The molecular formula for Methane is CH4
It's 1 atom carbon, 2 hydrogen molecules (Hydrogen molecules come in H2 gases) so the formula would be
C + 2(H2) = CH4
The equation represents the reaction between methane (CH4) and bromine (Br2) to form methyl bromide (CH3Br) and hydrogen bromide (HBr). This reaction is a substitution reaction in which a hydrogen atom in methane is replaced by a bromine atom.
When methane and oxygen react in a combustion reaction, carbon dioxide and water are produced, along with heat and light as energy is released. The balanced chemical equation for this reaction is: CH4 + 2O2 → CO2 + 2H2O.
The reaction between methane and bromine in the presence of sunlight results in the substitution of one hydrogen atom in methane with a bromine atom, yielding bromomethane (CH3Br). The equation for this reaction is: CH4 + Br2 → CH3Br + HBr.
The balanced equation for the reaction between hydrogen gas (H2) and carbon disulfide (CS2) to produce methane (CH4) is: 4H2 + CS2 → 4H2S + CH4. This means that for every 4 moles of hydrogen gas, 1 mole of methane is produced. Since 1 mole of any gas at STP occupies 22.4 liters, you would need 5.6 liters of hydrogen gas to produce 2.5 liters of methane.
CH4 + Br2 --> CH3Br + HBr
C+ 2H2--> CH4 is the balanced equation.
The balanced equation for the reaction of ammonia (NH3), oxygen (O2), and methane (CH4) to form hydrogen cyanide (HCN) and water (H2O) is: 4 NH3 + 3 O2 + CH4 → 2 HCN + 6 H2O
The equation represents the reaction between methane (CH4) and bromine (Br2) to form methyl bromide (CH3Br) and hydrogen bromide (HBr). This reaction is a substitution reaction in which a hydrogen atom in methane is replaced by a bromine atom.
The balanced equation for the reaction where methane is obtained by the reduction of chloroform is: 2CHCl3 + 6Zn -> 2CH4 + 6ZnCl2. This reaction involves the reduction of chloroform (CHCl3) using zinc (Zn) metal to produce methane (CH4) and zinc chloride (ZnCl2).
In the absence of sunlight, methane (CH4) will react with bromine (Br2) to form bromomethane (CH3Br) and hydrogen bromide (HBr) as products. The balanced chemical equation for this reaction is CH4 + Br2 -> CH3Br + HBr.
CHCl3 + 6 H2 -> CH4 + 3 HCl
zinc + ethanol + water + chloroform + copper sulphate solution
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).
In a combustion reaction of a hydrocarbon like methane (CH4) with oxygen, carbon dioxide (CO2) and water (H2O) would be produced. The balanced chemical equation for this reaction would be CH4 + 2O2 → CO2 + 2H2O.
The balanced chemical equation for methane (CH4) burning in oxygen (O2) is: CH4 + 2O2 -> CO2 + 2H2O
The coefficient for water in a balanced chemical equation depends on the specific reaction being described. For example, in the combustion of methane, the balanced equation is: CH4 + 2O2 -> CO2 + 2H2O In this case, the coefficient for water is 2.
CH4(g) + H20(g) <----> CO(g) + 3H2(g)