Ferrocene is :

1. Fe(η5-C5H5)2

2. Fe(η2-C5H5)2

3. Cr(η5-C5H5)5

4. Os(η5-C5H5)2

Subtopic:  Organometallic Complexes & their Uses |
 66%
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The ionization isomer of [Cr(H2O)4Cl(NO2)]Cl is:

1. [Cr(H2O)4(O2N)]Cl2 2. [Cr(H2O)4Cl2](NO2)
3. [Cr(H2O)4Cl(ONO)]Cl 4. [Cr(H2O)4Cl2(NO2)].H2O
Subtopic:  Isomerism in Coordination Compounds |
 76%
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Among [Ni(CO)4],[Ni(CN)4]2-, [NiCl4]2- species, the hybridisation states of the Ni atom are, respectively (At. no. of Ni=28)

1. sp3,dsp2.dsp2

2. sp3,dsp2,sp3

3. sp3,sp3,dsp2

4. dsp2,sp3,sp3

Subtopic:  VBT, CFT & their Limitations |
 70%
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The correct order of magnetic moments (only spin value in BM)among is:

1. [Fe(CN)6]4->[CoCl4]2->[MnCl4]2-

2. [MnCl4]2->[Fe(CN)6]4>[CoCl4]2-

3. [Fe(Cn)6]4>[MnCl4]2->[CoCl4]2-

4. [MnCl4]2->[CoCl4]2->[Fe(CN)6]4-

Subtopic:  VBT, CFT & their Limitations |
 67%
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Among the following complexes(K,P),K3[Fe(CN)6(k),[Co(NH3)6Cl3(L),Na3[Co(oxalate)3](M),[Ni(H2O)6Cl2(N),K2[Pt(CN)4(O), and [Zn(H2O)6(NO3)2(P) the diamagnetic complexes are:

1. K,L,M,N

2. K,M,O,P

3. L,M,O,P

4. L,M,N,O

Subtopic:  VBT, CFT & their Limitations |
 57%
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Which order is correct in spectrochemical series of ligands?

1. Cl-<F-<[C2O4]2-<NO2-<CN-

2. CN-<[C2O4)2-<Cl->NO2-<F-

3. [C2O4)2-<F-<Cl->NO2-<CN-

4. F-<Cl-<NO2-<CN-<[C2O4]2-

Subtopic:  VBT, CFT & their Limitations |
 78%
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The compound that will exhibit maximum ionic conductivity in aqueous solution is: 

1. K4[Fe(CN)6]

2. [Co(NH3)6]Cl3

3. [Cu(NH3)4]Cl2

4. [Ni(CO)4]

Subtopic:  Werner’s Theory |
 66%
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Mixture of X=0.02mole of [Co(NH3)5SO4]Br and 0.02 mole of [Co(NH3)5Br]SO4 was prepared in 2 litre of solution.

1 litre mixture X+excess AgNO3Y

1 Litre mixture X +excess BaCl2Z

No. of moles of Y and Z are :

1. 0.01,0.01

2. 0.02, 0.01

3. 0.01,0.02

4. 0.02,0.02

Subtopic:  Werner’s Theory |
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The IUPAC name of [Pt(NH3)4NO2Cl]SO4 is :

1. Chloronitroplatinum(IV)sulphate

2. Tetraamminechloridonitrito-Nplatinum(IV)sulphate

3. Chloronitrotetraammineplatinum(IV)sulphate

4. Platinum(IV)tetraamminenitrochloro sulphate

Subtopic:  Introduction, Classification and Nomenclature |
 92%
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The probable formula for prussian blue is :

1. Fe3[Fe(CN)6]2

2. Fe2[Fe(CN)6]3

3. Fe4[Fe(CN)6]3

4. Fe3[Fe(CN)6]4

Subtopic:  Introduction, Classification and Nomenclature |
 53%
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