Problem
Estimate the braking distance of a car travelling at in the city, assuming a typical deceleration on dry asphalt (). Add also the distance covered during the driver’s reaction time (). Is it consistent with what is taught in driving school?
Solution
Velocity conversion. Recalling that :
Actual braking distance. During braking the motion is uniformly decelerated; using with zero final velocity:
fully consistent with the estimate –.
Distance during the reaction time. During the reaction time the driver has not yet braked: the car proceeds at constant velocity , covering
Total stopping distance. Adding reaction and braking:
Consistency with driving school. Yes. The stopping-distance tables teach that at the total is about –, roughly half due to the reaction time and half to braking: exactly the order of magnitude obtained here. Note that the braking distance grows with the square of the velocity, while the reaction distance grows only linearly.
Collegamenti
Argomenti: Kinematics Concetti: Uniformly accelerated motion Competenze: Fermi estimates