0.325 mol of an ideal gas with the molar heat capacity at constant volume Cn=5R/2 is used in a Carnot engine. At CARNOT CYCLE Process (1 AB isothermal reversible expansion State A, TA = 400 K and Va = 0.500 L. At State B, Va = 2.00 L At State D, Tp = 280 K. Complete the following two charts with appropriate units: L (liter) in volume, atm in pressure, K (Kelvin) in temperature, J or kl in energy, and J/K in entropy. Show your work in separate paper. Process (28Cadiabaticreversible expansion Process (3 C D isothermal reversible compression Process (4:D>A adisbaticreversible compression (1) (4) Download this file. Type in your answers in the following two charts. Your work can be done in any paper, but your answers must be written or typed in these two charts. Po Review of the basic properties of ideal gases in different processes. If you make any mistakes here, the rest of calculation will be incorrect. 0.500L 2.00L Pressure (atm) Volume (L) Temperature (K) State A N/A (No need to answer) N/A (No need to answer) N/A (No need to answer) State B State C N/A (No need to answer) State D The following thermodynamic properties have been discussed in great deal during our lectures. Your calculation needs the correct information from the above chart. |q (in J or kJ) w (in J or kJ) AU (in J or kJ) AS (in J/K) Process (1) A → B Process (2) B→ c Process (3) C→ D Process (4) DA

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0.325 mol of an ideal gas with the molar heat capacity at
constant volume Cn=5R/2 is used in a Carnot engine. At
CARNOT CYCLE
Process (1 AB isothermal reversible expansion
State A, TA = 400 K and Va = 0.500 L. At State B, Va = 2.00 L At
State D, Tp = 280 K. Complete the following two charts with
appropriate units: L (liter) in volume, atm in pressure, K
(Kelvin) in temperature, J or kl in energy, and J/K in entropy.
Show your work in separate paper.
Process (28Cadiabaticreversible expansion
Process (3 C D isothermal reversible compression
Process (4:D>A adisbaticreversible compression
(1)
(4)
Download this file. Type in your answers in the following two
charts. Your work can be done in any paper, but your answers
must be written or typed in these two charts.
Po
Review of the basic properties of ideal gases in different
processes. If you make any mistakes here, the rest of
calculation will be incorrect.
0.500L
2.00L
Pressure (atm)
Volume (L)
Temperature (K)
State A
N/A (No need to answer)
N/A (No need to answer)
N/A (No need to answer)
State B
State C
N/A (No need to answer)
State D
The following thermodynamic properties have been discussed in great deal during our lectures. Your calculation needs
the correct information from the above chart.
|q (in J or kJ)
w (in J or kJ)
AU (in J or kJ)
AS (in J/K)
Process (1) A → B
Process (2) B→ c
Process (3) C→ D
Process (4) DA
Transcribed Image Text:0.325 mol of an ideal gas with the molar heat capacity at constant volume Cn=5R/2 is used in a Carnot engine. At CARNOT CYCLE Process (1 AB isothermal reversible expansion State A, TA = 400 K and Va = 0.500 L. At State B, Va = 2.00 L At State D, Tp = 280 K. Complete the following two charts with appropriate units: L (liter) in volume, atm in pressure, K (Kelvin) in temperature, J or kl in energy, and J/K in entropy. Show your work in separate paper. Process (28Cadiabaticreversible expansion Process (3 C D isothermal reversible compression Process (4:D>A adisbaticreversible compression (1) (4) Download this file. Type in your answers in the following two charts. Your work can be done in any paper, but your answers must be written or typed in these two charts. Po Review of the basic properties of ideal gases in different processes. If you make any mistakes here, the rest of calculation will be incorrect. 0.500L 2.00L Pressure (atm) Volume (L) Temperature (K) State A N/A (No need to answer) N/A (No need to answer) N/A (No need to answer) State B State C N/A (No need to answer) State D The following thermodynamic properties have been discussed in great deal during our lectures. Your calculation needs the correct information from the above chart. |q (in J or kJ) w (in J or kJ) AU (in J or kJ) AS (in J/K) Process (1) A → B Process (2) B→ c Process (3) C→ D Process (4) DA
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