An ideal monatomic gas contracts in an isobaric process from 1.05 m³ to 0.540 m3 at a constant pressure of 1.60 x 105 Pa. If the initial temperature is 445 K, find the work done on the gas, the change in internal energy, the energy transfer Q, and the final temperature. HINT (a) the work done on the gas (in J) (b) the change in internal energy (in )) 4 (c) the energy transfer Q (in J) (d) the final temperature (in K)
An ideal monatomic gas contracts in an isobaric process from 1.05 m³ to 0.540 m3 at a constant pressure of 1.60 x 105 Pa. If the initial temperature is 445 K, find the work done on the gas, the change in internal energy, the energy transfer Q, and the final temperature. HINT (a) the work done on the gas (in J) (b) the change in internal energy (in )) 4 (c) the energy transfer Q (in J) (d) the final temperature (in K)
Chapter3: The First Law Of Thermodynamics
Section: Chapter Questions
Problem 48P: An ideal monatomic gas at a pressure of 2.0105N/m2 and a temperature of 300 K undergoes a...
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![An ideal monatomic gas contracts in an isobaric process from 1.05 m³ to 0.540 m³ at a constant pressure of 1.60 x 105 Pa. If the initial temperature is 445 K, find the work done on the gas, the change in internal
energy, the energy transfer Q, and the final temperature.
HINT
(a) the work done on the gas (in J)
(b) the change in internal energy (in J)
4
(c) the energy transfer Q (in J)
(d) the final temperature (in K)
K](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ffa7ccd24-9d16-4bd2-a1ee-00c631cb04a0%2F023ca199-2f43-48a7-8882-1ca4ec714b6e%2F1c80da_processed.jpeg&w=3840&q=75)
Transcribed Image Text:An ideal monatomic gas contracts in an isobaric process from 1.05 m³ to 0.540 m³ at a constant pressure of 1.60 x 105 Pa. If the initial temperature is 445 K, find the work done on the gas, the change in internal
energy, the energy transfer Q, and the final temperature.
HINT
(a) the work done on the gas (in J)
(b) the change in internal energy (in J)
4
(c) the energy transfer Q (in J)
(d) the final temperature (in K)
K
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