For the first stage of this process, calculate in joules the heat Q12 transferred to the gas and the work W12 done by the gas. Q12 = 21.1 Q23 = 0 For the second stage, calculate the heat Q23 transferred to the gas and the work W23 done by the gas. For the tx10 Q31 = J TOOLS J W12 = 0 J W23 = Q31 transferred to the gas and the work W31 done by the gas. W31 =
For the first stage of this process, calculate in joules the heat Q12 transferred to the gas and the work W12 done by the gas. Q12 = 21.1 Q23 = 0 For the second stage, calculate the heat Q23 transferred to the gas and the work W23 done by the gas. For the tx10 Q31 = J TOOLS J W12 = 0 J W23 = Q31 transferred to the gas and the work W31 done by the gas. W31 =
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:Question 13
?
For the first stage of this process, calculate in joules the heat Q12 transferred to the gas and the work W₁2 done by the gas.
Q12 =
Q23 =
21.1
For the second stage, calculate the heat Q23 transferred to the gas and the work W23 done by the gas.
231 =
0
For the tx10
J
TOOLS
J
W12 = 0
J
231 transferred to the gas and the work W31 done by the gas.
Kn
W23 =
W31 =
NALO
J
J
J

Transcribed Image Text:A heat engine using a diatomic gas follows the cycle shown in the pV diagram.
p (kPa)
P2
P₁
2
Q12 =
Adiabat
21.1
V (cm³)
3
V₂
For the first stage of this process, calculate in joules the heat Q12 transferred to the gas and the work W₁2 done by the gas.
=
The
gas starts out at point 1 with a volume of V₁ 233 cm³,
a pressure of p₁ = 147 kPa, and a temperature of 317 K. The
gas is held at a constant volume while it is heated until its
temperature reaches 395 K (point 2). The gas is then allowed
to expand adiabatically until its pressure is again 147 kPa
(point 3). The gas is maintained at this pressure while it is
cooled back to its original temperature of 317 K (point
1 again).
WA
0
J
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