Organic Chemistry

Alcohols, Phenols and Ethers Aldehydes and Ketones Amines - Preparation & Properties Aromatic Compounds and Electrophilic Substitution Aromatic Compounds and Electrophilic Substitution - Advanced Concepts Aromatic Compounds and Electrophilic Substitution - Applications Aromatic Compounds and Electrophilic Substitution - Case Studies Aromatic Compounds and Electrophilic Substitution - Competitive Exam Level Aromatic Compounds and Electrophilic Substitution - Higher Difficulty Problems Aromatic Compounds and Electrophilic Substitution - Numerical Applications Aromatic Compounds and Electrophilic Substitution - Problem Set Aromatic Compounds and Electrophilic Substitution - Real World Applications Atomic Structure - Quantum Model Biomolecules Chemical Bonding - Hybridization Chemical Kinetics Advanced Coordination Compounds - Werner Theory D & F Block Elements Electrochemistry Advanced Functional Groups and Nomenclature Functional Groups and Nomenclature - Advanced Concepts Functional Groups and Nomenclature - Applications Functional Groups and Nomenclature - Case Studies Functional Groups and Nomenclature - Competitive Exam Level Functional Groups and Nomenclature - Higher Difficulty Problems Functional Groups and Nomenclature - Numerical Applications Functional Groups and Nomenclature - Problem Set Functional Groups and Nomenclature - Real World Applications Haloalkanes & Haloarenes Hydrocarbons - Reaction Mechanisms Hydrocarbons: Alkanes, Alkenes, Alkynes Hydrocarbons: Alkanes, Alkenes, Alkynes - Advanced Concepts Hydrocarbons: Alkanes, Alkenes, Alkynes - Applications Hydrocarbons: Alkanes, Alkenes, Alkynes - Case Studies Hydrocarbons: Alkanes, Alkenes, Alkynes - Competitive Exam Level Hydrocarbons: Alkanes, Alkenes, Alkynes - Higher Difficulty Problems Hydrocarbons: Alkanes, Alkenes, Alkynes - Numerical Applications Hydrocarbons: Alkanes, Alkenes, Alkynes - Problem Set Hydrocarbons: Alkanes, Alkenes, Alkynes - Real World Applications Isomerism and Stereochemistry Isomerism and Stereochemistry - Advanced Concepts Isomerism and Stereochemistry - Applications Isomerism and Stereochemistry - Case Studies Isomerism and Stereochemistry - Competitive Exam Level Isomerism and Stereochemistry - Higher Difficulty Problems Isomerism and Stereochemistry - Numerical Applications Isomerism and Stereochemistry - Problem Set Isomerism and Stereochemistry - Real World Applications P-Block Elements Polymers Reaction Mechanisms: Substitution, Addition, Elimination Reaction Mechanisms: Substitution, Addition, Elimination - Advanced Concepts Reaction Mechanisms: Substitution, Addition, Elimination - Applications Reaction Mechanisms: Substitution, Addition, Elimination - Case Studies Reaction Mechanisms: Substitution, Addition, Elimination - Competitive Exam Level Reaction Mechanisms: Substitution, Addition, Elimination - Higher Difficulty Problems Reaction Mechanisms: Substitution, Addition, Elimination - Numerical Applications Reaction Mechanisms: Substitution, Addition, Elimination - Problem Set Reaction Mechanisms: Substitution, Addition, Elimination - Real World Applications Solution & Colligative Properties States of Matter - Real Gases Surface Chemistry Thermodynamics Advanced
