Question 1: Water is expelled by a jet to the environment (i.e. the water flow is surrounded by atmospheric pressure). To change the direction of the water flow, this enters to a curved pipe as show in the figure (top view perspective). Calculate the forces exerted by the flow to the pipe in x and y direction (both horizontal). Use a water density of 1000 kg/m³, Q=1 m³/s, diameter d-0.3 m. Follow the 4 steps explained in the lectures and state your assumptions clearly. 30 Question 2: Repeat question 1 but change the curvature from 30 degrees to 90 degrees. How the forces change? 90

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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Question 1: Water is expelled by a jet to the environment (i.e. the water flow is surrounded by
atmospheric pressure). To change the direction of the water flow, this enters to a curved pipe as show in
the figure (top view perspective). Calculate the forces exerted by the flow to the pipe in x and y direction
(both horizontal). Use a water density of 1000 kg/m³, Q=1 m³/s, diameter d-0.3 m. Follow the 4 steps
explained in the lectures and state your assumptions clearly.
30
Question 2: Repeat question 1 but change the curvature from 30 degrees to 90 degrees. How the forces
change?
90
Transcribed Image Text:Question 1: Water is expelled by a jet to the environment (i.e. the water flow is surrounded by atmospheric pressure). To change the direction of the water flow, this enters to a curved pipe as show in the figure (top view perspective). Calculate the forces exerted by the flow to the pipe in x and y direction (both horizontal). Use a water density of 1000 kg/m³, Q=1 m³/s, diameter d-0.3 m. Follow the 4 steps explained in the lectures and state your assumptions clearly. 30 Question 2: Repeat question 1 but change the curvature from 30 degrees to 90 degrees. How the forces change? 90
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