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Please solve it with equations I know the theory of it but cannot solve Problem 7 : Consider the system shown at its equilibrium position

Please solve it with equations I know the theory of it but cannot solve Problem 7 :
Consider the system shown at its
equilibrium position given in the figure.
AB is a rigid rod with mass m, length
L=l1+l2+l3, and centroidal radius
of gyration kG. Links AC and BD are
massless.
(a) Find the equivalent single-degree-
of- freedom system in the form
meqx1+ceqx1+keqx1=0
using the parameters given in the figure
without the numerical values.
Now, assume m=1kgm1=10kg,
m2=5kg,kG=0.1m,k1=100N?
m,k2=150Nm,l1=1.2m,l2=
0.3m,l3=1.5m.
(b) What should be the value of damping coefficient, c, to have the system critically damped?
If m2 is initially displaced by x2(0)=0.01m and the system is released from rest, what will
be the maximum speed of m2 during its motion?
(c) What should be the damping coefficient, c, for this system if the amplitude ratio between
two successive cycles is 0.25? What will be the period of these oscillations?
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