Answer:
r = 0.491 m
Explanation:
In this case the System is formed by the teacher with the two masses, so the forces during movement are internal and the angular momentum is conserved
Initial.
     L₀ = I₀ w₀
Final
     Lf = I w
    L₀ = Lf
    I₀ w₀ = I w
The moment of inertia is
   I₀ = m r₀²
   I = m r²
   Â
Let's replace
    m r₀² w₀ = m r² w
    r²  = r₀² w₀ / w
Angular velocity
    w₀ = 10 rpm (2pi rad / 1 rev) (1 min / 60 s) = 1.047 rad / s
    w = 32.5 rpm = 3.403 rad / s
Let's calculate
   r = √(0.785 1.047 / 3.403)
   r = 0.491 m