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) Vo = 25.8 Po = 1.00 × 104 2 3 V = 20.8 Pi = 1.00 × 104 V2 = 17.4 P2 = 5.34 × 103 V3 = 13.9 P3 = 5.34 × 10³ V4 = 13.9 P4 = 3.20 × 10³ 5 - Vs = 9.55 P5 = 1.00 × 103 Calculate the amount of work done on the system from 0–2 ( Wo2) and then for the entire curve from 0–5 (Wos). Volume (m³) -6.03 x104 Wo2 J Incorrect Pressure (Pa)

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Chapter17: Energy In Thermal Processes: The First Law Of Thermodynamics
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Problem 76P
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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
1
for the points in the diagram are shown in the table.
Volume (m³)
Pressure (Pa)
Vo
25.8
Po =
1.00 x 104
3
Vi
= 20.8
Pi
= 1.00 × 104
V2
= 17.4
P2
5.34 x 103
V3
= 13.9
P3
5.34 x 103
V4
13.9
P4
3.20 x 103
5
Vs = 9.55
P5 =
1.00 x 103
Calculate the amount of work done on the system from 0-2 (
Wo2) and then for the entire curve from 0-5 (Wos).
Volume (m³)
-6.03 x104
Wo2 =
J
Incorrect
-7.86 x104
Wo5 =
J
Incorrect
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 1 for the points in the diagram are shown in the table. Volume (m³) Pressure (Pa) Vo 25.8 Po = 1.00 x 104 3 Vi = 20.8 Pi = 1.00 × 104 V2 = 17.4 P2 5.34 x 103 V3 = 13.9 P3 5.34 x 103 V4 13.9 P4 3.20 x 103 5 Vs = 9.55 P5 = 1.00 x 103 Calculate the amount of work done on the system from 0-2 ( Wo2) and then for the entire curve from 0-5 (Wos). Volume (m³) -6.03 x104 Wo2 = J Incorrect -7.86 x104 Wo5 = J Incorrect Pressure (Pa)
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