In the Drude model, a) derive a relation for the velocity of electrons if there is no any external field on the metal. b) derive a relation for the velocity of electrons when you apply an electric field on this metal. What do you expect the electrons' velocity to be at times longer than the scattering time t ? c) write down a relation for the current density J for the previous parts.
In the Drude model, a) derive a relation for the velocity of electrons if there is no any external field on the metal. b) derive a relation for the velocity of electrons when you apply an electric field on this metal. What do you expect the electrons' velocity to be at times longer than the scattering time t ? c) write down a relation for the current density J for the previous parts.
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![In the Drude model,
a) derive a relation for the velocity of electrons if there is no any external field on the metal.
b) derive a relation for the velocity of electrons when you apply an electric field on this metal.
What do you expect the electrons' velocity to be at times longer than the scattering time T ?
c) write down a relation for the current density J for the previous parts.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F7909250a-9c93-4384-8e16-2f6eda1ac914%2Fce4063a6-7bfb-4b8b-b3b0-24e4be2c3a26%2Fl92nugf_processed.png&w=3840&q=75)
Transcribed Image Text:In the Drude model,
a) derive a relation for the velocity of electrons if there is no any external field on the metal.
b) derive a relation for the velocity of electrons when you apply an electric field on this metal.
What do you expect the electrons' velocity to be at times longer than the scattering time T ?
c) write down a relation for the current density J for the previous parts.
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