An ldeal gas goes ar the langle shaped Pv diagram, A-C The pressure changes belween P1 and 4P1, and the volume changes between V1 and 3V1 as shown. What is the total work done by the gas during the process from point C to point B? 4P. Pi V1 3V1 O +3P¡V1 O - 3P;V1 O +5P1V1 O - 5P1V1 O No work is done
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- Volech 28. A monatomic ideal gas initially at pressure Po = 10° Pa, volume Vo = 0.01 m³, and temperature To = 300 K is taken through the cycle shown in the figure. p %3D ЗР. a. Determine the change in internal energy from point A to point B. b. Determine the work done by the gas from point B to point C. Po c. Determine the heat released by the gas from point C to point D. d. Determine the net work done by the gas and the net heat absorbed by the gas. Vo 3V bhe s on thePlease asap15.
- 9 PM Thu Apr 29 Problem 1 Unanswered Consider n moles of a monatomic ideal gas that goes through the reversible cycle abca shown in the pV diagram. What is the change in internal energy AUin going from c to a along the curved path? 9 -PoVo A 13 B - PoVo 21 - PoVo 24 -PoVo 2po Po as Vo 4Vo4 di 8 Domanda 8 Completo Punteggio max.: 2 When an ideal gas is compressed isothermally Scegli un'alternativa: A. heat flows into the gas. OB. the internal energy of the gas does not change. OC. the work done on the gas is zero. OD. the temperature of the gas increases. Exam 17-12-2020: Revisione tentativo Domanda 9 O Cerca I https://elearning.unipd.it/dimed/mod/quiz/revien BIf we know that the internal energy of the monoatomic ideal gas remains constant during the process in B to C, what must be the pressure Pc at point C in terms of the original pressure P0.
- Can you help with "c" was told to use as less digits as possible 3. An unknown number of moles of an ideal monoatomic gas expand reversibly from Vi = 3.10 m3 to Vf = 4.00 m3, at a constant pressure of 1.47 atm and an initial temperature of 300 K. a. Find the number of moles of gas. 185b. Find the final temperature of the gas K. 387 c. Calculate the work done by the gas. 134053 J <<<< this is the wrong answer. (should use less digits for this answer)You would like to raise the temperature of an ideal gas from 295 K to 960 K in an adiabatic process. a)What compression ratio will do the job for a monatomic gas? b)What compression ratio will do the job for a diatomic gas?A flexible box contains 5.60 grams of nitrogen gas (N2) which is maintained at a constant pressure of 1.35 x 10$ Pa. The box is placed over a fire, causing the volume to increase from 0.00200 m3 to 0.00300 m³. Find the increase in temperature of the gas. (For N2 molar mass M = 28 grams.)