Kinetic Theory MCQs | 100 Questions With Answers | Class 11
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Kinetic Theory MCQs with Answers – Part 1 (Class 11 Physics)

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1. Kinetic theory mainly explains the behaviour of a gas by considering
ⓐ. only the shape of the container
ⓑ. molecular motion and collisions
ⓒ. colour changes during heating
ⓓ. weight of the container walls
2. Which description best represents molecular motion in an ordinary gas?
ⓐ. Molecules remain fixed at regular points
ⓑ. Molecules move only upward inside the container
ⓒ. Molecules move randomly in all directions
ⓓ. Molecules move in circular paths around the centre
3. A sealed container filled with air is kept on a table. The pressure exerted by the air on the side walls is mainly due to
ⓐ. the downward weight of air molecules only
ⓑ. momentum transfer in wall collisions
ⓒ. attraction between the walls and the table
ⓓ. molecules becoming motionless near the wall
4. Heating a gas without changing its chemical nature most directly increases the molecules'
ⓐ. total electric charge
ⓑ. molecular identity
ⓒ. number of protons in each molecule
ⓓ. average molecular kinetic energy
5. An ideal-gas model treats gas molecules as particles for which molecular size and intermolecular attraction are
ⓐ. dominant at all distances
ⓑ. zero only during heating
ⓒ. neglected except during collisions
ⓓ. larger than the size of the container
6. Match the symbols with their usual meanings in kinetic theory.
SymbolMeaning
P. \(P\)1. Absolute temperature
Q. \(V\)2. Pressure
R. \(T\)3. Volume
S. \(N\)4. Number of molecules
ⓐ. P-3, Q-2, R-1, S-4
ⓑ. P-2, Q-1, R-3, S-4
ⓒ. P-4, Q-3, R-1, S-2
ⓓ. P-2, Q-3, R-1, S-4
7. Which row contains a fully suitable SI unit pairing for the listed gas quantities?
RowPressure \(P\)Volume \(V\)Temperature \(T\)Speed \(v\)
P\(\text{Pa}\)\(\text{m}^3\)\(\text{K}\)\(\text{m s}^{-1}\)
Q\(\text{J}\)\(\text{m}^3\)\(\text{K}\)\(\text{m s}^{-1}\)
R\(\text{Pa}\)\(\text{m}\)\(\degree\text{C}\)\(\text{N}\)
S\(\text{mol}\)\(\text{Pa}\)\(\text{K}\)\(\text{J}\)
ⓐ. Row P
ⓑ. Row Q
ⓒ. Row R
ⓓ. Row S
8. A gas pushes normally on a wall with a total force of \(120\,\text{N}\) over an area of \(0.40\,\text{m}^2\). What pressure does the wall experience?
ⓐ. \(48\,\text{Pa}\)
ⓑ. \(120\,\text{Pa}\)
ⓒ. \(300\,\text{Pa}\)
ⓓ. \(480\,\text{Pa}\)
9. In gas equations, the symbol \(n\) is best interpreted as
ⓐ. number of molecules in the gas sample
ⓑ. amount of gas measured in \(\text{mol}\)
ⓒ. mass of one molecule in \(\text{kg}\)
ⓓ. molecular speed in \(\text{m s}^{-1}\)
10. The relation connecting the gas constant \(R\), Avogadro's constant \(N_A\), and Boltzmann constant \(k_B\) is
ⓐ. \(R=\frac{k_B}{N_A}\)
ⓑ. \(R=N_Ak_B\)
ⓒ. \(k_B=N_AR\)
ⓓ. \(N_A=Rk_B\)
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