Home
/
Chemistry
/
The balanced chemical equation for the reaction of copper (Cu) and silver nitrate (AgNO_(3)) is shown below. Cu+2AgNO_(3)arrow 2Ag+Cu(NO_(3))_(2) How many moles of copper must react to form 0.854 mol Ag? square mol Cu

Question

The balanced chemical equation for the reaction
of copper (Cu) and silver nitrate (AgNO_(3)) is shown
below.
Cu+2AgNO_(3)arrow 2Ag+Cu(NO_(3))_(2)
How many moles of copper must react to form
0.854 mol Ag?
square 
mol Cu

The balanced chemical equation for the reaction of copper (Cu) and silver nitrate (AgNO_(3)) is shown below. Cu+2AgNO_(3)arrow 2Ag+Cu(NO_(3))_(2) How many moles of copper must react to form 0.854 mol Ag? square mol Cu

expert verifiedVerification of experts

Answer

4.6282 Voting
avatar
KelseyProfessional · Tutor for 6 years

Answer

### 0.427 \text{ mol Cu}

Explain

## Step 1: Identify the Given Quantity<br />### The problem states that we need to find how many moles of copper (\(\mathrm{Cu}\)) must react to form \(0.854 \text{ mol } \mathrm{Ag}\).<br /><br />## Step 2: Write the Balanced Equation<br />### The balanced chemical equation is:<br />\[<br />\mathrm{Cu} + 2\mathrm{AgNO}_3 \rightarrow 2\mathrm{Ag} + \mathrm{Cu(NO}_3\mathrm{)}_2<br />\]<br /><br />## Step 3: Determine the Mole Ratio<br />### From the balanced equation, the mole ratio between \(\mathrm{Cu}\) and \(\mathrm{Ag}\) is \(1:2\), meaning 1 mole of \(\mathrm{Cu}\) produces 2 moles of \(\mathrm{Ag}\).<br /><br />## Step 4: Calculate the Moles of Copper<br />### To find the moles of \(\mathrm{Cu}\) required for \(0.854 \text{ mol } \mathrm{Ag}\), use the mole ratio:<br />\[<br />\text{Moles of Cu} = 0.854 \text{ mol Ag} \times \frac{1 \text{ mol Cu}}{2 \text{ mol Ag}}<br />\]<br />\[<br />\text{Moles of Cu} = 0.427 \text{ mol Cu}<br />\]<br /><br />#
Click to rate:

Hot Questions

More x