Suppose 1.00 mol of a monatomic ideal gas is taken from initial pressure p 1 and volume V 1 through two steps: (1) an isothermal expansion to volume 2.00 V 1 , and (2) a pressure increase to 2.00 p 1 at constant volume. What is Q/p 1 V 1 for (a) step 1 and (b) step 2? What is W/p 1 V 1 for (c) step 1 and (d) step 2? For the full process, what are (e) Δ E int /p 1 V 1 and (f) ΔS? The gas is returned to its initial state and again taken to the same final state but now through these two steps: (1) an isothermal compression to pressure 2.00 p 1 and (2) a volume increase to 2.00 V 1 at constant pressure. What is Q/p 1 V 1 for (g) step 1 and (h) step 2? What is W/p 1 V 1 for (i) step 1 and (j) step 2? For the full process, what are (k) Δ E int /p 1 V 1 and (1) ΔS?
Suppose 1.00 mol of a monatomic ideal gas is taken from initial pressure p 1 and volume V 1 through two steps: (1) an isothermal expansion to volume 2.00 V 1 , and (2) a pressure increase to 2.00 p 1 at constant volume. What is Q/p 1 V 1 for (a) step 1 and (b) step 2? What is W/p 1 V 1 for (c) step 1 and (d) step 2? For the full process, what are (e) Δ E int /p 1 V 1 and (f) ΔS? The gas is returned to its initial state and again taken to the same final state but now through these two steps: (1) an isothermal compression to pressure 2.00 p 1 and (2) a volume increase to 2.00 V 1 at constant pressure. What is Q/p 1 V 1 for (g) step 1 and (h) step 2? What is W/p 1 V 1 for (i) step 1 and (j) step 2? For the full process, what are (k) Δ E int /p 1 V 1 and (1) ΔS?
Suppose 1.00 mol of a monatomic ideal gas is taken from initial pressure p1 and volume V1 through two steps: (1) an isothermal expansion to volume 2.00V1, and (2) a pressure increase to 2.00p1 at constant volume. What is Q/p1V1 for (a) step 1 and (b) step 2? What is W/p1V1 for (c) step 1 and (d) step 2? For the full process, what are (e) ΔEint/p1V1 and (f) ΔS? The gas is returned to its initial state and again taken to the same final state but now through these two steps: (1) an isothermal compression to pressure 2.00p1 and (2) a volume increase to 2.00V1 at constant pressure. What is Q/p1V1 for (g) step 1 and (h) step 2? What is W/p1V1 for (i) step 1 and (j) step 2? For the full process, what are (k) ΔEint/p1V1 and (1) ΔS?
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