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The reaction between ethanoic acid (acetic acid) and sodium hydroxide is a double replacement one. Normally a reaction between an acid (acetic acid in this case) and a base (like NaOH) involves neutralization, which in turn produces water.
The reaction between bromine and cyclohexane involves substitution of a hydrogen atom in cyclohexane with a bromine atom, forming bromocyclohexane. This reaction is a free-radical substitution reaction. Conditions favoring the reaction include the presence of light or heat to initiate the free radical formation and the use of a radical initiator such as peroxides.
One possible product of the reaction between chloromethane and sodium hydroxide solution is methanol and sodium chloride. Methanol is formed by the substitution of the chlorine in chloromethane with the hydroxide ion from sodium hydroxide, while sodium chloride is a byproduct of the reaction.
The reaction between bromocyclopentane and methoxide will result in the substitution of bromine with the methoxy group, forming methoxycyclopentane as the product. This is a nucleophilic substitution reaction.
The reaction between methane and bromine is a substitution reaction, specifically a halogenation reaction. In this reaction, one or more hydrogen atoms in methane are replaced by bromine atoms to form bromomethane.
The reaction between ethanoic acid (acetic acid) and sodium hydroxide is a double replacement one. Normally a reaction between an acid (acetic acid in this case) and a base (like NaOH) involves neutralization, which in turn produces water.
what is d difference between import substitution and export promotion
The reaction between 1-butene and chlorine gas is called chlorination. This reaction involves the substitution of a hydrogen atom in 1-butene with a chlorine atom to form a chlorinated product.
The difference between substitution and transposition is that in:Subtitution:each letter retains its position but changes its identity,Transposition:each letter retains its identity but changes its position.
The reaction between bromine and cyclohexane involves substitution of a hydrogen atom in cyclohexane with a bromine atom, forming bromocyclohexane. This reaction is a free-radical substitution reaction. Conditions favoring the reaction include the presence of light or heat to initiate the free radical formation and the use of a radical initiator such as peroxides.
The reaction between phenol and bromine water results in the substitution of a hydrogen atom on the benzene ring with a bromine atom. This forms bromophenol as the product. The reaction is a bromination reaction and the presence of phenol's hydroxyl group activates the benzene ring towards electrophilic substitution.
One possible product of the reaction between chloromethane and sodium hydroxide solution is methanol and sodium chloride. Methanol is formed by the substitution of the chlorine in chloromethane with the hydroxide ion from sodium hydroxide, while sodium chloride is a byproduct of the reaction.
The reaction between bromocyclopentane and methoxide will result in the substitution of bromine with the methoxy group, forming methoxycyclopentane as the product. This is a nucleophilic substitution reaction.
sum is addition difference is subtraction
There is no difference between vector addition and algebraic addition. Algebraic Addition applies to vectors and scalars: [a ,A ] + [b, B] = [a+b, A + B]. Algebraic addition handles the scalars a and b the same as the Vectors A and B
The reaction between methane and bromine is a substitution reaction, specifically a halogenation reaction. In this reaction, one or more hydrogen atoms in methane are replaced by bromine atoms to form bromomethane.
Salts are the products of a reaction between an acid and a base; this reaction is called neutralization reaction.