457.2 m/s Reservoir: To= 555.56 K; Po 7 Atm, Cp = 1003 J/kg*K

Biomedical Instrumentation Systems
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ISBN:9781133478294
Author:Chatterjee
Publisher:Chatterjee
Chapter11: Instrumentation In Respiration
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4.11 The mass flow of air through a supersonic nozzle is 1.5 lb,,/s. The exit velocity is 1500 ft/s, and the reservoir temperature
and pressure are 1000 R and 7 atm, respectively, Calculate the area of the nozzle exit. For air.
cp=6000 ft-lb/(slug) (R).
Use metric units instead:
mass flow rate = 0.68 kg/s
exit velocity = 457.2 m/s
Reservoir: To 555.56 K; Po = 7 Atm,
Cp 1003 J/kg*K
Transcribed Image Text:4.11 The mass flow of air through a supersonic nozzle is 1.5 lb,,/s. The exit velocity is 1500 ft/s, and the reservoir temperature and pressure are 1000 R and 7 atm, respectively, Calculate the area of the nozzle exit. For air. cp=6000 ft-lb/(slug) (R). Use metric units instead: mass flow rate = 0.68 kg/s exit velocity = 457.2 m/s Reservoir: To 555.56 K; Po = 7 Atm, Cp 1003 J/kg*K
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