To produce 20 moles of ammonia via Haber's process, how many moles of hydrogen molecules are required?

1. 40 mol 2. 10 mol
3. 20 mol 4. 30 mol

Subtopic:  Limiting Reagent | Equation Based Problem |
 80%
From NCERT
NEET - 2019
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 If 2.74 g of the metal oxide contains 1.53 g of metal, then the empirical formula of vanadium oxide is:

(Atomic Mass of V = 52)

1. V2O3

2. VO

3. V2O5

4. V2O7

Subtopic:  Empirical & Molecular Formula |
 59%
From NCERT
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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 |
 72%
From NCERT
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The vapour density of a mixture containing NO2 and N2O4  is 38.3. The mole of NO2 in a 100 g mixture is -

[Vapour density = (Molar mass / 2)]

1. 0.437

2. 0.347

3. 0.557

4. 0.663

Subtopic:  Equation Based Problem |
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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 |
From NCERT
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The haemoglobin from the red blood corpuscles contains approximately 0.33%  iron
by mass. The molar mass of haemoglobin is 67,200. The number of iron atoms in each molecule of haemoglobin is :
(atomic mass of iron=56):

1. 2 2. 3
3. 4 4. 5
Subtopic:  Moles, Atoms & Electrons |
 73%
From NCERT
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Concentrated aqueous sulphuric acid is 98% H2SO4 by mass and has a density of 1.80 g mL-1. The volume of acid required to make one litre of 0.1 M H2SO4 solution is:

1. 11.10 mL

2. 16.65 mL

3. 22.20 mL

4. 5.55 mL

Subtopic:  Concentration Based Problem |
 63%
From NCERT
AIPMT - 2007
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The moles of lead (II) chloride that will be formed from a reaction
between 6.5 g of PbO and 3.2 g of HCl are:

1. 0.044
2. 0.333
3. 0.011
4. 0.029

Subtopic:  Limiting Reagent |
 58%
From NCERT
AIPMT - 2008
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An organic compound contains carbon, hydrogen, and oxygen. Its elemental analysis gave C, 38.71%, and H, 9.67%. The empirical formula of the compound would be:

1. CH3O 2. CH2O
3. CHO 4. CH4O
Subtopic:  Empirical & Molecular Formula |
 78%
AIPMT - 2008
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The volume of oxygen gas (O2) needed to completely burn 1 L of propane gas (C3H8)  (both O& propane measured at 0°C and 1 atm) will be:
1. 7 L
2. 6 L
3. 5 L
4. 10 L

Subtopic:  Equation Based Problem |
 77%
From NCERT
AIPMT - 2008
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