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Copper oxide reacts with hydrogen to produce copper. The equation for the reaction is: CuO+H_(2)arrow Cu+H_(2)O Calculate the percentage atom economy for obtaining copper from this reaction. Use the equation: Percentage atom economy=(A_(r) of Cu)/(M_(r) of H_(2)+M_(r) of CuO)times 100 Relative atomic mass (A_(r)) Cu=63.5 Relative formula masses (M_(t)) H2=2 H_(2)=2 CuO=79.5 [2 mar

Question

Copper oxide reacts with hydrogen to produce copper.
The equation for the reaction is:
CuO+H_(2)arrow Cu+H_(2)O
Calculate the percentage atom economy for obtaining copper from this reaction.
Use the equation:
Percentage atom economy=(A_(r) of Cu)/(M_(r) of H_(2)+M_(r) of CuO)times 100
Relative atomic mass (A_(r)) Cu=63.5
Relative formula masses (M_(t)) H2=2 H_(2)=2 CuO=79.5
[2 mar

Copper oxide reacts with hydrogen to produce copper. The equation for the reaction is: CuO+H_(2)arrow Cu+H_(2)O Calculate the percentage atom economy for obtaining copper from this reaction. Use the equation: Percentage atom economy=(A_(r) of Cu)/(M_(r) of H_(2)+M_(r) of CuO)times 100 Relative atomic mass (A_(r)) Cu=63.5 Relative formula masses (M_(t)) H2=2 H_(2)=2 CuO=79.5 [2 mar

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XavierMaster · Tutor for 5 years

Answer

Substitute the gland quantities values in the formula to calculate the percentage atom economy, and as a result, it will be approximately \( 79.5 \% \).

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## Step 1:<br />Given that the relative atomic mass (\(A_{r}\)) of Copper (\(Cu\)) is \(63.5\), and the relative formula masses (\(M_{r}\)) of \(H_{2}\) and \(CuO\) are \(2\) and \(79.5\) respectively.<br /><br />## Step 2:<br />To calculate the percentage atom economy for obtaining copper from the given reaction, we'll plug the given quantities into the stated percentage atom economy equation.<br /><br />## Step 3:<br />Substitute the given values (\(A_{r}\) of \(Cu = 63.5\)), (\(M_{r}\) of \(H_{2} = 2\) and \(M_{r}\) of \(CuO = 79.5\)) into the percentage atom economy formula.<br /><br />### The percentage atom economy formula is: <br />### \[<br />\frac{A_{r} (Cu)}{M_{r} (H_{2}) + M_{r} (CuO)} * 100<br />\]
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