Water flows into the atmosphere from a nozzle and strikes a vertical plate as shown in Figure Q2. A horizontal force of 10 N is required to hold the plate in place. Assume the flow to be incompressible and frictionless. The density of water is 998.2 kg/m³ and gravity effect is negligible. (b) (c) Determine the inlet and outlet velocities of the nozzle. Determine the pressure gage reading. If the water mass flow rate is doubled, (i) What is the minimum horizontal force required to hold the plate in place? Is there any changes to the reading of the pressure gage? (ii) Please justify your answer with proper calculations.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Question 2
Water flows into the atmosphere from a nozzle and strikes a vertical plate as shown in
Figure Q2. A horizontal force of 10 N is required to hold the plate in place. Assume
the flow to be incompressible and frictionless. The density of water is 998.2 kg/m³ and
gravity effect is negligible.
(b)
(c)
Determine the inlet and outlet velocities of the nozzle.
Determine the pressure gage reading.
If the water mass flow rate is doubled,
(i)
What is the minimum horizontal force required to hold the plate in
place?
Is there any changes to the reading of the pressure gage?
(ii)
Please justify your answer with proper calculations.
0.01 m²
0.0025 m²
ION
Transcribed Image Text:Question 2 Water flows into the atmosphere from a nozzle and strikes a vertical plate as shown in Figure Q2. A horizontal force of 10 N is required to hold the plate in place. Assume the flow to be incompressible and frictionless. The density of water is 998.2 kg/m³ and gravity effect is negligible. (b) (c) Determine the inlet and outlet velocities of the nozzle. Determine the pressure gage reading. If the water mass flow rate is doubled, (i) What is the minimum horizontal force required to hold the plate in place? Is there any changes to the reading of the pressure gage? (ii) Please justify your answer with proper calculations. 0.01 m² 0.0025 m² ION
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