An ideal gas undergoes the reversible cycle A →→→→→ B⇒CD represented in the following Pressure (P in Pa) - Temperature (T in K) diagram: P B T If Tx is the temperature in Kelvin associated to point x in the diagram, calculate the net work in kJ when 7.686 moles of an ideal gas undergoes 9 cycles for the following temperatures: TA-600.0 K TB-751.2 K TC-2,022.6 K TD=1200.0 K Hints: 1) Y=mx+b is the general equation for a straight line with slope m and intercept b. What is the value of b for segments AB and CD? 2) What does your answer to question 1 tells you about the volume of the gas during the process represented by segments AB and CD? 3) If ab = xy then A (ab) = ▲ (xy) 4) A (ab) = a^b when a is constant.

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Chapter18: Thermodynamics And Equilibrium
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Problem 18.97QP: When 1.000 g of gaseous butane, C4H10, is burned at 25C and 1.00 atm pressure, H2O(l) and CO2(g) are...
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An ideal gas undergoes the reversible cycle A →→→→→ B⇒CD represented in the following Pressure
(P in Pa) - Temperature (T in K) diagram:
P
B
T
If Tx is the temperature in Kelvin associated to point x in the diagram, calculate the net work in kJ when 7.686
moles of an ideal gas undergoes 9 cycles for the following temperatures:
TA-600.0 K
TB-751.2 K
TC-2,022.6 K
TD=1200.0 K
Hints:
1) Y=mx+b is the general equation for a straight line with slope m and intercept b. What is the value of b for
segments AB and CD?
2) What does your answer to question 1 tells you about the volume of the gas during the process represented
by segments AB and CD?
3) If ab = xy then A (ab) = ▲ (xy)
4) A (ab) = a^b when a is constant.
Transcribed Image Text:An ideal gas undergoes the reversible cycle A →→→→→ B⇒CD represented in the following Pressure (P in Pa) - Temperature (T in K) diagram: P B T If Tx is the temperature in Kelvin associated to point x in the diagram, calculate the net work in kJ when 7.686 moles of an ideal gas undergoes 9 cycles for the following temperatures: TA-600.0 K TB-751.2 K TC-2,022.6 K TD=1200.0 K Hints: 1) Y=mx+b is the general equation for a straight line with slope m and intercept b. What is the value of b for segments AB and CD? 2) What does your answer to question 1 tells you about the volume of the gas during the process represented by segments AB and CD? 3) If ab = xy then A (ab) = ▲ (xy) 4) A (ab) = a^b when a is constant.
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