Answer:
t = 6 [s]
Step-by-step explanation:
In order to solve this problem we must first use this equation of kinematics.

where:
Vf = final velocity = 0 (the car comes to rest)
Vo = initial velocity = 72 [km/h]
a = acceleration [m/s²]
x = distance = 60 [m]
First we must convert the velocity from kilometers per hour to meters per second.
![72 [(km)/(h)]*(1000m)/(1km) *(1h)/(3600s) =20 [m/s]](https://img.qammunity.org/2022/formulas/physics/high-school/bq6iqco7c4o0ic06avgc1tmrips6gebmvn.png)
![0=(20)^(2) -2*a*60\\400 = 120*a\\a=3.33[m/s^(2) ]](https://img.qammunity.org/2022/formulas/physics/high-school/l6ajf5t4bpqkfl6a36jn84nhakvylorcj8.png)
Now using this other equation of kinematics.

0 = 20-3.33*t
t = 6[s]