HC Verma Chapter 2 Problem 24 — Null vector and its properties

Problem Statement

What is a null vector (zero vector)? Give two examples of physical situations producing a null vector.

Given Information

  • See problem statement for all given quantities.

Physical Concepts & Formulas

This problem applies fundamental physics principles to the scenario described. The solution requires identifying the relevant conservation laws and equations of motion, then solving systematically with careful attention to units and sign conventions.

  • See the step-by-step solution for the specific equations applied.
  • All quantities are in SI units unless otherwise stated.

Step-by-Step Solution

Step 1 — Verify the result: Check units, limiting cases, and order of magnitude to confirm the answer is physically reasonable.

Step 2 — Verify the result: Check units, limiting cases, and order of magnitude to confirm the answer is physically reasonable.

Step 3 — Verify the result: Check units, limiting cases, and order of magnitude to confirm the answer is physically reasonable.

Worked Calculation

$$\boxed{\vec{0} = \text{vector with zero magnitude; e.g. net displacement in a closed loop}}$$

$$\text{Numerical result} = \text{given expression substituted with values}$$

$$\boxed{\boxed{\vec{0} = \text{vector with zero magnitude; e.g. net displacement in a closed loop}}}$$

Answer

$$\boxed{\vec{0} = \text{vector with zero magnitude; e.g. net displacement in a closed loop}}$$

Physical Interpretation

The numerical answer is physically reasonable — matching expected orders of magnitude and dimensional analysis. The result confirms the theoretical prediction and provides quantitative insight into the system’s behaviour.


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