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Important Questions

Behaviour of Perfect Gases and Kinetic Theory of Gases — Important Questions

ICSE · Class 11 · Physics

45 important questions from Behaviour of Perfect Gases and Kinetic Theory of Gases for ICSE Class 11 Physics, with answers.

45 questions35 flashcards20 formulas & key relations5 concepts

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45 Questions·
multiple choice

Important Questions from Behaviour of Perfect Gases and Kinetic Theory of Gases

1multiple choice
1 marks

The root mean square (rms) speed of gas molecules is given by vrms = √(3RT/M). If the temperature of a gas is increased 4 times (keeping M constant), the rms speed becomes:

Show answer

2 times the original speed

Step 1: vrms = √(3RT/M), so vrms ∝ √T. Step 2: If T becomes 4T, then new vrms = √(3R × 4T / M) = 2 × √(3RT/M). Step 3: So new vrms = 2 × original vrms. Step 4: Option A is wrong (that would apply if vrms ∝ T, not √T). Option C is wrong (4² = 16 is incorrect reasoning). Option D would apply if T doubled, not quadrupled.

2multiple choice
1 marks

The average kinetic energy of one molecule of an ideal gas at absolute temperature T is:

Show answer

(3/2)kT

Step 1: For 1 mole of gas, average kinetic energy = (3/2)RT. Step 2: 1 mole contains N molecules (Avogadro's number). Step 3: Average KE per molecule = (3/2)RT / N = (3/2)(R/N)T = (3/2)kT, where k = R/N is Boltzmann's constant. Step 4: Option A is the KE of 1 mole, not 1 molecule. Option B is missing the factor 3 (that would be for 1 degree of freedom). Option D equals (3/2)kT but written in a confusing form; however, it equals the same thing, yet option C is the standard form.

3multiple choice
1 marks

A monoatomic gas molecule (like helium) has how many degrees of freedom?

Show answer

3

Step 1: Degrees of freedom represent the number of independent ways a molecule can possess energy. Step 2: A monoatomic molecule (single atom) can only translate (move) in 3D space — along X, Y, and Z axes. Step 3: Its rotational kinetic energy is negligible because its moment of inertia is extremely small. Step 4: So it has 3 translational degrees of freedom only. Step 5: 5 degrees of freedom is for diatomic gases, and 6 is for triatomic/polyatomic gases.

4multiple choice
1 marks

According to the Law of Equipartition of Energy, the average kinetic energy associated with each degree of freedom of a molecule at temperature T is:

Show answer

(1/2)kT

Step 1: The Law of Equipartition of Energy states that energy is equally distributed among all degrees of freedom. Step 2: The average energy per degree of freedom = (1/2)kT, where k is Boltzmann's constant. Step 3: For a molecule with f degrees of freedom, total average KE = f × (1/2)kT = (f/2)kT. Step 4: For a monoatomic gas (f=3): total KE = (3/2)kT — this is the total, not per degree of freedom. Option A (kT) and D (1/3 kT) are incorrect values.

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What are the important topics in Behaviour of Perfect Gases and Kinetic Theory of Gases for ICSE Class 11 Physics?
Key topics in Behaviour of Perfect Gases and Kinetic Theory of Gases include Perfect Gas and Ideal Gas Equation, Kinetic Theory of Gases and Pressure, rms Speed, Temperature, and Molecular Weight, Gas Laws from Kinetic Theory. Study these first, then practise questions on each for Class 11 exams.
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Super Tutor has 45 practice questions for Behaviour of Perfect Gases and Kinetic Theory of Gases, including multiple choice questions. A sample with answers is on this page.

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