H2 O2 Some time after Stopcock closed Stopcock open Stopcock open (a) (b) (C) Figure 9.27 (a) Two gases, H2 and 02, are initially separated. (b) When the stopcock is opened, they mix together. The lighter gas, H2, passes through the opening faster than O2, so just after the stopcock is opened, more H2 molecules move to the O2 side than O2 molecules move to the H2 side. (c) After a short time, both the slower-moving Oz molecules and the faster-moving H2 molecules have distributed themselves evenly on both sides of the vessel. 예

Chemistry
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Chapter1: Chemical Foundations
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Explain why the numbers of molecules are not identical in the left- and right-hand bulbs shown in the center illustration as shown.

H2
O2
Some time after
Stopcock closed
Stopcock open
Stopcock open
(a)
(b)
(C)
Figure 9.27 (a) Two gases, H2 and 02, are initially separated. (b) When the stopcock is opened, they mix together.
The lighter gas, H2, passes through the opening faster than O2, so just after the stopcock is opened, more H2
molecules move to the O2 side than O2 molecules move to the H2 side. (c) After a short time, both the slower-moving
Oz molecules and the faster-moving H2 molecules have distributed themselves evenly on both sides of the vessel.
예
Transcribed Image Text:H2 O2 Some time after Stopcock closed Stopcock open Stopcock open (a) (b) (C) Figure 9.27 (a) Two gases, H2 and 02, are initially separated. (b) When the stopcock is opened, they mix together. The lighter gas, H2, passes through the opening faster than O2, so just after the stopcock is opened, more H2 molecules move to the O2 side than O2 molecules move to the H2 side. (c) After a short time, both the slower-moving Oz molecules and the faster-moving H2 molecules have distributed themselves evenly on both sides of the vessel. 예
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