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whilig and Balancing Chlemical equations Pre-Test The chemical equation for the formation of ammonia is unbalanced. 3H_(2)(g)+N_(2)(g)arrow NH_(3)(g) If three molecules of hydrogen react with one molecule of nitrogen, how many molecules of ammonia would be formed? 1 2 () 3 4 Active 6 TIME 51:58

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whilig and Balancing Chlemical equations
Pre-Test
The chemical equation for the formation of ammonia is unbalanced.
3H_(2)(g)+N_(2)(g)arrow NH_(3)(g)
If three molecules of hydrogen react with one molecule of nitrogen, how many molecules of ammonia would be
formed?
1
2
() 3
4
Active
6
TIME
51:58

whilig and Balancing Chlemical equations Pre-Test The chemical equation for the formation of ammonia is unbalanced. 3H_(2)(g)+N_(2)(g)arrow NH_(3)(g) If three molecules of hydrogen react with one molecule of nitrogen, how many molecules of ammonia would be formed? 1 2 () 3 4 Active 6 TIME 51:58

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YvesProfessional · Tutor for 6 years

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### 2

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## Step 1: Identify the stoichiometry of the reactants and products<br />### The unbalanced chemical equation is \(3 \mathrm{H}_{2}(\mathrm{~g}) + \mathrm{N}_{2}(\mathrm{~g}) \rightarrow \mathrm{NH}_{3}(\mathrm{~g})\). This indicates that 3 molecules of hydrogen react with 1 molecule of nitrogen.<br /><br />## Step 2: Balance the chemical equation<br />### For the chemical equation to be balanced, the number of atoms of each element must be the same on both sides. The balanced equation is \(3 \mathrm{H}_{2}(\mathrm{~g}) + \mathrm{N}_{2}(\mathrm{~g}) \rightarrow 2 \mathrm{NH}_{3}(\mathrm{~g})\).<br /><br />## Step 3: Determine the ratio of reactants to products<br />### From the balanced equation, 3 molecules of hydrogen and 1 molecule of nitrogen produce 2 molecules of ammonia.<br /><br />#
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