2K2Cr2O7 + 2H2SO4 + 3C2H5OH ---> 2Cr2(SO4)3 + 2K2SO4 + 3CH3COOH + 11H2O.
To balance this chemical equation, first balance the chromium atoms by adding a coefficient of 3 in front of Cr2(SO4)3. Next, balance the hydrogen atoms with a coefficient of 8 in front of H2O. Then, balance the oxygen atoms by adding a coefficient of 7 in front of H2SO4. Finally, balance the potassium atoms by adding a coefficient of 4 in front of K2SO4. The balanced equation is: K2Cr2O7 + 4H2SO4 + 3C2H5OH → Cr2(SO4)3 + K2SO4 + 3CH3COOH + 11H2O
The balanced chemical equation for the combustion of ethanol is C2H5OH + 3O2 -> 2CO2 + 3H2O. Therefore, the stoichiometric coefficients are 1 for ethanol, 3 for oxygen, 2 for carbon dioxide, and 3 for water.
The formula for an aldehyde is c) C2H4O. Aldehydes have the functional group -CHO, and this formula fits that description.
The balanced chemical equation for the reaction between C2H5OH (ethanol) and H2O (water) is: C2H5OH + H2O → CH3COOH + H2 This reaction produces acetic acid (CH3COOH) and hydrogen gas (H2) as products.
There are two types of acetic fermentation, aerobic and anaerobic. Aerobic fermentation is C2H5OH + O2 produces CH3COOH + H2O. Anaerobic fermentation is a direct decomposition of glucose by bacteria, as C6H12O6 produces 3 CH3COOH
To balance this chemical equation, first balance the chromium atoms by adding a coefficient of 3 in front of Cr2(SO4)3. Next, balance the hydrogen atoms with a coefficient of 8 in front of H2O. Then, balance the oxygen atoms by adding a coefficient of 7 in front of H2SO4. Finally, balance the potassium atoms by adding a coefficient of 4 in front of K2SO4. The balanced equation is: K2Cr2O7 + 4H2SO4 + 3C2H5OH → Cr2(SO4)3 + K2SO4 + 3CH3COOH + 11H2O
The balanced chemical equation for the combustion of ethanol is C2H5OH + 3O2 -> 2CO2 + 3H2O. Therefore, the stoichiometric coefficients are 1 for ethanol, 3 for oxygen, 2 for carbon dioxide, and 3 for water.
The formula for an aldehyde is c) C2H4O. Aldehydes have the functional group -CHO, and this formula fits that description.
The balanced chemical equation for the reaction between C2H5OH (ethanol) and H2O (water) is: C2H5OH + H2O → CH3COOH + H2 This reaction produces acetic acid (CH3COOH) and hydrogen gas (H2) as products.
Word equation: ethanol + oxygen → ethanoic acid + water Symbol equation: C2H5OH + O2 → C2H4O2 + H2O
There are two types of acetic fermentation, aerobic and anaerobic. Aerobic fermentation is C2H5OH + O2 produces CH3COOH + H2O. Anaerobic fermentation is a direct decomposition of glucose by bacteria, as C6H12O6 produces 3 CH3COOH
C2H5OH is named asethyl alcohol
To determine the number of molecules of CO2, H2O, C2H5OH, and O2 present after a reaction goes to completion, we need to know the balanced chemical equation for the reaction involved. The coefficients in the balanced equation will indicate the stoichiometric relationships between the reactants and products. Once the equation is balanced, you can calculate the number of molecules based on the initial amounts of each reactant and the ratios provided by the coefficients. Please provide the specific reaction for a more detailed answer.
The chemical formula for ethanol is C2H5OH.
The chemical formula for ethanol is C2H5OH.
The chemical formula for ethanol is C2H5OH.
C2H5OH(liquid) ® C2H5OH(gas)