C3H8 + 5O2 >> 3CO2 + 4H2O
( and, of course, energy )
The balanced chemical equation for the combustion of propane is:C3H8 + 5O2 --> 3CO2 + 4H2O
The balanced equation for the complete combustion of C4H10 is 2C4H10 + 13O2 → 8CO2 + 10H2O. This equation shows that butane (C4H10) reacts with oxygen to produce carbon dioxide and water.
This balanced equation represents a combustion reaction, where a fuel (C4H10) reacts with oxygen gas (O2) to produce carbon dioxide (CO2) and water (H2O).
CH4 + 2O2 -> 2H2O + CO2. This balanced chemical equation represents the combustion of methane (CH4) with oxygen (O2) to produce water (H2O) and carbon dioxide (CO2).
This chemical equation represents the combustion of octane (C8H18) with oxygen (O2) to produce carbon dioxide (CO2) and water (H2O). The balanced equation is: 2C8H18 + 25O2 → 16CO2 + 18H2O This reaction is an example of complete combustion, where octane reacts with oxygen to form carbon dioxide and water.
The balanced chemical equation for the combustion of propane is:C3H8 + 5O2 --> 3CO2 + 4H2O
The balanced equation for the complete combustion of C4H10 is 2C4H10 + 13O2 → 8CO2 + 10H2O. This equation shows that butane (C4H10) reacts with oxygen to produce carbon dioxide and water.
This balanced equation represents a combustion reaction, where a fuel (C4H10) reacts with oxygen gas (O2) to produce carbon dioxide (CO2) and water (H2O).
CH4 + 2O2 -> 2H2O + CO2. This balanced chemical equation represents the combustion of methane (CH4) with oxygen (O2) to produce water (H2O) and carbon dioxide (CO2).
This chemical equation represents the combustion of octane (C8H18) with oxygen (O2) to produce carbon dioxide (CO2) and water (H2O). The balanced equation is: 2C8H18 + 25O2 → 16CO2 + 18H2O This reaction is an example of complete combustion, where octane reacts with oxygen to form carbon dioxide and water.
The balanced equation for the conversion of methane (CH4) to carbon dioxide (CO2) is: CH4 + 2O2 -> CO2 + 2H2O To convert methane to carbon dioxide, you would need to combust methane in the presence of oxygen, which will produce carbon dioxide and water as products.
The equation is CS2 + 3 O2 -> CO2 + 2 SO2.
The combustion of propanal (C3H6O) can be represented by the following balanced chemical equation: C3H6O + 4.5 O2 -> 3 CO2 + 3 H2O. This equation shows that propanal reacts with oxygen to produce carbon dioxide and water.
The balanced equation for lighting a match involves the combustion of the match head. It can be represented by the chemical equation: S(s) + O2(g) → SO2(g) + heat and light. This equation shows the sulfur in the match head reacting with oxygen in the air to produce sulfur dioxide, heat, and light.
Combustion is the process of fuel burning in the presence of oxygen to produce heat, light, and often carbon dioxide and water. In a word equation, combustion can be represented as "fuel + oxygen -> heat + light + carbon dioxide + water".
The balanced equation for the combustion of natural gas (methane, CH4) is: CH4 + 2 O2 -> CO2 + 2 H2O This equation shows that one molecule of methane reacts with two molecules of oxygen to produce one molecule of carbon dioxide and two molecules of water.
When a candle is burned, it undergoes combustion to produce carbon dioxide and water vapor. The balanced reaction equation for the combustion of a candle can be represented as: Candle wax (C25H52) + 38 O2 → 25 CO2 + 26 H2O