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What is the angle between electric dipole moment and the electric field strength due to it on the axial line?

Author

Robert Guerrero

Updated on February 17, 2026

the angle between electric dipole moment and electric field strength due to dipole on axial line is 180°.

In respect to this, what is the angle between the electric dipole moment and the electric field strength due to it on the equatorial line?

180° as

Furthermore, what is the direction of electric field intensity due to an electric dipole at a point on its axial line? Electric field due to an electric dipole at a point on its axial line: AB is an electric dipole of two point charges −q and +q separated by small distance 2d. P is a point along the axial line of the dipole at a distance r from the midpoint O of the electric dipole.

Also question is, what is the angle between electric field and dipole moment at an axial point?

Electric field at equatorial point and axial point are always antiparallel so angle is 180 degrees.

How do you find the electric field of a dipole?

The formula for electric dipole moment for a pair of equal & opposite charges is p = qd, the magnitude of the charges multiplied by the distance between the two.

Related Question Answers

What is the angle between the direction of electric field at any?

There actually are simple Electric field at equatorial point and axial point are always antiparallel so angle is 180 degrees.

What is the dimensional formula of electric dipole moment?

Electric Dipole Moment
Characteristic
Metric (SI) Equivalent 3.335640952×10-30 coulomb meters
Another Metric (SI) Equivalent with More Basic Units 3.335640952×10-30 ampere meter seconds
Metric (SI) Dimensions length × time × electric-current

When an electric dipole is placed in a uniform electric field it experiences?

When an electric dipole is places in a uniform electric field , it experiences no force as the electric force on both the negative and the positive charge are equal in magnitude but opposite in direction so they cancel out. But , it experiences a torque(couple) and hence it rotates.

What is the angle between the direction of electric field at any point and Equatorial point due to an electric dipole?

Electric field at equatorial point and axial point are always antiparallel so angle is 180 degrees.

What is the direction of electric field at a point on the equatorial line of an electric dipole?

The direction of electric field at equatorial point A or B will be in opposite direction, as that of direction of dipole moment.

What is the magnitude and direction of electric field intensity?

Charles Vanberg, Electronic engineer for 40 years. Magnitude and direction is a vector. IF the vector represents the electric field at a point, its length is the intensity and the direction shows where the field will apply force on a unit charge.

What is the ratio of electric field intensity?

What is the ratio of electric field intensity at any point on the axis to that on perpendicular bisector of small electric dipole at same distance from its centre? The required ratio os 2:1 . Hope that helps.

What is electric field strength?

Electric field strength is a quantitative expression of the intensity of an electric field at a particular location. The standard unit is the volt per meter (v/m or v · m -1).

What is electric field intensity?

Electric field intensity is the measure of intensity or strength of electrical force per unit charge at any given point in the electric field. It is denoted by the letter E and its Unit is Newton per Coulomb (N/C).

What is an electric dipole find an expression for electric field at any point due to a dipole?

Derive an expression for electric potential at any point due to an electric dipole. Potential at point P due to the dipole along the equatorial line will be zero as P is equidistant from the two charges. Also r1 and r2 are distances of point P away from charges +q and -q respectively as shown in figure.

What is the electric field at the Centre of a dipole?

According to Gauss's law,electric flux depends only on the charge inside the sphere. As the net charge of dipole is zero, so the flux through the sphere is zero. But the electric field is the resultant effect due to all charges. So the electric field can not be zero at every point of sphere.

What is the net force on an electric dipole placed in a uniform electric field?

The dipole in an electric field. Let us assume we have a uniform electric field E (constant direction and magnitude) in some region of space, and a dipole moment vector makes an angle q with the field E. The positive charge feels a force qE, So the net force on a dipole in a uniform field is zero.

What is axial line and equatorial line?

Axial line – A line joining the two charges and passing through the centre of dipole is called its axial line. Equatorial line- A line passing through the centre of the dipole and perpendicular to the axial line is called equatorial line.

What will be the value of the electric field at the Centre of the electric dipole?

The electric field at center of the dipole is equal to twice the electric field produced by any one of the charge on this dipole at center and it act along positive to negative charge. An electric dipole is placed at the centre of a sphere.

How much torque is experienced by an electric dipole of moment?

Question: An electric dipole is placed at an angle of 30o with an electric field of intensity 2×105 N/C. It experiences a torque of 4Nm.

Where is the electric field strongest in a dipole?

The direction of the field line at a point is the direction of the field at that point. The relative magnitude of the electric field is proportional to the density of the field lines. Where the field lines are close together the field is strongest; where the field lines are far apart the field is weakest.

What is meant by electric dipole moment?

In physics, the electric dipole moment is a measure of the separation of positive and negative electrical charges within a system, that is, a measure of the system's overall polarity. The electric field strength of the dipole is proportional to the magnitude of dipole moment.