For the given Prandtl - Meyer Expansion Wave, assume SSLC, compute for the following requirements: Downstream Mach Number, Pressure, Density and Temperature. Mark the Correct Answers and Show All your Solutions. B M1 = 1.75 141 4₂ M2 = 2.03 M2 = 2.67 M2=2.23 T2 = 254.58 K T2 = 202.12 K T2 = 289.98 K P2= 65800.43 Pa P2 = 85434.12 Pa P2 = 74585.22 Pa p2 = 0.8999 kg/m^3 p2 = 0.8445 kg/m^3 p2 = 0.8158 kg/m^3 Ꮎ = 8°

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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For the given Prandtl - Meyer Expansion Wave, assume SSLC, compute for the
following requirements: Downstream Mach Number, Pressure, Density and
Temperature. Mark the Correct Answers and Show All your Solutions.
B
M1 = 1.75
M1
1₂
M2 = 2.03
M2 = 2.67
M2 = 2.23
T2 = 254.58 K
T2 = 202.12 K
T2 = 289.98 K
P2= 65800.43 Pa
P2 = 85434.12 Pa
P2=74585.22 Pa
p2 = 0.8999 kg/m^3
p2 = 0.8445 kg/m^3
p2 = 0.8158 kg/m^3
Ꮎ = 8°
Transcribed Image Text:For the given Prandtl - Meyer Expansion Wave, assume SSLC, compute for the following requirements: Downstream Mach Number, Pressure, Density and Temperature. Mark the Correct Answers and Show All your Solutions. B M1 = 1.75 M1 1₂ M2 = 2.03 M2 = 2.67 M2 = 2.23 T2 = 254.58 K T2 = 202.12 K T2 = 289.98 K P2= 65800.43 Pa P2 = 85434.12 Pa P2=74585.22 Pa p2 = 0.8999 kg/m^3 p2 = 0.8445 kg/m^3 p2 = 0.8158 kg/m^3 Ꮎ = 8°
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