What is the electric field intensity due to uniformly charged non conducting sphere?

The electric field due to any body is directly proportional to the distance from the radius of the body. The electric field will be maximum at distance equal to the radius length and is inversely proportional to the distance for a length more than that of the radius of the sphere.

What is the electric field inside a uniformly charged non conducting sphere?

Therefore electric field inside a uniformly charged non- conducting spherical shell is zero.

At what position the electric field intensity due to uniformly charged sphere is zero?

At the center and at infinity distance.

What is the electric field intensity inside a charged sphere?

Electric intensity at any point inside a charged conductor is zero. Hence electric intensity at the centre of the sphere is zero.

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What is the electric field inside a uniformly charged thin spherical shell?

The charge enclosed inside the spherical shell is 0. Therefore, due to the electric field, the uniformly charged spherical shell is zero at all points inside the shell. Note – Gauss law is widely used in Electrostatics.

At what point is the electric field intensity due to a uniformly charged spherical shell maximum?

The electric field intensity, ¯E is said to be the same at every point of a Gaussian surface directed outwards. We can note that electric intensity at any point outside the spherical shell looks like the complete charge is concentrated at the midpoint of the shell.

What is the meaning of uniform electric field?

A uniform electric field is a field in which the value of the field strength remains the same at all points. In a uniform electric field, as the field strength does not change and the field lines tend to be parallel and equidistant to each other. They are equally spaced.

Why is electric field inside a uniformly charged spherical shell zero explain?

It is because charge doesn’t reside inside it, it moves outside the surface of it producing electric field inside zero. Because at any point inside the spherical shell the total charge enclosed is zero.

How does the electric field strength vary when we enter a uniformly charged spherical cloud?

Explanation:Since electric field is directly proportional to distance hence it decreases directly as the distance from the centre decreases i.e when we enter into the cloud.

What is non conducting sphere?

Non conducting sphere : For a NON CONDUCTING charged SPHERE the there will be a electric field outside as well as inside. … For all the above charged bodies the field at a external point will be like that of a point charge equal to the total charge of the body concentrated at the centre of that body.

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What is the difference between conducting sphere and non conducting sphere?

The difference between a conducting and non-conducting sphere is that the charge is present only on the surface for a conducting sphere but for a non-conducting sphere, it is uniformly distributed. Due to the same reason, the electric field due to both spheres will be very different.

What is the electric field intensity inside the hollow charged spherical conductor?

Hi, According to Gaussian’s law the electric field inside a charged hollow sphere is Zero. This is because the charges resides on the surface of a charged sphere and not inside it and thus the charge enclosed by the guassian surface is Zero and hence the electric field is also Zero.

Where is the maximum electric field in a uniformly charged sphere?

At a distance equal to the radius of the sphere, the electric field will be maximum, as, at a distance equal to the radius of the sphere, the electric charges accumulate on the surface of the sphere.