A cylinder containing 1.41 mol of an ideal gas is surrounded by a large reservoir at a temperature of 3.69 °C. The gas is initially at a volume of 1.24 x 103 m². The gas is compressed isothermally to a volume of 4.16 x 104 m² How much work W is done by the gas during the compression? Use R = 8.314 J/(mol-K) for the gas constant. W = How much heat Q flows into the gas during the compression? Q=

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A cylinder containing 1.41 mol of an ideal gas is surrounded by a large reservoir at a temperature of 3.69 °C. The gas is initially
at a volume of 1.24 x 10-3 m³. The gas is compressed isothermally to a volume of 4.16 x 10-4 m².
How much work W is done by the gas during the compression? Use R = 8.314 J/(mol-K) for the gas constant.
W =
How much heat Q flows into the gas during the compression?
Q =
J
Transcribed Image Text:A cylinder containing 1.41 mol of an ideal gas is surrounded by a large reservoir at a temperature of 3.69 °C. The gas is initially at a volume of 1.24 x 10-3 m³. The gas is compressed isothermally to a volume of 4.16 x 10-4 m². How much work W is done by the gas during the compression? Use R = 8.314 J/(mol-K) for the gas constant. W = How much heat Q flows into the gas during the compression? Q = J
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