| 1. | \(\text {He}_{2}^{+} \) | 2. | \(\text {He}_{2}^{-}\) |
| 3. | \(\text {Be}_{2}\) | 4. | \(\text O_{2}^{2 -}\) |
Match List-I (Molecules) with List-II (Bond order),
and mark the appropriate choice
| List-I (Molecule) | List-II (Bond order) |
|
(a) Ne2 (b) N2 (c) F2 (d) O2 |
(i) 1 (ii) 2 (iii) 0 (iv) 3 |
Choose the correct match from the options given below :
1. (a) (iii), (b) (iv), (c) (i), (d) (ii)
2. (a) (i), (b) (ii), (c) (iii), (d) (iv)
3. (a) (ii), (b) (i), (c) (iv), (d) (iii)
4. (a) (iv), (b) (iii), (c) (ii), (d) (i)
Of the species, NO , NO+, NO2+ and NO– , the one with minimum bond strength is:
1. NO2+
2. NO+
3. NO
4. NO–
| 1. | 2. | O2 | |
| 3. | 4. |
Among the following, which molecule is expected to be stabilized by anion formation?
C2, O2, NO, F2
1. NO
2. O2
3. C2
4. F2
During the change of O2 to , the incoming electron that goes to the orbital is:
| 1. | \(\sigma _{2pz}^{*}\) | 2. | π2py |
| 3. | \(\sigma _{2pz}\) | 4. | π*2px |
According to molecular orbital theory, which of the following molecules is not expected to be stable?
| 1. | \(\mathrm{He}_2^{2+}\) | 2. | \(\mathrm{He}_2^{+}\) |
| 3. | \(\mathrm{H}_2^{-}\) | 4. | \(\mathrm{H}_2^{2-}\) |
Arrange the species \(\mathrm{Li}_2\) , \(\mathrm{Li}_2^{-}\) , and \(\mathrm{Li}_2^{+}\) in order of increasing stability:
1.
2. \(\mathrm{Li}_2^{-}\) = \(\mathrm{Li}_2^{+}\) = \(\mathrm{Li}_2\)
3.
4.
The molecules/ions that do not contain unpaired electrons among the following is:
1.
2. B2
3.
4. O2