
Which of the following shows optical activity?
A.
B.
C.
D.
Answer
180k+ views
Hint: Optical activity can be understood as a phenomenon where the chiral carbon atoms in the organic compound tend to rotate the polarized light in either a clockwise or a counter – clockwise direction.
Complete Step-by-Step Answer:
Before we move forward with the solution of the given question, let us discuss some important basic concepts.
In an organic compound, a chiral carbon is the carbon atom which has four different atoms or molecules attached to it. It is important that all the four bonds formed by the carbon atom have different atoms or molecules for it to be called a chiral carbon. Chiral carbons are also responsible for a phenomenon known as optical activity. On the other hand, achiral carbons can be understood as the carbon atoms which have at least two bonded atoms or molecules to be the same. Achiral carbon atoms do not show optical activity.
Hence for finding the compound which shows optical activity from the given options, we must find the compound which has a chiral carbon.
1.
This compound has 2 hydrogen atoms on the central carbon atom. Hence this compound does not have a chiral carbon.
2.
This compound has 4 different functional groups on all the bonds of the central carbon atom. Hence it has a chiral carbon.
3.
This compound has two -OH molecules on the central carbon atom. Hence this compound does not have a chiral carbon.
4.
This compound has two - \[C{H_3}\] molecules on the central carbon atom. Hence this compound does not have a chiral carbon.
Hence, Option B is the correct option.
Note: In a solution if the total number of clockwise and counter – clockwise optical isomers is the same, then the solution is rendered optically inactive. This type of a mixture of optical isomers which is optically inactive is known as a racemic mixture.
Complete Step-by-Step Answer:
Before we move forward with the solution of the given question, let us discuss some important basic concepts.
In an organic compound, a chiral carbon is the carbon atom which has four different atoms or molecules attached to it. It is important that all the four bonds formed by the carbon atom have different atoms or molecules for it to be called a chiral carbon. Chiral carbons are also responsible for a phenomenon known as optical activity. On the other hand, achiral carbons can be understood as the carbon atoms which have at least two bonded atoms or molecules to be the same. Achiral carbon atoms do not show optical activity.
Hence for finding the compound which shows optical activity from the given options, we must find the compound which has a chiral carbon.
1.

This compound has 2 hydrogen atoms on the central carbon atom. Hence this compound does not have a chiral carbon.
2.

This compound has 4 different functional groups on all the bonds of the central carbon atom. Hence it has a chiral carbon.
3.

This compound has two -OH molecules on the central carbon atom. Hence this compound does not have a chiral carbon.
4.

This compound has two - \[C{H_3}\] molecules on the central carbon atom. Hence this compound does not have a chiral carbon.
Hence, Option B is the correct option.
Note: In a solution if the total number of clockwise and counter – clockwise optical isomers is the same, then the solution is rendered optically inactive. This type of a mixture of optical isomers which is optically inactive is known as a racemic mixture.
Recently Updated Pages
Hess Law of Constant Heat Summation: Definition, Formula & Applications

JEE Atomic Structure and Chemical Bonding important Concepts and Tips

JEE Amino Acids and Peptides Important Concepts and Tips for Exam Preparation

JEE Electricity and Magnetism Important Concepts and Tips for Exam Preparation

Chemical Properties of Hydrogen - Important Concepts for JEE Exam Preparation

JEE Energetics Important Concepts and Tips for Exam Preparation

Trending doubts
JEE Main 2025 Session 2: Application Form (Out), Exam Dates (Released), Eligibility, & More

JEE Main 2025: Derivation of Equation of Trajectory in Physics

Displacement-Time Graph and Velocity-Time Graph for JEE

Atomic Structure - Electrons, Protons, Neutrons and Atomic Models

Learn About Angle Of Deviation In Prism: JEE Main Physics 2025

What is Hybridisation in Chemistry?

Other Pages
JEE Advanced Marks vs Ranks 2025: Understanding Category-wise Qualifying Marks and Previous Year Cut-offs

NCERT Solutions For Class 11 Chemistry Chapter 1 Some Basic Concepts of Chemistry in Hindi - 2025-26

JEE Main 2025: Conversion of Galvanometer Into Ammeter And Voltmeter in Physics

JEE Advanced Weightage 2025 Chapter-Wise for Physics, Maths and Chemistry

NCERT Solutions For Class 11 Chemistry Chapter 7 Redox Reaction - 2025-26

Electric Field Due to Uniformly Charged Ring for JEE Main 2025 - Formula and Derivation
