C + O2 -> CO2
Because oxygen is a gas, it exists in a normal state bonded to another oxygen.
To balance the equation C + O2 → CO, you need to add a coefficient of 2 in front of CO. This balances the equation so that you have the same number of carbon and oxygen atoms on both sides: C + O2 → 2CO.
To balance the equation C + O2 -> CO2, you need to ensure that there are the same number of atoms for each element on both sides of the equation. In this case, you would need to add a coefficient of 2 in front of CO2: C + O2 -> 2CO2. This balances the equation with one carbon atom and two oxygen molecules on each side.
The balanced equation is as follows: 2HI + Cl2 --> 2HCl + I2
Balance c6h10o5 plus o2 yield to co2 plus h20? This is an equation for combustion of an or organic compound C6H10O5… +… O2.. =.. CO2.. +..H2O . Always balance C's first C6H10O5… +… O2.. =.. 6CO2.. +..H2O . balance H's next C6H10O5… +… O2.. =.. 6.CO2.. +..5.H2O balance O's last, but don't place a coefficient in front of the CO2 C6H10O5… +… O2.. =.. 6.CO2.. +..5.H2O ……5.O's…………..…=….12.O's ……5.O's ……5.O's…………..…=…….…17.O's ..17 - 5 = 12 O's needed on left side. 12.O's = 6 O2"s C6H10O5… +…6 O2.. à.. 6.CO2.. +..5.H2O Check it out …..Left………..Right C….6…………6 H….10……….10 O….17………..17
The combustion of coal can be represented by the general equation: C + O2 → CO2 This equation shows that carbon (C) in coal reacts with oxygen (O2) to produce carbon dioxide (CO2) as the combustion product.
To balance the equation C + O2 → CO, you need to add a coefficient of 2 in front of CO. This balances the equation so that you have the same number of carbon and oxygen atoms on both sides: C + O2 → 2CO.
To balance the equation C + O2 -> CO2, you need to ensure that there are the same number of atoms for each element on both sides of the equation. In this case, you would need to add a coefficient of 2 in front of CO2: C + O2 -> 2CO2. This balances the equation with one carbon atom and two oxygen molecules on each side.
The balanced symbol equation for carbon plus oxygen yielding carbon dioxide is: C + O2 -> CO2
The balanced equation is as follows: 2HI + Cl2 --> 2HCl + I2
The correct answer is co2+c= 2co
To balance the combustion reaction of butene (C4H8) with oxygen (O2) producing carbon dioxide (CO2) and water (H2O), the balanced equation is: [ 2 \text{C}_4\text{H}_8 + 11 \text{O}_2 \rightarrow 8 \text{CO}_2 + 8 \text{H}_2\text{O}. ] Thus, the coefficient for O2 in the balanced equation is 11.
Balance c6h10o5 plus o2 yield to co2 plus h20? This is an equation for combustion of an or organic compound C6H10O5… +… O2.. =.. CO2.. +..H2O . Always balance C's first C6H10O5… +… O2.. =.. 6CO2.. +..H2O . balance H's next C6H10O5… +… O2.. =.. 6.CO2.. +..5.H2O balance O's last, but don't place a coefficient in front of the CO2 C6H10O5… +… O2.. =.. 6.CO2.. +..5.H2O ……5.O's…………..…=….12.O's ……5.O's ……5.O's…………..…=…….…17.O's ..17 - 5 = 12 O's needed on left side. 12.O's = 6 O2"s C6H10O5… +…6 O2.. à.. 6.CO2.. +..5.H2O Check it out …..Left………..Right C….6…………6 H….10……….10 O….17………..17
CO2 is not an equation, so it cannot be balanced. It is a chemical formula.
The chemical equation representing the reaction of magnesium (Mg) with oxygen (O2) to form magnesium oxide is: 2Mg + O2 → 2MgO The "c" in your equation does not have a clear designation in this context.
The balanced reaction is this: 2CO + O2 --> 2CO2 This is correct... the correct way of balancing this is: CO+ 1/2O2 --> CO2 if you're using the above method to calculate enthalpy value then they will be different (and incorrect) compared to balancing it this way.
Balance: C4H8S2 + O2 --> CO2 + H2O + SO3 Work out how many S, C and H on the left and then balance for the right. Then add up how many O this gives on the right and divide by 2 to get number of O2. C4H8S2 + 9O2 --> 4CO2 + 4H2O + 2SO3
The combustion of coal can be represented by the general equation: C + O2 → CO2 This equation shows that carbon (C) in coal reacts with oxygen (O2) to produce carbon dioxide (CO2) as the combustion product.