В A y 18 m/s The gauge pressure of water at A is 150.5 kPa. Water flows through the pipe at A with a velocity of 18 m/s, and out the pipe at B and C with the same velocity v. Neglect the weight of water within the pipe and the weight of the pipe. The pipe has a diameter of 50 mm at A, and at B and C the diameter is 35 mm. Pw = 1000 kg/m³. (Figure 1)
В A y 18 m/s The gauge pressure of water at A is 150.5 kPa. Water flows through the pipe at A with a velocity of 18 m/s, and out the pipe at B and C with the same velocity v. Neglect the weight of water within the pipe and the weight of the pipe. The pipe has a diameter of 50 mm at A, and at B and C the diameter is 35 mm. Pw = 1000 kg/m³. (Figure 1)
Question

Transcribed Image Text:v
B
A
18 m/s
The gauge pressure of water at A is 150.5 kPa. Water
flows through the pipe at A with a velocity of 18 m/s,
and out the pipe at B and C with the same velocity v.
Neglect the weight of water within the pipe and the
weight of the pipe. The pipe has a diameter of 50 mm at
A, and at B and C the diameter is 35 mm.
Pw = 1000 kg/m³. (Figure 1)

Transcribed Image Text:Review
Part A
Determine the a component of force exerted on the elbow necessary to hold the pipe assembly in equilibrium.
Express your answer to three significant figures and include the appropriate units.
• View Available Hint(s)
F2 = -0.584 kN
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Here we learn how to calculate the a component of a force exerted on an elbow needed to hold it in
equilibrium.
Part B
Determine the y component of force exerted on the elbow necessary to hold the pipe assembly in equilibrium.
Express your answer to three significant figures and include the appropriate units.
• View Available Hint(s)
HẢ
?
F, = Value
Units
Submit
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