Incorrect match among the following is:
| 1. | Tetraamminediaquacobalt(III) chloride |
[Co(H2O)2(NH3)4]Cl3 |
| 2. | Ammine bromidochloridonitrito-N-platinate(II) |
[Pt(NH3)BrCl(NO2)]- |
| 3. | Dichloridobis (ethane−1,2−diamine) platinum(IV)nitrate |
[PtCl2(en)2](NO3)2 |
| 4. | Iron(III) hexacyanoferrate(II) | Fe2[Fe(CN)6]3 |
| Column I | Column II | ||
| a. | K3[Fe(C2O4)3] | i. | Diamminechlorido(methylamine) platinum(II) chloride |
| b. | [Co(NH3)5Cl]Cl2 | ii. | Potassium trioxalatoferrate(III) |
| c. | [Pt(NH3)2Cl(NH2CH3)]Cl | iii. | Potassium tetrachlorido palladate(II) |
| d. | K2[PdCl4] | iv. | Pentaamminechloridocobalt(III) chloride |
The type(s) of isomerism exhibited by the K[Cr(H2O)2(C2O4)2] complexes is:
1. Geometrical isomerism
2. Optical isomerism
3. Linkage isomerism
4. Both 1 and 2
Which type(s) of isomerism does the coordination complex [Pt(NH₃)(H₂O)Cl₂] exhibit?
| 1. | Geometrical isomerism | 2. | Optical isomerism |
| 3. | Linkage isomerism | 4. | Both 1 and 2 |
| Statement I: | [Ni(CN)4]2− structure is tetrahedral and diamagnetic in nature. |
| Statement II: | [NiCl4]2− structure is tetrahedral and diamagnetic in nature. |
Given below are two statements:
| Assertion (A): | [NiCl4]2− is paramagnetic while [Ni(CO)4] is diamagnetic though both are tetrahedral. |
| Reason (R): | CO is a strong field ligand, thus pairing of electrons takes place in [Ni(CO)4]. |
| 1. | Both (A) and (R) are True and (R) is the correct explanation of (A). |
| 2. | Both (A) and (R) are True but (R) is not the correct explanation of (A). |
| 3. | (A) is True but (R) is False. |
| 4. | (A) is False but (R) is True. |
| I: | [Fe(H2O)6]3+ is strongly paramagnetic whereas [Fe(CN)6]3− is weakly paramagnetic. |
| II: | [Fe(H2O)6]3+ has 4 unpaired electrons while [Fe(CN)6]3− has 5 unpaired electrons. |
1. Both I and II are true.
2. I is true and II is false.
3. Both I and II are false.
4. I is false but II is true.