How does the drift velocity change with a change in the potentialdifference across the conductor?
Question
How does the drift velocity change with a change in the potential difference across the conductor?
Solution
The drift velocity of electrons in a conductor is directly proportional to the electric field applied, which is determined by the potential difference across the conductor. Here's a step-by-step explanation:
-
When a potential difference is applied across a conductor, it creates an electric field within the conductor.
-
This electric field exerts a force on the free electrons (charge carriers) in the conductor.
-
Due to this force, the electrons start moving in a direction opposite to the electric field (since electrons are negatively charged). This movement of electrons is random due to the numerous collisions with atoms in the conductor, but there is a net movement in the direction opposite to the electric field.
-
This net movement of electrons is what we call drift velocity.
-
As the potential difference (and thus the electric field) increases, the force on the electrons increases. This leads to a higher net speed of the electrons, i.e., a higher drift velocity.
-
Therefore, the drift velocity increases with an increase in the potential difference across the conductor.
It's important to note that this relationship is linear as long as the temperature of the conductor remains constant. If the temperature increases, the atoms in the conductor vibrate more, leading to more collisions with the electrons and thus a decrease in drift velocity.
Similar Questions
The ratio of drift velocities in the given two conductors of same materials A & B is :-
What is the relationship between potential difference and current for an ohmic conductor at a constant temperature?
Name a device that you can use to maintain a potential difference between the ends of a conductor. Explain the process by which this device does so
State the relation correlating the electric current flowing in a conductor and the voltage applied across it.Also draw a graph to show this relationship
Differentiate between conductor and semiconductor in terms of energy band theory.
Upgrade your grade with Knowee
Get personalized homework help. Review tough concepts in more detail, or go deeper into your topic by exploring other relevant questions.