Two gaseous streams enter a combining tube and leave as a single mixture. These data apply at the entrance section: For one gas, A1= 90 in2 , v1 = 700 fps ; v1 = 13 ft°/lb %3D %3! For the other gas, A2= 58 in? , m'2 =15 lb/s ; P2= 0.15 lb/ft At exit, V3 = 440 fps ; v1 = 6 ft3/lb %3D Find (a) the speed v, at section 2 , (b) the flow and area at the exit section.

Elements Of Electromagnetics
7th Edition
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Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Two gaseous streams enter a combining tube and leave as a single mixture. These
data apply at the entrance section:
For one gas,
A1= 90 in2, v1 = 700 fps ; v, = 13 ft/lb
%3D
%3D
For the other gas,
A2= 58 in? , m'2 =15 lb/s ; p2= 0.15 Ib/ft?
At exit,
V3 = 440 fps ; v1 = 6 ft/lb
Find (a) the speed v, at section 2, (b) the flow and area at the exit section.
Input four decimal values for answer precision on the blank. Place the area value at
the exit section on the blank.
Transcribed Image Text:Two gaseous streams enter a combining tube and leave as a single mixture. These data apply at the entrance section: For one gas, A1= 90 in2, v1 = 700 fps ; v, = 13 ft/lb %3D %3D For the other gas, A2= 58 in? , m'2 =15 lb/s ; p2= 0.15 Ib/ft? At exit, V3 = 440 fps ; v1 = 6 ft/lb Find (a) the speed v, at section 2, (b) the flow and area at the exit section. Input four decimal values for answer precision on the blank. Place the area value at the exit section on the blank.
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