During an isothermal expansion of 2.10 mol of an ideal gas at a temperature of 21.0 C, the pressure changes from 4.0 x 10 Pa to 2.0 x 105 Pa, while the volume changes from 0.03 m³ to 0.06 m. Calculate the heat added to the gas during expansion.
During an isothermal expansion of 2.10 mol of an ideal gas at a temperature of 21.0 C, the pressure changes from 4.0 x 10 Pa to 2.0 x 105 Pa, while the volume changes from 0.03 m³ to 0.06 m. Calculate the heat added to the gas during expansion.
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![During an isothermal expansion of 2.10 mol of an ideal gas at a temperature of
21.0°C, the pressure changes from 4.0 x 10° Pa to 2.0 x 105 Pa, while the volume
changes from 0.03 m³ to 0.06 m. Calculate the heat added to the gas during
expansion.
Select one:
O a.
3560 J
O b.
-4092 J
O c.
5136 J
d.
-5136 J
O e,
3560 I](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F69c0dee2-b8a1-46a9-ac56-4a3c0b1fd16b%2F141e0d4f-4e8c-4861-b43e-ba5b63524651%2Fui7xxgj_processed.jpeg&w=3840&q=75)
Transcribed Image Text:During an isothermal expansion of 2.10 mol of an ideal gas at a temperature of
21.0°C, the pressure changes from 4.0 x 10° Pa to 2.0 x 105 Pa, while the volume
changes from 0.03 m³ to 0.06 m. Calculate the heat added to the gas during
expansion.
Select one:
O a.
3560 J
O b.
-4092 J
O c.
5136 J
d.
-5136 J
O e,
3560 I
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