Commit 95ca23e1 authored by Isidora Araya's avatar Isidora Araya
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Update 14_doping_and_devices_solutions.md

parent ce166090
......@@ -102,8 +102,8 @@ $$-\frac{\hbar^2}{2m_h^{\ast}} \nabla^2 \Psi_h = (E_v-E_h)\Psi_h $$
### Subquestion 3
$$E_e = E_c + \frac{\hbar^2}{2m_e^{\ast}} (\frac{\pi n}{L}^2+k_x^2+k_y^2+)}$$
$$E_h = E_v - \frac{\hbar^2}{2m_h^{\ast}} (\frac{\pi n}{L}^2+k_x^2+k_y^2+)}$$
$$E_e = E_c + \frac{\hbar^2}{2m_e^{\ast}} ((\frac{\pi n}{L})^2+k_x^2+k_y^2)}$$
$$E_h = E_v - \frac{\hbar^2}{2m_h^{\ast}} ((\frac{\pi n}{L})^2+k_x^2+k_y^2)}$$
### Subquestion 4
This is a 2D electron/hole gas. Apply 2D density of states (constant).
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