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Q.If the energy of an electron in the nth orbit is given by E_n = −13.6/n² eV, determine the energy required to excite an electron from ground state to the second excited state.

Mizoram MbseMizoram Board of School Education HSSLC 2021Subjective· 3mImportance★★★★★
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The second excited state is n = 3; the excitation energy is E3−E1E_3 - E_1, using En=−13.6/n2E_n = -13.6/n^2 eV.

Ground state: n=1n=1: E1=−13.612=−13.6 eVE_1 = \dfrac{-13.6}{1^2} = -13.6\,\text{eV}

Second excited state: n=3n=3 (first excited state is n=2, second excited state is n=3): E3=−13.632=−13.69≈−1.51 eVE_3 = \dfrac{-13.6}{3^2} = \dfrac{-13.6}{9} \approx -1.51\,\text{eV}

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