Q&A

Do electric field lines curve?

Do electric field lines curve?

No, they do not exist. Electric field lines are only imaginary. They are the paths along which an imaginary unit charge would move when free. Their number is infinite as paths (Electric field lines) can be infinite.

Where are electric field lines curved?

An electric field line is, in general, a curve drawn in such a way that the tangent to it at each point is in the direction of the net field at that point. An arrow on the curve is obviously necessary to specify the direction of electric field from the two possible directions indicated by a tangent to the curve.

Are electric field lines curved or straight?

In an uniform electric field, the field lines are straight, parallel and uniformly spaced. The electric field lines can never form closed loops, as line can never start and end on the same charge. Also, this is the path on which a positive test charge will tend to move if free to do so.

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When electric field lines are curved the electric field at any point?

When electric field lines are curved, the electric field at any point is tangent to the field line at that point. Two nuclei each contain two protons and exert a force 4 N on each other.

Why are field lines curved?

Note that as you move away from the two point charges an equal distance apart, the lines look like those at the ends of your parallel plate capacitor (curved lines). Towards the center between the charges, the field lines start to look straight and evenly spaced (parallel lines). Hope this helps.

What causes electric field lines to curve?

When charged particles are close enough to exert force on each other, their electric fields interact. The lines of force bend together when particles with different charges attract each other. The lines bend apart when particles with like charges repel each other.

Why are electric field lines continuous curves?

(a) An electrostatic field line is a continuous curve because a charge experiences a continuous force when traced in an electrostatic field. The field line cannot have sudden breaks because the charge moves continuously and does not jump from one point to the other. Hence, two field lines never cross each other.

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When examining the electric field lines How can you determine the electric field direction?

For example, if you place a positive test charge in an electric field and the charge moves to the right, you know the direction of the electric field in that region points to the right.

Why electric field lines are curved at the edges?

When electric field lines are being drawn what determines?

Electric field lines reveal information about the direction (and the strength) of an electric field within a region of space. If the lines cross each other at a given location, then there must be two distinctly different values of electric field with their own individual direction at that given location.

Do electric field lines end?

Since the electric field is a vector, electric field lines have arrows showing the direction of the electric field. Lines begin and end only at charges (beginning at + charges, ending at – charges) or at Infinity. Lines are closer together where the field is stronger.

What happens when electric field lines are curved?

This means that the overlapping curved field lines will average out as a straight field line, through the middle of the point-charge pairs. The outermost edges of the electric field, on the other hand, will have nothing to interfere with, and remain curved.

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What is the start and end point of electric field lines?

The start point of the field lines is at the positive charge and end at the negative charge. For the field lines to either start or end at infinity, a single charge must be used. Electric field lines always point away from a positive charge and towards a negative point.

What are the rules for drawing electric field lines?

Following are the rules for drawing electric field lines: The field line begins at the charge and ends either at the charge or at infinity. When the field is stronger, the field lines are closer to each other. The number of field lines depends on the charge. The field lines should never crossover.

What happens when the electric field is stronger?

When the field is stronger, the field lines are closer to each other. The number of field lines depends on the charge. The field lines should never crossover. Electric field and electric field line are tangent at the point where they pass through.

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