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what quantity in atoms of silicon are produced by the complete reaction…

Question

what quantity in atoms of silicon are produced by the complete reaction of 8.69 grams of carbon with excess quartz (sio₂), according to the balanced chemical reaction sio₂(s) + 2 c(s) → si(s) + 2 co(g)

Explanation:

Step1: Calculate moles of carbon

Given mass of carbon \(m = 8.0g\), molar mass of carbon \(M = 12.01g/mol\).
Using the formula \(n=\frac{m}{M}\), we have \(n_{C}=\frac{8.0g}{12.01g/mol}\approx0.666mol\).

Step2: Use mole - ratio from the balanced equation

From the balanced equation \(SiO_{2}(s)+2C(s)\to Si(s)+2CO(g)\), the mole ratio of \(C\) to \(Si\) is \(2:1\).
Let \(n_{Si}\) be the moles of silicon. Using the ratio \(\frac{n_{C}}{n_{Si}}=\frac{2}{1}\), then \(n_{Si}=\frac{n_{C}}{2}\).
Substituting \(n_{C} = 0.666mol\), we get \(n_{Si}=\frac{0.666mol}{2}=0.333mol\).

Answer:

\(0.33mol\) (rounded to two significant figures)