3. A uniform pipe, 60 m long, is fitted with a plunger which is brought to rest uniformly in 1.5 s from an initial velocity of 1.8 m/s. Assuming the water to be incompressible and the plunger is driven

Elements Of Electromagnetics
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3. A uniform pipe, 60 m long, is fitted with a plunger which is brought to rest uniformly in 1.5 s from
an initial velocity of 1.8 m/s. Assuming the water to be incompressible and the plunger is driven
by a crank, 0.3 m long and making 100 rev/min so that the piston travels with simple harmonic
motion, determine the maximum pressure due to the retardation of the piston.
Transcribed Image Text:3. A uniform pipe, 60 m long, is fitted with a plunger which is brought to rest uniformly in 1.5 s from an initial velocity of 1.8 m/s. Assuming the water to be incompressible and the plunger is driven by a crank, 0.3 m long and making 100 rev/min so that the piston travels with simple harmonic motion, determine the maximum pressure due to the retardation of the piston.
Correct answer not available from the listed choices
1960 kN/m^2
1962 kN/m^2
1963 kN/m^2
1961 kN/m^2
Transcribed Image Text:Correct answer not available from the listed choices 1960 kN/m^2 1962 kN/m^2 1963 kN/m^2 1961 kN/m^2
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