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Commit 0f80c85e authored by Kostas Vilkelis's avatar Kostas Vilkelis :flamingo:
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update table

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...@@ -127,6 +127,8 @@ As a result, the impurity concentration is bounded to $N_D \lesssim (1/4\textrm{ ...@@ -127,6 +127,8 @@ As a result, the impurity concentration is bounded to $N_D \lesssim (1/4\textrm{
| $n_h$ | Concentration of holes in the valance band | | $n_h$ | Concentration of holes in the valance band |
| $n_D$ | Concentration of electrons in the donor bound state| | $n_D$ | Concentration of electrons in the donor bound state|
| $n_A$ | Concentration of holes in the acceptor bound state| | $n_A$ | Concentration of holes in the acceptor bound state|
| $N_D$ | Concentration of donor impurities|
| $N_A$ | Concentration of acceptor impurities|
We now have the necessary tools to determine how the Fermi level changes with doping. We now have the necessary tools to determine how the Fermi level changes with doping.
The algorithm to determine the Fermi level of a semiconductor was outlined in the previous lecture and we continue to use it here. The algorithm to determine the Fermi level of a semiconductor was outlined in the previous lecture and we continue to use it here.
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