Water flowing at the rate of 0.05 m3 /s has a velocity of 40 m/s. The jet strikes a vane and is deflected 120° (Figure). Friction along the vane is negligible and the entire system is exposed to the atmosphere. Potential changes can also be neglected. Determine the force necessary to hold the vane stationary. Water Point 1 P₁ = Patm 2₁ Momentum Equation: Point 2 P₂ = Patm 72 [F -m (Vout-Vin) Control volume

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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Point 1
P₁ = P
2₁
Sample problem
Water flowing at the rate of 0.05 m3/s has a velocity of 40 m/s. The jet strikes a vane and is
deflected 120° (Figure). Friction along the vane is negligible and the entire system is exposed to
the atmosphere. Potential changes can also be neglected. Determine the force necessary to hold the
vane stationary.
Water
atm
Momentum Equation: Σε
Point 2
P₂ = Patm
72
= m (Vout-Vin)
mungs
Control
volume
E
Transcribed Image Text:Point 1 P₁ = P 2₁ Sample problem Water flowing at the rate of 0.05 m3/s has a velocity of 40 m/s. The jet strikes a vane and is deflected 120° (Figure). Friction along the vane is negligible and the entire system is exposed to the atmosphere. Potential changes can also be neglected. Determine the force necessary to hold the vane stationary. Water atm Momentum Equation: Σε Point 2 P₂ = Patm 72 = m (Vout-Vin) mungs Control volume E
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