Answer:
It would shrink to a radius of 2.95 km
Step-by-step explanation:
In order to be a black hole, the Sun must shrink so that its radius becomes equal to its Schwarzschild radius:

where
G is the gravitational constant
is the mass of the Sun
c is the speed of light
Substituting into the equation, we find

So, the Sun should shrink to a radius of 2.95 km.