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I. Multiple Choice Questions · Q3

Q.An ideal gas is maintained at constant pressure. If the temperature of an ideal gas increases from 100 K to 10000 K then the rms speed of the gas molecules

(a) increases by 5 times
(b) increases by 10 times
(c) remains same
(d) increases by 7 times
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✓ Free question

Step 1. From Section 9.2.5, vrms=3RT/Mv_{rms}=\sqrt{3RT/M}, which depends only on the absolute temperature TT and the molar mass MM -- it has no direct dependence on pressure at all, so the fact that pressure is held constant here does not enter the ratio calculation.

Step 2. Since vrms∝Tv_{rms}\propto\sqrt T, the ratio of the new rms speed to the old one is vrms,2vrms,1=T2T1=10000100=100=10\dfrac{v_{rms,2}}{v_{rms,1}}=\sqrt{\dfrac{T_2}{T_1}}=\sqrt{\dfrac{10000}{100}}=\sqrt{100}=10.

Step 3. So the rms speed becomes 10 times its original value -- it increases BY a factor of 10, not by 5 or 7.

Step 4. Eliminating the others: (a) and (d) would come from mis-applying the square root (e.g. taking 10000/100\sqrt{10000/100} incorrectly, or confusing it with a different power); (c) 'remains same' would only be true if vrmsv_{rms} depended on pressure or volume rather than on temperature.

✓Final answer

(b) increases by 10 times.

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