What is the effect of the following processes on the bond order in N2 and O2?


According to molecular orbital theory, electronic configurations and bond order of N2, N2+, O2 and O2+ species are as follows
N2 (14e-)=σ1s2, σ*1s2, σ2s2, σ*2s2, (π2px2π2py2), σ2pz2
Bond order=12[Nb-Na]=12(10-4)=3
N2 (14e-)=σ1s2, σ*1s2, σ2s2, σ*2s2, (π2px2π2py2), σ2pz1
Bond order=12[Nb-Na]=12(9-4)=2.5
O2 (16e-)=σ1s2, σ*1s2, σ2s2, σ*2s2, σ2pz2 (π2px2π2py2), (π*2px1π*2py1)
Bond order=12[Nb-Na]=12(10-6)=2
O2+ (15e-)=σ1s2, σ*1s2, σ2s2, σ*2s2, σ2pz2 (π2px2π2py2), (π*2px1π*2py)
Bond order=12[Nb-Na]=12(10-5)=2.5
(a) N2B.O.=3N2+B.O.=2.5+e-
Thus, bond order decreases.
(b) O2B.O.=2O2+B.O.=2.5+e-