Let us assume for convenience that this reaction is at STP.( standard temperature and pressure ) Get moles O.
100 grams H2O (1 mole H2O/18.016 grams)(1 mole O/1 mole H2O)
= 5.551 moles oxygen
Now, the ideal gas law. PV = nRT
(1 atm)(Vol L) = (5.551 moles O)(0.08206 L*atm/mol*K)(298.15 K)
= 136 Liters of oxygen
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Now, another way using oxygens density. Density = grams/milliliters
100 grams H2O (1 mole H2O/18.016 grams)(1 mole O/1 mole H2O)(16.0 grams/1 mole O)
= 88.8 grams oxygen
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Density of oxygen = 1.33 X 10^-3 g/ml
1.33 X 10^-3 g/ml = 88.8 grams O/ml
= 66767 ml O
= 66.7 liters of oxygen
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A major discrepancy. You must decide on method and experimental conditions
Water does not produce oxygen gas through decomposition. Hydrogen peroxide and potassium chlorate do produce oxygen gas when they decompose.
Mixing iron nitrate and hydrogen peroxide produces oxygen gas. The reaction between iron nitrate and hydrogen peroxide results in the decomposition of hydrogen peroxide to produce oxygen gas as one of the products of the reaction.
You actually saved me with this question. I needed the answer for a homework. I found out it was hydrogen peroxide.hydrogen peroxide can be used as a toothpaste if mixed correctly with baking soda or salt(not cooking salt)
Hydrogen peroxide and yeast can react to produce oxygen gas and water. The yeast acts as a catalyst, breaking down the hydrogen peroxide into oxygen and water.
Yeast and hydrogen peroxide produce oxygen gas as a byproduct of their reaction. The yeast acts as a catalyst to break down the hydrogen peroxide into water and oxygen.
Water does not produce oxygen gas through decomposition. Hydrogen peroxide and potassium chlorate do produce oxygen gas when they decompose.
Mixing iron nitrate and hydrogen peroxide produces oxygen gas. The reaction between iron nitrate and hydrogen peroxide results in the decomposition of hydrogen peroxide to produce oxygen gas as one of the products of the reaction.
When a raw potato is mixed with hydrogen peroxide, the enzyme catalase in the potato helps break down the hydrogen peroxide into water and oxygen gas. This reaction produces bubbles of oxygen gas as a result of the decomposition of hydrogen peroxide.
Water
You actually saved me with this question. I needed the answer for a homework. I found out it was hydrogen peroxide.hydrogen peroxide can be used as a toothpaste if mixed correctly with baking soda or salt(not cooking salt)
Peroxisomes are the enzyme-filled sacs found in the liver that produce hydrogen peroxide as a byproduct of their metabolic functions. Hydrogen peroxide is then broken down by the peroxisome's enzymes to prevent cellular damage.
When liver and hydrogen peroxide mix, they produce a liquid called hydrogen peroxide. The liver contains an enzyme called catalase, which breaks down hydrogen peroxide into water and oxygen gas.
Hydrogen peroxide and yeast can react to produce oxygen gas and water. The yeast acts as a catalyst, breaking down the hydrogen peroxide into oxygen and water.
Barium peroxide is commonly used to prepare hydrogen peroxide because it readily decomposes in the presence of water, releasing oxygen gas which then reacts with hydrogen to produce hydrogen peroxide. This method provides a simple and efficient way to produce hydrogen peroxide on a small scale.
Yeast and hydrogen peroxide produce oxygen gas as a byproduct of their reaction. The yeast acts as a catalyst to break down the hydrogen peroxide into water and oxygen.
When calcium carbonate (CaCO₃) reacts with hydrogen peroxide (H₂O₂), a decomposition reaction can occur, particularly in the presence of an acid. The hydrogen peroxide may release oxygen gas (O₂) as it decomposes, while the calcium carbonate may react with any acid present to produce calcium salts, water, and carbon dioxide (CO₂) gas. Overall, the reaction can produce effervescence due to the release of CO₂ and O₂. However, under normal conditions, the direct reaction between just calcium carbonate and hydrogen peroxide is not significant.
The hydrogen peroxide is both oxidized and reduced, to produce water and elemental oxygen.