Lesson 3.3.4.2
3.3.4.2 Addition reactions of alkenes Quiz: AQA Chemistry, Unit 3
20 questions
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Lesson 3.3.4.2, Addition reactions of alkenes: 20 multiple choice questions for the AQA Chemistry (7405), Unit 3: Organic chemistry, written with Revision Ninja.
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The 20 questions
-
What type of mechanism do alkenes undergo with HBr?
- Elimination
- Nucleophilic substitution
- Electrophilic addition
- Free-radical substitution
-
What is the first step in the electrophilic addition of HBr to ethene?
- The C=C pi bond attacks H of HBr, forming a carbocation and Br-
- HBr breaks into radicals under dark conditions
- Br- attacks the C=C bond directly with no intermediate
- Ethene loses a hydrogen atom to form ethyne
-
What is the product of the reaction of ethene with bromine water?
- 1,2-dibromoethane
- Tribromoethane
- Bromoethene
- Ethanol
-
Which reagent is used to test for unsaturation in an organic compound?
- Lime water
- Sodium carbonate
- Bromine water
- Dilute hydrochloric acid
-
What is the major product of adding HBr to propene?
- 2-bromopropane
- Bromoethane
- 1-bromopropane
- Propan-2-ol
-
What is the minor product of adding HBr to propene?
- Propene only
- 1-bromopropane
- 2-bromopropane
- Bromoethane
-
Which carbocation is the most stable?
- Secondary only
- Tertiary
- Primary
- Methyl only
-
Why is 2-bromopropane the major product from propene and HBr?
- It is produced without any intermediate
- It forms via the less stable primary carbocation
- It is produced by a free-radical reaction only
- It forms via the more stable secondary carbocation
-
Which alkene gives only one product when reacted with HBr?
- Ethene
- But-1-ene
- 2-methylpropene
- Propene
-
What is the product of adding H2SO4 to ethene followed by hydrolysis?
- Ethanol
- Ethyne
- Ethanoic acid
- Ethane
-
Which electrophile is formed in the addition of Br2 to an alkene?
- A bromonium ion or polarised Br2 species
- A chloride ion
- A bromide ion
- A hydroxide ion
-
Why is the addition of bromine to an alkene described as electrophilic?
- Br2 is a nucleophile that donates electrons to the C=C bond
- The reaction involves only the removal of H+
- Bromine is a radical that attacks the C=C bond
- Br2 is polarised and the electron-rich C=C bond is attacked by an electron-pair acceptor
-
Which product forms when HBr adds to but-1-ene in the major pathway?
- Butan-1-ol
- 1-bromobutane
- 2-bromobutane
- But-2-ene
-
What is the name of the rule used to predict the major product of electrophilic addition to unsymmetrical alkenes?
- Avogadro's law
- Markovnikov's rule
- Le Chatelier's principle
- Hess's law
-
What is the role of H2SO4 in the addition of H2SO4 to an alkene?
- It is an electrophile that adds H+ to the C=C bond
- It is an oxidising agent that adds oxygen
- It is a radical initiator
- It is a nucleophile that removes Br from the alkene
-
What is the balanced equation for the addition of Br2 to ethene?
- C2H4 + Br2 -> C2H4Br2
- C2H4 + Br2 -> C2H2Br2 + H2
- C2H4 + 2Br2 -> C2H4Br4
- C2H4 + Br2 -> C2H3Br + HBr
-
Explain the reason for the major and minor product formation in addition reactions of unsymmetrical alkenes.
- The reaction involves only radicals so products are random
- The more stable carbocation intermediate forms preferentially, so the major product results from it
- The minor product is always more stable than the major product
- Both products form from identical intermediates with equal stability
-
Explain why a tertiary carbocation is more stable than a primary carbocation.
- Alkyl groups withdraw electron density, making the positive carbon more concentrated
- The tertiary carbocation has no positive charge
- Alkyl groups donate electron density to the positive carbon, spreading and stabilising the charge
- Primary carbocations contain more hydrogen atoms that repel the charge
-
A student adds bromine water to an unknown liquid and the orange colour disappears. What does this show?
- The compound is an ionic salt
- The compound is an acid that neutralises bromine
- The compound is saturated and contains only C-C single bonds
- The compound is unsaturated and contains a C=C bond
-
Explain why the reaction of alkenes with bromine water is useful as a test for unsaturation.
- Alkanes change bromine water to a blue solution, unlike alkenes
- Bromine water produces a precipitate only with alkanes
- The orange bromine is decolourised rapidly by addition across C=C bonds, while saturated alkanes do not react
- Bromine water reacts equally with all organic compounds
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