A diatomic ideal gas expands from a volume of VA = 1.00 m to VB =...
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A diatomic ideal gas expands from a volume of VA = 1.00 m to VB = 3.00 m along the path shown in the figure below. The initial pressure is PA = 2.00 x 105 Pa and there are 77.6 mol of gas. P (105 Pa) 4.00 3.00 2.00 1.00 A B I 1.00 2.00 3.00 - V (m) (a) Calculate the work done on the gas during this process. (b) Calculate the change in temperature of the gas. K (c) Calculate the change in internal energy of the gas. (Take the molar specific heat of a diatomic gas for this process to be Cp = =R.) (d) How much thermal energy is transferred to the system? A diatomic ideal gas expands from a volume of VA = 1.00 m to VB = 3.00 m along the path shown in the figure below. The initial pressure is PA = 2.00 x 105 Pa and there are 77.6 mol of gas. P (105 Pa) 4.00 3.00 2.00 1.00 A B I 1.00 2.00 3.00 - V (m) (a) Calculate the work done on the gas during this process. (b) Calculate the change in temperature of the gas. K (c) Calculate the change in internal energy of the gas. (Take the molar specific heat of a diatomic gas for this process to be Cp = =R.) (d) How much thermal energy is transferred to the system?
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