Red pistoln boiling water bath at TH = 100°C. The volume of the piston is 0.52 liters. This point is labeled as 1 in the diagram below. P. Tt > Tc TH Te 3 V V2 (a) The piston is unlocked and the gas is allowed to expand to a volume of 1.14 liters, moving the system from point 1 to point 2. What is the heat flow? What is the work done by the gas? (b) The piston is locked and moved to an ice bath at Tc = 0°C, moving the system from point 2 to point 3. What is the heat flow? What is the work done by the gas? (c) The piston is unlocked to move the system from point 3 to point 4. What is the heat flow? What is the work done by the gas? (a) To move the system from point 4 to point 1, the cylinder is locked and the gas is
Red pistoln boiling water bath at TH = 100°C. The volume of the piston is 0.52 liters. This point is labeled as 1 in the diagram below. P. Tt > Tc TH Te 3 V V2 (a) The piston is unlocked and the gas is allowed to expand to a volume of 1.14 liters, moving the system from point 1 to point 2. What is the heat flow? What is the work done by the gas? (b) The piston is locked and moved to an ice bath at Tc = 0°C, moving the system from point 2 to point 3. What is the heat flow? What is the work done by the gas? (c) The piston is unlocked to move the system from point 3 to point 4. What is the heat flow? What is the work done by the gas? (a) To move the system from point 4 to point 1, the cylinder is locked and the gas is
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
Related questions
Question
![1. An uninsulated cylinder with a locked piston containing 0.35 moles of gas is placed in a
boiling water bath at TH = 100°C. The volume of the piston is 0.52 liters. This point is
labeled as 1 in the diagram below.
TH> Tc
To
Vi
V2
(a) The piston is unlocked and the gas is allowed to expand to a volume of 1.14 liters,
moving the system from point 1 to point 2. What is the heat flow? What is the work
done by the gas?
(b) The piston is locked and moved to an ice bath at Tc = 0°C, moving the system from
point 2 to point 3. What is the heat flow? What is the work done by the gas?
(c) The piston is unlocked to move the system from point 3 to point 4. What is the heat
flow? What is the work done by the gas?
(d) To move the system from point 4 to point 1, the cylinder is locked and the is
gas
returned to the boiling water bath. What is the heat flow? What is the work done by
the gas?
(e) This heat engine is called a Stirling Cycle. What is its efficiency?
(f) If a Carnot engine were operated using the same boiling water bath and ice bath as
the hot and cold reservoirs, what would its efficiency be?
27
3.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F590efbb4-bfa3-48e4-b7a4-ba8d0f00ec23%2F504e81e1-0d87-44bb-8a07-57e50d5c62de%2Fu2i6yb_processed.jpeg&w=3840&q=75)
Transcribed Image Text:1. An uninsulated cylinder with a locked piston containing 0.35 moles of gas is placed in a
boiling water bath at TH = 100°C. The volume of the piston is 0.52 liters. This point is
labeled as 1 in the diagram below.
TH> Tc
To
Vi
V2
(a) The piston is unlocked and the gas is allowed to expand to a volume of 1.14 liters,
moving the system from point 1 to point 2. What is the heat flow? What is the work
done by the gas?
(b) The piston is locked and moved to an ice bath at Tc = 0°C, moving the system from
point 2 to point 3. What is the heat flow? What is the work done by the gas?
(c) The piston is unlocked to move the system from point 3 to point 4. What is the heat
flow? What is the work done by the gas?
(d) To move the system from point 4 to point 1, the cylinder is locked and the is
gas
returned to the boiling water bath. What is the heat flow? What is the work done by
the gas?
(e) This heat engine is called a Stirling Cycle. What is its efficiency?
(f) If a Carnot engine were operated using the same boiling water bath and ice bath as
the hot and cold reservoirs, what would its efficiency be?
27
3.
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