The molality of pure water is: 

1. 1 m

2. 18 m

3. 55.5 m

4. None of the above

Subtopic:  Concentration Based Problem |
 80%
Level 1: 80%+
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An aqueous solution of NaOH has a molarity of 2 M and a density of 1.28 g cm⁻³.
Calculate the molality of the solution:
[Given: Molecular mass of NaOH = 40 g mol-1]

1. 1.20 m 2. 1.56 m
3. 1.67 m 4. 1.32 m
Subtopic:  Concentration Based Problem |
 74%
Level 2: 60%+
NEET - 2019
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The mass of carbon present in 0.5 mole of K4[Fe(CN)6] is:

1. 1.8 g 2. 18 g
3. 3.6 g 4. 36 g
Subtopic:  Moles, Atoms & Electrons |
 73%
Level 2: 60%+
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At 100 ºC and 1 atm, if the density of liquid water is 1.0 g cm–3 and that of water vapor is 0.0006 g cm-3, then the volume occupied by water molecules in 1 litre of steam at that temperature will be:

1. 6 cm 2. 60 cm3
3. 0.6 cm3  4. 0.06 cm3
Subtopic:  Moles, Atoms & Electrons |
 60%
Level 2: 60%+
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Given below two statements:
Assertion (A): In Haber's process, starting with 5 moles of N2 and 2.5 mol of H2, on complete reaction only 1.66 moles of  NH3 were produced.
Reason (R): H2 acts as a limiting reagent in this reaction. 

 

1. Both (A) and (R) are True and (R) is the correct explanation of (A).
2. Both (A) and (R) are True but (R) is not the correct explanation of (A).
3. (A) is True but (R) is False.
4. Both (A) and (R) are False.
Subtopic:  Limiting Reagent |
 82%
Level 1: 80%+
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Assertion (A): 1 g O2 and 1 g O3  have an equal number of oxygen atoms.
Reason (R): O2  and  O3  have different molar masses.
 
1. Both (A) and (R) are True and (R) is the correct explanation of (A).
2. Both (A) and (R) are True but (R) is not the correct explanation of (A).
3. (A) is True but (R) is False.
4. (A) is False but (R) is True.
Subtopic:  Moles, Atoms & Electrons |
Level 3: 35%-60%
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The iron content of haemoglobin is 0.33% by mass. Given that the molar mass of haemoglobin is 67,200 g mol⁻¹, determine the number of iron atoms present in each haemoglobin molecule.
(Atomic mass of Fe = 56)

1. 2
2. 3
3. 4
4. 5
Subtopic:  Moles, Atoms & Electrons |
 74%
Level 2: 60%+
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The average molar mass of the mixture of CH4 and C2H4 present in the mole ratio of a:b is
20 g mol-1. When the mole ratio is reversed, the molar mass of the mixture will be:

1. 24 gram 2. 42 gram
3. 20 gram 4. 15 gram
Subtopic:  Moles, Atoms & Electrons |
Level 3: 35%-60%
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The vapour density of a mixture containing \(NO_{2}\) and \(N_{2} O_{4}\)  is 38.3. The mole of \(NO_{2}\) in a 100 g mixture is:

[Vapour density = (Molar mass / 2)]

1. 0.437

2. 0.347

3. 0.557

4. 0.663

Subtopic:  Introduction |
Level 3: 35%-60%
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25.4 g of I2 and 14.2 g  of Cl2 are made to react completely to yield a mixture of ICI and ICI3. The mole of ICI and ICI3 formed, is respectively -

1. 0.5, 0.2

2. 0.1, 0.1

3. 0.1, 0.3

4. 0.3, 0.4

Subtopic:  Limiting Reagent | Equation Based Problem |
 74%
Level 2: 60%+
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