Home
Class 12
PHYSICS
A block of mass 5 kg having charge q is...

A block of mass `5 kg` having charge `q` is attached to a spring of constant `K = 10^(4) N//m`. A charge `-q` is placed below the block at separation `0.5 m`. If the maximum elongation of spring is `0.5 m`. If the maximum elongation of spring is `0.1 m`, find `q`. Assume the initial elongation of spring is zero.

Promotional Banner

Similar Questions

Explore conceptually related problems

A block of mass m having charge q is attached to a spring of spring constant k . This arrangement is placed in uniform electric field E on smooth horizontal surface as shown in the figure. Initially spring in unstretched. Find the extension of spring in equilibrium position and maximum extension of spring.

A block of mass m having charge q is attached to a spring of spring constant k . This arrangement is placed in uniform electric field E on smooth horizontal surface as shown in the figure. Initially spring in unstretched. Find the extension of spring in equilibrium position and maximum extension of spring.

The block of mass m is released when the spring was in its natrual length. Spring constant is k. Find the maximum elongation of the spring.

The block of mass m is released when the spring was in its natrual length. Spring constant is k. Find the maximum elongation of the spring.

Block of mass 2 m is given v_(0) towards the right. If L is the natural length of spring constant k , find the maximum elongation of the spring.

At t = 0 , a constant force is applied on 3 kg block. Find out maximum elongation in spring in cm.

At t = 0 , a constant force is applied on 3 kg block. Find out maximum elongation in spring in cm.

At t = 0 , a constant force is applied on 3 kg block. Find out maximum elongation in spring in cm.

A block of mass m and relative density y( lt 1) si attached to an ideal spring of constant K. The system is initially at rest and at equilibrium. If the container acceleration upwards with a_(0) , find the increase in the elongation of the spring in equilibrium.

Two blocks of mass m_(1) and m_(2) are connected by a spring of force constant k. Block of mass m_(1) os pulled by a constant force f_(2) [see fig 4E.19 (a)] find the maximum elongation in the spring .