2.335 g of compound X (empirical formal CoH12N4Cl3) upon treatment with excess AgNO3 solution produces 1.435 g of a white precipitate. The primary and secondary valences of cobalt in compound X, respectively are:

[Given Atomic mass: Co = 59, Cl = 35.5, Ag = 108]

1. 3, 6 2. 3, 4
3. 2, 4 4. 4, 3

Subtopic:  Introduction, Classification and Nomenclature |
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The complex that can exhibit linkage isomerism is:

1. [Co(NH3)5H2O]Cl3 2. [Co(NH3)5(NO2)]Cl2
3. [Co(NH3)5NO3](NO3)2 4. [CO(NH3)5Cl]SO4
Subtopic:  Isomerism in Coordination Compounds |
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Spin-only magnetic moments of [Fe(NH3)6]3+ and [FeF6]3-  in BM are, respectively :

1. 1.73 and 1.73 2. 5.92 and 1.73
3. 1.73 and 5.92 4. 5.92 and 5.92
Subtopic:  VBT, CFT & their Limitations |
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For a tetrahedral complex [MCl4]2-, the spin-only magnetic moment is 3.83 B.M. The element M is:

1. Co

2. Cu

3. Mn

4. Fe

Subtopic:  VBT, CFT & their Limitations |
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The geometry and magnetic properties of [NiCl4]2-, respectively, are : 

1. Tetrahedral, Paramagnetic

2. Tetrahedral, Diamagnetic

3. Square planar, Paramagnetic

4. Square planar, Diamagnetic  

Subtopic:  VBT, CFT & their Limitations |
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The crystal field stabilization energy (CFSE) for [CoCl6]4- is 18000 cm-1.
The CFSE for [CoCl4]2-  will be:

1. 6000 cm-1

2. 16000 cm-1

3. 18000 cm-1

4. 8000 cm-1

Subtopic:  VBT, CFT & their Limitations |
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The IUPAC name of [\(\mathrm {C r \left(en\right)_{3}}\)]\(\mathrm{C l}_{3}\) is:

1. Triethylenediaminechromium (III) chloride
2. Tris(ethylenediammine)chromium (II) chloride
3. Tris(ethylenediammine)chromium (III) chloride
4. Tris(ethylenediamine)chromium (II) chloride
Subtopic:  Introduction, Classification and Nomenclature |
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The electronic configuration that represents the maximum magnetic moment is:

1. d3

2. d2

3. d8

4. d6(high spin)

Subtopic:  VBT, CFT & their Limitations |
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Among the following, the compound that has the maximum coordination number is/are:

1. [Co(NH3)6]3+
2. [Cr(C2O4)3]3-
3. [CoCl3(H2O)3]
4. All of the above have the same coordination number

Subtopic:  Ligands |
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Two complexes, PtCl4·2NH3 and PtCl4·2KCl, do not give a precipitate of AgCl when treated with AgNO3. They give zero and three moles of ions, respectively, in solutions for one mole of the complex.  The structural formulae of both complexes are:

1. PtCl2NH32Cl2 and K2PtCl6 

2. PtCl4NH32 and K2PtCl2NH32 

3. PtCl4NH32 and K2PtCl6 

4. PtCl4·2NH3 and PtCl4·2KCl 

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