Short questions in board exams usually come from these topics:
Define physics and explain its scope in everyday life.
Define physical quantity and give examples (length, mass, time, temperature, etc.).
Name the seven base quantities and their SI base units.
Define derived quantities. Give examples of derived units and show how they are expressed in terms of base units.
Explain the International System of Units (SI). Why is it important to have a standard system of units?
Define dimensional analysis. Why is it used in physics?
State the principle of homogeneity of dimensions. Explain that dimensions on both sides of a physical equation must be the same.
Write the dimensions of velocity: [L T⁻¹].
Write the dimensions of acceleration: [L T⁻²].
Write the dimensions of force: [M L T⁻²].
Write the dimensions of work and energy: [M L² T⁻²].
Explain the difference with examples. Accuracy is near the true value. Precision is consistency of measurements.
Define uncertainty. Why do all measurements have some uncertainty?
Define scientific notation. Why is it useful? Give an example.
Define significant figures. Give the rules for determining significant figures.
There are 3 significant figures (4, 5, and the trailing zero).
When adding or subtracting quantities, add the absolute uncertainties.
When multiplying or dividing quantities, add the percentage or fractional uncertainties.
The SI unit of force is the newton (N). 1 N = 1 kg m s⁻².
The SI unit of energy is the joule (J). 1 J = 1 kg m² s⁻².