Photo AI

Which statement is correct about both 2-methylbutan-1-ol and 2-methylbutan-2-ol? A They can be formed by alkaline hydrolysis of esters - AQA - A-Level Chemistry - Question 11 - 2018 - Paper 3

Question icon

Question 11

Which-statement-is-correct-about-both-2-methylbutan-1-ol-and-2-methylbutan-2-ol?--A--They-can-be-formed-by-alkaline-hydrolysis-of-esters-AQA-A-Level Chemistry-Question 11-2018-Paper 3.png

Which statement is correct about both 2-methylbutan-1-ol and 2-methylbutan-2-ol? A They can be formed by alkaline hydrolysis of esters. B They can be oxidised by... show full transcript

Worked Solution & Example Answer:Which statement is correct about both 2-methylbutan-1-ol and 2-methylbutan-2-ol? A They can be formed by alkaline hydrolysis of esters - AQA - A-Level Chemistry - Question 11 - 2018 - Paper 3

Step 1

A They can be formed by alkaline hydrolysis of esters.

96%

114 rated

Tired rob

Only available for registered users.

Sign up now to view full answer, or log in if you already have an account!

Answer

This statement is incorrect. Alkaline hydrolysis of esters produces alcohols, but not specifically 2-methylbutan-1-ol or 2-methylbutan-2-ol unless a specific ester is used.

Step 2

B They can be oxidised by reaction with acidified potassium dichromate(V).

99%

104 rated

Tired rob

Only available for registered users.

Sign up now to view full answer, or log in if you already have an account!

Answer

This is not correct for both compounds. 2-methylbutan-1-ol (a primary alcohol) can be oxidised to form an aldehyde and subsequently a carboxylic acid. However, 2-methylbutan-2-ol (a secondary alcohol) can be oxidised to a ketone, making this statement misleading.

Step 3

C They can be formed by hydration of 2-methylbut-2-ene.

96%

101 rated

Tired rob

Only available for registered users.

Sign up now to view full answer, or log in if you already have an account!

Answer

This statement is correct. Both alcohols can indeed be synthesized through the hydration of 2-methylbut-2-ene, where 2-methylbutan-1-ol can be formed via Markovnikov's rule.

Step 4

D They have four peaks in their 13C NMR spectra.

98%

120 rated

Tired rob

Only available for registered users.

Sign up now to view full answer, or log in if you already have an account!

Answer

This statement is also correct as both compounds each exhibit distinct chemical environments for their carbon atoms, leading to four peaks in their 13C NMR spectra.

Join the A-Level students using SimpleStudy...

97% of Students

Report Improved Results

98% of Students

Recommend to friends

100,000+

Students Supported

1 Million+

Questions answered

Other A-Level Chemistry topics to explore

Atomic Structure

Chemistry - AQA

Formulae, Equations & Calculations

Chemistry - AQA

The Mole, Avogadro & The Ideal Gas Equation

Chemistry - AQA

Types of Bonding & Properties

Chemistry - AQA

Molecules: Shapes & Forces

Chemistry - AQA

Energetics

Chemistry - AQA

Kinetics

Chemistry - AQA

Chemical Equilibria, Le Chateliers Principle & Kc

Chemistry - AQA

Oxidation, Reduction & Redox Equations

Chemistry - AQA

Periodicity

Chemistry - AQA

Group 2, the Alkaline Earth Metals

Chemistry - AQA

Group 7 (17), the Halogens

Chemistry - AQA

Introduction to Organic Chemistry

Chemistry - AQA

Alkanes

Chemistry - AQA

Halogenoalkanes

Chemistry - AQA

Alkenes

Chemistry - AQA

Alcohols

Chemistry - AQA

Organic Analysis

Chemistry - AQA

Organic & Inorganic Chemistry Practicals

Chemistry - AQA

Thermodynamics

Chemistry - AQA

Rate Equations

Chemistry - AQA

Equilibrium constant (Kp) for Homogeneous Systems

Chemistry - AQA

Electrode Potentials & Electrochemical Cells

Chemistry - AQA

Fundamentals of Acids & Bases

Chemistry - AQA

Further Acids & Bases Calculations

Chemistry - AQA

Properties of Period 3 Elements & their Oxides

Chemistry - AQA

Transition Metals

Chemistry - AQA

Reactions of Ions in Aqueous Solution

Chemistry - AQA

Optical Isomerism

Chemistry - AQA

Aldehydes & Ketones

Chemistry - AQA

Carboxylic Acids & Derivatives

Chemistry - AQA

Aromatic Chemistry

Chemistry - AQA

Amines

Chemistry - AQA

Polymers

Chemistry - AQA

Amino acids, Proteins & DNA

Chemistry - AQA

Organic Synthesis

Chemistry - AQA

Organic Mechanisms

Chemistry - AQA

Nuclear Magnetic Resonance Spectroscopy

Chemistry - AQA

Chromatography

Chemistry - AQA

Physical Chemistry Practicals

Chemistry - AQA

Organic Chemistry Practicals

Chemistry - AQA

;