QUESTION IMAGE
Question
$n_2 + 3h_2
ightarrow 2nh_3$
what volume of hydrogen is necessary to react with five liters of nitrogen to produce ammonia? (assume constant temperature and pressure.)
- what volume of ammonia is produced in the reaction in problem 1?
$c_3h_8 + 5o_2
ightarrow 3co_2 + 4h_2o$
if 20 liters of oxygen are consumed in the above reaction, how many liters of carbon dioxide are produced?
- $2h_2o
ightarrow 2h_2 + o_2$
if 30 ml of hydrogen are produced in the above reaction, how many milliliters of oxygen are produced?
- $2co + o_2
ightarrow 2co_2$
how many liters of carbon dioxide are produced if 75 liters of carbon monoxide are burned in oxygen? how many liters of oxygen are necessary?
Problem 1
Step1: Use mole volume ratio
From $\ce{N2 + 3H2 -> 2NH3}$, volume ratio $\ce{N2:H2 = 1:3}$.
Step2: Calculate $\ce{H2}$ volume
$V_{\ce{H2}} = 5\ \text{L} \times 3 = 15\ \text{L}$
Problem 2
Step1: Use mole volume ratio
From $\ce{N2 + 3H2 -> 2NH3}$, volume ratio $\ce{N2:NH3 = 1:2}$.
Step2: Calculate $\ce{NH3}$ volume
$V_{\ce{NH3}} = 5\ \text{L} \times 2 = 10\ \text{L}$
Problem 3
Step1: Use mole volume ratio
From $\ce{C3H8 + 5O2 -> 3CO2 + 4H2O}$, volume ratio $\ce{O2:CO2 = 5:3}$.
Step2: Calculate $\ce{CO2}$ volume
$V_{\ce{CO2}} = 20\ \text{L} \times \frac{3}{5} = 12\ \text{L}$
Problem 4
Step1: Use mole volume ratio
From $\ce{2H2O -> 2H2 + O2}$, volume ratio $\ce{H2:O2 = 2:1}$.
Step2: Calculate $\ce{O2}$ volume
$V_{\ce{O2}} = 30\ \text{mL} \times \frac{1}{2} = 15\ \text{mL}$
Problem 5
Step1: Calculate $\ce{CO2}$ volume
From $\ce{2CO + O2 -> 2CO2}$, volume ratio $\ce{CO:CO2 = 1:1}$.
$V_{\ce{CO2}} = 75\ \text{L} \times 1 = 75\ \text{L}$
Step2: Calculate $\ce{O2}$ volume
Volume ratio $\ce{CO:O2 = 2:1}$.
$V_{\ce{O2}} = 75\ \text{L} \times \frac{1}{2} = 37.5\ \text{L}$
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- 15 liters of hydrogen
- 10 liters of ammonia
- 12 liters of carbon dioxide
- 15 milliliters of oxygen
- 75 liters of carbon dioxide; 37.5 liters of oxygen