‘Demineralised’ water can be obtained by :

1. Passing water successively through an anion exchange (in the K+ form) and cation exchange (in the Mn- form) resin
2. Passing water successively through a cation exchange (in the H+ form) and an anion exchange (in the OH- form) resin
3. Passing water successively through an anion exchange (in the O+ form) and cation exchange (in the OH- form) resin
4. Passing water successively through a cation exchange (in the OH- form) and an anion exchange (in the H+ form) resin

Subtopic:  Water |
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Demineralized or distilled water is not useful for drinking purposes because -

1. Demineralised water contains all insoluble minerals. 

2. Demineralised water is free of all soluble minerals. 

3. Demineralised water contains soluble minerals. 

4. Demineralised water contains soluble anion only.

Subtopic:  Water |
 73%
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Water is important in the biosphere and biological systems because :

1. It constitutes around 65% of the human body and 95% of plants
2. It acts as a carrier of various nutrients required by plants and animals for various metabolic reactions.
3. The high heat of vaporization and heat of capacity of water helps in moderating the climate and body temperature of all living beings
4. All of the above.

Subtopic:  Water |
 91%
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The properties of water which make it useful as a solvent is/are -

1. A high value of dielectric constant  

2. A high value of dipole moment

3. A high value of lattice energy

4. Both '1' and '2'

Subtopic:  Water |
 78%
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D2O cannot be used for drinking purposes, because - 

1.  it increases the rate of catabolic reactions 

2. it slows the rate of anabolic and catabolic reactions

3. it slows the rate of anabolic reactions.

4. it increases the rate of a reaction.

Subtopic:  Water |
 72%
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Saline hydrides can remove traces of water from organic compounds because :

1. They react with water to form a metal hydroxide along with the liberation of oxygen gas.
2. They react with water to form a metal hydroxide along with the liberation of hydrogen gas.
3. They react with water to form a metal carbonate along with the liberation of oxygen gas.
4. They react with water to form a metal carbonate along with the liberation of hydrogen gas.

Subtopic:  Type of Hydride |
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H2O2 behave as a bleaching agent because :

1. It acts as a strong oxidizing agent both in acidic and basic media.
2. It acts as a strong reducing agent both in acidic and basic media.
3. It acts as a strong oxidizing agent only in neutral media.
4. It acts as a strong reducing agent only in neutral media.

Subtopic:  H2O2 (Hydrogen Peroxide) |
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The catalyst used to increase the production of H, by ‘coal gasification' process is -

1. Copper 

2. FeCr2O4 (iron chromate) 

3. Pd/C 

4. None of the above.

Subtopic:  Hydrogen- Types & Isotopes |
 68%
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Hydrogen is placed separately in the periodic table because : 

1. It resembles alkali metals.

2. It shows the same reactions as halogens.

3. Both (1) and (2)

4. None of the above.

Subtopic:  Hydrogen- Types & Isotopes |
 93%
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NH3 is an example of :

1. Electron rich hydride

2. Electron-precise hydride

3. Electron deficient hydride

4. None of the above

Subtopic:  Type of Hydride |
 77%
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