Home
Class 11
PHYSICS
[" 39.A small bob attached to a light in...

[" 39.A small bob attached to a light inextensible thread of length "l" has a periodic motion "],[" time T when allowed to vibrate as a simple pendulum.The thread is now "],[" suspended from a fixed end "0" of a vertical rigid rod of length "(3l)/(4)(" as in "],[" figure).If now the pendulum performs periodic oscillations in this "],[" arrangement,the periodic time will be "]

Promotional Banner

Similar Questions

Explore conceptually related problems

A small bob attached to a light inextensible thread of length l has a periodic time T when allowed to vibrate as a simple pendulum. The thread is now suspended from a fixed end O of a vertical rigid rod of length (3l)/(4) (as in figure). If now the pendulum performs periodic oscillations in this arrangement, the periodic time will be-

A small bob attached to a light inextensible thread of length l has a periodic time T when allowed to vibrate as a simple pendulum. The thread is now suspended from a fixed end O of a vertical rigid rod of length 3l//4 . If now the pendulum performs periodic oscillations in this arrangement, the periodic time will be

A small bob attached to a light inextensible thread of length l has a periodic time T when allowed to vibrate as a simple pendulum. The thread is now suspended from a fixed end O of a vertical rigid rod of length 3l//4 . If now the pendulum performs periodic oscillations in this arrangement, the periodic time will be

In a simple pendulum the period of oscillation (T) is related to the length of the pendulum (L) as

In a simple pendulum the period of oscillation (T) is related to the length of the pendulum (L) as

In a simple pendulum the period of oscillation (T ) is related to the length of the pendulum (L) as

In a simple pendulum the period of oscillation (T) is related to the length of the pendulum (L) as

The time period of a simple pendulum in air is T . Now the pendulum is submerged in a liquid of density (rho)/(16) where rho is density of the bob of the pendulum. The new time period of oscillation is.