(17%) Problem 4: Consider a process that uses n = 40.5 moles of a monatomic ideal gas operating through the Carnot cycle shown on the right. The initial temperature and pressure of the gas are T₁ = 350 K and P₁ = 3.62 × 105 Pa respectively. Consider steps 1-2,2-3,3-4, and 4 → 1. P P.V₁,T, P₂.,V₂.T₂ P.V.T. P.V₁,T, V
(17%) Problem 4: Consider a process that uses n = 40.5 moles of a monatomic ideal gas operating through the Carnot cycle shown on the right. The initial temperature and pressure of the gas are T₁ = 350 K and P₁ = 3.62 × 105 Pa respectively. Consider steps 1-2,2-3,3-4, and 4 → 1. P P.V₁,T, P₂.,V₂.T₂ P.V.T. P.V₁,T, V
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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![17% Part (a) Calculate the volume V₁, in cubic meters.
V₁ = 0.325 ✓ Correct!
17% Part (b) In the low-temperature isothermal compression, the gas is reduced to one-third its original volume. Determine the pressure P2, in pascals,
after this step.
P2 = 1086000 ✓ Correct!
17% Part (c) In the adiabatic compression step, the temperature of the gas is doubled. Determine the volume V3, in cubic meters, after this step.
V3 = 0.0379 ✔ Correct!
17% Part (d) Use the result from part (c) to determine P3, in pascals.
P3 = 6219047
P3=6219000 ✓ Correct!
✩ 17% Part (e) Calculate the volume V4, in cubic meters, after the gas is expanded isothermally.
= 0.003
V4:
* Attempts Remain
17% Part (f) Use the result from part (e) to determine P4, in pascals.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F72dd58a5-67aa-478a-9aad-58b25d5341f2%2F724333e3-7414-4a8f-8479-c6ee4d061cea%2F7lz65ne_processed.png&w=3840&q=75)
Transcribed Image Text:17% Part (a) Calculate the volume V₁, in cubic meters.
V₁ = 0.325 ✓ Correct!
17% Part (b) In the low-temperature isothermal compression, the gas is reduced to one-third its original volume. Determine the pressure P2, in pascals,
after this step.
P2 = 1086000 ✓ Correct!
17% Part (c) In the adiabatic compression step, the temperature of the gas is doubled. Determine the volume V3, in cubic meters, after this step.
V3 = 0.0379 ✔ Correct!
17% Part (d) Use the result from part (c) to determine P3, in pascals.
P3 = 6219047
P3=6219000 ✓ Correct!
✩ 17% Part (e) Calculate the volume V4, in cubic meters, after the gas is expanded isothermally.
= 0.003
V4:
* Attempts Remain
17% Part (f) Use the result from part (e) to determine P4, in pascals.
![(17%) Problem 4: Consider a process that uses n = 40.5 moles of a monatomic ideal gas
operating through the Carnot cycle shown on the right. The initial temperature and pressure of the
gas are T₁ = 350 K and P₁ = 3.62 × 105 Pa respectively.
Consider steps 1 → 2, 23, 3 → 4, and 4 → 1.
P
P₁, V₂, T3
P₂.V₂.T₂
P.V.T.
P.V.T
V](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F72dd58a5-67aa-478a-9aad-58b25d5341f2%2F724333e3-7414-4a8f-8479-c6ee4d061cea%2Fq2g0moz_processed.png&w=3840&q=75)
Transcribed Image Text:(17%) Problem 4: Consider a process that uses n = 40.5 moles of a monatomic ideal gas
operating through the Carnot cycle shown on the right. The initial temperature and pressure of the
gas are T₁ = 350 K and P₁ = 3.62 × 105 Pa respectively.
Consider steps 1 → 2, 23, 3 → 4, and 4 → 1.
P
P₁, V₂, T3
P₂.V₂.T₂
P.V.T.
P.V.T
V
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