QuestionAugust 23, 2025

Use the following information to answer questions 5 and 6. Zinc metal reacts very quickly with hydrochloric acid to produce zinc chloride and hydrogen gas according to the equation: Zn+2HClarrow ZnCl_(2)+H_(2) If 1.25 moles of Zn reacts with 3.00 moles of HCl, what is the theoretical yield of H_(2) for the reaction? 0.6258 1.258 2.528 3.028

Use the following information to answer questions 5 and 6. Zinc metal reacts very quickly with hydrochloric acid to produce zinc chloride and hydrogen gas according to the equation: Zn+2HClarrow ZnCl_(2)+H_(2) If 1.25 moles of Zn reacts with 3.00 moles of HCl, what is the theoretical yield of H_(2) for the reaction? 0.6258 1.258 2.528 3.028
Use the following information to answer questions 5 and 6.
Zinc metal reacts very quickly with hydrochloric acid to produce zinc chloride and hydrogen
gas according to the equation:
Zn+2HClarrow ZnCl_(2)+H_(2)
If 1.25 moles of Zn reacts with 3.00 moles of HCl, what is the theoretical yield of H_(2) for the
reaction?
0.6258
1.258
2.528
3.028

Solution
4.7(196 votes)

Answer

1.258 Explanation 1. Identify the Limiting Reactant The balanced equation is Zn + 2HCl \rightarrow ZnCl_2 + H_2. For every mole of Zn, 2 moles of HCl are needed. With 1.25 moles of Zn, we need 1.25 \times 2 = 2.5 moles of HCl. Since 3.00 moles of HCl are available, Zn is the limiting reactant. 2. Calculate Theoretical Yield of H_{2} From the balanced equation, 1 mole of Zn produces 1 mole of H_{2}. Therefore, 1.25 moles of Zn will produce 1.25 moles of H_{2}.

Explanation

1. Identify the Limiting Reactant<br /> The balanced equation is $Zn + 2HCl \rightarrow ZnCl_2 + H_2$. For every mole of $Zn$, 2 moles of $HCl$ are needed. With 1.25 moles of $Zn$, we need $1.25 \times 2 = 2.5$ moles of $HCl$. Since 3.00 moles of $HCl$ are available, $Zn$ is the limiting reactant.<br /><br />2. Calculate Theoretical Yield of $H_{2}$<br /> From the balanced equation, 1 mole of $Zn$ produces 1 mole of $H_{2}$. Therefore, 1.25 moles of $Zn$ will produce 1.25 moles of $H_{2}$.
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