/ The pulley of mass 50 is connected with load of 100 kg as shown in the figure. This system is suspended by the spring and the cable. Compute the velocity of point C after dropped 50 mm. knowing that the spring stiffness is 1.5 kN/m and k = 1.5 kN/m 0.4 m "Pulley =50 kg the pully has moment of inertia I = 13.5 m4. Pulley 13.5 m 100 kg

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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/ The pulley of mass 50 is connected with load of
100 kg as shown in the figure. This system is
suspended by the spring and the cable. Compute
the velocity of point C after dropped 50 mm.
knowing that the spring stiffness is 1.5 kN/m and
the pully has moment of inertia I 13.5 m4.
k 1.5 kN/m
0.4 m
"Pulley =50 kg
Pulley 13.5 m4
100 kg
Transcribed Image Text:/ The pulley of mass 50 is connected with load of 100 kg as shown in the figure. This system is suspended by the spring and the cable. Compute the velocity of point C after dropped 50 mm. knowing that the spring stiffness is 1.5 kN/m and the pully has moment of inertia I 13.5 m4. k 1.5 kN/m 0.4 m "Pulley =50 kg Pulley 13.5 m4 100 kg
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