Which of the following does not have a metal-carbon bond?

1. C2H5MgBr

2. K[Pt(C2H4)Cl3]

3. Ni(CO)4

4. Al(OC2H5)3

Subtopic:  Organometallic Complexes & their Uses |
 69%
Level 2: 60%+
AIPMT - 2004
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Anticancer agent among the following is:

1.   2.  
3.   4.  

Subtopic:  Organometallic Complexes & their Uses |
 79%
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AIPMT - 2004
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In an octahedral structure, the pair of d orbitals involved in d2sp3 hybridization is:

1. dxz,dx2y2

2. dz2,dxz

3. dxy,dyz

4. dx2y2,dz2

Subtopic:  VBT, CFT & their Limitations |
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Level 1: 80%+
AIPMT - 2004
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The strong field nature of CN⁻ as a ligand can be attributed to:

1. It is a pseudohalide.

2. It can accept electrons from metal species.

3. It forms high-spin complexes with metal species.

4. It possesses a negative charge.

Subtopic:  Ligands |
 51%
Level 3: 35%-60%
AIPMT - 2004
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Considering H2O as a weak field ligand, the number of unpaired electrons in \([Mn(H_{2}O)_{6}]^{2+}\) will be:
(At. no. of Mn = 25)

1. Five 2. Two
3. Four 4. Three
Subtopic:  VBT, CFT & their Limitations |
 89%
Level 1: 80%+
AIPMT - 2004
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Among [Ni(CO)4], [Ni(CN)4]2−, [ NiCl4]2− species, the hybridization states of the Ni atom are respectively:
(At. No. of Ni = 28)

1. sp3, dsp2, sp3 2. sp3, sp3, dsp2
3. dsp2, sp3, sp3 4. sp3, dsp2 , dsp2
Subtopic:  VBT, CFT & their Limitations |
 79%
Level 2: 60%+
AIPMT - 2004
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Coordination compound that would exhibit optical isomerism is:

1. Diamminedichloroplatinum(II)
2. Trans-dicyanobis(ethylenediamine)chromium(III) chloride
3. Tris-(ethylenediamine)cobalt(III) chloride
4. Pentaamminenitrocobalt(III) iodide
Subtopic:  Isomerism in Coordination Compounds |
 69%
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AIPMT - 2004
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The atomic numbers of Cr and Fe are respectively 24 and 26. Among the following, the one that is paramagnetic with the spin of the electron is:

1. CrCO6

2. FeCO5

3. [Fe(CN)6]4-

4. [Cr(NH3)6]3+

Subtopic:  VBT, CFT & their Limitations |
 76%
Level 2: 60%+
AIPMT - 2002
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The hypothetical complex
chlorodiaquatriamminecobalt(III) chloride can be
represented as:

1. CoClNH33H2O2Cl2

2. CoNH33H2OCl3

3. CoNH23H2O2Cl

4. CoNH33H2O3Cl3

Subtopic:  Introduction, Classification and Nomenclature |
 80%
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AIPMT - 2002
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CuSO4 when reacts with KCN forms CuCN, which is insoluble in water.
It is soluble in excess of KCN, due to the formation of the following complex:

1. K2[Cu(CN)4]

2. K3[Cu(CN)4]

3. CuCN2

4. Cu[KCu(CN)4]

Subtopic:  Introduction, Classification and Nomenclature |
 74%
Level 2: 60%+
AIPMT - 2002
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