Physic Labs

Problem 2

One mole of monatomic ideal gas starts at state AA with TA=300T_A=300 K and VA=0.010V_A=0.010 m3^3. It follows a three-step cycle: (1) heat at constant volume from AA to BB, where TB=600T_B=600 K; (2) expand isothermally from BB to CC until the volume doubles; (3) compress at constant pressure from CC back to AA. Use R=8.31R=8.31 J mol−1^{-1} K−1^{-1}, molar CV=3R/2C_V=3R/2, and define work WW as positive when done by the gas. (a) Find the pressures at A,B,CA,B,C. (b) Calculate work and heat for each leg. (c) Check the first law over the complete cycle.
∑ΔU=0,∑W=960 J,∑Q=960 J;QAB=3739.5 J, QBC=3453 J, QCA=−6232.5 J\sum\Delta U=0,\quad \sum W=960\ \mathrm J,\quad \sum Q=960\ \mathrm J;\qquad Q_{AB}=3739.5\ \mathrm J,\ Q_{BC}=3453\ \mathrm J,\ Q_{CA}=-6232.5\ \mathrm J
problems.proof.analysis

After a full cycle the gas returns to its initial state, so its net internal-energy change is zero. The net work is −2493+3453=960-2493+3453=960 J and net heat is 3739.5+3453−6232.5=9603739.5+3453-6232.5=960 J, consistent with ΔU=Q−W=0\Delta U=Q-W=0.