Standard electrode potential of three metals X, Y and Z are -1.2 V, +0.5 V and -3.0 V respectively. The reducing power of these metals will be

1.  Y > X > Z

2.  Z > X > Y

3.  X > Y > Z

4.  Y > Z > X

Subtopic:  Electrode & Electrode Potential |
 73%
From NCERT
AIPMT - 2011
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The respective oxidation states of P in H4P2O5, H4P2O6, and H4P2O7 are: 

1. +3, +5, and +4 2. +5, +3, and +4
3. +5, +4, and +3 4. +3, +4, and +5
Subtopic:  Group 15 - Preparation, Properties & Uses |
 86%
From NCERT
AIPMT - 2010

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On the basis of the following EO values, the strongest oxidizing agent is 
 FeCN64-FeCN63-+e-; Eo=-0.35 V
Fe2+Fe3++e-; Eo=-0.77 V
 

1.  FeCN64+

2.  Fe2+

3.  Fe3+

4.  FeCN63-

Subtopic:  Oxidizing & Reducing Agents |
 51%
From NCERT
AIPMT - 2008

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The number of moles of KMnO4 that will be needed to react with one mole of sulphite ion in acidic solution is :

1. 35

2. 45

3. 25

4. 1

Subtopic:  Balancing of Equations |
 58%
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AIPMT - 2007

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The oxidation number of Cl in CaOCl2
is
1. Zero

2. –1

3. +1

4. –1 as well as +1

Subtopic:  Introduction to Redox and Oxidation Number |
 56%
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In the conversion, H2SO4  H2S2O8which process occurs?
1. Oxidation
2. Reduction
3. Oxidation as well as reduction
4. Neither oxidation nor reduction

Subtopic:  Redox Titration & Type of Redox |
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Which acts as reducing agent only?

1. SO2

2. H2SO4

3. H2S

4. HNO2

Subtopic:  Oxidizing & Reducing Agents |
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In the reaction, 2 Cu+  Cu + Cu2+, the equivalent weight of Cu+ is (M is the mol. wt. of Cu+)

1. M

2.M2

3. M4

4. 2M

Subtopic:  Equivalent Weight |

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The oxidation number of S in Na2S4O6 is
1. 2.5

2. +2 and +3

3. Zero and +5

4. +1 and +4

Subtopic:  Introduction to Redox and Oxidation Number |
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For the reaction,\(\mathrm{MnO}_4^{2-} \rightarrow \mathrm{MnO}_4^{-}+\mathrm{MnO}_2\)  The number of moles of \(\mathrm{MnO}_4^{-} \text {and } \mathrm{MnO}_2\) respectively yielded upon the disproportionation of one mole of \(\mathrm{MnO}_4^{2-}\) are:

1. 23 and 13

2. 13 and 23

3. 12 and 12

4. 2 and 1

Subtopic:  Oxidizing & Reducing Agents | Redox Titration & Type of Redox |
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