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What is the total number of air molecules (inclusive of oxygen, nitrogen, water vapor, and other constituents) in a room of capacity \(25.0\) mat a temperature of \(27^\circ \text C\) and \(1\) atm pressure?
1. \(6.1\times10^{23}\) molecules
2. \(6.1\times10^{26}\) molecules
3. \(7.1\times10^{23}\) molecules
4. \(7.1\times10^{26}\) molecules

Subtopic:  Ideal Gas Equation |
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What is the average thermal energy of a helium atom at room temperature (\(27^{\circ}\text{C}\))?
1. \(11 . 21 \times 10^{- 20}~\text{J}\) 2. \(3 . 09 \times 10^{- 16}~\text{J}\)
3. \( 6 . 21 \times 10^{- 21} ~\text{J} \) 4. \(5 . 97 \times 10^{- 19}~\text{J}\)
Subtopic:  Law of Equipartition of Energy |
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At what temperature is the root mean square speed of an atom in an argon gas cylinder equal to the RMS speed of a helium gas atom at \(-20^\circ \text{C}?\)
(Given the atomic mass of \(\mathrm{Ar}=39.9~\text{u}\) and of \(\mathrm{He}=4.0~\text{u}\))
1. \(1.01 \times 10^3 ~\text{K} \)
2. \(3.15 \times 10^3 ~\text{K} \)
3. \(1.91 \times 10^3~ \text{K} \)
4. \(2.52 \times 10^3 ~\text{K}\)

Subtopic:  Types of Velocities |
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From a certain apparatus, the diffusion rate of hydrogen has an average value of \(28.7~\text{cm}^3 \text{s}^{-1}.\) The diffusion of another gas under the same conditions is measured to have an average rate of \(7.2~\text{cm}^3 \text{s}^{-1}.\) The unknown gas is:
1. Oxygen
2. Nitrogen
3. Helium
4. None of these

Subtopic:  Types of Velocities |
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The effect of temperature on Maxwell's speed distribution is correctly shown by:

(1) 

(2) 

(3) 

(4) 

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Select the incorrect statement about Maxwell's speed distribution curve.

(1) The distribution function depends only on the absolute temperature.

(2) vrms>vav>vmp

(3) The area under the distribution curve gives the total number of molecules of the gas.

(4) The distribution curve is symmetric about the most probable speed.

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By increasing the temperature of a gas by 6 oC, its pressure increases by 0.4% at constant volume. Then the initial temperature of the gas is:

(1) 1000 K

(2) 2000 K

(3) 1500 K

(4) 750 K

Subtopic:  Ideal Gas Equation |
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Boyle's law is obeyed by:

(1) Real gas of constant mass and temperature.

(2) Ideal gas of constant mass and temperature.

(3) Both ideal and real gases at constant temperature and variable mass.

(4) Both ideal and real gases of constant mass and variable temperature.

Subtopic:  Ideal Gas Equation |
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For an ideal gas, the fractional change in its volume per degree rise in temperature at constant pressure is equal to [T is the absolute temperature of the gas]:

(1) T0

(2) T

(3) T-1

(4) T2

Subtopic:  Ideal Gas Equation |
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The rise in the temperature of a given mass of an ideal gas at constant pressure and at temperature 27 oC to double its volume is:

(1) 327oC

(2) 54oC

(3) 300oC

(4) 600oC

Subtopic:  Ideal Gas Equation |
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