Home
Class 12
PHYSICS
The driver of a car moving with a speed ...

The driver of a car moving with a speed of `10 ms^(-1) ` sees a red light ahead, applies brakes and stops after covering 10 m distance. If the same car were moving with a speed of `20 ms^(-1)` the same driver would have stopped the car after covering 30 m distance. Within what distance the car can be stopped if traveling with a velocity of `15 ms^(-1) ` Assume the same reaction time and the same deceleration in each case

Promotional Banner

Similar Questions

Explore conceptually related problems

A car moving with a speed of 50 "km.h"^(-1) can be stopped by brakes after at least 6 m. What will be the minimum stopping distance, if the same car is moving at a speed of 100 "km.h"^(-1) ?

A car moving with a speed of 40 km//h can be stopped by applying the brakes after at least 2 m. If the same car is moving with a speed of 80 km//h , what is the minimum stopping distance?

A car moving with a speed of 40 km//h can be stopped by applying the brakes after at least 2 m. If the same car is moving with a speed of 80 km//h , what is the minimum stopping distance?

A car moving with a speed of 40 km//h can be stopped by applying the brakes after at least 2 m. If the same car is moving with a speed of 80 km//h , what is the minimum stopping distance?

A car moving with a speed of 40 km//h can be stopped by applying the brakes after at least 2 m. If the same car is moving with a speed of 80 km//h , what is the minimum stopping distance?

An automobile travelling with a speed of 60 km h^-1 can apply brakes to stop after covering a distance of 20 m. If the car is going iwit as fast i.e., 120 km h^-1 , the stopping distance will be

A car moving with a speed of 40 km/hr comes to rest at a distance of 2 m after applying brakes. If the same car is moving with a speed of 80 km/hr, what is the minimum stopping distance?

A car moving with a speed of 40 km/h can be stopped by applying brakes after at least 2m. If the same car is moving with a speed of 80 km/ h. The minimum stopping distance will be……………..