The working substance of a certain Carnot engine is 2.00 mol of an ideal monatomic gas. During the isothermal expansion portion of this engine's cycle, the volume of the gas doubles, while during the adiabatic expansion the volume increases by a factor of 5.7. The work output of the engine is 970 J in each cycle. Compute the temperatures of the two reservoirs between which this engine operates. Express your answer using two significant figures. Enter your answers numerically separated by a comma. IVE ΑΣΦ TL.TH= 39,120 ? K Term 1: Check your rounding. Your final answer should be rounded to 2 significant figures in the last step. No credit lost. Try again.

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The working substance of a certain Carnot engine is
2.00 mol of an ideal monatomic gas. During the
isothermal expansion portion of this engine's cycle,
the volume of the gas doubles, while during the
adiabatic expansion the volume increases by a
factor of 5.7. The work output of the engine is 970 J
in each cycle.
Compute the temperatures of the two reservoirs between which this engine operates.
Express your answer using two significant figures. Enter your answers
numerically separated by a comma.
17 ΑΣΦ
TL,TH = 39,120
Review Constants
?
Κ
Term 1: Check your rounding. Your final answer should be rounded to 2
significant figures in the last step.
No credit lost. Try again.
Transcribed Image Text:The working substance of a certain Carnot engine is 2.00 mol of an ideal monatomic gas. During the isothermal expansion portion of this engine's cycle, the volume of the gas doubles, while during the adiabatic expansion the volume increases by a factor of 5.7. The work output of the engine is 970 J in each cycle. Compute the temperatures of the two reservoirs between which this engine operates. Express your answer using two significant figures. Enter your answers numerically separated by a comma. 17 ΑΣΦ TL,TH = 39,120 Review Constants ? Κ Term 1: Check your rounding. Your final answer should be rounded to 2 significant figures in the last step. No credit lost. Try again.
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