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Q.If the binding energy of an electron in the first orbit of a hydrogen atom is −13.6-13.6 eV, then what is the binding energy in the orbit n=3n = 3? OR A hydrogen atom initially in the ground level absorbs a photon which excites it to the n=4n = 4 level. Determine the frequency of the photon.

Meghalaya MboseMBOSE Meghalaya Intermediate Board 2026Subjective· 1mImportance★★★★★
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Using En=−13.6/n2E_n=-13.6/n^2 eV, the binding energy in the n=3n=3 orbit is −13.6/9≈−1.51-13.6/9\approx-1.51 eV.

Binding energy formula

For the hydrogen atom, the energy of the nnth Bohr orbit (equal to the "binding energy" in this sign convention, since it is the total — negative — energy of the bound electron) is

En=−13.6n2 eVE_n = \frac{-13.6}{n^2}\ \text{eV}

For n=3n=3:

E3=−13.632=−13.69=−1.511 eV≈−1.51 eVE_3 = \frac{-13.6}{3^2} = \frac{-13.6}{9} = -1.511\text{ eV} \approx -1.51\text{ eV}

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