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Zorluk: KolayChemical Equations and Stoichiometric Calculations (Mass-Mass, Mass-Volume, Mole Relations)
Consider the thermal decomposition of potassium trioxochlorate(V) represented by the balanced equation:
2KClO3(s)2KCl(s)+3O2(g)2KClO_3(s) \rightarrow 2KCl(s) + 3O_2(g)
What mass of KClO3KClO_3 is required to produce 6.72 dm36.72\text{ dm}^3 of oxygen gas measured at STP?
[K=39.0, Cl=35.5, O=16.0; Molar volume of gas at STP =22.4 dm3 mol1][K = 39.0,\text{ } Cl = 35.5,\text{ } O = 16.0;\text{ Molar volume of gas at STP } = 22.4\text{ dm}^3\text{ mol}^{-1}]
  1. 24.5 g24.5\text{ g}Cevap
  2. B
    12.25 g12.25\text{ g}
  3. C
    36.75 g36.75\text{ g}
  4. D
    22.87 g22.87\text{ g}

Cevap

24.5 g24.5\text{ g} of KClO3KClO_3 is required.
According to the balanced chemical equation, 2 moles2\text{ moles} of KClO3KClO_3 (245.0 g245.0\text{ g}) produce 3 moles3\text{ moles} of O2O_2 (67.2 dm367.2\text{ dm}^3 at STP). By direct proportion, 6.72 dm36.72\text{ dm}^3 of O2O_2 requires 6.7267.2×245.0=24.5 g\frac{6.72}{67.2} \times 245.0 = 24.5\text{ g} of KClO3KClO_3.

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1
Calculate the molar mass of KClO3KClO_3 and the total mass of 2 moles of KClO3KClO_3.
Molar mass of KClO3=39.0+35.5+3(16.0)=122.5 g mol1KClO_3 = 39.0 + 35.5 + 3(16.0) = 122.5\text{ g mol}^{-1}. Mass of 2 moles=2×122.5=245.0 g2\text{ moles} = 2 \times 122.5 = 245.0\text{ g}.
The balanced chemical equation shows 2 moles2\text{ moles} of KClO3KClO_3 undergo decomposition.
2
Calculate the volume of 3 moles of O2O_2 at STP.
Volume of 3 moles of O2=3×22.4 dm3=67.2 dm33\text{ moles of } O_2 = 3 \times 22.4\text{ dm}^3 = 67.2\text{ dm}^3.
At STP, 1 mole1\text{ mole} of any gas occupies 22.4 dm322.4\text{ dm}^3.
3
Set up a proportion to find the mass of KClO3KClO_3 needed to yield 6.72 dm36.72\text{ dm}^3 of O2O_2.
\text{Mass of } KClO_3 = \frac{6.72\text{ dm}^3}{67.2\text{ dm}^3} \times 245.0\text{ g} = 24.5\text{ g}.
Direct stoichiometric ratio relates mass of reactant to volume of gaseous product.

Anahtar Kavram

Mass-Volume Stoichiometry at STP
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