Photo AI

Figure 1 shows some compounds made from a halogenoalkane - AQA - A-Level Chemistry - Question 1 - 2017 - Paper 2

Question icon

Question 1

Figure-1-shows-some-compounds-made-from-a-halogenoalkane-AQA-A-Level Chemistry-Question 1-2017-Paper 2.png

Figure 1 shows some compounds made from a halogenoalkane. Figure 1 Compound J Reaction 1 CH3CH2CH2Br NaOH(aq) Reaction 2 NH3 CH3CH2CH2NH2 Reaction 3 C3H8 ... show full transcript

Worked Solution & Example Answer:Figure 1 shows some compounds made from a halogenoalkane - AQA - A-Level Chemistry - Question 1 - 2017 - Paper 2

Step 1

Draw the displayed formula of compound J.

96%

114 rated

Answer

The displayed formula of compound J is:

   H   H   H
    |   |   |
H - C - C - C - Br
    |   |   |
   H   H   H

Step 2

Name the mechanism for Reaction 2 and give an essential condition used to ensure that CH3CH2CH2NH2 is the major product.

99%

104 rated

Answer

The mechanism for Reaction 2 is nucleophilic substitution. An essential condition to ensure that CH3CH2CH2NH2 is the major product is to use excess NH3.

Step 3

Calculate the mass, in grams, of CH3CH2CH2NH2 produced from 25.2 g of CH3CH2CH2Br in Reaction 2 assuming a 75.0% yield.

96%

101 rated

Answer

To find the mass of CH3CH2CH2NH2 produced, first calculate the moles of CH3CH2CH2Br:

  1. Calculate moles of CH3CH2CH2Br:

    • Molar mass of CH3CH2CH2Br = 25.2 g / 205 g/mol = 0.1229 mol
  2. Calculate expected mass of CH3CH2CH2NH2:

    • Molar ratio = 1:1, so 0.1229 mol of NH2 produced.
    • Molar mass of CH3CH2CH2NH2 = 3(14) + 7(1) = 44 g/mol
    • Mass = 0.1229 mol * 44 g/mol = 5.4136 g
  3. Calculate final mass accounting for yield:

    • Final mass = 5.4136 g * 0.75 = 4.0602 g

Therefore, the mass of CH3CH2CH2NH2 produced is 4.06 g to three significant figures.

Step 4

Draw the skeletal formula of the compound.

98%

120 rated

Answer

The skeletal formula for the compound with molecular formula C3H7N is:

   H   H
    |   |
H - C - C - C - N
    |   |
   H   H

Step 5

Identify the functional group in the compound including its classification.

97%

117 rated

Answer

The functional group in the compound is the amine group, classified as a primary amine since it is bonded to one alkyl group.

Step 6

Identify the reagent and conditions used in Reaction 3.

97%

121 rated

Answer

The reagent used in Reaction 3 is NaOH in ethanol. Conditions include heating under reflux.

Step 7

Name and outline a mechanism for Reaction 3.

96%

114 rated

Answer

The mechanism for Reaction 3 is base elimination. The mechanism involves:

  1. A base abstracts a proton from the β-carbon.
  2. The leaving group (Br) departs, forming a double bond between the α and β carbons, producing an alkene.

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

;