Sovi.AI - AI Math Tutor

Scan to solve math questions

QUESTION IMAGE

aqueous hydrobromic acid (hbr) will react with solid sodium hydroxide (…

Question

aqueous hydrobromic acid (hbr) will react with solid sodium hydroxide (naoh) to produce aqueous sodium bromide (nabr) and liquid water (h₂o). suppose 61. g of hydrobromic acid is mixed with 58.2 g of sodium hydroxide. calculate the maximum mass of sodium bromide that could be produced by the chemical reaction. be sure your answer has the correct number of significant digits.

Explanation:

Step1: Write the balanced chemical equation

$$\ce{HBr + NaOH -> NaBr + H2O}$$

Step2: Calculate the molar masses

  • Molar mass of $\ce{HBr}$: $M_{HBr}=1 + 79.904=80.904\space g/mol$
  • Molar mass of $\ce{NaOH}$: $M_{NaOH}=22.99 + 16+ 1.008 = 39.998\space g/mol$
  • Molar mass of $\ce{NaBr}$: $M_{NaBr}=22.99+79.904 = 102.894\space g/mol$

Step3: Calculate the number of moles of reactants

  • Moles of $\ce{HBr}$: $n_{HBr}=\frac{m_{HBr}}{M_{HBr}}=\frac{61\space g}{80.904\space g/mol}\approx0.754\space mol$
  • Moles of $\ce{NaOH}$: $n_{NaOH}=\frac{m_{NaOH}}{M_{NaOH}}=\frac{58.2\space g}{39.998\space g/mol}\approx1.455\space mol$

Step4: Determine the limiting reactant

From the balanced equation, the mole ratio of $\ce{HBr}$ to $\ce{NaOH}$ is $1:1$. Since $n_{HBr}

Step5: Calculate the moles of $\ce{NaBr}$ produced

From the balanced equation, $n_{NaBr}=n_{HBr} = 0.754\space mol$

Step6: Calculate the mass of $\ce{NaBr}$ produced

$m_{NaBr}=n_{NaBr}\times M_{NaBr}=0.754\space mol\times102.894\space g/mol\approx77.6\space g$

Answer:

$77.6\space g$