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H_(2)O_(2)arrow H_(2)O+O_(2)

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H_(2)O_(2)arrow H_(2)O+O_(2)

H_(2)O_(2)arrow H_(2)O+O_(2)

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LucasMaster · Tutor for 5 years

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The balanced chemical equation is \(2H_2O_2 \rightarrow 2H_2O + O_2\).

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## Step1<br />The given unbalanced chemical equation is:<br />\[H_2O_2 \rightarrow H_2O + O_2\]<br />This equation represents the decomposition of hydrogen peroxide (\(H_2O_2\)) into water (\(H_2O\)) and oxygen gas (\(O_2\)).<br /><br />## Step2<br />To balance this equation, we need to ensure that the number of atoms of each element is the same on both sides of the equation. This is based on the Law of Conservation of Mass, which states that matter cannot be created or destroyed in a chemical reaction.<br /><br />## Step3<br />Balancing the equation involves adjusting the coefficients (the numbers in front of the chemical formulas) to ensure that the number of atoms of each element is equal on both sides.<br /><br />## Step4<br />The number of hydrogen atoms on the left side is 2 (from \(H_2O_2\)), and it is the same on the right side (from \(H_2O\)).<br /><br />## Step5<br />The number of oxygen atoms on the left side is 2 (from \(H_2O_2\)), but on the right side, we have 1 oxygen atom in \(H_2O\) and 2 in \(O_2\), totaling 3 oxygen atoms.<br /><br />## Step6<br />To balance the oxygen atoms, we can place a coefficient of 2 in front of \(H_2O\) on the right side. This gives us 2 hydrogen atoms and 2 oxygen atoms on both sides, thus balancing the equation.<br /><br />## Step7<br />The balanced chemical equation is:<br />\[2H_2O_2 \rightarrow 2H_2O + O_2\]<br /><br />This balanced equation indicates that two molecules of hydrogen peroxide decompose to form two molecules of water and one molecule of oxygen gas.<br /><br />#
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