Consider a gas cylinder containing 0.100 moles of an ideal gas in a volume of 3.300 L with a pressure of 1.00 atm. The cylinder is surrounded by a constant temperature bath at 400.0 K. With a constant external pressure of 5.00 atm, the cylinder is compressed to 0.660 L. Calculate the AS(gas) for this compression process, in J/K.
Consider a gas cylinder containing 0.100 moles of an ideal gas in a volume of 3.300 L with a pressure of 1.00 atm. The cylinder is surrounded by a constant temperature bath at 400.0 K. With a constant external pressure of 5.00 atm, the cylinder is compressed to 0.660 L. Calculate the AS(gas) for this compression process, in J/K.
Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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data:image/s3,"s3://crabby-images/cd1a6/cd1a624a7e40ff87bd073c54aed441fb77fdb0f7" alt="Consider a gas cylinder containing 0.100 moles of an ideal gas in a
volume of 3.300 L with a pressure of 1.00 atm. The cylinder is
surrounded by a constant temperature bath at 400.0 K. With a
constant external pressure of 5.00 atm, the cylinder is compressed to
0.660 L.
Calculate the AS(gas) for this compression process, in J/K.
-535.42 J/K
6.
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7
8
6.
+/-
0.
х 10
DD
F12
80
F10
F11
F9
F8
F7
F4
3.
2.
5
1,
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Transcribed Image Text:Consider a gas cylinder containing 0.100 moles of an ideal gas in a
volume of 3.300 L with a pressure of 1.00 atm. The cylinder is
surrounded by a constant temperature bath at 400.0 K. With a
constant external pressure of 5.00 atm, the cylinder is compressed to
0.660 L.
Calculate the AS(gas) for this compression process, in J/K.
-535.42 J/K
6.
Cc
7
8
6.
+/-
0.
х 10
DD
F12
80
F10
F11
F9
F8
F7
F4
3.
2.
5
1,
4)
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