Please Help with D
Posted: Sun Jul 10, 2022 11:53 am
Please Help with D
A cylinder with a frictionless, movable piston like that shown in the figure, contains a quantity of helium gas. Initially the gas is at a pressure of 1.00 × 105 Pa, has a temperature of 300 K, and occupies a volume of 1.50 L. The gas then undergoes two processes. In the first, the gas is heated and the piston is allowed to move to keep the temperature equal to 300 K. This continues until the pressure reaches 2.50 × 104 Pa. In the second process, the gas is compressed at constant pressure until it returns to its original volume of 1.50 L. Assume that the gas may be treated as ideal. (Figure 1) Figure 1 of 1 Part C Find the temperature of the gas at the end of the second process. Express your answer in kelvins. T₂ = 75.0 K Submit ✓ Correct Part D Previous Answers Find the total work done by the gas in the first process. Express your answer in joules. Submit W₁ = 277.258 [-] ΑΣΦ Part E Previous Answers Request Answer X Incorrect; Try Again; 5 attempts remaining ?
A cylinder with a frictionless, movable piston like that shown in the figure, contains a quantity of helium gas. Initially the gas is at a pressure of 1.00 × 105 Pa, has a temperature of 300 K, and occupies a volume of 1.50 L. The gas then undergoes two processes. In the first, the gas is heated and the piston is allowed to move to keep the temperature equal to 300 K. This continues until the pressure reaches 2.50 × 104 Pa. In the second process, the gas is compressed at constant pressure until it returns to its original volume of 1.50 L. Assume that the gas may be treated as ideal. (Figure 1) Figure 1 of 1 Part C Find the temperature of the gas at the end of the second process. Express your answer in kelvins. T₂ = 75.0 K Submit ✓ Correct Part D Previous Answers Find the total work done by the gas in the first process. Express your answer in joules. Submit W₁ = 277.258 [-] ΑΣΦ Part E Previous Answers Request Answer X Incorrect; Try Again; 5 attempts remaining ?