Problem IV: Consider the heat engine shown in the fig- ure. This engine uses a diatomic ideal gas as the working substance. You are given the following: P1 200 kPa, p4 = 21 kPa, T₁ = 481.1 K, T3 = 1708.26 K, V₁ = 1,000 cm³, V3 = 10.0 · V₂ = 5.0 · V5. p (kPa) P2 P1 བཔོང P3 Adiabat P4 V1 V5 Isotherm 4V (cm³) V3

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter17: Energy In Thermal Processes: The First Law Of Thermodynamics
Section: Chapter Questions
Problem 46P: A 2.00-mol sample of a diatomic ideal gas expands slowly and adiabatically from a pressure of 5.00...
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What is the net work Wnet,s = ΣWs done by the gas in this process and What is the heat QH taken from the hot reservoir? Please answer both, its my last question remaining!

Problem IV:
Consider the heat engine shown in the fig-
ure. This engine uses a diatomic ideal gas
as the working substance. You are given
the following:
P1
200 kPa, p4 = 21 kPa,
T₁ = 481.1 K, T3 = 1708.26 K,
V₁ = 1,000 cm³, V3 = 10.0 · V₂ = 5.0 · V5.
p (kPa)
P2
P1
བཔོང
P3
Adiabat
P4
V1 V5
Isotherm
4V (cm³)
V3
Transcribed Image Text:Problem IV: Consider the heat engine shown in the fig- ure. This engine uses a diatomic ideal gas as the working substance. You are given the following: P1 200 kPa, p4 = 21 kPa, T₁ = 481.1 K, T3 = 1708.26 K, V₁ = 1,000 cm³, V3 = 10.0 · V₂ = 5.0 · V5. p (kPa) P2 P1 བཔོང P3 Adiabat P4 V1 V5 Isotherm 4V (cm³) V3
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