307162 The ratio of \(\left( {{{\rm{E}}_{\rm{2}}}{\rm{ - }}{{\rm{E}}_{\rm{1}}}} \right)\) to \(\left( {{{\rm{E}}_{\rm{4}}}{\rm{ - }}{{\rm{E}}_{\rm{3}}}} \right)\) for \({\rm{H}}{{\rm{e}}^{\rm{ + }}}\) ion is approximately equal to (where \({{\rm{E}}_{\rm{n}}}\) is the energy of \({{\rm{n}}^{{\rm{th}}}}\) orbit)
307162 The ratio of \(\left( {{{\rm{E}}_{\rm{2}}}{\rm{ - }}{{\rm{E}}_{\rm{1}}}} \right)\) to \(\left( {{{\rm{E}}_{\rm{4}}}{\rm{ - }}{{\rm{E}}_{\rm{3}}}} \right)\) for \({\rm{H}}{{\rm{e}}^{\rm{ + }}}\) ion is approximately equal to (where \({{\rm{E}}_{\rm{n}}}\) is the energy of \({{\rm{n}}^{{\rm{th}}}}\) orbit)
307162 The ratio of \(\left( {{{\rm{E}}_{\rm{2}}}{\rm{ - }}{{\rm{E}}_{\rm{1}}}} \right)\) to \(\left( {{{\rm{E}}_{\rm{4}}}{\rm{ - }}{{\rm{E}}_{\rm{3}}}} \right)\) for \({\rm{H}}{{\rm{e}}^{\rm{ + }}}\) ion is approximately equal to (where \({{\rm{E}}_{\rm{n}}}\) is the energy of \({{\rm{n}}^{{\rm{th}}}}\) orbit)
307162 The ratio of \(\left( {{{\rm{E}}_{\rm{2}}}{\rm{ - }}{{\rm{E}}_{\rm{1}}}} \right)\) to \(\left( {{{\rm{E}}_{\rm{4}}}{\rm{ - }}{{\rm{E}}_{\rm{3}}}} \right)\) for \({\rm{H}}{{\rm{e}}^{\rm{ + }}}\) ion is approximately equal to (where \({{\rm{E}}_{\rm{n}}}\) is the energy of \({{\rm{n}}^{{\rm{th}}}}\) orbit)
307162 The ratio of \(\left( {{{\rm{E}}_{\rm{2}}}{\rm{ - }}{{\rm{E}}_{\rm{1}}}} \right)\) to \(\left( {{{\rm{E}}_{\rm{4}}}{\rm{ - }}{{\rm{E}}_{\rm{3}}}} \right)\) for \({\rm{H}}{{\rm{e}}^{\rm{ + }}}\) ion is approximately equal to (where \({{\rm{E}}_{\rm{n}}}\) is the energy of \({{\rm{n}}^{{\rm{th}}}}\) orbit)