A nozzle is attached to a vertical pipe and discharges water into the atmosphere as shown in the figure. 4 30° Area = 0.01 m² Nozzle g Given: Discharge Cross-sectional area of the pipe Area = 0.02 m² Exit area of the nozzle Pressure the flange Nozzle weight Volume of water in the nozzle Q=0.1 m³/sec A = 0.02 m² An = 0.01 m² p = 40 kPa-g W = 200 N V = 0.012 m³ Find: The vertical component of the anchoring force required to hold the nozzle in place. p = 40 kPa 0.10 m³/s

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A nozzle is attached to a vertical pipe and discharges water into the atmosphere
as shown in the figure.
4
30°
Area = 0.01 m²
Nozzle
g
Given:
Discharge
Cross-sectional area of the pipe
Area = 0.02 m² Exit area of the nozzle
Pressure the flange
Nozzle weight
Volume of water in the nozzle
Q=0.1 m³/sec
A = 0.02 m²
An = 0.01 m²
p = 40 kPa-g
W = 200 N
V = 0.012 m³
Find: The vertical component of the anchoring force required to hold the nozzle
in place.
p = 40 kPa
0.10 m³/s
Transcribed Image Text:A nozzle is attached to a vertical pipe and discharges water into the atmosphere as shown in the figure. 4 30° Area = 0.01 m² Nozzle g Given: Discharge Cross-sectional area of the pipe Area = 0.02 m² Exit area of the nozzle Pressure the flange Nozzle weight Volume of water in the nozzle Q=0.1 m³/sec A = 0.02 m² An = 0.01 m² p = 40 kPa-g W = 200 N V = 0.012 m³ Find: The vertical component of the anchoring force required to hold the nozzle in place. p = 40 kPa 0.10 m³/s
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