Calculate the amount of work done on the system from 0–2 (Wo2) and then for the entire curve from 0–5 (Wos). Wo2 J Wos = J

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V4 = 13.9
P4 = 2.64 x 103
Vs = 8.87
ps = 1.00 x 103
Volume (m)
Calculate the amount of work done on the system from 0-2
(Wo2) and then for the entire curve from 0–5 (Wos).
Wo2 =
J
Wos =
J
Transcribed Image Text:V4 = 13.9 P4 = 2.64 x 103 Vs = 8.87 ps = 1.00 x 103 Volume (m) Calculate the amount of work done on the system from 0-2 (Wo2) and then for the entire curve from 0–5 (Wos). Wo2 = J Wos = J
A pressure versus volume (pV) diagram for a system is
shown in the figure. The arrows of the curve indicate the
direction of the process, and the points of interest are
labeled. The values for the points in the diagram are shown
in the table.
Volume (m³)
Pressure (Pa)
2
Vo = 27.8
po = 1.37 × 10ª
Vi = 20.8
Pi = 1.37 × 104
V2 = 17.4
P2 = 6.18 × 10³
V3 = 13.9
P3 = 6.18 × 10³
V4 = 13.9
P4 = 2.64 x 103
Vs = 8.87
p5 = 1.00 x 10³
Volume (m)
Calculate the amount of work done on the system from 0–2
(Wm) and then for the entire curve from 0-5 (Wos).
Pressure (Pa)
Transcribed Image Text:A pressure versus volume (pV) diagram for a system is shown in the figure. The arrows of the curve indicate the direction of the process, and the points of interest are labeled. The values for the points in the diagram are shown in the table. Volume (m³) Pressure (Pa) 2 Vo = 27.8 po = 1.37 × 10ª Vi = 20.8 Pi = 1.37 × 104 V2 = 17.4 P2 = 6.18 × 10³ V3 = 13.9 P3 = 6.18 × 10³ V4 = 13.9 P4 = 2.64 x 103 Vs = 8.87 p5 = 1.00 x 10³ Volume (m) Calculate the amount of work done on the system from 0–2 (Wm) and then for the entire curve from 0-5 (Wos). Pressure (Pa)
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