Home
Class 12
PHYSICS
An electric field given by vec(E)=4hat(i...

An electric field given by `vec(E)=4hat(i)+3(y^(2)+2) hat(j)` pierces a gaussian cube of side 1m placed at origin such that one of its corners is at origin and rest of sides are along positive side of coordinate axis. Find the magnitude of net charge enclosed within the cube
`[3 in_(0)]`

Promotional Banner

Similar Questions

Explore conceptually related problems

An electric field given by vec(E )= 4hat(i)+3(y^(2)+2)hat(j) pieces Gaussian cube side 1m placed at origin such that is three sides represents x,y and z axis. This net charge enclosed within the cube is

An electric field given by vec(E) = 4hat(i) - (20 y^(2) + 2) hat(j) pierces a Gussian cube of side 1 m placed at origin such that its three sides represents x,y and z axes. The net charge enclosed within the cube is x xx 10^(-10)C , where is _____. (take in_(0) = 8.85 xx 10^(-12) N^(-1)m^(-2)C^(2) )

An electric field given by vec(E) = 4hat(i) - (20 y^(2) + 2) hat(j) pierces a Gussian cube of side 1 m placed at origin such that its three sides represents x,y and z axes. The net charge enclosed within the cube is x xx 10^(-10)C , where is _____. (take in_(0) = 8.85 xx 10^(-12) N^(-1)m^(-2)C^(2) )

In space electric field is given by vec(E) = 150 y^2 J N/C . A cube of side 0.5m is placed with one corner at origin along + y axis. Find charge enclosed inside cube:

Electric field in a region is given by vec( E) = - 4xhat(i) + 6yhat(j) . Then find the charge enclosed in the cube of side 1m oriented as shown in the diagram

Electric field in a region is given by vec(E)=-4xhat(i)+6yhat(j) . The charge enclosed in the cube of side 1 m oriented as shown in the diagram is given by alpha in_(0) . Find the value of alpha .

Electric field in a region is given by vec(E)=-4xhat(i)+6yhat(j) . The charge enclosed in the cube of side 1 m oriented as shown in the diagram is given by alpha in_(0) . Find the value of alpha .