Unit 1: Introduction to biophysics - Subjective Questions

BTY269 — Biophysics • Practice Questions with Detailed Answers

20 questions

1

Define biomolecules and classify them into their major categories with suitable examples.

2

Explain the different types of chemical bonds important in biochemistry and their biological relevance.

3

Distinguish between the A, B, and Z forms of DNA with respect to their conformational features.

4

Describe the Watson-Crick model of DNA structure and explain the significance of complementary base pairing.

5

Explain the process of transcription (from DNA to RNA) in detail.

6

Compare and contrast the structures of DNA and RNA.

7

What are conformational changes in DNA? Explain the factors that influence DNA conformation.

8

Describe the various types of RNA and their biological functions.

9

Explain the biophysics of RNA folding and why RNA can form complex three-dimensional structures.

10

Derive and explain how hydrogen bonding and base stacking contribute to the stability of the DNA double helix.

11

Define peptide bond and describe its structural and biophysical characteristics.

12

Explain the central dogma of molecular biology and its significance in the flow of genetic information.

13

Describe the structure of amino acids and explain how their properties determine protein structure.

14

Distinguish between hydrophilic and hydrophobic interactions and explain their role in biomolecular organization.

15

Explain the significance of the melting temperature () of DNA and the factors affecting it.

16

Describe the structure of a nucleotide and explain how nucleotides are joined to form nucleic acids.

17

Explain the concept of DNA supercoiling and its biological importance.

18

Compare the roles of RNA in the RNA world hypothesis with its roles in modern cells, and explain RNA's catalytic ability.

19

Explain the major and minor grooves of DNA and their biological significance.

20

Describe the levels of protein structure and the forces stabilizing each level.