In the diagram a gas undergoes a change in pres from a to b followed by a compression from bto from an initial volume of V;= 9.47 m3 to a final volume of Vf= 3.99 m³. Determine the magnitud the total work done in taking the gas from point a point c. [Units: J]
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- pleaee help show work 1.-3.8 x 10' 2. 3000J 3. 1000J 4. 0.5 kJ 5. 84 kJ 6. 274 kl 7. 769.21,01 8. 241.21, 402.0 J 9. 414.4 kPa, 498.7 K 7. A container has 0.65 moles of ideal gas that undergoes an isothermal expansion from 0.0025 m² to 0.0040 m². The temperature is 30°C. Find the work done and the change in internal energy in this process. 8. How much heat is needed to raise the temperature of 0.75 mol of ideal monatomic gas by 25.8°C under constant volume conditions? Under constant pressure conditions? only need answer to 7 and 8 I blocked out the previous questions so theres no confusion. Open the full picture the answers are at the top question is at the bottom I just need help woth the solving process pleaseNeed help, please. Suppose you have 8.4 L of an ideal gas at 25 °C initially in a container equipped with a piston. You arrange to keep the pressure on the gas equal to 2 atm as you compress the gas to a volume of 2 L. How much work does it take to compress the gas?A gas, while expanding under isobaric conditions, does 490 ] of work. The pressure of the gas is 1.45 x 105 Pa, and its initial volume is 1.70 x 10-3 m3. What is the final volume of the gas?
- Problem 19.28 A gas is enclosed in a cylinder fitted with a light frictionless piston and maintained at atmospheric pressure. When 9950 kcal of heat is added to the gas, the volume is observed to increase slowly from 13.7 m3 to 18.8 m3. Calculate the work done by the gas. Express your answer using two significant figures. nνα ΑΣφ Submit Request Answer Part B Calculate the change in internal energy of the gas. ΑΣφ AEint = Submit Request AnswerCan 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)For the two PV diagrams below, find the net work done on the gas during the process indicated by the path. (Enter your answers in J.) (a) P (10*Pa) 6.00 4.00 2.00 V (m³) 2.00 4.00 6.00 -400008 |× J (b) P(10°Pa) 6.00 4.00 2.00 V (m³) 2.00 4.00 6.00 800008