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From the equation: C + 2H2SO4 -> CO2 + 2H2O + 2SO2 Calculate: (i) the mass of carbon oxidized by 49 g of sulphuric acid (C = 12, relative molecular mass of sulphuric acid = 98) the volume of sulphur

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Questions

From the equation:

\[\ce{C + 2H2SO4 -> CO2 + 2H2O + 2SO2}\]

Calculate:

  1. the mass of carbon oxidized by 49 g of sulphuric acid (C = 12, relative molecular mass of sulphuric acid = 98)
  2. the volume of sulphur dioxide measured at STP, liberated at the same time.
    (Volume occupied by 1 mole of a gas at STP is 22.4 dm3).

From the equation:

\[\ce{C + 2H2SO4 -> CO2 + 2H2O + 2SO2}\]

Calculate:

  1. the mass of carbon oxidized by 49 g of sulphuric acid.
  2. the volume of sulphur dioxide measured at STP, liberated at the same time.
    (Volume occupied by 1 mole of a gas at STP is 22.4 dm3).
Numerical
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Solution

\[\ce{\underset{12 g}{C2} + \underset{2(98)}{2H2SO4} -> CO2 + 2H2O + 2SO2}\]

i. 196 g of sulphuric acid is required to oxidise 12 g of carbon.

1 g of sulphuric acid is required to oxidise `12/196` g of carbon.

49 g of sulphuric acid is required to oxidise `12/196 xx 49` g of carbon = 3 g of carbon.

ii. 12 g of carbon will liberate (22.4 × 2) litres of SO2.

1 g of carbon will liberate `(22.4 xx 2)/12` litres of SO2.

3 g of carbon will liberate `(22.4 xx 2)/12 xx 3` litres of SO2 = 11.2 litres of SO2.

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Chapter 5: Mole concept and Stoichiometry - MISCELLANEOUS EXERCISE [Page 96]

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S.P. Singh Concise Chemistry [English] Class 10 ICSE
Chapter 5 Mole concept and Stoichiometry
MISCELLANEOUS EXERCISE | Q 21. (a) (i) | Page 96
Frank Chemistry Part 2 [English] Class 10 ICSE
Chapter 5 Mole Concept and Stoichiometry
Questions from ICSE Examinations | Q 2008. 3. (b) | Page 117
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