A cylinder contains 0.250 mol f carbon dioxide (CO₂) gas at a temperature of 27.0°C. The cylinder is provided with a frictionless piston, which maintains a constant pressure of 1.00 atm on the gas. The gas is heated until its temperature increases to 127.0°C. Assume that the CO₂ may be treated as an ideal gas. ▼ ▼ Part A How much work is done by the gas in this process? Express your answer in joules. IVG ΑΣΦ W = Submit Part B On what is this work done? O The work is done on the piston. O The work is done on the cylinder. Submit ▾ Part C Request Answer AU = What is the change in internal energy of the gas? Express your answer in joules. ΟΙ ΑΣΦ 1 → Submit Request Answer Request Answer J

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A cylinder contains 0.250 mol of carbon dioxide (CO₂) gas
at a temperature of 27.0°C. The cylinder is provided with a
frictionless piston, which maintains a constant pressure of
1.00 atm on the gas. The gas is heated until its temperature
increases to 127.0°C. Assume that the CO₂ may be treated
as an ideal gas.
Part A
How much work is done by the gas in this process?
Express your answer in joules.
— ΑΣΦ
W =
Submit
Part B
On what is this work done?
The work is done on the piston.
The work is done on the cylinder.
Submit
Part C
Request Answ
AU =
What is the change in internal energy of the gas?
Express your answer in joules.
ΑΣΦ
Submit
Request Answer
Request Answer
P Pearson
W
?
?
J
J
Transcribed Image Text:A cylinder contains 0.250 mol of carbon dioxide (CO₂) gas at a temperature of 27.0°C. The cylinder is provided with a frictionless piston, which maintains a constant pressure of 1.00 atm on the gas. The gas is heated until its temperature increases to 127.0°C. Assume that the CO₂ may be treated as an ideal gas. Part A How much work is done by the gas in this process? Express your answer in joules. — ΑΣΦ W = Submit Part B On what is this work done? The work is done on the piston. The work is done on the cylinder. Submit Part C Request Answ AU = What is the change in internal energy of the gas? Express your answer in joules. ΑΣΦ Submit Request Answer Request Answer P Pearson W ? ? J J
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