1 both paramangetic character and bond order increase
2 bond order decreases
3 paramagnetic character increases
4 paramangetic character decreases and the bond order increases
Explanation:
According to molecular orbital theory, Number of unpaired electrons in \({{\rm{O}}_{\rm{2}}}\) molecule is two, whereas in \({\rm{O}}_{\rm{2}}^{\rm{ + }}\) molecule is one, so paramagnetic character decreases in the conversion of \({{\rm{O}}_{\rm{2}}}\,\,{\rm{to}}\,\,{\rm{O}}_{\rm{2}}^{\rm{ + }}\).
\({\rm{Bond}}\,\,{\rm{order = }}\left( {\frac{{{{\rm{N}}_{\rm{b}}}{\rm{ - }}{{\rm{N}}_{\rm{a}}}}}{{\rm{2}}}} \right)\)
\(\therefore \,\,{\rm{Bond}}\,\,{\rm{order}}\,\,{\rm{in}}\) \({{\rm{O}}_{\rm{2}}}{\rm{ = }}\left( {\frac{{{\rm{8 - 4}}}}{{\rm{2}}}} \right){\rm{ = 2}}\)
Bond order in \({\rm{O}}_{\rm{2}}^{\rm{ + }}{\rm{ = }}\left( {\frac{{{\rm{8 - 3}}}}{{\rm{2}}}} \right){\rm{ = 2}}{\rm{.5}}\)
\(\therefore \) Bond order increases in the conversion of \({{\rm{O}}_{\rm{2}}}\,\,{\rm{to}}\,\,{\rm{O}}_{\rm{2}}^{\rm{ + }}\).