| Statement I: | A hypothetical diatomic molecule with bond order zero is quite stable. | 
| Statement II: | As bond order increases, the bond length increases. | 
| 1. | Statement I is True but Statement II is False. | 
| 2. | Statement I is False but Statement II is True. | 
| 3. | Both Statement I and Statement II are True. | 
| 4. | Both Statement I and Statement II are False. | 
| List-I | List-II | ||
| A. | \(XeO_3\) | I. | \(sp^3d;\) linear | 
| B. | \(XeO_2\) | II. | \(sp^3;\) pyramidal | 
| C. | \(XeOF_4\) | III. | \(sp^3d^3;\) distorted octahedral | 
| D. | \(XeF_6\) | IV. | \(sp^3d^2 ;\) square pyramidal | 
| A. | \(\mathrm{H}_2 \mathrm{O}>\mathrm{NH}_3>\mathrm{CHCl}_3 -\text { }\)dipole moment | 
| B. | \(\mathrm{XeF}_4>\mathrm{XeO}_3>\mathrm{XeF}_2-\text { }\)number of lone pairs on central atom | 
| C. | \(\mathrm{O}-\mathrm{H}>\mathrm{C}-\mathrm{H}>\mathrm{N}-\mathrm{O}-\text { }\) bond length | 
| D. | \(\mathrm{N}_2>\mathrm{O}_2>\mathrm{H}_2 \text { } -\) bond enthalpy | 
| 1. |  | 2. |  | 
| 3. | HF | 4. |  | 
| List I (Compound) | List II (Shape/geometry) | ||
| A. | NH3 | I. | Trigonal Pyramidal | 
| B. | BrF5 | II. | Square planar | 
| C. | XeF4 | III. | Octahedral | 
| D. | SF6 | IV. | Square Pyramidal | 
| 1. | BF3 has non-zero dipole moment. | 
| 2. | The dipole moment of NF3 is greater than that of NH3. | 
| 3. | Three canonical forms can be drawn for \(\text{CO}_3^{2-}\) ion. | 
| 4. | Three resonance structures can be drawn for ozone. | 
| 1. | B > A > D > C | 2. | B > A > C > D | 
| 3. | D > C > B > A | 4. | A > C > B > D | 
| 1. | \(\mathrm{SF}_4, \mathrm{BrF}_5\) | 2. | \(\mathrm{SF}_4, \mathrm{ClF}_3\) | 
| 3. | \(\mathrm{ClF}_3, \mathrm{XeF}_4\) | 4. | \(\mathrm{XeF}_4, \mathrm{BrF}_5\) |