4. Water flows as two free jets from the tee attached to the pipe shown in the figure below. The exit speed is 14.0 m/s. If viscous effects are negligible and gravity acts in the negative-z direction, determine the x and y components of the force that the fluid exerts on the tee. Use 1000 kg/m³ as the water density. V = 14.0m/s -Area = 0.3 m2 Area = 1 m2 %3D V = 14.0m/s Area = 0.5 m2 %3D Pipe Tee ====

Elements Of Electromagnetics
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4.
Water flows as two free jets from the tee attached to the pipe shown in the figure
below. The exit speed is 14.0 m/s. If viscous effects are negligible and gravity acts in the
negative-z direction, determine the x and y components of the force that the fluid exerts on
the tee. Use 1000 kg/m³ as the water density.
V = 14.0m/s
-Area
0.3 m2
%3D
Area = 1 m2
V = 14.0m/s
Area = 0.5 m2
Tee
Pipe
Transcribed Image Text:4. Water flows as two free jets from the tee attached to the pipe shown in the figure below. The exit speed is 14.0 m/s. If viscous effects are negligible and gravity acts in the negative-z direction, determine the x and y components of the force that the fluid exerts on the tee. Use 1000 kg/m³ as the water density. V = 14.0m/s -Area 0.3 m2 %3D Area = 1 m2 V = 14.0m/s Area = 0.5 m2 Tee Pipe
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