Two gases enter a combining tube and leave as a single mixture. . For the first gas, A₁=72in² V₁=205m/s V₁=120gal/lbm . For the other gas, A₂=48in² ● m2=20lbm/s P2=2kgm/m³ At the exit, V3=320ft/s V₂=9ft³/lbm Find the (a) velocity at section 2 in m/s, (b) mass flow rate at the exit section in kgm/s, and (c) area at the exit section in m².

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Two gases enter a combining tube and
leave as a single mixture.
. For the first gas,
A₁=72in²
V₁=205m/s
V₁=120gal/lbm
. For the other gas,
A₂=48in²
m2=20lbm/s
P2=2kgm/m³
●
. At the exit,
V3=320ft/s
V2=9ft³/lbm
Find the (a) velocity at section 2 in m/s,
(b) mass flow rate at the exit section in
kgm/s, and (c) area at the exit section in
m².
Transcribed Image Text:Two gases enter a combining tube and leave as a single mixture. . For the first gas, A₁=72in² V₁=205m/s V₁=120gal/lbm . For the other gas, A₂=48in² m2=20lbm/s P2=2kgm/m³ ● . At the exit, V3=320ft/s V2=9ft³/lbm Find the (a) velocity at section 2 in m/s, (b) mass flow rate at the exit section in kgm/s, and (c) area at the exit section in m².
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