A rod of mass M and length L is pivoted at point O as shown below. At the end of each rod is a concentrated mass m. The concentrated mass or the right is connected via a spring to another point mass 2m. Derive the equations of motion us ng Lagrange's equations. В 2L/3 M- k k L/3 2m A m Ww-

Elements Of Electromagnetics
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THE MOTION IS ON THE HORIZONTAL PLANE (NO GRAVITY
A rod of mass M and length L is pivoted at point O as shown below. At the end
of each rod is a concentrated mass m. The concentrated mass or the right is connected via a
spring to another point mass 2m. Derive the equations of motion ur ng Lagrange's equations.
В
m
2L/3
M-
k
L/31
2m
A
m
Transcribed Image Text:A rod of mass M and length L is pivoted at point O as shown below. At the end of each rod is a concentrated mass m. The concentrated mass or the right is connected via a spring to another point mass 2m. Derive the equations of motion ur ng Lagrange's equations. В m 2L/3 M- k L/31 2m A m
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