An ideal gas flows in steady state adiabatic flow along a horizontal pipe of inside diameter di, = 0.02 m. The pressure and density at a point are P = 20000 Pa and p= 200 kg/m3 respectively. He density drops from 200kg/m3 to 100kg/m in a 5m length. Calculate the mass flux assuming that the Fanning friction factor f= 9.0 x 10-3 and the ratio of heat capacities at constant pressure and constant volume y=1.40.

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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3- An ideal gas flows in steady state adiabatic flow along a horizontal pipe of inside
diameter di, = 0.02 m. The pressure and density at a point are P = 20000 Pa and p=
200 kg/m3 respectively. He density drops from 200kg/m3 to 100kg/m2 in a 5m
length. Calculate the mass flux assuming that the Fanning friction factor f = 9.0 x
10-3 and the ratio of heat capacities at constant pressure and constant volume y= 1.40.
Transcribed Image Text:3- An ideal gas flows in steady state adiabatic flow along a horizontal pipe of inside diameter di, = 0.02 m. The pressure and density at a point are P = 20000 Pa and p= 200 kg/m3 respectively. He density drops from 200kg/m3 to 100kg/m2 in a 5m length. Calculate the mass flux assuming that the Fanning friction factor f = 9.0 x 10-3 and the ratio of heat capacities at constant pressure and constant volume y= 1.40.
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