A 1.00-mol sample of an ideal monatomic gas is taken through the three-stage cycle as shown The process A to B is a isothermal expansion. PA = 49/10, PB = 14/10, VA = 14, VB = 49. Calculate the energy added to the gas by heat in kJ. Round your answer to the nearest hundredth (i.e. if your answer is 1.875, round it to 1.88). Take 1 atm = 101300 Pa. P (atm)

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A 1.00-mol sample of an ideal monatomic gas is taken through the three-stage cycle as shown The process A to B is a
isothermal expansion. PA = 49/10, PB = 14/10, VA = 14, VB = 49. Calculate the energy added to the gas by heat in kJ.
Round your answer to the nearest hundredth (i.e. if your answer is 1.875, round it to 1.88). Take 1 atm = 101300 Pa.
P (atm)
PA
Isothermal
process
B
PB
C
-V (liters)
VA
VB
Transcribed Image Text:A 1.00-mol sample of an ideal monatomic gas is taken through the three-stage cycle as shown The process A to B is a isothermal expansion. PA = 49/10, PB = 14/10, VA = 14, VB = 49. Calculate the energy added to the gas by heat in kJ. Round your answer to the nearest hundredth (i.e. if your answer is 1.875, round it to 1.88). Take 1 atm = 101300 Pa. P (atm) PA Isothermal process B PB C -V (liters) VA VB
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