Home
Class 12
PHYSICS
the maximum electric field intensity on ...

the maximum electric field intensity on the axis of a uniformly charged ring of change q and radius R will be

A

`(1)/(4piepsilon_(0))(q)/(3sqrt(3)R^(2))`

B

`(1)/(4piepsilon_(0))(2q)/(3R^(2))`

C

`(1)/(4piepsilon_(0))(2q)/(3sqrt(3)R^(2))`

D

`(1)/(4piepsilon_(0))(3q)/(2sqrt(2)R^(2))`

Text Solution

Verified by Experts

The correct Answer is:
C
Promotional Banner

Similar Questions

Explore conceptually related problems

The maximum electric field intensity on the axis of a uniformly charged ring of charge q and radius R will be

The maximum electric field at a point on the axis of a uniformly charged ring is E_(0) . At how many points on the axis will the magnitude of the electric field be E_(0)//2 .

A point charge of charge -q and mass m is released with negligible speed from a distance sqrt(3) R on the axis of a fixed uniformly charged ring of charge Q and radius R. Find out its velocity when it reaches it reaches at the centre of the ring.

The largest magnitude the electric field on the axis of a uniformly charged ring of radius 3m is at a distance h from its centre. What is the value of h? (Take (1)/(sqrt(2))=0.7 )

A small electric dipole is kept on the axis of a uniformly charged ring at distance R // sqrt(2) from the centre of the ring. The direction of the dipole moment is along the axis. The dipole moment is P, charge of the ring is Q and radius of the ring is R. The force on the dipole is nearly _____

A short dipole is placed on the axis of a uniformly charged ring (total charge -Q, radius R) at a distance R/sqrt(2) from centre of ring as shown in figure. Find the Force on the dipole due to that ring

An electric dipole is kept on the axis of a uniformly charged ring at distance from the centre of the ring. The direction of the dipole moment is along the axis. The dipole moment is p , charge of the ring is Q & radius of the ring is R . The force on the dipole is

Find the electric field at the centre of a uniformly charged semicircular ring of radius R. Linear charge density is lamda

Find out energy stored in the electric field of uniformly charged thin spherical shell of total charge Q and radius R.

The electric field intensity at a distance 20 cm from the centre of a uniformly charged non conducting solid sphere of radius 10 cm is E .Then what is the electric field intensity at a distance 5 cm from the centre it will be.....