Fermintation
The type of fermentation described is lactic acid fermentation. In this process, glucose is converted into pyruvic acid through glycolysis, and pyruvic acid is then converted into lactic acid, regenerating NAD+ in the process. This pathway occurs in cells under anaerobic conditions, producing 2 ATP molecules per glucose molecule.
This is a decomposition reaction, where the compound (H2CO3) breaks down into its simpler components (H2O and CO2) when it is heated or under certain conditions.
C6H5COOH + NaOH + I2 -----------> C6H5COOI + NaI + H2O
The product of N plus O2 to form NO2 is a chemical reaction where nitrogen and oxygen gas combine to form nitrogen dioxide gas. This reaction occurs when nitrogen and oxygen molecules react under specific conditions to produce the NO2 molecule.
When NaHCO3 is combined with CaCl2 and H2O, a reaction will occur. However, the specific products depend on the conditions of the reaction - typically, NaHCO3 will react with CaCl2 to form NaCl, CaCO3, and H2O.
glucose =ethanol plus carbon dioxide plus energy
A plus with a minus under it means "plus or minus" in math.
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The type of fermentation described is lactic acid fermentation. In this process, glucose is converted into pyruvic acid through glycolysis, and pyruvic acid is then converted into lactic acid, regenerating NAD+ in the process. This pathway occurs in cells under anaerobic conditions, producing 2 ATP molecules per glucose molecule.
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This is a decomposition reaction, where the compound (H2CO3) breaks down into its simpler components (H2O and CO2) when it is heated or under certain conditions.
C6H5COOH + NaOH + I2 -----------> C6H5COOI + NaI + H2O
Are called methods.
The compound is propene (CH3CHCH2) and reacting it with H2 under suitable conditions would lead to the addition of H2 across the double bond, resulting in propane (C3H8).
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The reactants for anaerobic cellular respiration are glucose molecules, which are broken down into pyruvate molecules. The end products of anaerobic respiration in animals is lactic acid, while in certain bacteria and yeast, the end product is ethanol and carbon dioxide.
The end products of combining multiple molecules of C6H12O6 (glucose) in a chemical reaction would depend on the conditions under which the reaction takes place. In a theoretical combustion reaction, it could potentially produce carbon dioxide (CO2) and water (H2O) as the end products.