Home
Class 11
PHYSICS
A block sides down a smooth inclined pla...

A block sides down a smooth inclined plane when released from the top, while another falls freely from the same point. Which one of them will strike the ground : (a) earlier (b) with greater speed ?

Text Solution

Verified by Experts

In case of sliding motion on the inclined plane.
`" "(h)/(s) = sin theta rArr s = (h)/(sin theta), a = g sin theta`
`" "t_s = sqrt((2s)/(a)) = sqrt((2)/(g sin theta)xx (h)/(sin theta)) = (1)/(sin theta) sqrt((2h)/(g))= (t_F)/(sin theta)`
`v_s = sqrt ( 2as) = sqrt(2 g sin theta xx (h)/(sin theta)) = sqrt(2 gh)`

In case of free fall `t_F = sqrt((2h)/(g)) and v_F = sqrt(2gh) = v_s`
(a) `because sin theta lt 1, t_F lt t_s`, i.e., falling body reaches the ground first.
(b) `v_F= v_s` i.e., both reach the ground with same speed.
Special Note : (not same velocity, as for falling body direction is vertical while for sliding body along the plane downloads).
Promotional Banner

Topper's Solved these Questions

  • KINEMATICS (MOTION ALONG A STRAIGHT LINE AND MOTION IN A PLANE)

    ALLEN |Exercise BEGINNER S BOX-1|6 Videos
  • KINEMATICS (MOTION ALONG A STRAIGHT LINE AND MOTION IN A PLANE)

    ALLEN |Exercise BEGINNER S BOX-2|7 Videos
  • KINEMATICS

    ALLEN |Exercise EXERCISE-2|89 Videos
  • MISCELLANEOUS

    ALLEN |Exercise Question|1 Videos

Similar Questions

Explore conceptually related problems

A particle P is projected from a point on the surface of smooth inclined plane (see figure). Simultaneously another particle Q is released on the smooth inclined plane from the same position. P and Q collide after t=4 . The speed of projection of P is

Three bodies, a ring, a solid cylinder and a solid sphere roll down the same inclined plane without slipping. They start from rest. The radii of the bodies are identical. Which of the bodies reaches the ground with maximum velocity?

Two identical solid balls, one of ivory and the other of wet-clay are dropped from the same height on the floor. Which one will rise to a greater height after striking the floor and why?

Two particles A and B of mass 2m and m respectively are attached to the ends of a light inextensible string of length 4a which passes over a small smooth peg at a height 3a from an inelastic table. The system is released from rest with each particle at a height a from the table. Find - (i) The speed of B when A strikes the table (ii) The time that elapses begore A first hits the table. (iii) The time for which A is resting on the table after the first collision & begore it is first jerked off.

An aeroplane is flyind horizontally at a height of 2 km and with a velocity of 720 km/h. A bag containing ration is to be dropped to the Jawans on the ground then find out (i) How far from the Jawans should the bag be released so that it falls directly over them (ii) Time taken by bag to reach the ground (iii) Velocity of bag when it reach the ground. (iv) At which angle the bag will reaches the ground. (v) What path of bag will be appeared to pilot (vi) What path of bag will be appeared to Jawans. (vii) Position of aeroplane when bag reaches to the Jawans. (g=10m//s^(2))

A body is released from the top of a smooth inclined plane of inclination theta . It reaches the bottom with velocity v . If the angle of inclina-tion is doubled for the same length of the plane, what will be the velocity of the body on reach ing the ground .

A ball of mass 100 gm is projected vertically upwards from the ground with a velocity of 49m//sec . At the same time another identical ball is dropped from a height of 98 m to fall freely along the same path as that followed by the first ball. After some time the two balls collide and stick together and finally fall to the ground. Find the time of flight of the masses.

When a point mass slips down a smooth incline from top, it reaches the bottom with linear speed v. If same mass in the form of disc rolls down without slipping a rough incline of identical geometry through same distance, what will be its linear velocity at the bottom ?

The ratio of the speeds of the objects of masses m_(1), m_(2), and my respectively are fallen freely from a same point 'O' when reaches at ground is ......