Because it is made up of more then one atoms that connected by convalent bond.
The balanced chemical equation for the reaction is 2 C2H5OH + 3 O2 → 2 CO2 + 3 H2O. This means that two molecules of ethanol (C2H5OH) react with three molecules of oxygen (O2) to produce two molecules of carbon dioxide (CO2) and three molecules of water (H2O).
The balanced equation for the combustion of CH4 is CH4 + 2O2 ==> CO2 + 2H2O4 molecules of CH4 will produce 4 molecules of CO2 and 8 molecules of H2O
The balanced chemical equation for the reaction CH4 + 2O2 → CO2 + 2H2O shows that 1 molecule of CH4 reacts with 2 molecules of O2 to produce 1 molecule of CO2 and 2 molecules of H2O. This equation ensures that the number of atoms of each element is the same on both sides of the reaction arrow.
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 for this combustion reaction is 2C2H6 + 7O2 -> 4CO2 + 6H2O. This means that for every 2 molecules of C2H6, we need 7 molecules of O2 to produce 4 molecules of CO2 and 6 molecules of H2O.
They are both made out of molecules: Carbon dioxide = CO2-molecules, Oxygen = O2-molecules.
molecules such as: CO2, O2, etc
O2 and CO2. O2 is a diatomic molecule; CO2 is a molecule made from two Types of Atoms.
The balanced chemical equation for the reaction is 2 C2H5OH + 3 O2 → 2 CO2 + 3 H2O. This means that two molecules of ethanol (C2H5OH) react with three molecules of oxygen (O2) to produce two molecules of carbon dioxide (CO2) and three molecules of water (H2O).
This is due to differences in solubility between CO2 and O2 in the liquid. CO2 is more soluble in liquid compared to O2, so more CO2 molecules dissolve than O2 molecules when both are at the same pressure. This difference in solubility is attributed to the chemical nature of the gases and the liquid being dissolved in.
molecules such as: CO2, O2, etc
The balanced equation for the combustion of CH4 is CH4 + 2O2 ==> CO2 + 2H2O4 molecules of CH4 will produce 4 molecules of CO2 and 8 molecules of H2O
The balanced equation for the complete combustion of C18H36 is: C18H36 + 25.5 O2 → 18 CO2 + 18 H2O. This equation shows that every molecule of C18H36 reacts with 25.5 molecules of O2 to produce 18 molecules of CO2 and 18 molecules of H2O.
The balanced chemical equation for the reaction CH4 + 2O2 → CO2 + 2H2O shows that 1 molecule of CH4 reacts with 2 molecules of O2 to produce 1 molecule of CO2 and 2 molecules of H2O. This equation ensures that the number of atoms of each element is the same on both sides of the reaction arrow.
The balanced chemical equation is C3H8 + 5 O2 ⟶ 3 CO2 + 4 H2O. This means that when one molecule of propane (C3H8) reacts with five molecules of oxygen (O2), it produces three molecules of carbon dioxide (CO2) and four molecules of water (H2O).
In the balanced chemical equation for the reaction of carbon (C) with oxygen (O2) to form carbon dioxide (CO2), one molecule of carbon reacts with one molecule of O2 to form one molecule of CO2. Therefore, to form 14 molecules of CO2, 14 molecules of O2 will react with 14 molecules of carbon, containing a total of 14 carbon atoms.
oxygen (O2) and carbon dioxide (CO2)