No, a depletion region is not a good conductor. It is an insulating region formed in a semiconductor material when a voltage is applied, creating a barrier to the flow of current.
It is a poor conductor.
No, bitumen is not a good conductor of electricity. It is considered to be an insulator rather than a conductor.
Galena is not a good conductor of electricity. However, it is a good conductor of heat due to its high thermal conductivity.
Graphite is brittle but a good conductor of electricity.
Duct tape is not a good conductor of heat. Its composition and thickness make it a poor conductor, so it does not readily transfer heat.
Depletion region is the region where current carriers such as electrons and holes are absent.
depletion region will decrease.
in forward biasing depletion region width decreases and in reverse biasing it increases .
The depletion region is smaller in germanium compared to silicon because germanium has a lower bandgap energy, meaning that charge carriers can easily cross the depletion region and recombine on the other side. This results in a smaller built-in potential and a smaller depletion region in germanium.
depletion region formed by either side of p&n junctions mobile charges accumulate in that places.Type your answer here...
depletion region is formed only after recombination of holes and electrons..so in depletion region there are only and only immoble positive and nagative ions...hence,there is no charge carrier..
The atmosphere does not protect the ozone depletion. It is the region where the ozone depletion occurs.
The depletion is never good. It is always bad.
The ozone depletion is highest at the poles. Specially at the Antarctica region.
depletion layer depletion zone juntion region space charge region bipolar transistor field effect transistor variable capacitance diode
depletion region formed by either side of p&n junctions mobile charges accumulate in that places.Type your answer here...
The depletion region in germanium is small because germanium has a lower band gap compared to silicon. This results in a higher charge carrier concentration and a narrower depletion region. Additionally, germanium has a higher intrinsic carrier concentration, leading to a smaller depletion region.