An ideal monatomic gas (0.8 moles) is made to undergo the following cyclic process (A→B→C→D→A). Use 1 atm = 1.0 × 105 Pa to calculate the work done on the gas as it goes from A to B, B to C, C to D, and then D to A. Calculate the total amount of work done on the gas for the whole cycle, as well as the total amount of heat involved for the whole суcle. P (atm) A B 4 C 1 D V (liter) 4 8 12

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Chapter17: Energy In Thermal Processes: The First Law Of Thermodynamics
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1. An ideal monatomic gas (0.8 moles) is made to undergo the following cyclic process
(A→B→C→D→A). Use 1 atm =
1.0 × 105 Pa to calculate the work done on the gas as
it goes from A to B, B to C, C to D, and then D to A. Calculate the total amount of work
done on the gas for the whole cycle, as well as the total amount of heat involved for the whole
сycle.
P (atm)
A
В
4
C
1
D
V (liter)
4
12
FIG. 1: P-V diagram for problem 1.
Transcribed Image Text:1. An ideal monatomic gas (0.8 moles) is made to undergo the following cyclic process (A→B→C→D→A). Use 1 atm = 1.0 × 105 Pa to calculate the work done on the gas as it goes from A to B, B to C, C to D, and then D to A. Calculate the total amount of work done on the gas for the whole cycle, as well as the total amount of heat involved for the whole сycle. P (atm) A В 4 C 1 D V (liter) 4 12 FIG. 1: P-V diagram for problem 1.
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