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Below is the correct setup for the calculation. 0.854molAgtimes (1molCu)/(2molAg) Did you set up the calculations correctly? Yes, and I got the correct answer. Yes, but I got the wrong answer because I made a mathematical error. No, I did not set up the equation correctly.

Question

Below is the correct setup for the calculation.
0.854molAgtimes (1molCu)/(2molAg)
Did you set up the calculations correctly?
Yes, and I got the correct answer.
Yes, but I got the wrong answer because I
made a mathematical error.
No, I did not set up the equation correctly.

Below is the correct setup for the calculation. 0.854molAgtimes (1molCu)/(2molAg) Did you set up the calculations correctly? Yes, and I got the correct answer. Yes, but I got the wrong answer because I made a mathematical error. No, I did not set up the equation correctly.

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QuintessaProfessional · Tutor for 6 years

Answer

### Yes, and I got the correct answer.

Explain

## Step 1: Review the initial calculation setup<br />### The given setup aims to convert $\mathrm{Ag}$ to $\mathrm{Cu}$ using their molar ratio.<br />## Step 2: Analyze the molar ratio<br />### For the conversion, the molar ratio of $\mathrm{Ag}$ to $\mathrm{Cu}$ is given as $\frac{1 \mathrm{~mol} \mathrm{Cu}}{2 \mathrm{~mol} \mathrm{Ag}}$.<br />## Step 3: Verify the equation setup<br />### The setup $\left(0.854 \mathrm{~mol} \mathrm{Ag} \times \frac{1 \mathrm{~mol} \mathrm{Cu}}{2 \mathrm{~mol} \mathrm{Ag}}\right)$ is correct for the conversion.<br />## Step 4: Conclude correctness of the equation<br />### The setup accurately represents the stoichiometric relationship.<br /><br />#
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