In a constant-volume process, 211

  1. An ideal gas in a rigid container (constant volume) has its pressure cut in half slowly. In the process, 265 kJ of heat left the
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  2. Two kilograms of an ideal gas undergoes an isentropic process from 670 KPag and a volume of 0.80 cubic meter to a final volume
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  3. A process takes place at constant pressure. The volume changes and the temperature increases by 91.0oC. The heat capacity of the
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  4. A diatomic ideal gas is heated at constant volume until its pressure becomes 3 times.it is again heated at constant pressure
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  5. A diatomic ideal gas is heated at constant volume until its pressure becomes 3 times.it is again heated at constant pressure
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  6. A diatomic ideal gas is heated at constant volume until its pressure becomes 3 times.it is again heated at constant pressure
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  7. A diatomic ideal gas is heated at constant volume until its pressure becomes 3 times.it is again heated at constant pressure
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  8. One gram of water changes from liquid to solid at a constant pressure of 1.00 atm and a constant temperature of 0°C. In the
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  9. A heat engine carries 2.60 mol of an ideal monatomic gas around the cycle shown in the figure. Process 1-2 takes place at
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  10. Consider a system in which 3.60 mol of an ideal monatomic gas is expanded at a constant pressure of 101 kPa from an initial
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