Unit 1: Principles of biophysical chemistry and Carbohydrates - Subjective Questions

BTY501 — Biomolecules And Metabolism • Practice Questions with Detailed Answers

20 questions

1

Define chemical bonds and explain the various weak (non-covalent) interactions that stabilize the three-dimensional structure of biomolecules.

2

Explain the concept of pH and derive the Henderson-Hasselbalch equation. How is it useful in understanding buffer action?

3

What is a buffer? Describe the mechanism of buffer action with a suitable example.

4

Define bioenergetics. Explain the laws of thermodynamics and their relevance to biological systems.

5

Explain the concept of free energy (). Distinguish between exergonic and endergonic reactions.

6

What is meant by coupled reactions? Explain how ATP acts as an energy currency through group transfer reactions.

7

Explain reaction kinetics. Distinguish between zero-order and first-order reactions with their rate equations.

8

Describe the different types of biological energy transducers found in living cells.

9

Explain the concept of standard free energy change () and its relationship with the equilibrium constant. Derive the relationship.

10

Define stereoisomerism in sugars. Explain enantiomers, epimers, and anomers with examples.

11

Give a detailed classification of carbohydrates with suitable examples for each class.

12

Describe the structure of glucose. Explain the phenomenon of mutarotation.

13

Distinguish between aldoses and ketoses. Explain reducing and non-reducing sugars with examples.

14

Describe the structure, glycosidic linkage, and biological importance of the disaccharides maltose, lactose, and sucrose.

15

Compare the structure and function of starch, glycogen, and cellulose.

16

Explain the hydrophobic effect and its role in the folding of proteins and formation of biological membranes.

17

What are high-energy compounds? Explain why ATP is considered a high-energy compound and list other examples.

18

Explain group transfer reactions in metabolism and their significance in coupling of biochemical reactions.

19

Describe the structure and properties of monosaccharides. Explain the formation of the ring (hemiacetal) structure.

20

Derive an expression for the half-life of a first-order reaction and explain its significance in biochemical processes.