Q. What is the product of the hydrogenation of 1-hexene?
  • A. Hexane
  • B. Cyclohexane
  • C. 1-hexanol
  • D. 2-hexanol
Q. What is the product of the hydrogenation of 2-pentyne?
  • A. pentane
  • B. 2-pentene
  • C. 1-pentene
  • D. 3-pentene
Q. What is the product of the hydrolysis of an amide?
  • A. Carboxylic acid and amine
  • B. Alcohol and acid
  • C. Alkene and water
  • D. Ketone and ammonia
Q. What is the product of the hydrolysis of an ester?
  • A. Alcohol and carboxylic acid
  • B. Alkene and water
  • C. Ketone and hydrogen
  • D. Aldehyde and carbon dioxide
Q. What is the product of the hydrolysis of chlorobenzene?
  • A. Phenol
  • B. Benzene
  • C. Chlorobenzene
  • D. Benzyl alcohol
Q. What is the product of the reaction between 1-butyne and H2 in the presence of a catalyst?
  • A. 1-butene
  • B. 2-butene
  • C. Butane
  • D. Cyclobutane
Q. What is the product of the reaction between 1-pentene and HBr?
  • A. 1-bromopentane
  • B. 2-bromopentane
  • C. 3-bromopentane
  • D. 4-bromopentane
Q. What is the product of the reaction between an alcohol and a carboxylic acid in the presence of an acid catalyst?
  • A. Ester
  • B. Ether
  • C. Aldehyde
  • D. Ketone
Q. What is the product of the reaction between an amine and an alkyl halide?
  • A. Amide
  • B. Quaternary ammonium salt
  • C. Nitrile
  • D. Alcohol
Q. What is the product of the reaction between benzene and sulfur trioxide in the presence of sulfuric acid?
  • A. Benzene sulfonic acid
  • B. Benzene thiol
  • C. Benzyl sulfonate
  • D. Benzene sulfide
Q. What is the product of the reaction between benzyl chloride and sodium hydroxide in water?
  • A. Benzyl alcohol
  • B. Benzyl ether
  • C. Benzyl amine
  • D. Benzyl bromide
Q. What is the product of the reaction between ethene and bromine?
  • A. Bromoethane
  • B. 1,2-Dibromoethane
  • C. Ethane
  • D. Ethyl bromide
Q. What is the product of the reaction between ethene and HBr?
  • A. Bromoethane
  • B. Ethyl bromide
  • C. 1-bromopropane
  • D. 2-bromopropane
Q. What is the product of the reaction between ethene and water in the presence of an acid catalyst?
  • A. Ethanol
  • B. Ethane
  • C. Ethylene glycol
  • D. Acetic acid
Q. What is the product of the reaction between propene and HBr?
  • A. 1-bromopropane
  • B. 2-bromopropane
  • C. Propyl bromide
  • D. Bromopropane
Q. What is the product of the reaction of 1-chloropropane with potassium thiocyanate?
  • A. propyl thiocyanate
  • B. propyl isothiocyanate
  • C. 1-thiocyanatopropane
  • D. no reaction
Q. What is the product of the reaction of 1-pentyne with H2 in the presence of Lindlar's catalyst?
  • A. Pentane
  • B. 1-pentene
  • C. 2-pentene
  • D. 1-butyne
Q. What is the product of the reaction of 2-pentyne with water in the presence of sulfuric acid?
  • A. 2-Pentanol
  • B. 3-Pentanol
  • C. Pentanal
  • D. Pentanoic acid
Q. What is the product of the reaction of an amine with nitrous acid?
  • A. Diazonium salt
  • B. Amide
  • C. Alcohol
  • D. Aldehyde
Q. What is the product of the reaction of benzene with bromine in the presence of a Lewis acid catalyst?
  • A. Bromobenzene
  • B. Benzyl bromide
  • C. Bromobenzyl
  • D. Benzene dibromide
Q. What is the product of the reaction of benzene with bromine in the presence of FeBr3?
  • A. Bromobenzene
  • B. Benzyl bromide
  • C. Bromopropane
  • D. No reaction
Q. What is the product of the reaction of benzene with sulfur trioxide (SO3) in the presence of sulfuric acid?
  • A. Benzene sulfonic acid
  • B. Benzene thiol
  • C. Benzene sulfide
  • D. Benzene sulfoxide
Q. What is the product of the reaction of ethylene with bromine?
  • A. Bromomethane
  • B. 1,2-dibromoethane
  • C. Bromoethane
  • D. Ethane
Q. What is the product of the reaction of phenol with acetic anhydride?
  • A. Phenyl acetate
  • B. Acetophenone
  • C. Benzyl acetate
  • D. Phenyl acetic acid
Q. What is the product of the reaction of phenol with excess bromine?
  • A. Bromobenzene
  • B. 2,4,6-Tribromophenol
  • C. Bromophenol
  • D. Benzene
Q. What is the product of the sulfonation of benzene using sulfur trioxide (SO3)?
  • A. Benzene sulfonic acid
  • B. Benzene thiol
  • C. Benzene sulfonate
  • D. Benzene disulfonic acid
Q. What is the rate law for the reaction A + B → C if the rate is found to be first order in A and second order in B?
  • A. Rate = k[A][B]
  • B. Rate = k[A]^2[B]
  • C. Rate = k[A][B]^2
  • D. Rate = k[A]^2[B]^2
Q. What is the relationship between (R)-2-butanol and (S)-2-butanol?
  • A. They are identical.
  • B. They are diastereomers.
  • C. They are enantiomers.
  • D. They are constitutional isomers.
Q. What is the repeating unit in the polymer polystyrene?
  • A. C6H5CH=CH2
  • B. C8H8
  • C. C6H5C(CH3)=CH2
  • D. C6H5C2H4
Q. What is the role of a catalyst in electrophilic aromatic substitution reactions?
  • A. To stabilize the product
  • B. To generate the electrophile
  • C. To increase the temperature
  • D. To decrease the reaction time
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