A thermodynamic system is taken from state a to state c in the figure (Figure 1)along either path abc or path adc. Along path abc the work W done by the system is 450 J. Along path adc, W is 120 J. The internal energies of each of the four states shown in the figure are Ua = 150 J, U = 240 J, Uc = 680 J, and Ud = 330 J. Figure Part A P b a Calculate the heat flow for the process ab. ΠΙΑΣΦ ? V 1 of 1

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Part B
In the process ab, does the system absorb or liberate heat?
O System absorbs heat
System liberates heat
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Part C
Calculate the heat flow for the process bc.
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Part D
In the process bc, does the system absorb or liberate heat?
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Part E
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System absorbs heat
System liberates heat
=
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Calculate the heat flow for the process ad.
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Transcribed Image Text:Part B In the process ab, does the system absorb or liberate heat? O System absorbs heat System liberates heat Submit Request Answer Part C Calculate the heat flow for the process bc. Submit Part D In the process bc, does the system absorb or liberate heat? Submit Part E ΠΑΣΦ System absorbs heat System liberates heat = Request Answer Submit Calculate the heat flow for the process ad. Request Answer ΤΙ ΑΣΦ Request Answer 図」? J J
A thermodynamic system is taken from state a to state c in the figure
(Figure 1)along either path abc or path adc. Along path abc the work W
done by the system is 450 J. Along path adc,W is 120 J. The internal
energies of each of the four states shown in the figure are
Ua = 150 J, U = 240 J, Uc = 680 J, and Ud = 330 J.
Figure
Part A
Calculate the heat flow for the process ab.
♡
— ΑΣΦ
w
V
J
1 of 1
Transcribed Image Text:A thermodynamic system is taken from state a to state c in the figure (Figure 1)along either path abc or path adc. Along path abc the work W done by the system is 450 J. Along path adc,W is 120 J. The internal energies of each of the four states shown in the figure are Ua = 150 J, U = 240 J, Uc = 680 J, and Ud = 330 J. Figure Part A Calculate the heat flow for the process ab. ♡ — ΑΣΦ w V J 1 of 1
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