Answer:
k = 86,646,076.92 J
Step-by-step explanation:
We know that:
K =

where K is the kinetic energy, I is the moment of inertia and W is the angular velocity.
First we have to find the I with the equation:
I =

where M is the mass and R the radius of the cylinder.
so:
I =

I = 365.04 kg*m^2
Now we replace all the data in the first equation as:
K =

K =

k = 86,646,076.92 J