Home
Class 12
PHYSICS
A rigid ingot is pressed between two par...

A rigid ingot is pressed between two parallel guides moving in horizontal directions at opposite velocities `v_(1)` and `v_(2)`. At a certain instant of time, the points of contact between the ingot and the guides lie on a straight line perpendicular to the directions of velocities `v_(1)` and `v_(2)` (Fig). What points of teh ingot have velocities equal in magnitude to `v_(1)` and `v_(2)` at this instant ?

Promotional Banner

Similar Questions

Explore conceptually related problems

If two objects A and B are moving along a straight line in the opposite direction with the velocities V_(A)andV_(B) respectively, then relative velocity is

Two objects A and B are moving in opposite directions with velocities v_(A) and v_(B) respectively, the magnitude of relative velocity of A w.r.t. B is

Two objects A and B are moving in opposite directions with velocities v_(A) and v_(B) respectively, the magnitude of relative velocity of A w.r.t. B is

If two objects A and B are moving along a straight line in the same direction with the velocities V_(A)andV_(B) respectively, then the relative velocity is

Find the velocity of the centre of mass of two identical particles moving with velocities v_(1) and v_(2) .

Two particles are moving with velocities v_(1) and v_2 . Their relative velocity is the maximum, when the angle between their velocities is

Two particles are moving with velocities v_(1) and v_2 . Their relative velocity is the maximum, when the angle between their velocities is

A particle moving with uniform acceleration from A to B along a straight line has velcities v_(1) and v_(2) at A and B respectively. If C is the mid-point between A and B then determine the velocity of the particle at C . .

A particle moving with uniform acceleration from A to B along a straight line has velcities v_(1) and v_(2) at A and B respectively. If C is the mid-point between A and B then determine the velocity of the particle at C . .