oI water from a fixed nozzle has a diameter d of 30 mm and strikes a flat plate at angle u of 30° to the normal to the plate. The velocity of the jet v is Sm/s, and the surface of the plate can be assumed to be frictionless. Calculate the force exerted normal to the plate if the plate is moving with velocity u of 4m/s in the same direction as the jet. 30° T. Q/2 Air flows from a reservoir where 300 kPa and T 500 K through a throat to section 1 in Figure where there is a normal-shock wave. Compute (a) pr, (b) p2, (c) poz. (d) A;, (e) pos, (f) 12 3 く。 A3, (g) p3, (h) To3, and (i) T3. 59- I m2 2 m2 A 3 m2

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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oI water from a fixed nozzle
has a diameter d of 30 mm and strikes a
flat plate at angle u of 30° to the normal
to the plate. The velocity of the jet v is
5m/s, and the surface of the plate can be
assumed to be frictionless. Calculate the
force exerted normal to the plate if the
plate is moving with velocity u of 4m/s
in the same direction as the jet.
30
F.
T.
Air flows from a reservoir where p 300
Q/2
kPa and T 500 K through a throat to section 1
in Figure where there is a normal-shock wave.
Compute (a) pr, (b) p2, (c) po2. (d) Až, (e) posa (f)
A3, (g) p3, (h) T03, and (i) T3.
12
39-
I m?
2 m2
A- Aes
3 m2
Transcribed Image Text:oI water from a fixed nozzle has a diameter d of 30 mm and strikes a flat plate at angle u of 30° to the normal to the plate. The velocity of the jet v is 5m/s, and the surface of the plate can be assumed to be frictionless. Calculate the force exerted normal to the plate if the plate is moving with velocity u of 4m/s in the same direction as the jet. 30 F. T. Air flows from a reservoir where p 300 Q/2 kPa and T 500 K through a throat to section 1 in Figure where there is a normal-shock wave. Compute (a) pr, (b) p2, (c) po2. (d) Až, (e) posa (f) A3, (g) p3, (h) T03, and (i) T3. 12 39- I m? 2 m2 A- Aes 3 m2
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