Answer:
The distance of the car from the mirror is 10 times the distance of the image of the car from the mirror
Step-by-step explanation:
The parameters of the mirror image are;
The height of the car's image, h' = -14 cm (The image is inside the mirror and therefore, -ve)
The height of the car, h = 140 cm
The radius of curvature of the mirror, R = 60 cm
The mirror formula is given as follows;

Where;
u = The distance of the car from the mirror
v = The distance of the image of the car from the mirror
f = The focus of the mirror ≈ R2
The focus of convex mirrors is negative, therefore, f = -62 cm/2 = -32

Therefore, we get;

14·u = 140·v
∴ u = 140·v/14 = 10·v
The distance of the car from the mirror = 10 × The distance of the image of the car from the mirror