1. (19/30 Points) DETAILS PREVIOUS ANSWERS MY NOTES ASK YOUR TEACHER PRACTICE ANOTHER An ideal monatomic gas in a contai
Posted: Fri Apr 29, 2022 11:25 am
incorrect previously tried answers
For J 273065.01 is wrong this is not the answer
For K 0.006 is wrong this is not the answer
M I have ran out of attempts
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1. (19/30 Points) DETAILS PREVIOUS ANSWERS MY NOTES ASK YOUR TEACHER PRACTICE ANOTHER An ideal monatomic gas in a container expands isobarically from an initial temperature of 329.00 K and volume of 2.12 m2 (Point A)to a final volume of 12.90 m (Point B). The initial pressure is 152000 Pa. It then decreases in pressure following an isochoric process to a pressure of 101000 Pa (Point C). At this point it decreased isobarically to its initial volume (Point D), followed by an isochoric return to its initial point (Point A). + (a) a Calculate the number of moles of the gas in the container. 119 moles (b) Calculate the temperature of the gas at Point B. 1728.78 °C (c) Calculate the temperature of the gas at Point C. 1057.07 oc (d) Calculate the temperature of the gas at Point D. -54.55 °C (e) Calculate the work done by or on the gas between Points A and B. 1638500 ] (f) Calculate the energy entering or leaving the gas between Points A and B. 4137850.15 ] # . (9) () Calculate the energy entering or leaving the gas between Points B and C. B -998835.7 + (h) Calculate the work done by or on the gas between Points C and D. - 1088780 J = (1) Calculate the energy entering or leaving the gas between Points C and D. -2749497.58 ] =
6) Calculate the energy entering or leaving the gas between Points D and A. |-273065.01 x] (k) Calculate the net energy entering or leaving the gas for the cycle. 0.000 X (1) Calculate the net work done by or on the gas for the cycle. 549780 (m) Calculate the efficiency of the gas for the cycle. 0.33 x Draw a sketch of the pathways for the processes in the gas. Make sure to label ALL values and points as stated in the problem statement. Upload your sketch.(Submit a file with a maximum size of 1 MB.) Choose File No file chosen This answer has not been graded yet.
For J 273065.01 is wrong this is not the answer
For K 0.006 is wrong this is not the answer
M I have ran out of attempts
N PLEASE COMPLETE and I will like and give good feedback thank
you
1. (19/30 Points) DETAILS PREVIOUS ANSWERS MY NOTES ASK YOUR TEACHER PRACTICE ANOTHER An ideal monatomic gas in a container expands isobarically from an initial temperature of 329.00 K and volume of 2.12 m2 (Point A)to a final volume of 12.90 m (Point B). The initial pressure is 152000 Pa. It then decreases in pressure following an isochoric process to a pressure of 101000 Pa (Point C). At this point it decreased isobarically to its initial volume (Point D), followed by an isochoric return to its initial point (Point A). + (a) a Calculate the number of moles of the gas in the container. 119 moles (b) Calculate the temperature of the gas at Point B. 1728.78 °C (c) Calculate the temperature of the gas at Point C. 1057.07 oc (d) Calculate the temperature of the gas at Point D. -54.55 °C (e) Calculate the work done by or on the gas between Points A and B. 1638500 ] (f) Calculate the energy entering or leaving the gas between Points A and B. 4137850.15 ] # . (9) () Calculate the energy entering or leaving the gas between Points B and C. B -998835.7 + (h) Calculate the work done by or on the gas between Points C and D. - 1088780 J = (1) Calculate the energy entering or leaving the gas between Points C and D. -2749497.58 ] =
6) Calculate the energy entering or leaving the gas between Points D and A. |-273065.01 x] (k) Calculate the net energy entering or leaving the gas for the cycle. 0.000 X (1) Calculate the net work done by or on the gas for the cycle. 549780 (m) Calculate the efficiency of the gas for the cycle. 0.33 x Draw a sketch of the pathways for the processes in the gas. Make sure to label ALL values and points as stated in the problem statement. Upload your sketch.(Submit a file with a maximum size of 1 MB.) Choose File No file chosen This answer has not been graded yet.