QUESTION IMAGE
Question
according to the following reaction, how many grams of phosphoric acid will be formed upon the complete reaction of 22.8 grams of tetraphosphorus decaoxide with excess perchloric acid (hclo_4)? tetraphosphorus decaoxide (s) + perchloric acid (hclo_4) (aq) → phosphoric acid (aq) + dichlorine heptoxide (l) use the references to access important values if needed for this question. mass = g 9 more group attempts remaining submit answer retry entire group
Step1: Write the balanced chemical equation
$10HClO_4(aq)+P_4O_{10}(s)
ightarrow 4H_3PO_4(aq) + 5Cl_2O_7(l)$
Step2: Calculate the molar mass of $P_4O_{10}$
The molar mass of $P = 30.97\ g/mol$ and $O=16.00\ g/mol$. For $P_4O_{10}$, $M=(4\times30.97 + 10\times16.00)\ g/mol=283.88\ g/mol$
Step3: Calculate the number of moles of $P_4O_{10}$
Given mass of $P_4O_{10}=22.8\ g$. Using $n=\frac{m}{M}$, where $m = 22.8\ g$ and $M = 283.88\ g/mol$. So $n=\frac{22.8}{283.88}\ mol\approx0.0803\ mol$
Step4: Determine the mole - ratio of $P_4O_{10}$ to $H_3PO_4$
From the balanced equation, the mole - ratio of $P_4O_{10}$ to $H_3PO_4$ is $1:4$. So the number of moles of $H_3PO_4$ formed, $n_{H_3PO_4}=4\times n_{P_4O_{10}} = 4\times0.0803\ mol = 0.3212\ mol$
Step5: Calculate the molar mass of $H_3PO_4$
The molar mass of $H = 1.01\ g/mol$, $P = 30.97\ g/mol$ and $O = 16.00\ g/mol$. For $H_3PO_4$, $M=(3\times1.01+30.97 + 4\times16.00)\ g/mol = 97.99\ g/mol$
Step6: Calculate the mass of $H_3PO_4$
Using $m=n\times M$, where $n = 0.3212\ mol$ and $M = 97.99\ g/mol$. So $m=0.3212\times97.99\ g\approx31.5\ g$
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$31.5$