Consider a sample containing 5.00 moles of a monatomic ideal gas that is taken from state A to state B by the following two pathways: Pathway one: PA = 2.70 atm Pc = 2.70 atm VA = 14.0 L Vc = 47.0 L Рв 3 3.50 atm Vв — 22.0 L Pathway two: PA = 2.70 atm 3 PD = 3.50 atm VA = 14.0 L VD 14.0 L 4 Рв 3 3.50 аtm Vв 3 22.0 L For each step, assume that the external pressure is constant and equals the final pressure of the gas for that step. Calculate 9, W, AE, and AH for pathway one. kJ kJ ΔΕ kJ ΔΗ= kJ Calculate 9, w, ΔΕ, and AH for pathway two. kJ kJ ΔΕ- kJ ΔΗ- kJ

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Consider a sample containing 5.00 moles of a monatomic ideal gas that is taken from state A to state B by the following two pathways:
Pathway one: PA = 2.70 atm
Pc = 2.70 atm
VA
= 14.0 L
Vc = 47.0 L
Рв 3 3.50 atm
Vв — 22.0 L
Pathway two: PA = 2.70 atm
3
PD = 3.50 atm
VA = 14.0 L
VD
14.0 L
4
Рв 3 3.50 аtm
Vв 3 22.0 L
For each step, assume that the external pressure is constant and equals the final pressure of the gas for that step.
Transcribed Image Text:Consider a sample containing 5.00 moles of a monatomic ideal gas that is taken from state A to state B by the following two pathways: Pathway one: PA = 2.70 atm Pc = 2.70 atm VA = 14.0 L Vc = 47.0 L Рв 3 3.50 atm Vв — 22.0 L Pathway two: PA = 2.70 atm 3 PD = 3.50 atm VA = 14.0 L VD 14.0 L 4 Рв 3 3.50 аtm Vв 3 22.0 L For each step, assume that the external pressure is constant and equals the final pressure of the gas for that step.
Calculate
9,
W,
AE, and
AH for pathway one.
kJ
kJ
ΔΕ
kJ
ΔΗ=
kJ
Calculate
9,
w,
ΔΕ, and
AH for pathway two.
kJ
kJ
ΔΕ-
kJ
ΔΗ-
kJ
Transcribed Image Text:Calculate 9, W, AE, and AH for pathway one. kJ kJ ΔΕ kJ ΔΗ= kJ Calculate 9, w, ΔΕ, and AH for pathway two. kJ kJ ΔΕ- kJ ΔΗ- kJ
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