Cycloheptene.
The product is Ethanol. Phosphoric acid is the catalyst here. The equation for the reaction is: C2H4 + H2O -----> C2H5OH
p-aminobenzoic acid and ethanol in the presence of sulfuric acid yields benzocaine.
The product formed when methanol reacts with acetic acid is methyl acetate. This reaction is also known as Fischer esterification, and it involves the condensation of methanol and acetic acid in the presence of an acid catalyst to form the ester product.
When concentrated sulfuric acid is heated with oxalic acid, oxidation of oxalic acid takes place, giving off carbon dioxide gas and water as byproducts. This reaction can be used to generate carbon dioxide for various applications.
2,4,6-trichloro aniline
When ethanol is heated in the presence of concentrated H2SO4, it undergoes dehydration to form ethylene gas. This reaction follows an elimination mechanism where a water molecule is eliminated from ethanol to produce ethylene.
product is formed
1-pentene will react with water in the presence of dilute sulfuric acid to form 1-pentanol as the major product. This reaction is an acid-catalyzed hydration reaction where water adds across the double bond to form an alcohol.
Acetobacter spp. produce acetic acid through the fermentation of ethanol in the presence of oxygen, resulting in the production of vinegar.
When oxalic acid is heated in the presence of sulfuric acid, it undergoes combustion to produce carbon dioxide, water vapor, and sulfur dioxide. The chemical reaction can be represented by the equation: H2C2O4 + H2SO4 -> CO2 + H2O + SO2.
Sulfuric acid can be made using hydrogen peroxide by reacting hydrogen peroxide with sulfur dioxide gas in the presence of a catalyst. This reaction produces sulfuric acid as a product.
The reaction of potassium thiocyanate with aniline in the presence of bromine in acetic acid will result in the formation of 2-phenyl-4,5-dihydro-1H-imidazole-1-carbothioamide.