10 volumes of H2O2 has a strength of approximately:

(1) 3%

(2) 30%

(3) 10%

(4) 5%

Subtopic:  H2O2 (Hydrogen Peroxide) |
 69%
Level 2: 60%+
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From the following statements regarding H2O2, choose the incorrect statement:

(1) It can act only as an oxidising agent

(2) It decomposes on exposure to light

(3) It has to be stored in plastic or wax lined glass bottles in dark

(4) It has to be kept away from dust

Subtopic:  H2O2 (Hydrogen Peroxide) |
 82%
Level 1: 80%+
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H2O2 turns an acidified solution of ........ to orange red.

(a) BaO2

(b) PbO2

(c) Na2O2

(d) TiO2

Subtopic:  H2O2 (Hydrogen Peroxide) |
Level 3: 35%-60%
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Which is not true in case of H2O2?

(1) It is more stable in basic solution

(2) It acts as strong oxidising agent in acid and basic solutions

(3) It is decomposed by MnO2

(4) It behaves as reducing agent towards KMnO4

Subtopic:  H2O2 (Hydrogen Peroxide) |
 59%
Level 3: 35%-60%
Hints

Decmposition of H2O2 is retarded by:

(a) acetanilide

(b) alcohol

(c) H3PO4

(d) all of these

Subtopic:  H2O2 (Hydrogen Peroxide) |
 86%
Level 1: 80%+
Hints

Point out the incorrect statement.

(1) Hardness of water depends upon its soap consuming power

(2) Temporary hardness is due to bicarbonates of calcium and magnesium

(3) Permanent hardness is due to soluble sulphates, chlorides and nitrates of Ca and Mg

(4) Permanent hardness can be removed by boiling water

Subtopic:  H2O2 (Hydrogen Peroxide) |
 83%
Level 1: 80%+
Hints

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Metal which does not react with cold water but evolves H2 with steam is:

(a) Na

(b) K

(c) Pt

(d) Fe

Subtopic:  Hydrogen- Types & Isotopes | Water |
 56%
Level 3: 35%-60%
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Permutit is chemically known as:

1. Hydrated sodium aluminium silicate

2. Sodium hexa meta-phosphate

3. Sodium silicate

4. Sodium meta-aluminate

Subtopic:  Hard & Soft Water |
 69%
Level 2: 60%+
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Hydrogen is not obtained when zinc reacts with:

(a) cold water

(b) dil. H2SO4

(c) dil HCl

(d) hot 20% NaOH

Subtopic:  Hydrogen- Types & Isotopes | Preparation & Properties |
 72%
Level 2: 60%+
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Hydrogen peroxide is now generally prepared on industrial scale by the:

(1) Action of H2SO4 on barium peroxide

(2) Action of H2SO4 on sodium paraoxide

(3) Electrolysis of 50% H2SO4

(4) Burning hydrogen in excess of oxygen

Subtopic:  H2O2 (Hydrogen Peroxide) |
Level 3: 35%-60%
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