D₂ = 5 cm D3 = 6 cm D₁ = 4 cm The flow network carries the water at 20°C to exit pipe 4. The flow rate at the exit is 90 m³/h. The velocity of the pipe 2 is 5 m/s. If the flow of pipe 3 is increased by %30, the exit flow rate also increases by%10. The flow rate of pipe 3 is The flow rate of pipe 2 is nearest integer.) D4 = 9 cm The velocity of pipe 1 is nearest integer.) m³/h. m³/h. (Do not use decimals! Round the number to the m/s. (Do not use decimals! Round the number to the

Structural Analysis
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ISBN:9781337630931
Author:KASSIMALI, Aslam.
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Chapter2: Loads On Structures
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D₂ = 5 cm
D3 = 6 cm
D₁ = 4 cm
The flow network carries the water at 20°C to exit pipe 4. The flow rate at the exit is 90 m³/h. The
velocity of the pipe 2 is 5 m/s. If the flow of pipe 3 is increased by %30, the exit flow rate also
increases by%10.
The flow rate of pipe 3 is
The flow rate of pipe 2 is
nearest integer.)
D4 = 9 cm
The velocity of pipe 1 is
nearest integer.)
m³/h.
m³/h. (Do not use decimals! Round the number to the
m/s. (Do not use decimals! Round the number to the
Transcribed Image Text:D₂ = 5 cm D3 = 6 cm D₁ = 4 cm The flow network carries the water at 20°C to exit pipe 4. The flow rate at the exit is 90 m³/h. The velocity of the pipe 2 is 5 m/s. If the flow of pipe 3 is increased by %30, the exit flow rate also increases by%10. The flow rate of pipe 3 is The flow rate of pipe 2 is nearest integer.) D4 = 9 cm The velocity of pipe 1 is nearest integer.) m³/h. m³/h. (Do not use decimals! Round the number to the m/s. (Do not use decimals! Round the number to the
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