In order to determine the distance traveled by the car, use the followin formula from kinematics:
![x=v_ot+(1)/(2)at^2](https://img.qammunity.org/2023/formulas/physics/college/xd0c0mte24btoe0ekrkowhgyxqalfwhkm9.png)
where,
vo: initial speed = 25.21m/s
t: time = 4.36s
a: acceleration = ?
x: distance = ?
To calculate the distance x it is necessary to calculate the deceleration of the car. Use the following formula:
![a=(v-v_o)/(t)=(0(m)/(s)-25.21(m)/(s))/(4.36s)\approx-5.78(m)/(s^2)](https://img.qammunity.org/2023/formulas/physics/college/6fszskw9iu5x57f1py3vuxsaotz5rqwarq.png)
Then, replace the values of t, vo and a into the expression for x and simplify:
![x=(25.21(m)/(s))(4.36s)+(1)/(2)(-5.78(m)/(s^2))(4.36s)^2\approx54.98m](https://img.qammunity.org/2023/formulas/physics/college/j73lh2c1ehc2yt3ur24g3kx7r5inhe3sj7.png)
Hence, the distance traveled by the car before it stops is approximately 54.98m