Answer:
0.001 s
Step-by-step explanation:
The force applied on an object is equal to the rate of change of momentum of the object:
![F=(\Delta p)/(\Delta t)](https://img.qammunity.org/2021/formulas/physics/middle-school/dn4djlfao7r87f5hkezey0xjxgcmwod190.png)
where
F is the force applied
is the change in momentum
is the time interval
The change in momentum can be written as
![\Delta p=m(v-u)](https://img.qammunity.org/2021/formulas/physics/high-school/5cv4p721g33m5qymxlaova0vn58rxc0j0f.png)
where
m is the mass
v is the final velocity
u is the initial velocity
So the original equation can be written as
![F=(m(v-u))/(\Delta t)](https://img.qammunity.org/2021/formulas/physics/middle-school/rxb6snurw1hmeaqv7uixdv7upt5tlowz8s.png)
In this problem:
m = 5 kg is the mass of the fist
u = 9 m/s is the initial velocity
v = 0 is the final velocity
F = -45,000 N is the force applied (negative because its direction is opposite to the motion)
Therefore, we can re-arrange the equation to solve for the time:
![\Delta t=(m(v-u))/(F)=((5)(0-9))/(-45,000)=0.001 s](https://img.qammunity.org/2021/formulas/physics/middle-school/gih1a0fudgby7nolbq0mb35ltaqc0fl4h3.png)