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1. A gas follows the equation of state: Over the range of interest, where a=40,000cm3. K/mole,b=20cm3/mol, and (a) Derive formulae for the enthalpy departure. (b)

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1. A gas follows the equation of state: Over the range of interest, where a=40,000cm3. K/mole,b=20cm3/mol, and (a) Derive formulae for the enthalpy departure. (b) Evaluate the enthalpy change for the gas as it undergoes the state change: T1=300K,P1=0.1MPa,T2=400K,P2=2MPa. 1. A gas follows the equation of state: Over the range of interest, where a=40,000cm3. K/mole,b=20cm3/mol, and (a) Derive formulae for the enthalpy departure. (b) Evaluate the enthalpy change for the gas as it undergoes the state change: T1=300K,P1=0.1MPa,T2=400K,P2=2MPa

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