Home
Class 12
PHYSICS
In the arrangement as shown, when mass ...

In the arrangement as shown, when mass of block A is `m_(1)` and mass of block B is `m_(2)`, time taken by `m_(1)` to reach maximum height is 3 times the time taken by `m_(2)` to reach maximum height, when block A is of mass `m_(2)` and block B is of mass `m_(1)`. All ropes and pulleys are smooth and massless -

Promotional Banner

Similar Questions

Explore conceptually related problems

The time period of block of mass m is (Assume pulleys and string are massless) .

Consider the system shown in figure Mass of block A= 3m , Mass of block B= 2m . Find the acceleration of A and B.

In the arrangement , shown below pulleys are massless and frictionless and threads are inextensible , block of mass m_(1) will remain at rest if

In the arrangement , shown below pulleys are massless and frictionless and threads are inextensible , block of mass m_(1) will remain at rest if

In the arrangement shown below pulleys are mass less and frictionless and threads are in responsible block of mass m_(1) will remain at rest if :

A block of mass m is released from a wedge of mass m as shown in figure . Find the time taken by the block to reach the end of the wedge.

A block of mass m is released from a wedge of mass m as shown in figure . Find the time taken by the block to reach the end of the wedge.

In the arrangement shown below, pulleys are mass-less and friction-less and threads are in-extensible. Block of mass m_(1) will remain at rest if :

Two block of masses m_(1) and m_(2) are connected as shown in the figure. The acceleration of the block m_(2) is:

Two block of masses m_(1) and m_(2) are connected as shown in the figure. The acceleration of the block m_(2) is: