Answer:
Step-by-step explanation:
Given Parameters
Mass of slender, m = 15kg
Length of AB, a = 4.5m
Initial velocity of slender,
= 0m/s
we draw the initial condition of slender as shown in the attached file 1
Now consider the instantaneous center at C
Write the expression to calculate the kinetic energy at initial position (
)

substitute the values in the above expression

Write the expression to calculate the Potential energy at initial position (
)

here,
is the position of the center of mass in initial position
Substitute the values in the above expression

= 331.088Nm
the condition of the slender at the final position is as shown in the second file attached
check other files for extra details