What to do: For each equation and reactant shown, identify the stoichiometric ratio and calculate the mass of the product produced. Make sure that the equations are balanced. Refer to the steps given above. Table 1. Calculating the Mass Product Produced Chemical Equation Stoichiometric Product Produced No. Reactant Ratio O2(g) SO2(g) 1 mol SO 2 1 mol S e.g. S(s) 2.35 moles S 150.42 g SO2 KCN(aq) 2 NO(g) Si(s) 2 NH3(g) 3 H2(g) HCl(aq). O2 (g) 2 Cl2(g) H2SO4(aq) N2(g) KCl(ag) + HCN) 2 NO2 (g) SiCl41) (NH4)2SO4(aq) 2NH3(g) 1.09 g HCl 6.50 moles O2 4.1 moles Cl2 0.00568 g NH3 0.03445 g H2 g HCN g NO2 g SiCl4 g (NH4)2SO4 g NH3 1 2 + 4 Guide Questions: 1. Why is it important that the chemical equation is balanced? 2. How will you convert the amount of product produced from mole to mass?

Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
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What to do: For each equation and reactant shown, identify the stoichiometric ratio and calculate
the mass of the product produced. Make sure that the equations are balanced. Refer
to the steps given above.
Table 1. Calculating the Mass Product Produced
Chemical Equation
No.
Reactant
Stoichiometric
Product
Ratio
Produced
SO2(g)
1 mol SO 2
1 mol S
e.g. S(s)
O2(g)
2.35 moles S
150.42 g SO2
+
KClag)
2 NO2 (g)
SiCl41)
g HCN
-g ΝO
_g SiCl4
g (NH4)2SO4
g NH3
1
1.09 g HCl
KCN(ag)
2 NO(g)
Si(s)
HCl(aq)
O2 (g)
2 Cl2(g)
H2SO4(aq)
N2(g)
+ HCN(g)
2
+
6.50 moles O2
3
4.1 moles Cl2
(NH4)2SO4(aq)
2NH3(g)
0.00568 g NH3
0.03445 g H2
4
2 NH3(g)
3 H2(g)
5
+
Guide Questions:
1. Why is it important that the chemical equation is balanced?
2. How will you convert the amount of product produced from mole to mass?
Transcribed Image Text:What to do: For each equation and reactant shown, identify the stoichiometric ratio and calculate the mass of the product produced. Make sure that the equations are balanced. Refer to the steps given above. Table 1. Calculating the Mass Product Produced Chemical Equation No. Reactant Stoichiometric Product Ratio Produced SO2(g) 1 mol SO 2 1 mol S e.g. S(s) O2(g) 2.35 moles S 150.42 g SO2 + KClag) 2 NO2 (g) SiCl41) g HCN -g ΝO _g SiCl4 g (NH4)2SO4 g NH3 1 1.09 g HCl KCN(ag) 2 NO(g) Si(s) HCl(aq) O2 (g) 2 Cl2(g) H2SO4(aq) N2(g) + HCN(g) 2 + 6.50 moles O2 3 4.1 moles Cl2 (NH4)2SO4(aq) 2NH3(g) 0.00568 g NH3 0.03445 g H2 4 2 NH3(g) 3 H2(g) 5 + Guide Questions: 1. Why is it important that the chemical equation is balanced? 2. How will you convert the amount of product produced from mole to mass?
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