V. P. Kolesov et al. (J. Chem Thermodynamics 28 (1996) 1121) reported the standard enthalpy of combustion 4cH and the standard enthalpy of formation 4H of crystalline C6o based on bomb calorimeter measurements. In one of their runs they found the standard specific internal energy of combustion of C60 to be - 36.0334 kJ g at 298.15K and 1 bar pressure. Calculate AH° and AH for C60 at 298.15K and 1 bar pressure. Data in the following table may be helpful. Specific refers to heat per gram. ArH° in kJ mol at at 298.15K and 1 bar Substance -393.51 CO2(g) H20() -285.83

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V. P. Kolesov et al. (J. Chem Thermodynamics 28 (1996) 1121) reported the standard
enthalpy of combustion 4.H and the standard enthalpy of formation 4H° of crystalline C60 based on bomb
calorimeter measurements. In one of their runs they found the standard specific internal energy of
combustion of C60 to be - 36.0334 kJ g at 298.15K and 1 bar pressure. Calculate A.H and AH° for C60
at 298.15K and 1 bar pressure. Data in the following table may be helpful. Specific refers to heat per gram.
AfH° in kJ mol- at at 298.15K and 1 bar
Substance
-393.51
CO2(g)
H2O(e)
-285.83
onergies
s and 6. Wyith
Transcribed Image Text:V. P. Kolesov et al. (J. Chem Thermodynamics 28 (1996) 1121) reported the standard enthalpy of combustion 4.H and the standard enthalpy of formation 4H° of crystalline C60 based on bomb calorimeter measurements. In one of their runs they found the standard specific internal energy of combustion of C60 to be - 36.0334 kJ g at 298.15K and 1 bar pressure. Calculate A.H and AH° for C60 at 298.15K and 1 bar pressure. Data in the following table may be helpful. Specific refers to heat per gram. AfH° in kJ mol- at at 298.15K and 1 bar Substance -393.51 CO2(g) H2O(e) -285.83 onergies s and 6. Wyith
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