-. Two glass bulbs connected by a tube containing a stopcock is shown in Figure 1A. Initially, the bulb on the right contains no gas, while the bulb on the left contains a sample of gas

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Chapter1: Introduction
Section: Chapter Questions
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3
Chemical Engineering
4. Two glass bulbs connected by a tube containing a stopcock is shown in Figure 1A. Initially,
the bulb on the right contains no gas, while the bulb on the left contains a sample of gas
at pressure P₁ (mmHg), as indicated by the manometer in Figure 1B.
When the stopcock is opened, the gas in the left bulb will expand to occupy both bulbs
and the pressures in both bulbs will change, eventually reaching equilibrium. Assuming
that there is no change in temperature, calculate the final equilibrium pressure P2 (mmHg)
of the bulbs.
Vacuum-
V.
Figure 1B
right
Viet
where Vright volume of the bulb on the right
Vleft = volume of the bulb on the left
= 0.6935
Connected to
left bulb
Left bulb
Stopcock Right bulb
Figure 1A
Transcribed Image Text:Chemical Engineering 4. Two glass bulbs connected by a tube containing a stopcock is shown in Figure 1A. Initially, the bulb on the right contains no gas, while the bulb on the left contains a sample of gas at pressure P₁ (mmHg), as indicated by the manometer in Figure 1B. When the stopcock is opened, the gas in the left bulb will expand to occupy both bulbs and the pressures in both bulbs will change, eventually reaching equilibrium. Assuming that there is no change in temperature, calculate the final equilibrium pressure P2 (mmHg) of the bulbs. Vacuum- V. Figure 1B right Viet where Vright volume of the bulb on the right Vleft = volume of the bulb on the left = 0.6935 Connected to left bulb Left bulb Stopcock Right bulb Figure 1A
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