Insulation System An ideal monatomic gas of 2.7 mol moles is held in a perfectly insulated cylinder fitted with a moveable piston. The initial pressure is P = 108.0 Pa, its initial volume is 27 m°. By pushing down on the piston, you reduce the volume to V = 7.8 m Part A What is the final pressure of the ideal gas? Keep 1 digit after the decimal point, in Pa P = Pa Part B What is the final temperature (in Kevin) of the ideal gas? Keep 1 digit after the decimal point, in K
Insulation System An ideal monatomic gas of 2.7 mol moles is held in a perfectly insulated cylinder fitted with a moveable piston. The initial pressure is P = 108.0 Pa, its initial volume is 27 m°. By pushing down on the piston, you reduce the volume to V = 7.8 m Part A What is the final pressure of the ideal gas? Keep 1 digit after the decimal point, in Pa P = Pa Part B What is the final temperature (in Kevin) of the ideal gas? Keep 1 digit after the decimal point, in K
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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Transcribed Image Text:Insulation
System
An ideal monatomic gas of 2.7 mol moles is held in
a perfectly insulated cylinder fitted with a
moveable piston. The initial pressure is P = 108.0
Pa, its initial volume is 27 m³. By pushing down on
the piston, you reduce the volume to V = 7.8 m3
%3D
Part A
What is the final pressure of the ideal gas?
Keep 1 digit after the decimal point, in Pa
Pf =
Pa
Part B
What is the final temperature (in Kevin) of the ideal gas?
Keep 1 digit after the decimal point, in K

Transcribed Image Text:Part C
What is the change in internal energy of the ideal gas, AU? Include a
proper sign.
Keep 1 digit after the decimal point, in Joules
ΑΣφ
?
AU =
J
Part D
What is the work in this process? Include a proper sign.
Keep 1 digit after the decimal point, in Joules
work =
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