3. For ideal gas treated in quantum regime and when the particles are treated as distinguishable but without Gibb's correction, calculate A. the energy B. specific heat at constant pressure C. establish the relation between specific heat capacities when the volume and pressure are taken to be constant separately
3. For ideal gas treated in quantum regime and when the particles are treated as distinguishable but without Gibb's correction, calculate A. the energy B. specific heat at constant pressure C. establish the relation between specific heat capacities when the volume and pressure are taken to be constant separately
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
Transcribed Image Text:3. For ideal gas treated in quantum regime and when the particles are treated as distinguishable
but without Gibb's correction, calculate
A. the energy
B. specific heat at constant pressure
C. establish the relation between specific heat capacities when the volume and
pressure are taken to be constant separately
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