A normal shock wave with a velocity of 700 m/s moves down a tube into air with static properties of 40 k 320 K. At the end of the tube, a piston is moving at 60 m/s, as shown below. Find the velocity of the ref wave and the static and stagnation pressures (relative to the tube) behind the reflected wave.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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1. A normal shock wave with a velocity of 700 m/s moves down a tube into air with static properties of 40 kPa and
320 K. At the end of the tube, a piston is moving at 60 m/s, as shown below. Find the velocity of the reflected
wave and the static and stagnation pressures (relative to the tube) behind the reflected wave.
Vw= 700 m/s
V = 60 m/s
P = 40 kPa
T= 320 K
Transcribed Image Text:1. A normal shock wave with a velocity of 700 m/s moves down a tube into air with static properties of 40 kPa and 320 K. At the end of the tube, a piston is moving at 60 m/s, as shown below. Find the velocity of the reflected wave and the static and stagnation pressures (relative to the tube) behind the reflected wave. Vw= 700 m/s V = 60 m/s P = 40 kPa T= 320 K
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