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[" 30.If "I^(" st ")" excitation energy ...

[" 30.If "I^(" st ")" excitation energy for the H-like (hypothetical) sample is "24eV" ,then binding energy in "],[[" III "^(" rd ")" excited state is: "," (b) "3eV],[[" (a) "2eV,.," (c) "4eV," (d) "5eV]]]

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1st excitation potential for the H-like (hypothetical) sample is 24 V. Then:

If I exciation energy for the H-like (hypothetical) sample is 24 eV, then binding energy in III excited state is :

If I exciation energy for the H-like (hypothetical) sample is 24 eV, then binding energy in III excited state is :

If I exciation energy for the H-like (hypothetical) sample is 24 eV, then binding energy in III excited state is : (a)2eV (b)3eV (c)4eV (d)5eV

If the first excitation energy of a hydrogen - like atom is 27.3 eV , then ionization energy of this atom will be

If the first excitation energy of a hydrogen - like atom is 27.3 eV , then ionization energy of this atom will be

If the I excitation potential of a hypothetical H-like is 162 V, then the value of II excitation energy is about :

Energy of H-atom in the ground state is -13.6 eV, hence energy in the second excited state is

Energy of H-atom in the ground state is -13.6eV . Hence energy in the second excited state is

Energy of H-atom in the ground state is -13.6eV . Hence energy in the second excited state is