A cylinder with a moveable piston on top, free to move up and down, contains one mole of an ideal gas initially at a temperature of T₁ = 8.6°C. The cylinder is heated at a constant pressure of 1.00 atm, and it expands to five times its original volume. (a) Calculate the new temperature T of the gas (in K). 1409.75 ✓ K (b) Calculate the work done (in kJ) on the gas during the expansion.

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A cylinder with a moveable piston on top, free to move up and down, contains one mole of an ideal gas initially at a temperature of T₁ = 8.6°C. The cylinder is heated at a constant pressure of 1.00 atm, and it expands to five times its original volume. (a) Calculate the new temperature T of the gas (in K). 1409.75 ✓ K (b) Calculate the work done (in kJ) on the gas during the expansion. 

A cylinder with a moveable piston on top, free to move up and down, contains one mole of an ideal gas initially at a temperature of 7, 8.6°C. The cylinder is heated at a constant pressure of
1.00 atm, and it expands to five times its original volume.
(0) Calculate the new temperature T of the gas (in)
140075
✔K
(b) Calculate the work done (in kJ) on the gas during the expansion.
202
x
Brand nymber of moles? Can you use the ideal gas law to
Transcribed Image Text:A cylinder with a moveable piston on top, free to move up and down, contains one mole of an ideal gas initially at a temperature of 7, 8.6°C. The cylinder is heated at a constant pressure of 1.00 atm, and it expands to five times its original volume. (0) Calculate the new temperature T of the gas (in) 140075 ✔K (b) Calculate the work done (in kJ) on the gas during the expansion. 202 x Brand nymber of moles? Can you use the ideal gas law to
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