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computing language is python. a.) Write a program that uses FSOLVEO to solve for the volumetric flow rate (m/s) in each segment of the pipe
computing language is python.
a.) Write a program that uses FSOLVEO to solve for the volumetric flow rate (m/s) in each segment of the pipe flow network given below. Use the following properties for water: density - 1000 km, viscosity -0.00089 N sm and pipe roughness 0.00025 m. Your program should print the flow in each segment of pipe, nicely formatted, similar to: The flow in segment a-bis-0.0052 m3/s The flow in segmenta-c is 0.0272 m3/s The flow in segment d-g is -0.0142 m 3/s etc. Note: for each pipe segment, positive flow is directed from the lower letter to the higher letter. Ex. in segment d-positive direction flow is from noded to nodeg. Negative flow is from node g to node. 300 mm 30 200 mm 200 mm 100 m -> 200 mm 2 200 mm 150 mm 150 mm B 100 m 8 250 mm 125 m- 150 mm 250 mm 125m a.) Write a program that uses FSOLVEO to solve for the volumetric flow rate (m/s) in each segment of the pipe flow network given below. Use the following properties for water: density - 1000 km, viscosity -0.00089 N sm and pipe roughness 0.00025 m. Your program should print the flow in each segment of pipe, nicely formatted, similar to: The flow in segment a-bis-0.0052 m3/s The flow in segmenta-c is 0.0272 m3/s The flow in segment d-g is -0.0142 m 3/s etc. Note: for each pipe segment, positive flow is directed from the lower letter to the higher letter. Ex. in segment d-positive direction flow is from noded to nodeg. Negative flow is from node g to node. 300 mm 30 200 mm 200 mm 100 m -> 200 mm 2 200 mm 150 mm 150 mm B 100 m 8 250 mm 125 m- 150 mm 250 mm 125mStep by Step Solution
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