Bond energies in $NO,\,N{O^ + }$ and $N{O^ - }$ are such as
$N{O^ - } > NO > N{O^ + }$
$NO > N{O^ - } > N{O^ + }$
$N{O^ + } > NO > N{O^ - }$
$N{O^ + } > N{O^ - } > NO$
Among the following species, identify the pair having same bond order $CN^-, O_2^-, NO^+, CN^+$
The linear combination of atomic orbitals to form molecular orbitals takes place only when the combining atomic orbitals
$A$. have the same energy
$B$. have the minimum overlap
$C$. have same symmetry about the molecular axis
$D$. have different symmetry about the molecular axis
Choose the most appropriate from the options given below:
Which of the configuration is correct :-
Explain in Short : $\mathrm{MO}$ occupancy and molecular properties for ${{\rm{B}}_2}{\rm{,}}{{\rm{C}}_2}{\rm{, }}{{\rm{N}}_2},{{\rm{O}}_2}{\rm{,}}{{\rm{F}}_2},{\rm{N}}{{\rm{e}}_2}$.
The incorrect statement is :-