Material | Specific Heat Capacity (J/gºC) |
C2H5OH (l) (ethanol) | 2.46 |
(CH2OH)2 (l) (ethylene glycol, antifreeze) | 2.42 |
H2O (ice) | 2.06 |
CCl4 (carbon tetrachloride) | 0.861 |
Constant pressure heat capacity of liquid ; 115.9, 298.15, Stephens and Olson, 1984, T = 266 to 318 K. Cp given as 0.6011 cal/g*K.; DH ; 112.67, 298.15, Zegers ... |
Standard heat capacities of gaseous methanol, ethanol, methane and ethane at 279 K by thermal conductivity, J. Phys. Chem., 1957, 61, 1536-1539. |
Heat of Fusion, 107.0 J/g, 46.04 BTU/lb ; Heat of Vaporization, 837 J/g, 360 BTU/lb ; Specific Heat Capacity, 1.419 J/g-°C · @Temperature 25.0 °C · 0.3391 BTU/lb-°F |
Substance and % by volume in mixture, Freezing point [oC], Temperature [oC], Density [kg/m3], Specific heat [kJ/kg.K] ; Methanol CH3OH 10, -7.5. 0 -7.5. 984 986 ... |
PHYSICAL DATA OF THERMAL FLUIDS www.celsius-process.com. ETHANOL. C2H60. M : 46.0684. Température de fusion : -114.1°C freezing point. Température d'ébullition ... |
16 июн. 2017 г. · So ethanol has 50.67 kJ/mol vs 53.72 kJ/mol said by you. I would say that you have made fine your homework, there is a very little difference (I ... |
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