Carboxylic Acids and Derivatives
195 questions· page 1 of 20
The three acids, propanoic acid, methanoic acid and ethanedioic acid, can be distinguished using a combination of two chemical tests. Neither testing reagent is an acid–base indicator.
Identify two suitable testing reagents and complete Table 10.1 to show the observations from each test.
reagent 1 ........................................................ reagent 2 ........................................................
Table 10.1
| observation when treated with reagent 1 | observation when treated with reagent 2 | |
|---|---|---|
| propanoic acid | ||
| methanoic acid | ||
| ethanedioic acid |
When propanoic acid is treated with chlorine gas in the presence of ultraviolet light, a mixture of products is formed. One of these products is 2,2-dichloropropanoic acid.
Explain why 2,2-dichloropropanoic acid is stronger than propanoic acid. Refer to the structure of each compound in your answer.
Complete the mechanism in Fig. 9.2 and include:
- all relevant dipoles ( and ) and full electric charges (+ and -) on the species in box one and in box two
- all relevant lone pairs on the species in box one and in box two
- all relevant curly arrows to show the movement of electron pairs in box one and in box two
- the formula of the second product in box three.
Benzoyl chloride, chlorobenzene and chloroethane differ in their rates of hydrolysis when each compound is added separately to water at .
Suggest the relative ease of hydrolysis of these three compounds.
Explain your answer.
Suggest suitable reagents and conditions for step 1 and step 2.
step 1 .................................................................................................................................
step 2 .................................................................................................................................
Identify the type of reaction in step 1 and step 2.
step 1 .................................................................................................................................
step 2 .................................................................................................................................
Complete the mechanism in Fig. 9.1 and include:
- all relevant dipoles ( and ) and full electric charges ( and ) on the species in box one and in box two
- all relevant lone pairs on the species in box one and in box two
- all relevant curly arrows to show the movement of electron pairs in box one and in box two
- the formula of the second product in box three.
Benzoyl chloride, chlorobenzene and chloroethane differ in their rates of hydrolysis when each compound is added separately to water at .
Suggest the relative ease of hydrolysis of these three compounds.
Explain your answer.
......................................... ......................................... .........................................
hardest to hydrolyse easiest to hydrolyse
explanation ...............................................................................................................................
The carbon-13 () NMR spectrum of compound A, , contains six peaks.
Compound A reacts with an excess of bromine water to give compound B, .
Compound A reacts with alkaline aqueous iodine to form a yellow precipitate C and compound D.
Compound D reacts with to form compound E, .
Compound E reacts with propan-2-ol to form compound F.
Draw the structures of compounds A, B, C, D, E and F in the boxes.
The carbon-13 () NMR spectrum of compound A, , contains six peaks.
Compound A reacts with an excess of bromine water to give compound B, .
Compound A reacts with alkaline aqueous iodine to form a yellow precipitate C and compound D.
Compound D reacts with to form compound E, .
Compound E reacts with propan-2-ol to form compound F.
Draw the structures of compounds A, B, C, D, E and F in the boxes.
Phenyl 2-hydroxybenzoate is an antiseptic.
Complete the following table about the reactions of phenyl 2-hydroxybenzoate with the three reagents.
A series of experiments is carried out in which the reagent shown at the top of the column of the table is mixed, in turn, with each of the reagents at the side.
Complete the following table by writing in each box the formula of any gas produced.
Write x in the box if no gas is produced.
The first column has been completed as an illustration.
State the reagent and conditions needed to convert C back to B, the reverse of step 3.
A series of experiments is carried out in which the reagent shown at the top of the column of the table is mixed, in turn, with each of the reagents at the side.
Complete the following table by writing in each box the formula of any gas produced.
Write x in the box if no gas is produced.
The first column has been completed as an illustration.
State the reagent and conditions needed to convert C back to B, the reverse of step 3.
Phenyl propanoate cannot be made directly from propanoic acid and phenol.
Suggest the identities of the intermediate G, the reagent H and the by-product J in the following reaction scheme.
G is ..........................................................
H is ..........................................................
J is ..........................................................
Phenyl propanoate cannot be made directly from propanoic acid and phenol.
Suggest the identities of the intermediate G, the reagent H and the by-product J in the following reaction scheme.
G is ..........................................................
H is ..........................................................
J is ..........................................................