Answer:
I = 30 kg m²
Step-by-step explanation:
given,
length of rod = 4 m
mass of the 5 small masses = 1 kg
masses are kept at an interval of 1 m
Moment of inertia of the object = ? from the end mass
now distance of the masses from the end
r₁ = 1 m r₂ = 2 m r₃ = 3 m r₄ = 4 m
hence, the moment of inertia
I = I₁ + I₂ + I₃ + I₄ + I₅
I = mr₁²+ mr₂² + mr₃² + mr₄² + mr₅²
I = 1 x 0²+ 1 x 1² + 1 x 2²+ 1 x 3² + 1 x 4²
I = 1 + 4+ 9 + 16
I = 30 kg m²
hence, the moment of inertia of the object is I = 30 kg m²