3) Starting at state A (see 1)), the gas goes through the following cycle: A BCDA (see (0. (). (ii. (iv) on next page) Using the ideal gas law in the form of Charles law orland Boyle's law for each of these four steps, determine the state variables for each of the states A, B. Cand D. (Hint For each step use the idea of initial and final values to form ratios of variables in these calculations.) Show your steps in arriving at the answer. Pressretatm) Yolume (L) Iemperature (K) 351.16 State A 4.000 10.00 (O The gas espands isobarically to state B till its volume is three times the volume at A. Iemperature (K) Pressurgtatm) Yelume (L) Details below here State B (i) Next the gas isochorically (sometrically) reaches the state Cwhere the pressure is half the pressure at B. State C () Nest the gas contracts at constant pressure and reaches the state D which has the same volume as state A State D (iv) Next the gas goes from D to A and the cycle is complete. 4) Plot P(y-axis) versus V (x-axis) on the graph blow using results for each state calculated above. Label the states and draw lines connecting the states with appropriate direction for the gas cycle.

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I need typed answer 3 and 4

3) Starting at state A (see 1)), the gas goes through the following cycle: A BCD>A
(see (1), (i), (i), (iv) on next page)
Using the ideal gas law in the form of Charles law orland Boyle's law for each of these four steps, determine the state
variables for each of the states A, B, C and D. (Hint: For each step use the idea of initial and final values to form ratios of
variables in these calculations.) Show your steps in arriving at the answer.
Pressure(atm)
Volume (L)
Temperature (K)
331 16
State A
4.000
10.00
(i) The gas expands isobarically to state B till its volume is three times the volume at A.
Pressure(atm)
Volume (L)
Temperature (K)
Details below here
State B
(ii) Next the gas isochorically (isometrically) reaches the state C where the pressure is half the pressure at B.
State C
(i) Next the gas contracts at constant pressure and reaches the state D which has the same volume as state A.
State D
(iv) Next the gas goes from D to A and the cycle is complete.
4) Plot P (y-axis) versus V (x-axis) on the graph blow using results for each state calculated above. Label the states and
draw lines connecting the states with appropriate direction for the gas cycle.
Transcribed Image Text:3) Starting at state A (see 1)), the gas goes through the following cycle: A BCD>A (see (1), (i), (i), (iv) on next page) Using the ideal gas law in the form of Charles law orland Boyle's law for each of these four steps, determine the state variables for each of the states A, B, C and D. (Hint: For each step use the idea of initial and final values to form ratios of variables in these calculations.) Show your steps in arriving at the answer. Pressure(atm) Volume (L) Temperature (K) 331 16 State A 4.000 10.00 (i) The gas expands isobarically to state B till its volume is three times the volume at A. Pressure(atm) Volume (L) Temperature (K) Details below here State B (ii) Next the gas isochorically (isometrically) reaches the state C where the pressure is half the pressure at B. State C (i) Next the gas contracts at constant pressure and reaches the state D which has the same volume as state A. State D (iv) Next the gas goes from D to A and the cycle is complete. 4) Plot P (y-axis) versus V (x-axis) on the graph blow using results for each state calculated above. Label the states and draw lines connecting the states with appropriate direction for the gas cycle.
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