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Q. Which of the following is the general formula for alkynes?
  • A. C_nH_(2n+2)
  • B. C_nH_(2n)
  • C. C_nH_(2n-2)
  • D. C_nH_(2n-1)
Q. Which of the following is the simplest alkyne?
  • A. Ethylene
  • B. Acetylene
  • C. Propylene
  • D. Butyne
Q. Which of the following reactions can alkynes undergo?
  • A. Electrophilic addition
  • B. Nucleophilic substitution
  • C. Free radical substitution
  • D. All of the above
Q. Which of the following reactions can be used to convert an alkyne to a cis-alkene?
  • A. Hydrogenation
  • B. Halogenation
  • C. Hydroboration
  • D. Ozonolysis
Q. Which of the following reactions can be used to convert an alkyne to an alkene?
  • A. Hydrogenation
  • B. Halogenation
  • C. Hydrohalogenation
  • D. Dehydrohalogenation
Q. Which of the following reactions can be used to prepare alkynes?
  • A. Hydrogenation of alkenes
  • B. Dehydrohalogenation of alkyl halides
  • C. Oxidation of alkanes
  • D. Hydrolysis of alkynes
Q. Which of the following statements about alkynes is incorrect?
  • A. They are unsaturated hydrocarbons.
  • B. They contain at least one triple bond.
  • C. They are more reactive than alkenes.
  • D. They have a higher boiling point than alkenes.
Q. Which of the following statements about alkynes is true?
  • A. They are less acidic than alkenes.
  • B. They can undergo polymerization.
  • C. They have a higher boiling point than alkenes.
  • D. They are more stable than alkenes.
Q. Which of the following statements is true about alkynes?
  • A. They are less reactive than alkenes.
  • B. They are more acidic than alkenes.
  • C. They cannot undergo addition reactions.
  • D. They have a higher boiling point than alkenes.
Q. Which reaction is characteristic of alkynes?
  • A. Hydrogenation
  • B. Halogenation
  • C. Hydrohalogenation
  • D. All of the above
Q. Which reaction is commonly used to convert alkynes to alkenes?
  • A. Hydrogenation
  • B. Halogenation
  • C. Hydroboration
  • D. Dehydrohalogenation
Q. Which reaction is used to prepare alkynes from alkenes?
  • A. Hydrogenation
  • B. Dehydrohalogenation
  • C. Hydrohalogenation
  • D. Halogenation
Q. Which reagent can be used to convert an alkyne to a diketone?
  • A. KMnO4
  • B. O3
  • C. H2O
  • D. H2SO4
Q. Which reagent can be used to convert an alkyne to a ketone?
  • A. H2O/H2SO4
  • B. LiAlH4
  • C. B2H6
  • D. KMnO4
Q. Which reagent can be used to distinguish between an alkyne and an alkene?
  • A. Bromine water
  • B. Sodium metal
  • C. Potassium permanganate
  • D. Hydrochloric acid
Q. Which reagent is commonly used to convert alkynes to alkenes?
  • A. H2/Pd
  • B. LiAlH4
  • C. Br2
  • D. KMnO4
Q. Which reagent is commonly used to convert an alkyne to a cis-alkene?
  • A. H2/Pd
  • B. H2/Lindlar's catalyst
  • C. LiAlH4
  • D. NaNH2
Q. Which reagent is commonly used to test for the presence of alkynes?
  • A. Bromine water
  • B. Silver nitrate
  • C. Sodium metal
  • D. Bayer's reagent
Q. Which reagent is used for the selective hydrogenation of alkynes to alkenes?
  • A. Pd/BaSO4
  • B. LiAlH4
  • C. H2/Pt
  • D. NaNH2
Q. Which reagent is used to convert an alkyne to a cis-alkene?
  • A. H2/Pd
  • B. H2/Lindlar's catalyst
  • C. Li/NH3
  • D. Na/NH3
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Alkynes MCQ & Objective Questions

Alkynes are a crucial topic in organic chemistry that students must master for their exams. Understanding alkynes not only enhances your conceptual clarity but also boosts your confidence in tackling MCQs and objective questions. Practicing these important questions can significantly improve your exam preparation and help you score better in school and competitive exams.

What You Will Practise Here

  • Definition and general formula of alkynes
  • Structure and bonding in alkynes
  • Reactions of alkynes, including addition and substitution reactions
  • Physical properties and uses of alkynes
  • Isomerism in alkynes
  • Preparation methods for alkynes
  • Key differences between alkenes and alkynes

Exam Relevance

Alkynes are frequently featured in various examinations, including CBSE, State Boards, NEET, and JEE. Students can expect questions related to the properties, reactions, and applications of alkynes. Common question patterns include multiple-choice questions that test your understanding of the structure and reactivity of alkynes, as well as their comparison with other hydrocarbons. Mastering this topic can give you an edge in both theoretical and practical assessments.

Common Mistakes Students Make

  • Confusing the general formula of alkynes with that of alkenes.
  • Overlooking the significance of hybridization in determining the properties of alkynes.
  • Misunderstanding the types of reactions that alkynes can undergo.
  • Failing to recognize isomerism in alkynes and its implications.

FAQs

Question: What is the general formula for alkynes?
Answer: The general formula for alkynes is CnH2n-2.

Question: How do alkynes differ from alkenes?
Answer: Alkynes contain a triple bond between carbon atoms, while alkenes have a double bond.

Now is the perfect time to enhance your understanding of alkynes. Dive into our practice MCQs and test your knowledge to ensure you are well-prepared for your upcoming exams. Remember, consistent practice is key to success!

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