2) Consider 0.910 mol of an ideal diatomic gas that undergoes the described thermodynamic cycle: •a- b: an isobaric expansion starting with a volume V, = 1.00 x 10-2 m3 Until the volume doubles •b→ c: isochoric heating up to tripling its pressure and reaching a temperature of 1000 K. •c- d: an isothermal compression until reaching a pressure of 5.361x107 Pa. •d- a: an adiabatic expansion until returning to the starting point. A) Complete the following table State Volume v(m³) Pressure P(Pa) Temperature T(K) 1,00X102 2,00X10-2 2,00X10-2 a 1000 d 5,361X107 1000
2) Consider 0.910 mol of an ideal diatomic gas that undergoes the described thermodynamic cycle: •a- b: an isobaric expansion starting with a volume V, = 1.00 x 10-2 m3 Until the volume doubles •b→ c: isochoric heating up to tripling its pressure and reaching a temperature of 1000 K. •c- d: an isothermal compression until reaching a pressure of 5.361x107 Pa. •d- a: an adiabatic expansion until returning to the starting point. A) Complete the following table State Volume v(m³) Pressure P(Pa) Temperature T(K) 1,00X102 2,00X10-2 2,00X10-2 a 1000 d 5,361X107 1000
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Chapter1: Units, Trigonometry. And Vectors
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Transcribed Image Text:2) Consider 0.910 mol of an ideal diatomic gas that undergoes the described
thermodynamic cycle:
•a → b: an isobaric expansion starting with a volume V, = 1.00 x 10-2 m3
Until the volume doubles
•b → c: isochoric heating up to tripling its pressure and reaching a temperature of
1000 K.
•c - d: an isothermal compression until reaching a pressure of 5.361x107 Pa.
•d → a: an adiabatic expansion until returning to the starting point.
A) Complete the following table
State
Volume v(m³)
Pressure P(Pa)
Temperature
T(K)
1,00X10-2
2,00X10-2
2,00X10-2
a
1000
d.
5,361X107
1000
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