The Reaction between methane gas and oxygen gas in the atmosphere
2CH4 + 4O2 => 2CO2 + 4H2O
The balanced chemical equation for the reaction between sulfur (S) and carbon monoxide (CO) to form sulfur dioxide (SO2) and carbon (C) is: 4S + 6CO -> 4SO2 + 2C
The balanced chemical equation for this reaction is 2Al2O3 + 3C --> 4Al + 3CO2.
If the reduction involves carbon getting oxidized, it would be... Zinc oxide + carbon -----------> Zinc + carbon monoxide that's ZnO + C ----------> Zn + CO or if the reduction involves carbon monoxide getting oxidized, it would be... Zinc oxide + carbon monoxide -----------------> Zinc + carbon dioxide that's ZnO + CO ----------> Zn + CO2
The balanced equation for the reaction between silicon dioxide (SiO2) and carbon (C) to form silicon carbide (SiC) and carbon monoxide (CO) is: SiO2 + 3C → SiC + 2CO
The balanced equation for the conversion of carbon dioxide (CO2) to carbon monoxide (CO) is: 2CO2 → 2CO + O2
The balanced equation for the reaction between nitrogen monoxide (NO) and carbon monoxide (CO) to form nitrogen (N2) and carbon dioxide (CO2) is: 2NO + 2CO -> N2 + 2CO2
The balanced chemical equation for the reaction between sulfur (S) and carbon monoxide (CO) to form sulfur dioxide (SO2) and carbon (C) is: 4S + 6CO -> 4SO2 + 2C
The balanced chemical equation for this reaction is 2Al2O3 + 3C --> 4Al + 3CO2.
In a catalytic converter, carbon monoxide (CO) and hydrocarbons (HC) react with oxygen (O2) to form carbon dioxide (CO2) and water (H2O). This process is shown by the balanced chemical equation: 2CO + 2HC + O2 -> 2CO2 + H2O
If the reduction involves carbon getting oxidized, it would be... Zinc oxide + carbon -----------> Zinc + carbon monoxide that's ZnO + C ----------> Zn + CO or if the reduction involves carbon monoxide getting oxidized, it would be... Zinc oxide + carbon monoxide -----------------> Zinc + carbon dioxide that's ZnO + CO ----------> Zn + CO2
The balanced equation for the reaction between silicon dioxide (SiO2) and carbon (C) to form silicon carbide (SiC) and carbon monoxide (CO) is: SiO2 + 3C → SiC + 2CO
To find the mass of carbon monoxide needed, first convert the mass of carbon dioxide to moles using its molar mass. Then, use the balanced chemical equation for the combustion of carbon monoxide to determine the mole ratio between carbon monoxide and carbon dioxide. Finally, convert the moles of carbon dioxide to mass of carbon monoxide using its molar mass.
The balanced equation for the conversion of carbon dioxide (CO2) to carbon monoxide (CO) is: 2CO2 → 2CO + O2
The mixture of carbon monoxide and oxygen will react to form carbon dioxide. The balanced chemical equation for this reaction is: 2CO + O2 -> 2CO2 This reaction is exothermic, meaning it releases heat energy.
To represent a reaction involving carbon (C), nitrogen (N), and oxygen (O), we can write a balanced chemical equation. For example, the reaction between carbon monoxide (CO) and nitrogen dioxide (NO2) to form carbon dioxide (CO2) and nitrogen monoxide (NO) can be represented as: 2CO + 2NO2 -> 2CO2 + 2NO
The balanced equation for carbon plus water yielding carbon monoxide plus hydrogen is: C + H2O → CO + H2. This equation represents the reaction where carbon reacts with water to produce carbon monoxide and hydrogen gas. The equation is balanced with 1 carbon atom on each side and 2 hydrogen atoms on each side.
The balanced chemical equation for the synthesis of methanol from carbon monoxide and hydrogen gas is: CO + 2H2 -> CH3OH