Answer:
option A
Step-by-step explanation:
the initial moment of inertia of system , I₀ = 13 kg.m²
the final moment of inertia of the system , I = 2.6 kg.m²
time = t = 2 s
mass = 5 Kg
the initial angular speed ,
![\omega = (2\pi)/(T)](https://img.qammunity.org/2020/formulas/physics/high-school/2e7hemrfzbp703p5wrvdh8vt4kymmdz4m3.png)
![\omega = (2\pi)/(2)](https://img.qammunity.org/2020/formulas/physics/college/r3mz9o5lr0obgztyf5vku8uvxyhozzjp3y.png)
ω = 3.14 rad/s
![\omega = (3.14)/(2\pi)](https://img.qammunity.org/2020/formulas/physics/college/aohw4hp1ekpqd2j7g6va7zt4smy8dcz1q1.png)
![\omega_0= 0.5\ rev/s](https://img.qammunity.org/2020/formulas/physics/college/qhcbruoczvzgswsplyg1tg14uabtj8y5r4.png)
let the final angular speed be ω₀
using conservation of angular momentum
I₀ x ω₀= I x ω
13 x ω₀= I x ω
13 x 0.5 = 2.6 x ω
ω = 2.5 rev/s
hence, the correct answer is option A