9) The figure shows a pV diagram for 8.3 g of nitrogen gas (N2) in a sealed container. The temperature T1 of the gas in state I is 79°C. What are (a) the pressure p1 of the gas in state I and (b) the temperature T2 of the gas in state 2? The ideal gas constant is R= 8.314 J/mol · K = 0.0821 L atm/mol - K, and the ATOMIC weight of nitrogen is 14 g/mol. 2.0 P A) (a) 86 atm, (b) 700°C. B) (a) 19 atm, (b) 700°C. C) (a) 86 atm, (b) 160°C. D) (a) 19 atm, (b) 160°C. 1.5P 3 Pi 0.50 P V(em³) 0. 50 100 150

University Physics Volume 2
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Chapter2: The Kinetic Theory Of Gases
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Problem 80AP: (a) Use the ideal gas equation to estimate the temperature at which 1.00 kg of steam (molar mass...
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9) The figure shows a pV diagram for 8.3 g of nitrogen gas (N2) in a sealed container. The temperature
T1 of the gas in state I is 79°C. What are (a) the pressure p1 of the gas in state I and (b) the temperature
T2 of the gas in state 2? The ideal gas constant is R= 8.314 J/mol · K = 0.0821 L atm/mol - K, and the
ATOMIC weight of nitrogen is 14 g/mol.
2.0 P
A) (a) 86 atm, (b) 700°C.
B) (a) 19 atm, (b) 700°C.
C) (a) 86 atm, (b) 160°C.
D) (a) 19 atm, (b) 160°C.
1.5P
3
Pi
0.50 P
V(em³)
0.
50
100
150
Transcribed Image Text:9) The figure shows a pV diagram for 8.3 g of nitrogen gas (N2) in a sealed container. The temperature T1 of the gas in state I is 79°C. What are (a) the pressure p1 of the gas in state I and (b) the temperature T2 of the gas in state 2? The ideal gas constant is R= 8.314 J/mol · K = 0.0821 L atm/mol - K, and the ATOMIC weight of nitrogen is 14 g/mol. 2.0 P A) (a) 86 atm, (b) 700°C. B) (a) 19 atm, (b) 700°C. C) (a) 86 atm, (b) 160°C. D) (a) 19 atm, (b) 160°C. 1.5P 3 Pi 0.50 P V(em³) 0. 50 100 150
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