Chemical Bonding
The most electronegative element is:
During change of $${O}_{2}$$ to $${O}_{2}^{-}$$ ion, the electron adds on which one of the following orbitals?
During change of $${O}_{2}$$ to $${O}_{2}^{-}$$ ion, the electron adds on $${\pi}^{*}$$ orbital.
The configuration of $${O}_{2}$$ is
$$KK\sigma {(2s)}^{2}{\sigma}^{*}{(2s)}^{2}\sigma{(2pz)}^{2}\pi {(2px)}^{2}\pi {(2py)}^{2} {\pi}^{*} {(2px)}^{1} {\pi}^{*} {(2py)}^{1}$$
The configuration of $${O}_{2}^{-}$$ is
$$KK\sigma
{(2s)}^{2}{\sigma}^{*}{(2s)}^{2}\sigma{(2pz)}^{2}\pi {(2px)}^{2}\pi
{(2py)}^{2} {\pi}^{*} {(2px)}^{2} {\pi}^{*} {(2py)}^{1}$$
The most electronegative element is:
The number of antibonding electron pairs in $$O^{2-}_{2}$$ molecular ion on the basis of molecular orbital theory is :
Which of the following species are paramagnetic?
Among $$KO_2, AlO_2^-, BaO_2, and NO_2^+$$, unpaired electron is present in:
The total number of bonding and antibonding electrons in $$\displaystyle O{_{2}}^{+}$$ are respectively. (If the answer is 14 and 7, then represent as 0147):
State True or False. $$O_2, O_2^-$$ and $$O_2^{2-}$$ are paramagnetic species.
Which of the following molecules is expected to exhibit diamagnetic behaviour?
The pairs of species of oxygen and their magnetic behaviours are noted below. Which of the following presents the correct description ?
Which of the following is paramagnetic?
When $$O_2$$ is absorbed on a metallic surface, electron transfer occurs from the metal to $$O_2$$. The true statement(s) regarding this adsorption is(are):