\(\begin{array}{l}{\varepsilon _d} = \dfrac{{hc}}{{{\lambda _d}}} = {E_M} - {E_L}\\ \Rightarrow \lambda = \dfrac{{hc}}{{{E_M} - {E_L}}}\\ = \dfrac{{6,{{625.10}^{ - 34}}{{.3.10}^8}}}{{\left( { - \dfrac{{13,6}}{{{3^2}}} + \dfrac{{13,6}}{{{2^2}}}} \right).1,{{6.10}^{ - 19}}}}\\ = 0,{6572.10^{ - 6}}m = 0,6572\mu m\end{array}\)
\(\begin{array}{l}{\varepsilon _l} = \dfrac{{hc}}{{{\lambda _l}}} = {E_N} - {E_L}\\ \Rightarrow \lambda = \dfrac{{hc}}{{{E_N} - {E_L}}}\\ = \dfrac{{6,{{625.10}^{ - 34}}{{.3.10}^8}}}{{\left( { - \dfrac{{13,6}}{{{4^2}}} + \dfrac{{13,6}}{{{2^2}}}} \right).1,{{6.10}^{ - 19}}}}\\ = 0,{487.10^{ - 6}}m = 0,487\mu m\end{array}\)
\(\begin{array}{l}{\varepsilon _c} = \dfrac{{hc}}{{{\lambda _c}}} = {E_O} - {E_L}\\ \Rightarrow \lambda = \dfrac{{hc}}{{{E_O} - {E_L}}}\\ = \dfrac{{6,{{625.10}^{ - 34}}{{.3.10}^8}}}{{\left( { - \dfrac{{13,6}}{{{5^2}}} + \dfrac{{13,6}}{{{2^2}}}} \right).1,{{6.10}^{ - 19}}}}\\ = 0,{435.10^{ - 6}}m = 0,435\mu m\end{array}\)
\(\begin{array}{l}{\varepsilon _t} = \dfrac{{hc}}{{{\lambda _t}}} = {E_P} - {E_L}\\ \Rightarrow \lambda = \dfrac{{hc}}{{{E_P} - {E_L}}}\\ = \dfrac{{6,{{625.10}^{ - 34}}{{.3.10}^8}}}{{\left( { - \dfrac{{13,6}}{{{6^2}}} + \dfrac{{13,6}}{{{2^2}}}} \right).1,{{6.10}^{ - 19}}}}\\ = 0,{411.10^{ - 6}}m = 0,411\mu m\end{array}\)